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- Theodor-Boveri-Institut für Biowissenschaften (94)
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Sonstige beteiligte Institutionen
Unter Ausnutzung der Reaktivität von Borylanionen wurden neuartige Übergangsmetallboridokomplexe synthetisiert, bei denen ein "nacktes" Boratom als Ligand für bis zu vier Übergangsmetalle vorliegt. Strukturelle und bindungstheoretische Eigenschaften der Boridokomplexe wurden mit gängigen metallorganischen Analysemethoden sowie mit DFT-Methoden untersucht. Dabei zeigte sich, dass die erhaltenen Tetrametalloboridokomplexe eine planare Koordinationsgeometrie um das Borzentrum aufweisen und damit ein Äquivalent zu anti van't Hoff/Le Bel-Verbindungen des Kohlenstoffs darstellen.
Background: The use of assisted reproductive techniques (ART) for treatment of infertility is increasing rapidly worldwide. However, various health effects have been reported including a higher risk of congenital malformations. Therefore, we assessed the risk of anorectal malformations (ARM) after in-vitro fertilization (IVF) and intracytoplasmic sperm injection (ICSI).
Methods: Data of the German Network for Congenital Uro-REctal malformations (CURE-Net) were compared to nationwide data of the German IVF register and the Federal Statistical Office (DESTATIS). Odds ratios (95% confidence intervals) were determined to quantify associations using multivariable logistic regression accounting for potential confounding or interaction by plurality of births.
Results: In total, 295 ARM patients born between 1997 and 2011 in Germany, who were recruited through participating pediatric surgeries from all over Germany and the German self-help organisation SoMA, were included. Controls were all German live-births (n = 10,069,986) born between 1997 and 2010. Overall, 30 cases (10%) and 129,982 controls (1%) were born after IVF or ICSI, which translates to an odds ratio (95% confidence interval) of 8.7 (5.9-12.6) between ART and ARM in bivariate analyses. Separate analyses showed a significantly increased risk for ARM after IVF (OR, 10.9; 95% CI, 6.2-19.0; P < 0.0001) as well as after ICSI (OR, 7.5; 95% CI, 4.6-12.2; P < 0.0001). Furthermore, separate analyses of patients with isolated ARM, ARM with associated anomalies and those with a VATER/VACTERL association showed strong associations with ART (ORs 4.9, 11.9 and 7.9, respectively). After stratification for plurality of birth, the corresponding odds ratios (95% confidence intervals) were 7.7 (4.6-12.7) for singletons and 4.9 (2.4-10.1) for multiple births. Conclusions: There is a strongly increased risk for ARM among children born after ART. Elevations of risk were seen after both IVF and ICSI. Further, separate analyses of patients with isolated ARM, ARM with associated anomalies and those with a VATER/VACTERL association showed increased risks in each group. An increased risk of ARM was also seen among both singletons and multiple births.
In dieser Arbeit ist zusammengetragen, was frühere Heilkundige und Pflanzenkenner über Ysop berichtet haben. Welche Eigenschaften schrieb man ihm zu, welche Wirkungen und Anwendungen waren bekannt? Gegen welche Krankheiten verordnete man Ysop-haltige Arzneien und wie sahen diese aus? In welcher Form wurden sie gegeben und welche weiteren Bestandteile enthielten sie? Wo taucht Ysop zum vermutlich ersten Mal auf?
The larvae of the cabbage root fly induce serious damage to cultivated crops of the family Brassicaceae. We here report the biochemical characterisation of neuropeptides from the central nervous system and neurohemal organs, as well as regulatory peptides from enteroendocrine midgut cells of the cabbage maggot. By LC-MALDI-TOF/TOF and chemical labelling with 4-sulfophenyl isothiocyanate, 38 peptides could be identified, representing major insect peptide families: allatostatin A, allatostatin C, FMRFamide-like peptides, kinin, CAPA peptides, pyrokinins, sNPF, myosuppressin, corazonin, SIFamide, sulfakinins, tachykinins, NPLP1-peptides, adipokinetic hormone and CCHamide 1. We also report a new peptide (Yamide) which appears to be homolog to an amidated eclosion hormone-associated peptide in several Drosophila species. Immunocytochemical characterisation of the distribution of several classes of peptide-immunoreactive neurons and enteroendocrine cells shows a very similar but not identical peptide distribution to Drosophila. Since peptides regulate many vital physiological and behavioural processes such as moulting or feeding, our data may initiate the pharmacological testing and development of new specific peptide-based protection methods against the cabbage root fly and its larva.
