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In der vorliegenden Arbeit wurden zehn Substanzen, die im Rahmen des Projekts INTAFERE analytisch in verschiedenen Gewässersystemen des Hessischen Rieds nachgewiesen werden konnten, ökotoxikologisch charakterisiert. Neben der Bestimmung der Akut- und der chronischen Toxizität wurde auch das endokrine Potential mit Hilfe eines rekombinanten Hefe-Assays ermittelt.Die akute Toxizität zeigt zwischen den verschiedenen Substanzen große Differenzen. Die drei Organophosphate TCPP, TBEP und TCEP zeigen selbst bei hohen Konzentrationen keine oder nur sehr geringe Effekte, während 4-NP, 4-t-OP, BPA, TDCPP, AHTN und Terbutryn mit LC50-Werten bis zu 5 mg/l eine höhere Toxizität besitzen.Im Hefe-Assay kann in mehreren Versuchswiederholungen das östrogene Potential von 4-NP (MW: 6,71x10-6 M), 4-t-OP (MW: 7,16x10-6 M) und BPA (MW: 4,88x10-6 M), sowie die antiandrogene Wirkung des Bisphenols (5,29x10-5 M) bestätigt werden. Im Gegensatz dazu können im Yeast Antiestrogen Screen zum ersten Mal Hinweise auf die antiöstrogene Wirkung von TCPP (MW: 6,86x10-5 M), Terbutryn (MW: 3,99x10-5 M), TDCPP (MW: 2,65x10-6 M) und TBP (MW: 2,28x10-5 M) aufgezeigt werden.TBP und TDCPP führen auch in der chronischen Exposition bei Potamopyrgus antipodarum zu einer Reduktion in der Embryonenzahl (mehrfach beobachtete NOEC beider Substanzen: 6,25 mg/kg), ein Effekt, der zunächst nicht von einer toxischen Wirkung unterschieden werden kann. Allerdings scheint sich ein antiöstrogener Wirkmechanismus auf die Schnecken bei den Versuchen zur Mischtoxizität zu bestätigen, da die gleichzeitige Exposition gegenüber BPA und 4-tOP zu einer geringfügigen Aufhebung des Effekts führt. Potamopyrgus reagiert ebenfalls mit einer Reduktion der Embryonenzahl bei der Exposition gegenüber AHTN (mehrfach beobachtete NOEC: 2 mg/kg), zeigt sich aber insensitiv gegenüber der Belastung mit Terbutryn.Die Exposition von Chironomus riparius gegenüber den verschiedenen Substanzen führt bis auf eine Ausnahme zu keinen signifikanten substanzbedingten Beeinträchtigungen. Einzig das s-Triazin Terbutryn verursacht eine hohe Mortalität mit einer NOEC (28 d) von 250 μg/kg. Eine Toxizität auf den Anneliden Lumbriculus variegatus zeigt sich lediglich bei derExposition gegenüber BPA (NOEC: 10 mg/kg; Biomasse, 28 d) und 4-NP (EC10: 6,88 mg/kg; 95% KI: 3,97-11,9; Reproduktion, 28 d). Die durchgeführten Versuche zur Toxizität von Mischungen zeigen eine größere Gefährdung auf als bei Vorliegen der Einzelsubstanzen in Konzentrationen unterhalb ihres Schwellenwertes zu vermuten wäre. Allerdings lassen sich die mit dem Hefe-Assay erzielten Ergebnisse aufgrund großer Variabilitäten zwischen den einzelnen Versuchswiederholungen nicht immer eindeutig mit Hilfe des additiven oder des unabhängigen Modells beschreiben, zeigen dabei jedoch trotzdem ein gegenüber den Einzelsubstanzergebnissen verändertes Risiko auf. Um diesem in der Risikobewertung Rechnung zu tragen, wird ein Verfahrensvorschlag entwickelt, in dem durch zusätzliche Sicherheitsfaktoren für PNECs ein Überschreiten des risikoanzeigenden Werts von 1 des PEC/PNEC-Quotienten einer Mischung verhindert werden kann.
