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Surface water can contain a complex mixture of organic micropollutants (i.e. residues of pharmaceuticals or biocides). Conventional wastewater treatment plants (WWTPs) do not completely remove a broad range of anthropogenic chemicals and therefore represent a leading point source. To upgrade WWTPs, technical solutions based on oxidative and sorptive processes have been developed and successfully implemented. Acknowledging these substantial advances, this thesis focuses on another key topic and aims to investigate whether improved biological treatment processes likewise effectively remove anthropogenic micropollutants from wastewater. The work conducted on this topic was part of two European research projects (ATHENE, ENDETECH).
The ATHENE project aimed to go beyond the state-of-the-art by developing biological wastewater treatment processes that exploit the full potential of biodegradation. With the objective to explore the potential of complementary strictly anaerobic conditions within the biological wastewater treatment, combinations of aerobic and anaerobic treatments on site of a WWTP were implemented. Based on pre-experiments, two promising treatment combinations were selected for a more comprehensive evaluation. An aerobic treatment was paired with an anaerobic pre-treatment under iron-reducing conditions, and an activated sludge treatment was combined with an anaerobic post-treatment under substrate-limiting conditions. For the evaluation of these processes, an effect-based assessment was applied and combined with chemical data of 31 selected target organic micropollutants as well as ten metabolites. To assess the removal of endocrine disrupting chemicals (EDCs), yeast based reporter gene assays covering seven receptor-mediated mechanisms of action including (anti-)estrogenicity, (anti-) androgenicity, retinoid-like, and dioxin-like activity were conducted. Furthermore, the removal of unspecific toxicity (Microtox assay) and oxidative stress response as a marker for reactive toxicity (AREc32 assay) were analyzed to cover micropollutants acting via a non-specific mechanism of action. Moreover, to assess toxicity of the whole effluent in vivo, standardized in vivo bioassays with four aquatic model species (Desmodesmus subspicatus, Daphnia magna, Lumbriculus variegatus, Potamopyrgus antipodarum) were performed.
The combination of aerobic and anaerobic treatments resulted in a low additional removal of the selected target organic micropollutants (by 14-17%). In contrast, the removal of endocrine and dioxin-like activities (by 17-75%) and non-specific in vitro toxicities (by 27-60%) was significantly enhanced. Compared to technical solutions (i.e. ozonation), the combination with an anaerobic pre-treatment under iron-reducing conditions was likewise effective in removing the estrogenic activity as well as the unspecific toxicity, whereas anti-androgenic activity and dioxin-like activity were less effectively removed. Exposure to effluents of the conventional activated sludge treatment did not induce adverse in vivo effects in the investigated aquatic model species. Accordingly, no further improvement in water quality could be observed. In conclusion, the combination of aerobic and anaerobic treatment processes significantly enhanced the removal of specific and non-specific in vitro toxicities. Thus, an optimization of the biological wastewater treatment can lead to a substantially improved detoxification. These capacities of a treatment technology can only be uncovered by complementary effect-based measurements.
The global objective of the ENDETECH project was to develop a biotechnological solution to eliminate recalcitrant pharmaceuticals in wastewater direct from sites, where high loads are expected (i.e. hospitals). For this purpose, laccase, an enzyme mainly found in wood decaying fungi, was immobilized on ceramic membranes for application in bioreactors. In a proof of principle experiment, the performance of immobilized laccase in removing a mixture of 38 antibiotics without and in combination with a natural mediator (syringaldehyde; SYR) was investigated. For the evaluation of the enzymatic membrane bioreactors, chemical data on the elimination of the selected target antibiotics was combined with the outcomes of two in vitro bioassays. Growth inhibition tests with an antibiotic sensitive Bacillus subtilis strain were conducted to assess the residual antibiotic activity of the effluents, and Microtox assays were performed to detect a potential formation of toxic by-products.