Die Biosynthese von fragmentierten Fettsäuren (kurzkettige Dicarbonsäuren und deren Oxocarbonsäure-Vorstufen) ist in den meisten Pflanzen noch unklar. Wichtige, bekannte Dicarbonsäuren sind Pimelinsäure (PIM) und Azelainsäure (AZA) mit den putativen Vorstufen 7-Oxo¬heptanonsäure (OHA) und 9-Oxononanonsäure (ONA). Es besteht großes Interesse die Biosynthese¬mechanismen und die Regulation der Synthese dieser Substanzen aufzuklären, da Fettsäure¬fragmente an wichtigen biologischen Prozessen beteiligt sind. PIM ist eine essentielle Vorstufe von Biotin in Mikroben, Pilzen und Pflanzen. Bisher konnte die Biosynthese von PIM nur in Bakterien (E. coli und B. subtilis) aufgeklärt werden. Es gibt keine Hinweise auf einen analogen Mechanismus in Pflanzen. Eine biologische Aktivität von AZA bei Pflanzen konnte erst vor kurzem beschrieben werden. Eine Forschergruppe identifizierte AZA als Metabolit, der nach Infektion mit dem Pathogen Pseudomonas syringae vermehrt im Phloemsaft von Arabidopsis vorhanden ist und der in Pflanzen eine lokale und systemische Resistenz gegenüber dem Pathogen induziert. In Tieren sind Fettsäurefragmente ebenfalls Gegenstand aktueller Forschung. Es ist bekannt, dass eine nichtenzymatische oxidative Fragmentierung von Fettsäurehydroperoxiden in komplexen Membranlipiden als Folge von oxidativem Stress abläuft. Phospholipide mit veresterter ONA / AZA spielen aufgrund ihrer Struktur eine Rolle als endogene Liganden bei Reaktionen des angeborenen Immunsystems. Ziel dieser Arbeit war es, die Mechanismen der Oxidation von Fettsäuren und deren Fragmentierung in Pflanzen aufzuklären. Weiterhin sollte die Rolle der oxidierten Fragmente in der Immunantwort der Modellpflanze Arabidopsis thaliana untersucht werden. In Pflanzen wurden fragmentierte Fettsäuren im Rahmen dieser Arbeit erstmals in komplexen Lipiden identifiziert und verschiedene Hypothesen zur Bildung von Fettsäurefragmenten experimentell überprüft. Es konnte gezeigt werden, dass die Biosynthese der Fettsäurefragmente in A. thaliana ausgehend von zwei- oder dreifach ungesättigten Fettsäuren stattfindet. 9- und 13-Lipoxygenasen (LOX1, LOX5 und LOX2) spielen dabei keine essentielle Rolle. Die Fettsäurefragmente konnten in Arabidopsis in freier Form und in komplexen Lipiden verestert (ausschließlich in Galactolipiden) detektiert werden. Applikationsexperimente zeigten, dass die Biosynthese der Fettsäurefragmente in den komplexen Lipiden auf nichtenzymatischem Wege in situ stattfindet. Dabei wird in Übereinstimmung mit den experimentellen in vitro und in vivo Daten als Reaktionsmechanismus die Dimer-Hypothese der Arbeitsgruppe um Alan Brash vorgeschlagen. In grünen Pflanzenteilen verläuft die Biosynthese demzufolge in drei Schritten ab: Im ersten Schritt entsteht ein „Pool“ von oxidierten Galactolipiden mit Hydroperoxid-Acylketten (mit konjugierten Dienen). Diese Hydroperoxide entstehen fortlaufend durch Oxidation der Fettsäureacyle mittels Singulett Sauerstoff in Plastiden. Nach Infektion mit dem Pathogen P. syringae (avirulenter Stamm) wird der „Pool“ von Galactolipidperoxiden durch die katalytische Einwirkung