Stressorinduzierte ökotoxikologische Effekte und Genexpressionsveränderungen bei Chironomus riparius
(2008)
Die Effekte von Stressoren auf Chironomus riparius wurden im Lebenszyklustest und auf genomischer Ebene mit dem Ziel untersucht, ein auf einem DNA-Mikroarray („ChiroChip“) basierendes Screeningverfahren zu entwickeln. Die empfindlichsten Endpunkte der Lebenszyklustests waren die Mortalität, der Anteil fruchtbarer Eigelege, der mittlere Schlupfzeitpunkt der Weibchen sowie das Gewicht der Männchen. Temperaturveränderungen um ± 6°C gegenüber einer normalen Hälterungstemperatur von 20°C führten in allen Endpunkten zu hochsignifikanten Effekten. Eine LC10 konnte nur für die Salinität berechnet werden (0,66‰, KI: 0,26 − 1,68‰). Aufgrund der nicht-linearen Konzentrations-Wirkungs-Beziehungen konnte nur für den mittleren Schlupfzeitpunkt der Weibchen nach einer Exposition gegenüber Cadmium eine EC50 (0,53 mg/kg, KI: 0,29 − 0,97 mg/kg) bestimmt werden. In den Versuchen mit Methyltestosteron, Ethinylöstradiol, Carbamazepin, Fluoxetin, Blei und Tributylzinn (mit denen auch molekularbiologische Untersuchungen durchgeführt wurden) waren die empfindlichsten Endpunkte die Mortalität, der Anteil fruchtbarer Eigelege, der mittlere Schlupfzeitpunkt der Weibchen sowie die Populationswachstumsrate. Carbamazepin (CBZ) wirkte schlupfverzögernd bei den Weibchen. 10 mg CBZ/kg führte zu einer höheren Mortalität, weniger Eigelegen, die vermehrt unfruchtbar waren, sowie zu einer geringeren Populationswachstumsrate. Fluoxetin (FX) wirkte bei beiden Geschlechtern schlupfverzögernd. 0,9 mg FX/kg führte zu einer erhöhten Mortalität, weniger und vermehrt unfruchtbaren Eigelegen und einer geringeren Populationswachstumsrate. In der höchsten Konzentration (5,9 mg/kg) waren die Weibchen leichter als die Kontrolltiere. Tributylzinn (in µg Sn/kg angegeben) bewirkte eine höhere Mortalität und geringere Populationswachstumsrate bei 100 µg Sn/kg und führte zu einer Verzögerung im Schlupfverlauf bei den Weibchen. Bei 160 µg Sn/kg gab es weniger Eigelege, die vermehrt unfruchtbar waren. Die Männchen, die gegenüber Konzentrationen von 120 und 160 µg Sn/kg exponiert wurden, waren leichter als die Kontrolle. Expositionen gegenüber Blei (Pb) in Konzentrationen von 0,65 − 65 mg/kg führten bei 6,5 mg Pb/kg zu einer erhöhten Mortalität und zu mehr unfruchtbaren Gelegen. Bei 0,65 mg Pb/kg waren die Männchen leichter und bei 6,5 mg Pb/kg schwerer. Die Anzahl der fruchtbaren Gelege pro Weibchen war bei 3,25 und 6,5 mg Pb/kg geringer als in der Kontrolle. Die gegenüber 17alpha-Methyltestosteron (MET) exponierten Mücken hatten geringere Mortalitäten als in der Kontrolle und zeigten einen verfrühten Schlupf beider Geschlechter. Ab 27 µg MET/kg gab es weniger unfruchtbare Gelege, leichtere Männchen sowie erhöhte Populationswachstumsraten. 17alpha-Ethinylöstradiol (EE2) führte zu einem verfrühten Schlupf bei beiden Geschlechtern sowie zu erhöhten Populationswachstumsraten. Bei 9 µg EE2/kg gab es weniger unfruchtbare Gelege. Die Exposition von Chironomus-Larven gegenüber Methyltestosteron, Ethinylöstradiol, Fluoxetin, Carbamazepin, Tributylzinn und Blei führte zur differenziellen Expression von neun (Methyltestosteron) bis 49 (Carbamazepin) Genen. Bei der Untersuchung der exprimierten Proteine fällt auf, dass kaum bekannte Stressproteine (z.B. Glutathion-S-Transferase oder Cytochrom P450) differentiell reguliert wurden. Bei der Exposition wurden verschiedene Prozesse durch eine veränderte Genexpression beeinflusst. Eine Exposition gegenüber Methyltestosteron führte zu einer Beeinträchtigung von drei identifizierten biologischen Prozessen, während bei den anderen Substanzen sieben bis acht Prozesse beeinflusst waren. Die am häufigsten beeinflussten Prozesse waren der Protein- und der Energiemetabolismus. Der Sauerstofftransport ist ein Prozess, der bei allen Substanzen beeinflusst wurde, jedoch mit unterschiedlichen Anteilen. Bei einer Exposition gegenüber Methyltestosteron war der Anteil des Sauerstofftransports an den beteiligten Prozessen mit 84,6% am größten und mit 10,5% bei Fluoxetin am geringsten. Die veränderte Genexpression der Globine kann möglicherweise aufgrund der schadstoffspezifischen Veränderungen als Biomarker für das Monitoring von Freilandgewässern angewendet werden. Da Tubulin und Aktin häufig nach einer Exposition gegenüber Stressoren differenziell exprimiert wird (bei Tributylzinn und CBZ in der vorliegenden Arbeit und bei Antidepressiva und Östrogenen in anderen Studien) wären die beiden Proteine möglicherweise ebenfalls als Biomarker für Chemikalienstress geeignet. Vor der Verwendung des ChiroChips als Screeninginstrument für die Chemikalienuntersuchung und das Biomonitoring müssen noch Untersuchungen zur konzentrationsabhängigen Genexpression und zur Expression in unbehandelten Larven und weiteren Lebensstadien erfolgen. Des Weiteren müssen die vorliegenden Daten verifiziert und die Funktion der differentiell regulierten Gene vertieft untersucht werden.
