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Der Fang von Vögeln zu wissenschaftlichen Zwecken in den Tropen und Subtropen stellt eine Herausforderung für Ornithologen dar. Probleme aufgrund rechtlicher sowie sozioökonomischer und soziokultureller Rahmenbedingungen lassen sich oft durch eine intensive Vorbereitung und Kooperationen mit lokalen Partnern vermeiden oder reduzieren. Beim eigentlichen Fang sind logistische Herausforderungen wie die Materialbeschaffung vor Ort, aber auch die Ökologie einiger überwiegend tropischer Vogelgruppen zu berücksichtigen. Hier wie auch bei der Probennahme und -lagerung beeinflussen die herrschenden Umweltbedingungen die Arbeit, insbesondere extreme Witterung. Problemlösungenlassen sich jedoch teilweise nur schwer verallgemeinern. Wir unterstreichen die Bedeutung lokaler und regionaler Besonderheiten anhand zahlreicher Beispiele aufgrund eigener Erfahrungen.
„Biodiversität“ wird zunehmend als wichtige Ressource
erkannt. Schutz, Zugang und nachhaltige Nutzung der Biodiversität
(genetische Ressourcen, Arten, Proben jeglicher
Couleur) werden inzwischen auf verschiedenen politischen
Ebenen verhandelt, was in international verbindlichen Rahmenwerken
verankert wird. Verständnis von und Bewusstsein
über Genehmigungen zum Import und Export biologischer
Proben ist von zunehmender Bedeutung für Biologen,
um Forschungsprojekte legal und zeitnah durchführen
zu können. Nichtsdestotrotz werden nach wie vor biologische
Proben fleißig im- und exportiert, oft genug auch unter
Vernachlässigung der Genehmigungspflicht aufgrund lokaler,
nationaler und internationaler Übereinkommen, Gesetzen
und Verordnungen bzw. auch schlichtweg mit gesetzeswidrigem
Verhalten oder Verpackungen beim Transport.
Daraus entstehende Schwierigkeiten können ernsthafte Probleme
während der Feldarbeit bedeuten, aber auch den
Export verzögern oder zum Verlust von Proben führen.
Intensive rechtzeitige (Vorab-) Information bezüglich gesetzlicher
Voraussetzungen zum Import, Export und Transport
biologischer Proben kann das Problempotenzial stark
vermindern oder ganz beseitigen. Wir haben vier wichtige
Faktoren identifiziert und fassen Informationen zu diesen
Bereichen zusammen, die bei Beachtung die Genehmigungen
und den Import in die EG vereinfachen können: (1) gute
persönliche (auf gegenseitigem Vertrauen beruhende) Kontakte
im Ursprungsland; (2) Verständnis und Einhaltung von
allen relevanten Gesetzen und Verordnungen; (3) Zugang
zu Informationen bezüglich Genehmigungen, Verordnungen
und Informationsverbreitung innerhalb der Forschergemeinschaft;
und (4) Zugang zu einheitlichen und aktuellen
Richtlinien zu Genehmigungen, Verordnungen und Gesetzen.
Ziel dieser Arbeit ist es, in Zukunft die Forschung von
einigen zentralen Problemen im Im- und Export zu befreien
und Probleme und Missverständnisse zu reduzieren.
Given the ever-increasing human impact through land use and climate change on the environment, we crucially need to achieve a better understanding of those factors that influence the questing activity of ixodid ticks, a major disease-transmitting vector in temperate forests. We investigated variation in the relative questing nymph densities of Ixodes ricinus in differently managed forest types for three years (2008–2010) in SW Germany by drag sampling. We used a hierarchical Bayesian modeling approach to examine the relative effects of habitat and weather and to consider possible nested structures of habitat and climate forces. The questing activity of nymphs was considerably larger in young forest successional stages of thicket compared with pole wood and timber stages. Questing nymph density increased markedly with milder winter temperatures. Generally, the relative strength of the various environmental forces on questing nymph density differed across years. In particular, winter temperature had a negative effect on tick activity across sites in 2008 in contrast to the overall effect of temperature across years. Our results suggest that forest management practices have important impacts on questing nymph density. Variable weather conditions, however, might override the effects of forest management practices on the fluctuations and dynamics of tick populations and activity over years, in particular, the preceding winter temperatures. Therefore, robust predictions and the detection of possible interactions and nested structures of habitat and climate forces can only be quantified through the collection of long-term data. Such data are particularly important with regard to future scenarios of forest management and climate warming.
