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Markus Meissner

Researcher at Goethe University Frankfurt

Publications -  177
Citations -  2322

Markus Meissner is an academic researcher from Goethe University Frankfurt. The author has contributed to research in topics: Melanoma & Medicine. The author has an hindex of 22, co-authored 166 publications receiving 1757 citations. Previous affiliations of Markus Meissner include Karlsruhe Institute of Technology & University of Freiburg.

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Journal ArticleDOI

Impact of Different Spa Waters on Inflammation Parameters in Human Keratinocyte HaCaT Cells.

TL;DR: It is shown that spa waters, and particularly those derived from thermal springs, reduce parameters associated with inflammation, and it seems likely that trace elements such as selenium and zinc are critical for the observed effects.
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Dimethylfumarate inhibits melanoma cell proliferation via p21 and p53 induction and bcl-2 and cyclin B1 downregulation

TL;DR: Evidence is provided that DMF inhibits melanoma proliferation by reinduction of important cell cycle inhibitors leading to a concentration-dependent G0/G1 or G2/M cell cycle arrest and induction of apoptosis via downregulation of bcl-2 and inductionof p53 and PARP-1 cleavage.
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Inhibition of Rac1 GTPase downregulates vascular endothelial growth factor receptor-2 expression by suppressing Sp1-dependent DNA binding in human endothelial cells

TL;DR: It is shown that a dominant negative Rac1 expression vector led to a pronounced decrease in VEGFR2 mRNA and protein expression, and repression of the small Rho GTPase Rac1 seems to be an additional critical molecular mechanism in the regulation of V EGFR2 expression.
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Hedgehog pathway inhibitor in combination with radiation therapy for basal cell carcinomas of the head and neck First clinical experience with vismodegib for locally advanced disease

TL;DR: The combination of vismodegib and radiation seems feasible and the initial results are promising, and there was no increase in unexpected side effects in this cohort of patients.
Proceedings ArticleDOI

Automated constraint-driven topology synthesis for analog circuits

TL;DR: This contribution will present a fully automated approach for explorative topology synthesis of small analog circuit blocks through a parallelized industrial based sizing method, which shows the feasibility of this synthesis approach.