Biodegradation and elimination of industrial wastewater in the context of whole effluent assessment
(2010)
The focus of this thesis is on the assessment of the degradability of indirectly discharged wastewater in municipal treatment plants and on assessing indirectly discharged effluents by coupling the Zahn-Wellens test with effect-based bioassays. With this approach persistent toxicity of an indirectly discharged effluent can be detected and attributed to the respective emission source. In the first study 8 wastewater samples from different industrial sectors were analysed according to the “Whole-Effluent Assessment“ (WEA) approach developed by OSPAR. In another study this concept has been applied with 20 wastewater samples each from paper manufacturing and metal surface treating industry. In the first study generally low to moderate ecotoxic effects of wastewater samples have been determined. One textile wastewater sample was mutagenic in the Ames test and genotoxic in the umu test. The source of these effects could not be identified. After treatment in the Zahn-Wellens test the mutagenicity in the Ames test was eliminated completely while in the umu test genotoxicity could still be observed. Another wastewater sample from chemical industry was mutagenic in the Ames test. The mutagenicity with this wastewater sample was investigated by additional chemical analysis and backtracking. A nitro-aromatic compound (2-methoxy-4-nitroaniline) used for batchwise azo dye synthesis and its transformation products are the probable cause for the mutagenic effects analysed. Testing the mother liquor from dye production confirmed that this partial wastewater stream was mutagenic in the Ames test. The wasteweater samples from paper manufacturing industry of the second study were not toxic or genotoxic in the acute Daphnia test, fish egg test and umu test. In the luminescent bacteria test, moderate toxicity was observed. Wastewater of four paper mills demonstrated elevated or high algae toxicity, which was in line with the results of the Lemna test, which mostly was less sensitive than the algae test. The colouration of the wastewater samples in the visible band did not correlate with algae toxicity and thus is not considered as its primary origin. The algae toxicity in wastewater of the respective paper factory could also not be explained with the thermomechanically produced groundwood pulp (TMP) partial stream. Presumably other raw materials such as biocides might be the source of algae toxicity. In the algae test, often flat dose–response relationships and growth promotion at higher dilution factors have been observed, indicating that several effects are overlapping. The wastewater samples from the printed circuit board and electroplating industries (all indirectly discharged) were biologically pre-treated for 7 days in the Zahn–Wellens test before ecotoxicity testing. Thus, persistent toxicity could be discriminated from non-persistent toxicity caused, e.g. by ammonium or readily biodegradable compounds. With respect to the metal concentrations, all samples were not heavily polluted. The maximum conductivity of the samples was 43,700 micro S cm -1 and indicates that salts might contribute to the overall toxicity. Half of the wastewater samples proved to be biologically well treatable in the Zahn–Wellens test with COD elimination above 80%, whilst the others were insufficiently biodegraded (COD elimination 28–74%). After the pre-treatment in the Zahn–Wellens test, wastewater samples from four companies were extremely ecotoxic especially to algae. Three wastewater samples were genotoxic in the umu test. Applying the rules for salt correction to the test results following the German Wastewater Ordinance, only a small part of toxicity could be attributed to salts. In one factory, the origin of ecotoxicity has been attributed to the organosulphide dimethyldithiocarbamate (DMDTC) used as a water treatment chemical for metal precipitation. The assumption, based on rough calculation of input of the organosulphide into the wastewater, was confirmed in practice by testing its ecotoxicity at the corresponding dilution ratio after pre-treatment in the Zahn–Wellens test. The results show that bioassays are a suitable tool for assessing the ecotoxicological relevance of these complex organic mixtures. The combination of the Zahn–Wellens test followed by the performance of ecotoxicity tests turned out to be a cost-efficient suitable instrument for the evaluation of indirect dischargers and considers the requirements of the IPPC Directive.
Wastewater treatment plants (WWTPs) do not eliminate micropollutants completely and are thus important point sources for these substances. In particular, concerns about en-docrine disrupting compounds in WWTP effluents give rise to the implementation of advanced treatment steps for the elimination of trace organic contaminants. The present study investigated ozonation (O3) and activated carbon treatment (AC) at two WWTPs. For an ecotoxicological assessment at WWTP Regensdorf, conventionally treated wastewater, wastewater after ozonation, and ozonated wastewater after sand filtration were evaluated in parallel via the fish early life stage toxicity test (FELST) using rainbow trout (Oncorhynchus mykiss). Additionally, a comparative toxicity evalu-ation of ozonated and activated carbon treated effluents was performed at the pilot scale treatment plant in Neuss (WWTP Neuss). For this purpose, four invertebrate tests and one higher plant toxicity test were selected to assess potential biological effects on or-ganisms [Lemna minor growth inhibition test, chironomid toxicity test with Chironomus riparius, Lumbriculus variegatus toxicity test, comet assay with haemolymph of the zebra mussel (Dreissena polymorpha), reproduction test with Potamopyrgus antipo-darum]. All in vivo assays were performed on site at the treatment plants in flow-through test systems. Furthermore, the present study investigated the effects of ozona-tion and activated carbon treatment on endocrine activities [estrogenicity, anti-estrogenicity, androgenicity, anti-androgenicity, aryl-hydrocarbon receptor (AhR) agonistic activity] with yeast based bioassays using solid phase extracted water samples. To evaluate the removal of in vitro non-specific toxicity, a cytotoxicity assay using a rat cell line was applied. The FELST at WWTP Regensdorf revealed a considerable developmental retardation of test organisms exposed to ozonated WW. This was accompanied by a significant decrease in body weight and length compared to reference water, to the conventionally treated WW, and to the ozonated water after sand filtration. Hence sand filtration obvi-ously prevents from adverse ecotoxicological effects of ozonation. An additional test – starting