TY - THES A1 - Müller, Sophia T1 - Molekulare Untersuchungen zur Rolle von Homeobox-Genen bei der Entwicklung von Echinococcus multilocularis T1 - Molecular analysis of the impact of homeoboxgenes in the development of Echinococcus multilocularis N2 - Die alveoläre Echinokokkose ist eine, vorrangig in der nördlichen Hemisphäre verbreitete, parasitäre Erkrankung. Verursacht wird sie beim Menschen durch das Larvenstadium des Fuchsbandwurms. Homeoboxgene sind hochkonservierte Gene, die die Morphogenese von Lebewesen steuern. Die Anzahl und die Bedeutung von Homeoboxgenen in der Entwicklung von E.multilocularis waren bislang unbekannt. Im Rahmen dieser Arbeit konnten mit Hilfe von Sequenzanalysen im Genom des Fuchsbandwurms erstmals Homeoboxgene identifiziert und deren Expressionsmuster mittels PCR in verschiedenen Larvenstadien charakterisiert werden. Von insgesamt 23 gefundenen Homeoboxgenen wurden 15 Gene auf ihre larvenstadienspezifische Expression untersucht. Neun der untersuchten Gene zeigten in dem gewählten Versuchsaufbau eine Expression in den untersuchten Larvenstadien, fünf davon zeigten eine verstärkte Expression in den späten Larvenstadien. Für acht dieser neun Gene ließen sich darüber hinaus Hinweise auf eine Prozessierung ihrer mRNA über den Mechanismus des Trans-Spleißens finden. Vorangehende Versuche der Arbeitsgruppe von Prof. Brehm hatten einen Zusammenhang zwischen einer Stimulation früher Entwicklungsstadien der Parasitenlarven mit dem Zytokin BMP-2 und dessen rascherer Entwicklung in spätere Entwicklungsstadien nahegelegt. Die Auswirkung einer Behandlung früher Entwicklungsstadien mit dem Zytokin BMP-2 auf die jeweilige Genexpression wurde daher für die ausgewählten 15 Gene überprüft. Fünf Gene zeigten unter dessen Einfluss eine verstärkte Expression. Zwei darunter waren solche, die eine stärkere Expression in späten Larvenstadien aufwiesen. Diese zwei Gene stellen nun Kandidaten dar, die an der Entwicklung von E.multilocularis maßgeblich beteiligt sein könnten. Durch die Untersuchungen dieser Arbeit ergaben sich wichtige Hinweise auf die Entwicklung und die Regulationsmechanismen der Genexpression von E. multilocularis. Sie bilden eine Grundlage, die Rolle der Homeoboxgene für den Fuchsbandwurm näher zu beschreiben und die hormonelle Kreuzregulation zwischen Parasit und Wirt weiter zu studieren. N2 - Alveolar Echinococcosis is a rather rare parasitic disease, mainly occuring in the northern hemisphere. It is caused by the larval stage of the flatworm Echinococcus multilocularis. Homeoboxgenes are highly conserved genes, that play a crucial role in the development of organism. Until now neither the number in nor the importance of these genes for E.multilocularis was known. Within this study we could identify the homeoboxgenes in the genome of E.multilocularis and analyse the expression pattern in different larval stages. All together we found a number of 23 homeoboxgenes, the expression pattern in different larval stages was analysed for 15 genes. Within the chosen experimental setup nine of the genes were expressed, five showed higher expression in later larval stages. Furthermore there was a strong hint for the processing of mRNA through trans-splicing for eight genes. Previous experiments of the working group Brehm had shown a relation between a stimulation of young metacestodes with the cytokine BMP-2 and a faster development towards later larval stages. Therefore we anaylsed the effect of the cytokine BMP-2 on the geneexpression pattern of fifteen genes. Under its influence five genes showed higher expression rates. Two belonged to the group of genes that had shown higher expression in later larval stages. These two genes could potentially be candidates with a high significance in the development of E.multilocularis. Due to this work we could elucidate important hints for the development of E.multilocularis and the regulation of its gene expression. Based on these findings it will be possible to study the role of homeoboxgenes and the host-parasite cross-regulation in E.multilocularis in more detail. KW - Fuchsbandwurm KW - Knochen-Morphogenese-Proteine KW - Entwicklungsbiologie KW - Genexpression KW - Bandwürmer KW - Eucestoda KW - Parasit KW - Homeobox-Gene KW - Hox-Gene KW - Trans-Spleißen KW - BMP KW - Echinococcus multilocularis KW - BMP KW - trans-splicing KW - homeoboxgenes KW - hoxgenes