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Vitali Vogel

Researcher at Goethe University Frankfurt

Publications -  40
Citations -  2278

Vitali Vogel is an academic researcher from Goethe University Frankfurt. The author has contributed to research in topics: Particle size & Nanoparticle. The author has an hindex of 22, co-authored 40 publications receiving 2030 citations.

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A Soluble Fragment of the Tumor Antigen BCL2-associated Athanogene 6 (BAG-6) Is Essential and Sufficient for Inhibition of NKp30 Receptor-dependent Cytotoxicity of Natural Killer Cells

TL;DR: This study gives the first molecular insights into BAG-6-mediated inhibition of NKp30-dependent NK cell cytotoxicity as part of a tumor immune escape mechanism and provides an access point to restore tumor immunosurveillance by NK cells and to increase the efficacy of cellular therapies.
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Metallo‐supramolecular micelles: Studies by analytical ultracentrifugation and electron microscopy

TL;DR: In this paper, an analytical ultracentrifuge and transmission electron microscopy were used to analyze the sedimentation velocity and sedimentation equilibrium analysis of a polystyrene (PS) segment connected to a poly(ethylene oxide) (PEO) block via a bis(2,2':6',2"-terpyridine ruthenium) complex.
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A comparison of two biorelevant in vitro drug release methods for nanotherapeutics based on advanced physiologically-based pharmacokinetic modelling.

TL;DR: Two methods for testing the drug release from nanocarriers, namely the filtration technique and the dispersion releaser technology, have been investigated and the two methods resulted in slightly different release profiles.
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Characterizing a monotopic membrane enzyme. Biochemical, enzymatic and crystallization studies on Aquifex aeolicus sulfide:quinone oxidoreductase

TL;DR: This work isolated and purified sulfide:quinone oxidoreductase from the native membranes of the hyperthermophilic bacterium Aquifex aeolicus, and proposed a classification of monotopic membrane protein crystal lattices.
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Metallo-supramolecular block copolymer micelles : improved preparation and characterization

TL;DR: The variant preparation procedure developed was used to prepare two "protomer"-type micelles that had a very narrow molar mass distribution but a much broader distribution of s values and thus of hydrodynamic diameters and indicates a conformational heterogeneity that is stable on the time scale of sedimentation velocity analysis.