with yolk-sac larvae – resulted in a significant reduction of vitellogenin levels in fish exposed to ozonated wastewater compared to fish reared in conventionally treat-ed wastewater. This demonstrates the effective removal of estrogenic activity by ozonation. At WWTP Neuss, the reproduction test with the mudsnail P. antipodarum exhibited a decreased reproductive output after advanced treatment compared to conventional treatment. This indicates an effective estrogenicity removal by ozonation and activated carbon treatment and is confirmed by results of the yeast estrogen screen with a reduc-tion of in vitro estrogenic activity by > 75%. The L. variegatus test revealed a signifi-cantly enhanced toxicity after ozonation compared to conventional treatment, whereas this effect was reduced following subsequent sand filtration. When ozonation was applied, a significantly increased genotoxicity was observed, detected with the comet assay using haemolymph of the zebra mussel. Again, this effect was removed by subsequent sand filtration to the level of conventional treatment. Activated carbon treatment even resulted in a significant reduction of genotoxicity. At both treatment plants, adverse effects after ozonation may have been a result of the formation of toxic oxidation by-products. However, sand filtration reduced toxication effects, indicating that these oxidation by-products are readily degradable or adsorbable. The results point out that, in any case, ozonation should not be applied without subsequent biologically active post treatment appropriate for oxidation by-products removal (e.g. sand filtration). However, only activated carbon achieved a toxicity reduction compared to the conventional treated wastewater. Thus, it cannot be excluded that po-tential beneficial effects due to ozonation might be masked by residual toxic oxidation by-products passing the sand filter or ozonation is not as effective in toxicity removal as PAC treatment. The yeast based assays with solid phase extracted samples revealed an effective endo-crine activity removal during ozonation and activated carbon filtration (estrogenicity: 77 – 99%, anti-androgenicity: 63 – 96%, AhR agonistic activity: 79 – 82%). The cyto-toxicity assay exhibited a 32% removal of non-specific toxicity after ozonation com-pared to conventional treatment. Ozonation in combination with sand filtration reduced cytotoxic effects by 49%, indicating that sand filtration contributes to the removal of toxicants. Activated carbon treatment was the most effective technology for cytotoxici-ty removal (61%). Sample evaporation reduced cytotoxic effects by 52% (after activated carbon treatment) to 73% (after ozonation), demonstrating that volatile substances contribute considerably to toxic effects, particularly after ozone treatment. These results confirm an effective removal or transformation of toxicants with receptor mediated mode of action and non-specific toxicants during both investigated treatment steps. However, due to the limited extractability, polar ozonation by-products were neglected for toxicity analysis, and hence non-specific toxicity after O3 is underestimated. In the long run, only on-site comparisons at WW receiving water bodies (e.g. communi-ty analysis of fish, macroinvertebrates, plants, microorganisms) – before and after up-grading WWTPs – allow drawing environmentally relevant conclusions regarding bene-fits and risks of advanced WW treatment methods. Conclusively, the benefits and possible negative impacts have to be carefully evaluated to prove that not more environmental impact will be induced than removed by advanced treatment technologies as each additional treatment requires considerable amounts of energy, resources, and infrastructure facilities. Accordingly, comprehensive sustainable approaches for pollution prevention and wastewater treatment (e.g. source control and source separation) are preferable compared to end-of-pipe treatment systems.
Therapy of hemorrhagic shock with following resuscitation-induced liver injury : in vivo study
(2010)
Shock resulting from life-threatening blood-loss (hemorrhagic shock) represents the most frequent injury pattern after a traumatic insult. Hemorrhagic shock induces inflammatory changes, characterized by highly complex pathophysiological pathways often resulting in death. In this study, we establish an experimental in vivo model of H/R in rats and study the mechanisms which determine the hepatic injury after H/R. Furthermore, we show that hemorrhagic shock with following resuscitation is accompanied with release of systemic and local pro-inflammatory mediators, increased infiltration of hepatic neutrophils in the liver, increased oxidative and nitrosative stress, enhanced cell death of both types, apoptosis and necrosis, conspicuous cytoskeletal rearrangements, loss of hepatic integrity and finally high general mortality rates, up to 80%. In addition, the effects of two potential therapeutic interventions to prevent the H/R induced liver injury are explored in a model of H/R in rats. First, the role of JNK and its inhibition by D-JNKI-1 in preservation of hepatic integrity following H/R was analyzed. Second, we investigated the potential of simvastatin to prevent the disturbed inflammatory response and hepatic injury after H/R. The effects of both therapeutic interventions were studied by looking at several inflammatory parameters, markers of oxidative and nitrosative stress, cytoskeleton integrity, microcirculatory parameters, underlying signaling cascades, liver damage and mortality. Highly specific blockade of JNK with the potent, inhibitory peptide D-JNKI-1 revealed the crucial role of the JNK signaling pathway in the H/R induced pathophysiology and strong protective effects of DJNKI- 1 in H/R induced liver injury, when the peptide was applied before and even after hemorrhagic shock. The other therapeutic intervention tested in this study was the use of simvastatin which also revealed protective effects after H/R and even a remarkable improvement in survival after H/R. We show that H/R induced release of pro-inflammatory cytokines, hepatic PMNL infiltration, increased oxidative and nitrosative stress, apoptosis and necrosis can be diminished by treatment with D-JNKI-1 but also with simvastatin in vivo. Furthermore, simvastatin reduces H/R induced cytoskelatal rearrangements, loss of liver integrity and the mortality rate after H/R. The key pathway which underlies these beneficial effects of simvastatin is the Rho kinase pathway. Identification of both mechanisms as well as the effectiveness of both substances provide new insights in the close interaction between hypoxia and the immune system and present a promising basis for the anti-inflammatory, hepatoprotective treatment after H/R.