Y1 - 2009 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-35616 ER - TY - JOUR A1 - Mohme, Sophia A1 - Schmalzing, Marc A1 - Müller, Cornelia S.L. A1 - Vogt, Thomas A1 - Goebeler, Matthias A1 - Stoevesandt, Johanna T1 - Immunizations in immunocompromised patients: a guide for dermatologists JF - JDDG: Journal der Deutschen Dermatologischen Gesellschaft N2 - The increasingly frequent use of immunomodulatory agents in dermatology requires the observance of specific recommendations for immunization. These recommendations are developed and regularly updated by the German Standing Committee on Vaccination (STIKO), an independent advisory group at the Robert Koch Institute. Dermatological patients on immunosuppressive treatment should ideally receive all vaccinations included in the standard immunization schedule. Additionally, it is recommended that they also undergo vaccination against the seasonal flu, pneumococci, and herpes zoster (inactivated herpes zoster subunit vaccine for patients ≥ 50 years). Additional immunizations against Haemophilus influenzae type B, hepatitis B and meningococci may be indicated depending on individual comorbidities and exposure risk. Limitations of use, specific contraindications and intervals to be observed between vaccination and immunosuppression depend on the immunosuppressive agent used and its dosing. Only under certain conditions may live‐attenuated vaccines be administered in patients on immunosuppressive therapy. Given its strong suppressive effect on the humoral immune response, no vaccines – except for flu shots – should be given within six months after rituximab therapy. This CME article presents current recommendations on immunization in immunocompromised individuals, with a special focus on dermatological patients. Its goal is to enable readers to provide competent counseling and to initiate necessary immunizations in this vulnerable patient group. Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-217982 VL - 18 IS - 7 SP - 699 EP - 723 ER - TY - JOUR A1 - Bae, Soyeon A1 - Müller, Jörg A1 - Förster, Bernhard A1 - Hilmers, Torben A1 - Hochrein, Sophia A1 - Jacobs, Martin A1 - Leroy, Benjamin M. L. A1 - Pretzsch, Hans A1 - Weisser, Wolfgang W. A1 - Mitesser, Oliver T1 - Tracking the temporal dynamics of insect defoliation by high‐resolution radar satellite data JF - Methods in Ecology and Evolution N2 - Quantifying tree defoliation by insects over large areas is a major challenge in forest management, but it is essential in ecosystem assessments of disturbance and resistance against herbivory. However, the trajectory from leaf-flush to insect defoliation to refoliation in broadleaf trees is highly variable. Its tracking requires high temporal- and spatial-resolution data, particularly in fragmented forests. In a unique replicated field experiment manipulating gypsy moth Lymantria dispar densities in mixed-oak forests, we examined the utility of publicly accessible satellite-borne radar (Sentinel-1) to track the fine-scale temporal trajectory of defoliation. The ratio of backscatter intensity between two polarizations from radar data of the growing season constituted a canopy development index (CDI) and a normalized CDI (NCDI), which were validated by optical (Sentinel-2) and terrestrial laser scanning (TLS) data as well by intensive caterpillar sampling from canopy fogging. The CDI and NCDI strongly correlated with optical and TLS data (Spearman's ρ = 0.79 and 0.84, respectively). The ΔNCDII\(_{Defoliation(A−C)}\) significantly explained caterpillar abundance (R\(^{2}\) = 0.52). The NCDI at critical timesteps and ΔNCDI related to defoliation and refoliation well discriminated between heavily and lightly defoliated forests. We demonstrate that the high spatial and temporal resolution and the cloud independence of Sentinel-1 radar potentially enable spatially unrestricted measurements of the highly dynamic canopy herbivory. This can help monitor insect pests, improve the prediction of outbreaks and facilitate the monitoring of forest disturbance, one of the high priority Essential Biodiversity Variables, in the near future. KW - Sentinel-1 KW - canopy herbivory KW - defoliation severity KW - gypsy moth KW - insect disturbance KW - intra-annual time-series KW - Lymantria dispar KW - remote sensing Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-258222 VL - 13 IS - 1 ER -