von freien Radikalen und der LOX2 erhöht. Im zweiten Schritt findet eine Radikal-katalysierte Addition von Peroxylradikalen an Fettsäurehydroperoxide statt, wobei Lipid-Peroxid-Dimere gebildet werden. Diese instabilen Zwischenprodukte zerfallen spontan in vier Produkte, darunter zwei Aldehyd-Fragmente, ein Alkoxyradikal und ein Hydroxylradikal. Bemerkenswert ist, dass durch die Fragmentierung des Dimers weitere Radikale de novo entstehen. Im dritten Schritt können die in Galactolipiden veresterten Oxocarbonsäuren zu Dicarbonsäuren oxidiert werden. Hydroperoxide, die Vorläufer der Fettsäurefragmente, wurden in freier Form und in komplexen Lipiden verestert analysiert. Unter basalen Bedingungen liegt sowohl bei den freien, als auch bei den veresterten Hydroxyfettsäuren ein fast komplett Singulett Sauerstoff abhängiger Oxidationsmechanismus vor. Drei Galactolipid Hauptspezies (Monogalactosyldiacylglycerol (MGDG)-18:3-16:3, Digalactosyldiacylglycerol (DGDG)-18:3-18:3 und DGDG-18:3-16:3) sind hoch oxidiert (5 bis 9 Mol-%, relativ zur jeweiligen Vorstufe). MGDG-18:3-18:3, ebenso wie Phosphatidylglycerol-, Phosphatidylinositol- und Triacylglycerol-Hydroxyfettsäurespezies liegen basal nur schwach oxidiert vor (< 2 Mol-%). Nach Infektion mit dem Pathogen P. syringae kommt es zu einer massiven Lipid Biosynthese und Oxidation durch die 13-Lipoxygenase LOX2, Singulett Sauerstoff und freie Radikale. Der Oxidationsgrad der Hydroxyfettsäuren in den Galactolipiden ändert sich kaum. Innerhalb der Triacylglycerole kommt es zu einem großen Anstieg der oxidierten Spezies (auf 12 bis 38 Mol-%). Die Oxidation und Fragmentierung der Fettsäuren in den Galactolipiden unter basalen Bedingungen und induziert durch die Pathogenbehandlung, stellen einen wichtigen biochemischen Prozess dar, auf dem PIM und AZA entstehen.
BACKGROUND: In the face of growing resistance in malaria parasites to drugs, pharmacological combination therapies are important. There is accumulating evidence that methylene blue (MB) is an effective drug against malaria. Here we explore the biological effects of both MB alone and in combination therapy using modeling and experimental data.
RESULTS: We built a model of the central metabolic pathways in P. falciparum. Metabolic flux modes and their changes under MB were calculated by integrating experimental data (RT-PCR data on mRNAs for redox enzymes) as constraints and results from the YANA software package for metabolic pathway calculations. Several different lines of MB attack on Plasmodium redox defense were identified by analysis of the network effects. Next, chloroquine resistance based on pfmdr/and pfcrt transporters, as well as pyrimethamine/sulfadoxine resistance (by mutations in DHF/DHPS), were modeled in silico. Further modeling shows that MB has a favorable synergism on antimalarial network effects with these commonly used antimalarial drugs.
CONCLUSIONS: Theoretical and experimental results support that methylene blue should, because of its resistance-breaking potential, be further tested as a key component in drug combination therapy efforts in holoendemic areas.