Humanpharmaka stellen eine permanente Belastung von Gewässern dar. Im Rahmen der vorliegenden Arbeit wurde erstmals gemäß dem von der Europäischen Arzneimittelagentur EMEA entwickelten Konzept zur Durchführung von Umweltrisikobewertungen von Humanpharmaka mit mehreren ausgewählten Substanzen Umweltrisikobewertungen durchgeführt. Die hierfür ausgewählten Pharmaka sind das Antiepileptikum Carbamazepin (CBZ), das Antibiotikum Sulfamethoxazol (SMX) und das synthetische Östrogen 17a-Ethinylöstradiol (EE2). Als Vertreter der Inhaltsstoffe von Körperpflegeprodukten wurde der polyzyklische Moschusduftstoff Tonalid (AHTN) in die Untersuchungen mit einbezogen. Mit Hilfe von Literaturrecherchen wurde die Datengrundlage für Expositions- und Wirkungsabschätzungen bereitgestellt. Der vorhandene recherchierte Datensatz wurde mit entsprechenden Kurz- und Langzeitstudien ergänzt. Die mit den Ergebnissen der Expositions- und Wirkungsabschätzungen vorgenommenen Umweltrisikobewertungen ergaben im ersten Schritt basierend auf Kurzzeitstudien unter den ausgewählten Substanzen lediglich für den Moschusduftstoff AHTN ein erhöhtes Umweltrisiko für Oberflächengewässer. Basierend auf weiterführenden Langzeitstudien konnte das zunächst erkannte, durch AHTN indizierte Umweltrisiko entkräftet werden, jedoch ergaben die Risikocharakterisierungen für EE2 und SMX ein erhöhtes Risiko für das aquatische Kompartiment. Auf Grund der erhöhten Adsorptionspotenziale von CBZ, EE2 und AHTN wurden für diese Substanzen kompartimentspezifische Umweltrisikocharakterisierungen durchgeführt. Dabei wurde ein erhöhtes Umweltrisiko durch CBZ für das Kompartiment Sediment angezeigt. Basierend auf den Ergebnissen einer Sediment-Bioakkumulationsstudie mit dem endobenthischen Oligochaeten Lumbriculus variegatus, welche in einen unerwartet hohen Akkumulationsfaktor resultierte, und aus der Literatur verfügbaren Fisch-Biokonzentrationsfaktoren wurde anhand der Nahrungskette Wasser-Sediment-Wurm-Fisch die Möglichkeit des ‚secondary poisonings’ durch EE2 bei wurmfressenden Fischen unter natürlichen Bedingungen aufgezeigt. Zur Verwendung dieses Ergebnisses in einer Umweltrisikobewertung zum Zwecke der Zulassung von Pharmaka sollten weitergehende Untersuchungen zur Bestätigung durchgeführt werden. Bezugnehmend auf die Resultate der eigenen Studien und auf die besonderen Eigenschaften von Humanpharmaka wurde der EMEA-Richtlinienentwurf diskutiert und Verbesserungsvorschläge erarbeitet. Bis auf wenige Anpassungen geht das EMEA-Bewertungsschema nicht auf die Besonderheiten und spezifischen Eigenschaften von Humanpharmaka ein. Hauptkritikpunkte bezogen sich auf (1) die Anwendung eines konzentrationsabhängigen Schwellenwertes als Entscheidungsgrundlage zur Durchführung einer Risikocharakterisierung, (2) das stufenweise Vorgehen bei der Wirkungsabschätzung mit zuerst ausschließlich auf Kurzzeitstudien basierenden Effektdaten, und (3) unzureichende Angaben zu Vorgehensweisen in der höheren Stufe des Bewertungsschemas, vor allem bei Substanzen mit außergewöhnlichem ökotoxikologischen Potenzial. Trotz der zur Zeit intensiven internationalen Diskussion über mögliche Auswirkungen durch endokrine Disruptoren auf Mensch und Umwelt sieht der EMEA-Richtlinienentwurf nicht ausdrücklich vor, die Umweltgefährdung durch potenziell endokrin wirksame Substanzen mit spezifischen Testmethoden festzustellen und zu bewerten. Die Erkenntnis, dass spezifische Wirkmechanismen bei Chemikalien, speziell bei Arzneimitteln und Bioziden, auch in sehr niedrigen Konzentrationen zu Wirkungen in der Umwelt führen können, bleibt im EMEA-Richtlinienentwurf auf Grund der Einführung eines expositionsbezogenen Schwellenwertes und der Wirkungsabschätzung mittels Akutstudien nur unzureichend berücksichtigt. Zur Schließung dieser Lücke, die durch Untersuchungen zu endokrinen Wirkungen in der Umwelt offensichtlich wurde, müssen neue und bessere ökotoxikologische Instrumente entwickelt werden und das Umweltrisikobewertungsschema entsprechend erweitert und angepasst werden.
Clean water is fundamental to human health and ecosystem integrity. However, water quality deteriorates due to novel anthropogenic pollutants present at microgram per liter concentrations in urban water cycles (termed micropollutants). Wastewater treatment plants (WWTP) have been identified as major point sources for aquatic (micro-)pollutants. Chemical and ecotoxicological analyses have shown that conventional biological WWTPs do not fully remove micropollutants and associated toxicities, which is often because of mobile, polar and/or recalcitrant compounds and transformation products (TPs). To minimize possible environmental risks, advanced wastewater treatment (AWWT) technologies could be a promising mitigation measure. Multiple processes are therefore being developed and evaluated such as ozonation and ozonation followed by granulated activated carbon (GAC) or biological filtration. Assessing the performance of these combined AWWTs was the focus the TransRisk project. Within this project, this thesis accomplished four major goals.