The treatment by laccase without SYR did not reduce the load of antibiotics significantly. In contrast, in combination with a SYR concentration of 10 µmol L-1, 26 out of 38 antibiotics were removed by >50% after 24 h treatment. Moreover, increasing the SYR concentration to 1000 µmol L-1 resulted in a further improvement of the antibiotic removal. 32 out of 38 antibiotics were removed by over 50%, whereby 17 were almost completely eliminated (>90%). However, the treatment with laccase in combination with SYR resulted in a time-dependent increase of unspecific toxicity. While SYR alone did not affect B. subtilis, the combination of laccase with SYR led to a strong time-dependent growth inhibition up to 100%. Similar to that, a time-dependent increase of unspecific toxicity in the Microtox assay was observed. In conclusion, the laccase-mediator process successfully degrades a broad spectrum of antibiotics and thus represents a promising technology to treat wastewater from sites, where high loads are expected. However, further research is required to reduce the formation of unspecific toxicity before an implementation of this technology can be considered.
The soluble loop BC region guides, but not dictates, the assembly of the transmembrane cytochrome b6
(2017)
Studying folding and assembly of naturally occurring α-helical transmembrane proteins can inspire the design of membrane proteins with defined functions. Thus far, most studies have focused on the role of membrane-integrated protein regions. However, to fully understand folding pathways and stabilization of α–helical membrane proteins, it is vital to also include the role of soluble loops. We have analyzed the impact of interhelical loops on folding, assembly and stability of the heme-containing four-helix bundle transmembrane protein cytochrome b6 that is involved in charge transfer across biomembranes. Cytochrome b6 consists of two transmembrane helical hairpins that sandwich two heme molecules. Our analyses strongly suggest that the loop connecting the helical hairpins is not crucial for positioning the two protein “halves” for proper folding and assembly of the holo-protein. Furthermore, proteolytic removal of any of the remaining two loops, which connect the two transmembrane helices of a hairpin structure, appears to also not crucially effect folding and assembly. Overall, the transmembrane four-helix bundle appears to be mainly stabilized via interhelical interactions in the transmembrane regions, while the soluble loop regions guide assembly and stabilize the holo-protein. The results of this study might steer future strategies aiming at designing heme-binding four-helix bundle structures, involved in transmembrane charge transfer reactions.
Cells respond to protein misfolding and aggregation in the cytosol by adjusting gene transcription and a number of post-transcriptional processes. In parallel to functional reactions, cellular structure changes as well; however, the mechanisms underlying the early adaptation of cellular compartments to cytosolic protein misfolding are less clear. Here we show that the mammalian ubiquitin ligase C-terminal Hsp70-interacting protein (CHIP), if freed from chaperones during acute stress, can dock on cellular membranes thus performing a proteostasis sensor function. We reconstituted this process in vitro and found that mainly phosphatidic acid and phosphatidylinositol-4-phosphate enhance association of chaperone-free CHIP with liposomes. HSP70 and membranes compete for mutually exclusive binding to the tetratricopeptide repeat domain of CHIP. At new cellular locations, access to compartment-specific substrates would enable CHIP to participate in the reorganization of the respective organelles, as exemplified by the fragmentation of the Golgi apparatus (effector function).