Internet applications are becoming more and more flexible to support diverge user demands and network conditions. This is reflected by technical concepts, which provide new adaptation mechanisms to allow fine grained adjustment of the application quality and the corresponding bandwidth requirements. For the case of video streaming, the scalable video codec H.264/SVC allows the flexible adaptation of frame rate, video resolution and image quality with respect to the available network resources. In order to guarantee a good user-perceived quality (Quality of Experience, QoE) it is necessary to adjust and optimize the video quality accurately. But not only have the applications of the current Internet changed. Within network and transport, new technologies evolved during the last years providing a more flexible and efficient usage of data transport and network resources. One of the most promising technologies is Network Virtualization (NV) which is seen as an enabler to overcome the ossification of the Internet stack. It provides means to simultaneously operate multiple logical networks which allow for example application-specific addressing, naming and routing, or their individual resource management. New transport mechanisms like multipath transmission on the network and transport layer aim at an efficient usage of available transport resources. However, the simultaneous transmission of data via heterogeneous transport paths and communication technologies inevitably introduces packet reordering. Additional mechanisms and buffers are required to restore the correct packet order and thus to prevent a disturbance of the data transport. A proper buffer dimensioning as well as the classification of the impact of varying path characteristics like bandwidth and delay require appropriate evaluation methods. Additionally, for a path selection mechanism real time evaluation mechanisms are needed. A better application-network interaction and the corresponding exchange of information enable an efficient adaptation of the application to the network conditions and vice versa. This PhD thesis analyzes a video streaming architecture utilizing multipath transmission and scalable video coding and develops the following optimization possibilities and results: Analysis and dimensioning methods for multipath transmission, quantification of the adaptation possibilities to the current network conditions with respect to the QoE for H.264/SVC, and evaluation and optimization of a future video streaming architecture, which allows a better interaction of application and network.
Die subakut sklerosierende Panenzephalitis ist eine demyelinisierende Erkrankung des ZNS. Ätiologisch liegt eine persistierende Infektion von Masernviren der Neuronen bzw. Gliazellen zugrunde. Bis heute gibt es keine spezifische Therapie und lediglich symptomatische Therapiemaßnahmen werden in deren Behandlung angewandt. Obwohl sich während des Krankheitsverlaufes eine ausgeprägte Immunantwort des natürlichen als auch adaptiven Immunsystems des Wirtes abspielt führt die Erkrankung unweigerlich zum Tode der Betroffenen. Eine Therapiemöglichkeit diesbezüglich könnten die Effekte der RNAi darstellen. Um geeignete Sequenzen für einen möglichen Genknockdown einzelner MV-Gene herauszufiltern, wurde ein plasmid-basierendes Testsystem entwickelt, das die mRNA des Fluoreszenzproteins DsRed2 zusammen mit mRNA-Sequenzen einzelner MV-Gene exprimiert. Gegen diese MV-Gene wiederum wurden verschiedene shRNAs ausgewählt, welche mithilfe eines lentiviralen Vektorsystems exprimiert werden. Als Expressionsindikator findet in diesem lentiviralen Vektorsystem simultan die Expression von eGFP als statt. Die Auswertung dieses Dual-Color-Systems erfolgte im Folgenden mittels FACS-Analysen. Die wirksamsten siRNA-Sequenzen, ausgewählt durch eine hohe Abnahme der Rotfluoreszenz in den untersuchten Zellen, wurden für weitere Versuche selektiert. Die auf diese Weise ausgewählten shRNA-Sequenzen wurden in einem weiteren Schritt durch die Generierung lentiviraler Partikel in persistierend infizierten NT2-Zellen (piNT2), die das Fluoreszenzprotein HcRed als Infektionsindikator exprimieren, transduziert. Weitere durchflusszytometrische Messungen zeigten eine äußerst hohe Reduktion viraler Replikation innerhalb von 7 Tagen bis unterhalb der Detektionsgrenze sofern die shRNAs gegen die Expression der MV-Proteine N, P und L gerichtet waren. Die Anzahl der virus-negativen Zellen blieb im Folgenden bis zu 3 Wochen nach stattgehabter Transduktion konstant, sofern das fusion-inhibiting-peptide den Zellkulturen hinzugegeben wurde. Die transduzierten piNT2-Zellen, welche keine Expression von HcRed zeigten wurden auf Zellrasen bestehend aus Vero-Zellen aufgetragen und führten im zeitlichen Verlauf zu keiner Fusion bzw. Synzytienbildung. Dieser Zusammenhang legt nahe, dass die transduzierten piNT2-Zellen die Fähigkeit einer Expression viraler Proteine verloren haben und eine „Heilung“ stattfinden kann, wenn die virale Proteinbiosynthese durch eine permanente Expression von siRNAs, wie beispielsweise durch lentivirale Vektorsysteme, gehemmt wird.