Firstly, the preparation of (waste)water samples was optimised for in vitro bioassays. Acidification, filtration and solid phase extraction (SPE) were tested for their impact on environmentally relevant in vitro endocrine activities, mutagenicity, genotoxicity and cytotoxicity. Significantly different outcomes of these assays were detected comparing neutral and acidified samples. Sample filtration had a lesser impact, but in some cases retention of particle-bound compounds could have caused significant toxicity losses. Out of three SPE sorbents the Telos C18/ENV at sample pH 2.5 extracted highest toxicity, some undetected in aqueous samples. These results indicate that sample preparation needs to be optimised for specific sample matrices and bioassays to avoid false-positive or -negative detects in effect-based analyses.
Secondly, the above listed in vitro toxicities were monitored in a protected region for drinking water production in South-West Germany (2012-2015). Out of 30 sampling sites surface water and groundwater were the least polluted. Nonetheless, a few groundwater samples induced high anti-estrogenic activity that prompted further monitoring. The latter included a waterworks in which no toxicity was detected. Hospital wastewater also had elevated in vitro toxicities and hospitals are, thus, relevant intervention points for source control. The biological WWTPs were effective in removing most of the detected toxicity, and the selected bioassays proved to be pertinent tools for water quality assessment and prioritisation of pollution hotspots.
Thirdly, the in vivo bioassay ISO10872 based on Caenorhabditis elegans (C. elegans) was adapted for this thesis. Using this model, a median effect concentration (EC50) for reproductive toxicity of the polycyclic aromatic hydrocarbon β-naphthoflavone (β- NF) of 114 µg/L was computed which is slightly lower than reported in the scientific literature. β-NF induced cyp-35A3::GFP (a biomarker in transgenic animals) in a time and concentration dependent manner (≤ 21.3–24 fold above controls). β-NF spiked wastewater samples supported earlier hypotheses on particle-bound pollutants. Reproductive toxicity (96 h) and cyp-35A3 induction (24 h) of biologically treated and/or ozonated wastewater extracts and growth promoting effects of GAC/biologically filtered ozonated wastewater extracts were observed. This suggested the presence of residual bioactive/toxic chemicals not included in the targeted chemical analysis. It also highlighted the importance of integrating multiple (apical and molecular) endpoints in wastewater assessments.
Fourthly, five in vitro and the adapted C. elegans bioassay were integrated into a wastewater quality evaluation (developed within TransRisk). Out of the five AWWT options, ozonation (at 1 g O3,applied/g DOC, HRT ~ 18 min) combined with nonaerated GAC filtration was rated most effective for toxicity removal. All five AWWTs largely removed estrogenic and (anti-)androgenic activities, but not anti-estrogenic activity and mutagenicity, which even increased during ozonation. This has been observed in related studies and points towards toxic TPs. These results also emphasized the need for implementing an effective post-treatment for ozonation. The results from a parallel in vivo study with Lumbriculus variegatus and Potamopyrgus antipodarum conducted on site at the WWTP (using flow through systems) were in accordance with the C. elegans results. In this context, it is suggested to further implement C. elegans as sensitive, feasible and ecologically relevant model.
In conclusion, this thesis shows how optimised sample preparation, long-term (in vitro) environmental monitoring, sensitive and ecologically relevant (in vivo) bioassays as well as innovative evaluation concepts, are pivotal in improving the removal of micropollutants and their toxicities with AWWTs. Future research should further develop and evaluate measures at sewer systems, conventional biological, tertiary and other advanced treatment technologies, as well as sociopolitical strategies (e.g., source control or natural conservation) and restoration projects. The effect-based tools optimised in this thesis will support assessing their success.
In the past decades, the use and production of chemicals has been on the rise globally due to increasing industrialization and intensive agriculture; resulting in the occurrence and ecotoxicological risks of chemicals of emerging concern (CECs) in the aquatic compartments. Risks include changes in community structure resulting in the dominance of one species and ecosystem imbalance. When dominant disease-causing organisms are in the environment, the disease transmission is increased. For example, host snails for the schistosomiasis, a human trematode disease, are known to be tolerant to pesticide
exposure compared to the predators. This would therefore result in an increased abundance of snails which consequently increase the disease transmission in the human population.
Kenya, being a low income country faces a lot of challenges with provision of clean water, diseases and sanitation facilities, and increasing population which results in intensive agriculture coupled with pesticide use. Although a lot of research has been carried out on the environmental occurrence and risk of CECs (Chapter 1), most of these studies have been done in developed countries with limited information from Africa. Additionally, research in Africa focused on urban areas with limited number of compounds analyzed and mostly in the water phase, and inadequate information on the effects of CECs on the aquatic organisms. In order to reduce this knowledge gap, this dissertation focused on identification and quantification of CECs present in water, sediment and snails from western Kenya, and the contribution of pesticides to the transmission of schistosomiasis.
Chapter 2 gives a summary of the results and discussion of the dissertation. In Chapter 3, a comprehensive chemical analysis was carried out on 48 water samples to identify compounds, spatial patterns and associated risks for fish, crustacean and algae using toxic unit (TU) approach. A total of 78 compounds were detected with pesticides and biocides being the compounds most frequently detected. Spatial pattern analysis revealed limited compound grouping based on land use. Acute risk for crustaceans and algae were driven by one to three individual compounds. These compounds responsible for toxicity were prioritized as candidate compounds for monitoring and regulation in Kenya.