RP1 (synonym: MAPRE2, EB2) is a member of the microtubule binding EB1 protein family, which interacts with APC, a key regulatory molecule in the Wnt signalling pathway. While the other EB1 proteins are well characterized the cellular function and regulation of RP1 remain speculative to date. However, recently RP1 has been implicated in pancreatic cancerogenesis. CK2 is a pleiotropic kinase involved in adhesion, proliferation and anti-apoptosis. Overexpression of protein kinase CK2 is a hallmark of many cancers and supports the malignant phenotype of tumor cells. In this study we investigate the interaction of protein kinase CK2 with RP1 and demonstrate that CK2 phosphorylates RP1 at Ser236 in vitro. Stable RP1 expression in cell lines leads to a significant cleavage and down-regulation of N-cadherin and impaired adhesion. Cells expressing a Phospho-mimicking point mutant RP1-ASP236 show a marked decrease of adhesion to endothelial cells under shear stress. Inversely, we found that the cells under shear stress downregulate endogenous RP1, most likely to improve cellular adhesion. Accordingly, when RP1 expression is suppressed by shRNA, cells lacking RP1 display significantly increased cell adherence to surfaces. In summary, RP1 phosphorylation at Ser236 by CK2 seems to play a significant role in cell adhesion and might initiate new insights in the CK2 and EB1 family protein association.
Impact of Docetaxel on blood-brain barrier function and formation of breast cancer brain metastases
(2019)
Background: Breast cancer (BC) is the most frequent malignant tumor in females and the 2nd most common cause of brain metastasis (BM), that are associated with a fatal prognosis. The increasing incidence from 10% up to 40% is due to more effective treatments of extracerebral sites with improved prognosis and increasing use of MRI in diagnostics. A frequently administered, potent chemotherapeutic group of drugs for BC treatment are taxanes usually used in the adjuvant and metastatic setting, which, however, have been suspected to be associated with a higher incidence of BM. The aim of our study was to experimentally analyze the impact of the taxane docetaxel (DTX) on brain metastasis formation, and to elucidate the underlying molecular mechanism.
Methods: A monocentric patient cohort was analyzed to determine the association of taxane treatment and BM formation. To identify the specific impact of DTX, a murine brain metastatic model upon intracardial injection of breast cancer cells was conducted. To approach the functional mechanism, dynamic contrast-enhanced MRI and electron microscopy of mice as well as in-vitro transendothelial electrical resistance (TEER) and tracer permeability assays using brain endothelial cells (EC) were carried out. PCR-based, immunohistochemical and immunoblotting analyses with additional RNA sequencing of murine and human ECs were performed to explore the molecular mechanisms by DTX treatment.
Results: Taxane treatment was associated with an increased rate of BM formation in the patient cohort and the murine metastatic model. Functional studies did not show unequivocal alterations of blood-brain barrier properties upon DTX treatment in-vivo, but in-vitro assays revealed a temporary DTX-related barrier disruption. We found disturbance of tubulin structure and upregulation of tight junction marker claudin-5 in ECs. Furthermore, upregulation of several members of the tubulin family and downregulation of tetraspanin-2 in both, murine and human ECs, was induced.
Conclusion: In summary, a higher incidence of BM was associated with prior taxane treatment in both a patient cohort and a murine mouse model. We could identify tubulin family members and tetraspanin-2 as potential contributors for the destabilization of the blood-brain barrier. Further analyses are needed to decipher the exact role of those alterations on tumor metastatic processes in the brain.