The formation of secondary particles in the atmosphere accounts for more than half of global cloud condensation nuclei. Experiments at the CERN CLOUD (Cosmics Leaving OUtdoor Droplets) chamber have underlined the importance of ions for new particle formation, but quantifying their effect in the atmosphere remains challenging. By using a novel instrument setup consisting of two nano-particle counters, one of them equipped with an ion filter, we were able to further investigate the ion-related mechanisms of new particle formation. In autumn 2015, we carried out experiments at CLOUD on four systems of different chemical compositions involving monoterpenes, sulfuric acid, nitrogen oxides, and ammonia. We measured the influence of ions on the nucleation rates under precisely controlled and atmospherically relevant conditions. Our results indicate that ions enhance the nucleation process when the charge is necessary to stabilize newly formed clusters, i.e. in conditions where neutral clusters are unstable. For charged clusters that were formed by ion-induced nucleation, we were able to measure, for the first time, their progressive neutralization due to recombination with oppositely charged ions. A large fraction of the clusters carried a charge at 1.2 nm diameter. However, depending on particle growth rates and ion concentrations, charged clusters were largely neutralized by ion–ion recombination before they grew to 2.2 nm. At this size, more than 90 % of particles were neutral. In other words, particles may originate from ion-induced nucleation, although they are neutral upon detection at diameters larger than 2.2 nm. Observations at Hyytiälä, Finland, showed lower ion concentrations and a lower contribution of ion-induced nucleation than measured at CLOUD under similar conditions. Although this can be partly explained by the observation that ion-induced fractions decrease towards lower ion concentrations, further investigations are needed to resolve the origin of the discrepancy.
Einführung: Die höchste Offenheitsrate in der arteriellen Bypasschirurgie der unteren Extremitäten wird mit einem Segment der Vena saphena magna (VSM) von ausreichender Länge und Durchmesser erreicht. Dabei ist der Venendurchmesser der einzige signifikant korrelierende Faktor für das Auftreten einer Transplantatsstenose und damit der beste Prädiktor für die primäre und die sekundäre 2-Jahre-Durchgängigkeitsrates. In 20-40% der Patienten fehlt ein bzgl. des Lumens geeignetes Segment der Vena saphena magna zur Herstellung eines Bypasses bei der primären Operation. Daher wurde eine Technik entwickelt, kleinlumige Vena saphena magna Segmente mittels einer Valvulotomie zu erweitern.
Ziel: Eine zu kleinlumige Vena saphena magna soll VSM für eine spätere Verwendung als autologes Bypassmaterial der unteren Extremität konditioniert werden. Die häufigsten Indikationen für eine derartige Konditionierung sind die Bypassverwendung bei der operativen Therapie der peripheren arteriellen Verschlusskrankheit (pAVK) und beim Aneurysma der Arteria poplitea (PA).
Methoden: Diese prospektive Pilotstudie würde zwischen Juni 2007 und November 2011 durchgeführt. 25 Patienten (26 Fälle) mit einem VSM Durchmesser zwischen 2 und 3mm erhielten eine in situ VSM-Valvulotomie. Die Zerstörung der suffizienten Venenklappen ermöglicht einen retrograden Blutstrom in die Vena saphena magna. Der hierdurch erzeugte Wachstumsreiz soll zu einer Durchmesserzunahme der Vene führen. Nach Erreichen eines Durchmessers von > 3mm für infragenuale Rekonstruktionen und von > 3,5 mm für supragenuale Rekonstruktion wurden die konditionierten Venensegmente als Bypass implantiert. Bei 23 Patienten war die Bypassindikation eine nicht kritische pAVK. Bei 2 Patienten war ein Aneurysma der Arteria poplitea die Indikation. Einschlusskriterium für Teilnahme an der Studie war eine nicht variköse VSM mit einem Querdurchmesser zwischen 2 und 3 mm. Die Venenevaluation erfolgte duplexsonografisch im Stehen durch eine Beurteilung der epifaszialen Vena saphena magna von der Leiste bis zum Innenknöchel. Messpunkte waren: 10 cm unterhalb des Hiatus saphenus, 10 cm oberhalb des Knies, 10 cm unterhalb des Knies und 10 cm oberhalb des Innenknöchels. Um das Venenwachstum zu ermitteln, diente als Messpunkt der kleinste ermittelte Durchmesser über einem Messbereich von 10 mm.