In Chapter 4, an extension of Chapter 3 was done to cover the CECs present in snails and sediment from the 48 sites. A total of 30 compounds were found in snails and 78 in sediments with 68 additional compounds being found which were not previously detected in water. Higher contaminant concentrations were found in agricultural sites than in areas without anthropogenic activities. The highest acute toxicity (TU 0.99) was determined for crustaceans based on compounds in sediment samples. The risk was driven by diazinon and pirimiphos-methyl. Acute and chronic risks to algae were driven by diuron whereas fish were found to be at low to no acute risk.
In Chapter 5, the effect of pesticide contamination on schistosomiasis transmission was evaluated by applying complimentary laboratory and field studies. In the field studies, the ecological mechanisms through which pesticides and physical chemical parameters affect host snails, predators and competitors were investigated. Pesticide data was obtained from the results in chapter 3. The overall distribution of grazers and predators was not affected by pesticide pollution. However, within the grazers, pesticide pollution increased dominance of host snails. On the contrary, the host-snail competitors were highly sensitive to pesticide exposure. For the laboratory studies, macroinvertebrates including Schistosoma-host snails, competitors and predators were exposed to 6 concentrations levels of imidacloprid and diazinon. Snails showed higher insecticide tolerance compared to competitors and predators. Finally, Chapter 6 summarizes the conclusions of this dissertation, placing it in a broader
context. In this dissertation, a comprehensive chemical characterization and risk assessment of CECs has been carried out in freshwater systems; together with the effects of pesticides on schistosomiasis transmission in rural western Kenya. Results of this dissertation showed that rural areas are contaminated posing a risk to aquatic organisms which contribute to schistosomiasis transmission. This shows the need for regular monitoring and policy formulation to reduce pollutant emissions which contributes negatively to both ecological and human health effects.
Chemical contamination of the environment and thus of aquatic ecosystems is steadily increasing. Whenever environmental pollutants enter a water body, they affect not only the water, but also the sediment. Substances that bind to sediment particles can be stored for a long time, whereby sediments act as sinks for some contaminants. Therefore, sediment
assessments often more accurately describe the contamination of a water body than investigations of the water itself. Among environmental chemicals, endocrine disrupting compounds (EDCs) have gained more and more attention in recent years. Since they interfere with endocrine systems and may disturb reproduction, they endanger the survival of populations or even species. Hazardous substances enter the aquatic environment by different pathways, with sewage treatment plants (STPs) belonging to the most important contamination sources.The main objective of this work is a comprehensive sediment assessment of predominantly small surface waters in the German federal state of Hesse. The 50 study sites, located in 44 different creeks and small rivers, are situated in the densely populated and economically important Frankfurt/Rhine-Main area, as well as in rural and less urbanized regions.
Chemical analytical data, provided by the Hessian Agency for the Environment and Geology (HLUG), indicated different contamination levels of the study sites. In order to investigate the general toxicity of the sediment samples, the oligochaete Lumbriculus variegatus and the midge Chironomus riparius were exposed to whole sediments and apical endpoints regarding biomass, survival, and reproduction were determined. In further experiments, special attention was paid to the contamination with endocrine active compounds. For this purpose, the reproductive success of the New Zealand mudsnail Potamopyrgus antipodarum was analyzed after exposure to whole sediments. Additionally, a yeast-based reporter gene assay was applied with sediment eluates to assess the estrogenic and androgenic activity of the samples. Biotest results were compared with chemical analysis data to investigate whether the test organisms reflect the measured pollution of the study sites and if the observed effects can be explained by chemical contamination.
Five study sites, all located less than 1 km downstream of a STP discharger, were selected for further investigations based on the results of the sediment monitoring. The sediments from these sites were conspicuous due to their general toxic and/or estrogenic activity. In order to investigate whether the observed effects can be ascribed to the effluents, an active biomonitoring study was conducted with the mudsnail P. antipodarum and the zebra mussel Dreissena polymorpha, exposed at study sites located up- and downstream of the discharger.
In addition to endocrine activity, genotoxic effects were investigated using the comet assay and the micronucleus assay. Endocrine activity was examined based on the reproductive output of P. antipodarum and the content of vitellogenin-like proteins in D. polymorpha. Yeast-based reporter gene assays were used to estimate the endocrine potential (estrogen, anti-estrogen, anti-androgen, dioxin-like) of sediment and water samples.
22% of the 50 sediments showed ecologically relevant effects in the biotests with L. variegatus and C. riparius. Only one sediment caused a relevant effect on both test organisms, while the other ten positively tested sediments affected either L. variegatus or C. riparius, probably due to differences in inter-species sensitivities. This suggests that a combination of different biotests is necessary for a comprehensive evaluation of sediment toxicity. 78% of the sediments caused a significantly increased number of embryos in P. antipodarum, which could be ascribed to estrogenic contamination of the sediment samples. An increase in the number of embryos by 60%, as observed in this study, and an associated increase in population size may result in the displacement of other, less competitive species.
In the in vitro tests, 66% of the sediments showed estrogenic activity and 68% showed androgenic activity. Maximum observed values were 40.9 ng EEQ/kg sediment (EEQ = estradiol equivalent) for estrogenic and 93.4 ng TEQ/kg sediment (TEQ = testosterone equivalent) for androgenic activity. Natural and synthetic hormones as well as alkylphenols were the major contributors to the total estrogenicity of environmental samples in several other studies, and are likely responsible for a large part of the estrogenic activity in this case as well. Similarly, androgenic activity is mainly due to natural steroids and their metabolites.