Bei einem kleinen Prozentsatz (2–3 %) aller molekulargenetisch untersuchten Hä-mophilie-A-Fälle konnte bislang keine kausale Mutation innerhalb der F8-Gen-Region aufgedeckt werden. Die molekularen Ursachen der Hämophilie dieser Patienten sollten im ersten Teil der vorliegenden Doktorarbeit mittels zusätzlicher Methoden aufgeklärt werden. Bei zwei Patienten mit milder Hämophilie A konnte je ein Basenaustausch im Promotorbereich des F8-Gens identifiziert werden. Um die Kausalität dieser Austausche zu überprüfen, wurden für diese und zwei weitere bereits publizierte Promotor-Mutationen Luciferase-Assays durchgeführt. Diese Ergebnisse machten deutlich, dass die nachgewiesenen Promotor-Mutationen die Aktivität des Promotors deutlich herabsetzen und daher als ursächlich einzustufen sind. Weiterhin wurden die übrigen Patienten auf epigenetische Veränderungen in fünf CpG-Inseln im 5’UTR und Intron 1 des F8-Gens untersucht. Hierbei konnten bei drei Patienten auffällige Methylierungsmuster nachgewiesen werden, wobei diese auf ein Klinefelter-Syndrom und genomische Veränderungen im Intron 1 zurückzuführen sind, nicht jedoch auf einen aberranten Methylierungsstatus, der die FVIII-Expression beeinflussen könnte. Mit Hilfe von mRNA-Untersuchungen konnten bei vier Patienten mit mutmaßlichen F8-Spleißmutationen aberrante F8-Transkripte nachgewiesen werden und somit die Kausalität der Mutationen geklärt werden. Des Weiteren wurden aus der Literatur alle bisher als kausal identifizierten stillen Mutationen und Spleißmutationen zusammengestellt, um mit diesen Ergebnissen die Spleißvorhersage-Software Alamut zu validieren. Die große Mehrzahl (78 %) der Spleißvorhersagen stimmte mit den Resultaten der mRNA-Untersuchungen (zumindest im Trend) überein, während es bei 22 % der Vorhersagen und mRNA-Analysen zu unterschiedlichen Resultaten kam. Innerhalb einer vorangegangenen Diplomarbeit konnten zehn Duplikationsbruch-punkte im F8-Gen von nicht verwandten Hämophilie-A-Patienten aufgeklärt werden. Diese wurden nun mit verschiedenen in-silico-Programmen analysiert, um die Sequenzumgebung der Bruchpunkt genauer zu beschreiben. Die Untersuchung ergab, dass verschiedene Mechanismen zur Entstehung von Duplikationen führen können und vermutlich mehrere Sequenzmotive in direkter Nähe der Bruchpunkte hierzu beitragen. Im Rahmen der molekulargenetischen Hämophilie-A-Diagnostik zum Nachweis von Intron-1- bzw. Intron-22-Inversionen sind einige Patienten mit schwerer Hämophilie A aufgefallen, welche ungewöhnliche Bandenmuster in den analytischen PCRs bzw. Southern-Blots aufwiesen. Mittels MLPA-Analysen wurden bei diesen Patienten Deletionen oder Duplikationen (CNVs) aufgedeckt, die meist allein die auffälligen Bandenmuster nicht erklären konnten. Weitere Long-Range-PCR-Untersuchungen belegten dagegen, dass fünf der untersuchten Fälle auf ein kombiniertes Inversions- und Duplikations- bzw. Deletionsereignis zurückzuführen sind. Als zweiter Teil der Arbeit wurden Transkriptions- und Translationsuntersuchungen von Nonsense-Mutationen des F8-Gens in einem zellulären Expressionssystem durchgeführt. Es konnte nachgewiesen werden, dass trotz Nonsense-Mutation eine komplette F8-Tran¬skrip¬tion stattfindet. Antigenanalysen konnten die Expression von trunkierten Proteinen nachweisen, wenn die Nonsense-Mutationen in der leichten Kette, d.h. den distalen Domänen A3, C1 oder C2, lag. Bei Nonsense-Mutationen in der schweren Kette (den proximalen Domänen A1, A2 oder B) war keine Proteinexpression nachweisbar. Diese Daten konnte durch intrazelluläre Immunlokalisation der trunkierten Proteine bestätigt werden. Die Ergebnisse deuten darauf hin, dass die B-Domäne eine wichtige Rolle bei der Proteinprozessierung spielt, vermutlich indem sie die Bindung von Chaperonen ermöglicht und das FVIII-Protein vor Degradation schützt.