Drei Patienten, bei denen ein femoropoplitealer Bypass oberhalb des Kniegelenkes implantiert wurde, hatten bei der Implantation einen Durchmesser der konditionierten VSM > 3.5 mm. Bei 13 Patienten mit Bypassimplantation unterhalb des Kniegelenkes war die konditionierte VSM > 3mm. Eine Wiederholung der Valvulotomie war in keinem der Patienten nötwendig. Die valvulotomierte VSM wurde bei allen Bypassoperationen offen chirurgisch entnommen. Zur postoperativen Kontrolle erfolgten eine Duplexuntersuchung und eine ABI-Messung 1,3,6,12,18 und 24 Monate nach der Implantation.
Ergebnisse: Durchschnittlich vergrößerte sich der VSM-Durchmesser von initial 2,5±0,18 mm vor Valvulotomie auf 2,8±0,2 mm, 3,0±0,3mm und 3,2±0,4 mm jeweils 30, 60 und 90 Tage nach Valvolutomie. Bei der Entnahme betrug der durchschnittliche Bypassdurchmesser 3.7±0.6 mm. Die primäre 1-Jahres-Offenheitsrate mit der valvulotomierten VSM war 81±9,8% im Vergleich zu in der Literatur publizierten 58,0%±8,4% für alloplastische Transplantate, 51% für kleinkalibrige VSM und 81,6%±3,6% für Armvenentransplantate. Die sekundäre 1-Jahres-Offenheitsrate mit der Valvulotomietechnik betrug 87%±8,3% verglichen mit 82,6% für in der Literatur angegebene Transplantationen mit kleinkalibriger VSM. Die primäre 2-Jahres-Offenheitsrate mit der Valvulotomietechnik betrug 69%±11,8%, verglichen mit 50% in der Literatur angegebener Transplantationen von kleinkalibrige VSM benutzt wurden und 72%, falls Armvenentransplantate benutzt wurden. Die sekundäre 2-Jahres-Offenheitsrate mit der Valvulotomietechnik lag bei 75%±11%.
Fazit: Die Valvulotomie kann zur Zunahme des Venendurchmessers vor Anlage eines femoro-distalen Bypasses verwendet werden, weil sie regelhaft zum Reflux in der valvulotomierten Vene führt und dadurch ein relevantes Venenwachstum verursacht. Zwischen 60 und 90 Tagen nach Valvulotomie wird ein Venenduchmesser > 3.5 mm erreicht und die valvulotomierte VSM kann als femoropoplitealer Bypass oberhalb des Kniegelenkes implantiert werden. Für eine Anastomose unterhalb des Kniegelenkes genügt ein Wachstum bis > 3 mm. Wenn die valvulotomierte Vene einen entsprechenden Durchmesser erreicht, kann die konditionierte VSM benutzt werden, um einen Bypass mit guter Offenheitsprognose zu konstruieren oder einen nicht funktionierenden Bypass zu ersetzen.
The degradation of nonfunctional mitochondrial proteins is of fundamental relevance for maintenance of cellular homeostasis. The heteromeric CLPXP protein complex in the mitochondrial matrix is part of this process. In the fungal aging model Podospora anserina, ablation of CLPXP leads to an increase in healthy lifespan. Here, we report that this counterintuitive increase depends on a functional autophagy machinery. In PaClpXP mutants, autophagy is involved in energy conservation and the compensation of impairments in respiration. Strikingly, despite the impact on mitochondrial function, it is not mitophagy but general autophagy that is constitutively induced and required for longevity. In contrast, in another long-lived mutant ablated for the mitochondrial PaIAP protease, autophagy is neither induced nor required for lifespan extension. Our data provide novel mechanistic insights into the capacity of different forms of autophagy to compensate impairments of specific components of the complex mitochondrial quality control network and about the biological role of mitochondrial CLPXP in the control of cellular energy metabolism.