Bioassay results reflect the analytically measured contamination levels at the study sites only very infrequently. This can be ascribed to the occurrence of integrated effects of chemical mixtures present in the sediments. Additionally, effects of substances not included in the analytical program or of substances present in concentrations below the detection limit of the chemical analytical investigations as well as varying bioavailabilities might be relevant. The fact that a large part of the observed effects cannot be explained by the chemical contamination demonstrates the need for effect studies in ecotoxicological sediment assessments.
In order to identify possible causes for the effects observed in the sediment monitoring, e.g. contamination sources, the area types (urban fabrics, arable lands, pasturages, etc.) of the catchment areas belonging to the study sites were analyzed. No significant differences were found between the area profiles of the sampling sites with and without effects in the biotests.
The results indicate that the contamination responsible for the observed effects can be ascribed to different sources. Furthermore, study sites whose sediments exerted significant effects in biotests were located in anthropogenic as well as in predominantly natural areas. The active biomonitoring study at STPs revealed genotoxic and endocrine effects only sporadically.
However, in the in vitro tests considerable endocrine activities of sediment and water samples were determined. No conclusive picture emerges as to whether the observed effects occur more frequently downstream of the dischargers, and thus could be attributed to a contamination by sewage. This indicates that contamination sources other than STP dischargers, for example agricultural runoff, may contribute to the observed effects. Weaker effects and biological activities downstream of a discharger compared to an upstream site might be ascribed to a dilution effect by the effluents. A comparison of the measured in vitro estrogenicity with exposure studies described in the literature shows that adverse effects in aquatic organisms can be expected at the EEQ concentrations determined in the present study.
The results of the sediment monitoring and the STP study revealed a widespread endocrine pollution of small surface waters in Hesse. The fact that the bioassay results only rarely reflect study site contamination as determined by chemical analysis demonstrates the need for effect studies in comprehensive sediment assessments. In some cases STP dischargers increased, in other cases they decreased the observed in vivo effects and in vitro activity of environmental samples. Transferring the results obtained in laboratory studies to the field, adverse effects on aquatic ecosystems can be expected. The study illustrates the need for restrictive measures that contribute to the removal or reduction of environmental pollutants.
For the identification of substances that have so far not been linked to adverse effects on the environment, methods such as effect-directed analyses (EDA) or toxicity identification evaluation (TIE) should be increasingly applied in future studies. Furthermore, bioassays for the assessment of endocrine activity should be implemented in standardized monitoring programs.
Auf den Einsatz von Tieren im Rahmen der (Umwelt-)Risikobewertung von Stoffen kann nach wie vor nicht verzichtet werden. Dabei führen die Überprüfungen einer zunehmenden Anzahl neu entwickelter Stoffe, aber auch die gestiegenen Anforderungen der Gesetzgebungen zu einem hohen Verbrauch von Versuchstieren. Diese Untersuchungen sind wichtig, da viele der in Gebrauch befindlichen und in allen Bereichen genutzten Chemikalien potentiell endokrin wirksam sind, auf unterschiedlichen Wegen in die Umwelt gelangen und sich potentiell negativ auf die Gesundheit von Mensch und Tier auswirken können.
Bei den bisher verwendeten Methoden werden vor allem juvenile oder adulte Tiere, aber auch Tiere zur Untersuchung des kompletten Lebenszyklus über eine oder mehrere Generationen für die Beurteilung von Substanzen eingesetzt. Dabei ist bekannt, dass die Entstehung reproduktiver Störungen in der Embryonalphase der jeweiligen Individuen auftritt. Um den Tierverbrauch zu reduzieren, werden teilweise In-vitro-Testsysteme angewendet. Es zeigt sich aber, dass diese Tests lediglich einen bestimmten Zelltyp in einem bestimmten Entwicklungsstadium abbilden können, was die Aussagekraft über die tatsächliche Wirkung auf ein komplexes Gewebe und dessen Entwicklung, erst Recht für den kompletten Organismus, stark einschränkt. Die Aussagekraft dieser Methoden ist daher in bestimmten eingeschränkten Grenzen zu sehen. In der vorliegenden Arbeit wird eine alternative Ersatzmethode vorgestellt mit dem Ziel einer stärkeren Aussagekraft bei toxikologisch und ökotoxikologisch relevanten Endpunkten. Im Fokus stehen hierbei die Effekte von androgenen und estrogenen Substanzen auf die Geschlechtsentwicklung von Hühnerembryonen (Gallus gallus domesticus) auf Ebene der Expression der mRNA, vereint mit Effekten auf Ebene der Organhistologie und – morphologie, verglichen mit den Normalzuständen unbehandelter Individuen. Die neu entwickelte Methode zur Beurteilung solcher Substanzen kann im Rahmen der human- und umwelttoxikologischen Risikobewertung von Stoffen eingesetzt werden und ist ein geeignetes Werkzeug, um die notwendigen Untersuchungen mit der gefordert hohen Beurteilungsqualität durchzuführen. Gleichzeitig kann mit dieser Tierversuchsersatzmethode bei hoher Aussagekraft auch der Verbrauch an weiter und höher entwickelten Versuchstieren verringert werden, was auch einem gesellschaftlich-ethischen Bedürfnis gerecht wird.