An Optical Technique for Mapping Microviscosity Dynamics in Cellular Organelles

scientific article published on 18 April 2018

An Optical Technique for Mapping Microviscosity Dynamics in Cellular Organelles is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1021/ACSNANO.8B00177
P698PubMed publication ID29648785

P50authorStefan MarciniakQ37834687
Roland G. HuberQ42319152
Edward AvezovQ42746446
Marina K KuimovaQ54900056
Peter J BondQ59540068
Joseph E ChambersQ59545156
Markéta Icha KubánkováQ59576011
Ismael López-DuarteQ80600180
P433issue5
P304page(s)4398-4407
P577publication date2018-04-18
P1433published inACS NanoQ2819067
P1476titleAn Optical Technique for Mapping Microviscosity Dynamics in Cellular Organelles
P478volume12

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cites work (P2860)
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Q89935026Cell-Penetrating Streptavidin: A General Tool for Bifunctional Delivery with Spatiotemporal Control, Mediated by Transport Systems Such as Adaptive Benzopolysulfane Networks
Q98895446HaloFlippers: A General Tool for the Fluorescence Imaging of Precisely Localized Membrane Tension Changes in Living Cells
Q64111129Investigation of Micro-volume Viscosity with Janus Microbeads Based on Rotational Brownian Motion
Q92541299Methyl Scanning for Mechanochemical Chalcogen-Bonding Cascade Switches
Q64924805Streptavidin interfacing as a general strategy to localize fluorescent membrane tension probes in cells.
Q64243625Targeted fluorescence lifetime probes reveal responsive organelle viscosity and membrane fluidity
Q92646341Various Nucleolar Stress Inducers Result in Highly Distinct Changes in Water, Dry Mass and Elemental Content in Cancerous Cell Compartments: Investigation Using a Nano-Analytical Approach

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