The study of lattice gauge theories with Monte Carlo simulations is hindered by the infamous sign problem that appears under certain circumstances, in particular at non-zero chemical potential. So far, there is no universal method to overcome this problem. However, recent years brought a new class of non-perturbative Hamiltonian techniques named tensor networks, where the sign problem is absent. In previous work, we have demonstrated that this approach, in particular matrix product states in 1+1 dimensions, can be used to perform precise calculations in a lattice gauge theory, the massless and massive Schwinger model. We have computed the mass spectrum of this theory, its thermal properties and real-time dynamics. In this work, we review these results and we extend our calculations to the case of two flavours and non-zero chemical potential. We are able to reliably reproduce known analytical results for this model, thus demonstrating that tensor networks can tackle the sign problem of a lattice gauge theory at finite density
The widespread application of human stem-cell-derived neurons for functional studies is impeded by complicated differentiation protocols, immaturity, and deficient optogene expression as stem cells frequently lose transgene expression over time. Here we report a simple but precise Cre-loxP-based strategy for generating conditional, and thereby stable, optogenetic human stem-cell lines. These cells can be easily and efficiently differentiated into functional neurons, and optogene expression can be triggered by administering Cre protein to the cultures. This conditional expression system may be applied to stem-cell-derived neurons whenever timed transgene expression could help to overcome silencing at the stem-cell level.
Introduction: DACCORD is an observational, non-interventional study being conducted in German primary and secondary care centres. The study aims to describe the impact of disease (including exacerbations) and treatments over 2 years on ‘real-life’ patients with chronic obstructive pulmonary disease (COPD).
Materials and methods: Patients had a clinical and spirometry diagnosis of COPD, were aged ≥40 years and, on recruitment, were initiating or changing COPD maintenance medication. The only exclusion criteria were asthma and randomised clinical trial participation. Exacerbations data were collected every 3 months. COPD medication, COPD Assessment Test (CAT) and forced expiratory volume in 1 s (FEV1) were recorded at baseline and after 1 and 2 years.
Results: A total of 6122 patients were recruited, 3137 (51.2%) of whom completed the 2-year visit. The mean age of these patients was 65.6 years, 59% were male, 69% had mild or moderate airflow limitation, and their mean COPD Assessment Test (CAT) total score was 20.3. Overall, there was a trend towards decreasing COPD exacerbation rates over the 2-year follow-up period, with rates of 0.390 during Year 1 and 0.347 during Year 2. Rates were lower in patients with no exacerbation during the 6 months prior to entry (0.263 and 0.251 during Years 1 and 2, respectively), with 51.6% of patients having no exacerbation during the 6 months prior to entry and over the 2-year follow-up. Approximately 50% of the overall population experienced a clinically relevant improvement from baseline in CAT total score at Year 1 and 2. When assessed by treatment class (or classes), persistence to medication was high (77.8% in Year 1 and 71.4% in Year 2).
Conclusions: Overall, the 2-year follow-up data from DACCORD suggest that for most patients with COPD exacerbations are a rare event. For the majority of patients, the focus should be on managing symptoms, and the impact that these symptoms have on their daily lives. Even for those patients who do exacerbate, although prevention of exacerbations is an important factor, management of symptoms should be a key consideration. DACCORD also suggests that COPD disease progression is not inevitable – providing patients are receiving pharmacological treatment.
Science Slam zum Thema Nachhaltigkeit +++ Institutsbericht 2017 erschienen +++ Zukunftsstadt: ISOE bei BMBF-Vernetzungskonferenz in Frankfurt am Main +++ Mobiles Baden-Württemberg: Szenarien für eine nachhaltige Mobilität +++ Sustainability Special Issue zur Sozialen Ökologie als Buch erschienen +++ Lebensmittelverpackungen: Alternativen zu Plastik, Alu & Co. +++ Auswirkungen von Mikroplastik auf Umwelt und Gesellschaft +++ UN-Klimagipfel in Bonn: Genderperspektive für eine gerechte Klimaschutzpolitik +++ Ideenwettbewerb Der Blaue Engel: Auszeichnung für Kampagnenkonzepte +++ Aus dem ISOE: Forschungspreis Transformative Wissenschaft für Laura Woltersdorf +++ Termine +++ Publikationen