微尺度热泳
热泳
微尺度化学
溶剂化
小分子
纳米技术
高分子
材料科学
化学物理
分子
化学
纳米颗粒
有机化学
数学教育
生物化学
数学
纳米流体
作者
Moran Jerabek‐Willemsen,Chistoph J. Wienken,Dieter Braun,B. Philipp,Stefan Duhr
标识
DOI:10.1089/adt.2011.0380
摘要
The use of infrared laser sources for creation of localized temperature fields has opened new possibilities for basic research and drug discovery. A recently developed technology, Microscale Thermophoresis (MST), uses this temperature field to perform biomolecular interaction studies. Thermophoresis, the motion of molecules in temperature fields, is very sensitive to changes in size, charge, and solvation shell of a molecule and thus suited for bioanalytics. This review focuses on the theoretical background of MST and gives a detailed overview on various applications to demonstrate the broad applicability. Experiments range from the quantification of the affinity of low-molecular-weight binders using fluorescently labeled proteins, to interactions between macromolecules and multi-component complexes like receptor containing liposomes. Information regarding experiment and experimental setup is based on the Monolith NT.115 instrument (NanoTemper Technologies GmbH).
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