Diese Studie beschäftigt sich mit den toxischen Effekten von Zinkoxid Nanopartikeln (ZnO NP) auf humane Nasenschleimhautzellen. Speziell wurde eine mögliche Kumulation von DNS-Schäden und deren Reparatur analysiert. Zu diesem Zweck wurde ein dreidimensionales Kultursystem, sogenannte Miniorgankulturen, aus humaner nasaler Mukosa verwendet. Eine Charakterisierung der verwendeten Zinkoxid Nanopartikel erfolgte unter dem Transmissionselektronenmikroskop (TEM), mittels dynamischer Lichtstreuung (DLS) und durch eine Zetapotentialmessung. Nach einer Woche Kultivierung fand eine Exposition der MOK mit einer Zinkoxid Nanopartikel Suspension in einer Konzentration von 0,1 µg/ml und 5 µg/ml statt. Als Positivkontrolle wurde in diesem Versuch 200µM Methymethansulfonat (MMS) zugesetzt. Es erfolgten drei jeweils einstündige Inkubationsphasen, wobei nach jeder Stunde ein Teil der MOKs für den Cometassay entnommen wurde. Nach dreimaliger Exposition wurden die verbliebenen MOKs für 24 Stunden zur Regeneration in unversetztem Nährmedium belassen und dann dem Cometassay zugeführt. Ergänzend wurde ein Sandwich ELISA zur Detektion von Caspase 3 durchgeführt. Zn2+ Ionen wurden im Zellkulturmedium analysiert. Der Nachweis von reaktiven Sauerstoffspezies (ROS) erfolgte fluoreszenzmikroskopisch. Die DLS konnte eine durchschnittliche Partikelaggregatgröße von 354 nm nachweisen und das Zetapotential betrug -11,2 mV. Die im Cometassay festgestellten DNS-Schäden zeigten bei einer Zinkoxid Nanopartikel Konzentration von 0,1 µg/ml erst nach der Regenerationsphase von 24 Stunden einen signifikanten Anstieg, während 5 µg/ml Zinkoxid Nanopartikel zu jedem Zeitpunkt einen signifikanten Anstieg der DNS Fragmentation bewirkten. Das Ausmaß an Strangbrüchen nach 24 Stunden stieg auch hier nach 24stündiger Regenerationsphase nochmals an. 200 µM MMS induzierten ebenfalls einen signifikanten Anstieg der OTM-Werte bei einer, zwei und drei Stunden. Im Laufe der Regenerationsphase führten Reparaturmechanismen zu einem Absinken der OTM-Werte. Der Sandwich ELISA zeigte keinen signifikanten Anstieg der Caspase 3 Werte. Im Nährmedium konnte eine Zn2+ Ionenkonzentration von 2,8 µmol/ml nach einer Inkubation mit 0,1 µg/ml Zinkoxid Nanopartikeln festgestellt werden. Bei einer Inkubation mit 5 µg/ml Zinkoxid Nanopartikeln zeigte sich eine Ionenkonzentration von 52,7 µmol/ml. Intrazelluläre ROS konnte nur bei einer Exposition mit 5 µmol/ml Zinkoxid Nanopartikeln nachgewiesen werden. Diese Daten lassen den Schluss zu, dass Zinkoxid Nanopartikel in den verwendeten Konzentrationen genotoxisch wirken, aber keine zytotoxische Wirkung entfalten. Die Schädigung kumuliert und schreitet während der Regenerationsphase noch fort. Eine multifaktorielle Schädigung der DNS, sowohl durch direkte Interaktion der Partikel mit dem Erbgut, als auch über entstandene ROS und Zn2+ Ionen, ist anzunehmen.