Enderlein, Jörg

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18.08.2023

DNA-Based Optical Sensors for Forces in Cytoskeletal Networks

Authors Jayachandran C, Ghosh A, Prabhune M, Bath J, Turberfield AJ, Hauke L, Enderlein J, Rehfeldt F, Schmidt CF Journal ACS Applied Nano Materials Citation ACS Appl. Nano Mater. 2023. Abstract Mechanical forces are relevant for many biological processes, from wound healing and tumor formation to cell migration and differentiation.
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30.03.2023

Metal-Induced Energy Transfer (MIET) for Live-Cell Imaging with Fluorescent Proteins

Authors Hauke L, Isbaner S, Ghosh A, Guido I, Turco L, Chizhik AI, Gregor I, Karedla N, Rehfeldt F, Enderlein J Journal ACS Nano Citation ACS Nano. 2023 Mar 30. Abstract Metal-induced energy transfer (MIET) imaging is an easy-to-implement super-resolution modality that achieves nanometer resolution along the optical axis of
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09.03.2023

Excitation Intensity-Dependent Quantum Yield of Semiconductor Nanocrystals

Authors Ghosh S, Ross U, Chizhik AM, Kuo Y, Jeong BG, Bae WK, Park K, Li J, Oron D, Weiss S, Enderlein J, Chizhik AI Journal The Journal of Physical Chemistry Letters Citation J Phys Chem Lett. 2023 Mar 9:2702-2707. Abstract One of the key phenomena that determine the fluorescence
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27.01.2023

Cholesterol-Induced Nanoscale Variations in the Thickness of Phospholipid Membranes

Authors Chen T, Ghosh A, Enderlein J Journal Nano Letters Citation Nano Lett. 2023 Jan 27. Abstract Graphene-induced energy transfer (GIET) is a recently developed fluorescence-spectroscopic technique that achieves subnanometric optical localization of fluorophores along the optical axis of a microscope. GIET is based on the near-field energy transfer from
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06.07.2022

Single-Molecule Fluorescence Lifetime Imaging Using Wide-Field and Confocal-Laser Scanning Microscopy: A Comparative Analysis

Authors Oleksiievets N, Mathew C, Thiele JC, Gallea J, Nevskyi O, Gregor I, Weber A, Tsukanov R, Enderlein J Journal Nano Letters Citation Nano Lett. 2022. Abstract A recent addition to the toolbox of super-resolution microscopy methods is fluorescence-lifetime single-molecule localization microscopy (FL-SMLM). The synergy of SMLM and fluorescence-lifetime imaging
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10.06.2022

Isotropic Three-Dimensional Dual-Color Super-Resolution Microscopy with Metal-Induced Energy Transfer

Authors Thiele JC, Jungblut M, Helmerich DA, Tsukanov R, Chizhik A, Chizhik AI, Schnermann MJ, Sauer M, Nevskyi O, Enderlein J Journal Science Advances Citation Sci Adv. 2022 Jun 10;8(23):eabo2506. Abstract Over the past two decades, super-resolution microscopy has seen a tremendous development in speed and resolution, but for most
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02.06.2022

Measuring photophysical transition rates with fluorescence correlation spectroscopy and antibunching

Authors Sakhapov D, Gregor I, Karedla N, Enderlein J Journal Journal of Physical Chemistry Letters Citation J Phys Chem Lett. 2022 Jun 2;13(21):4823-4830. Abstract We present a new method that combines fluorescence correlation spectroscopy (FCS) on the microsecond time scale with fluorescence antibunching measurements on the nanosecond time scale for
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26.05.2022

Excited state lifetime modulation in semiconductor nanocrystals for super-resolution imaging

Authors Ghosh S, Hollingsworth JA, Gallea JI, Majumder S, Enderlein J, Chizhik AI Journal Nanotechnology Citation Nanotechnology. 2022 Jun 15;33(36). Abstract We report on proof of principle measurements of a concept for a super-resolution imaging method that is based on excitation field density-dependent lifetime modulation of semiconductor nanocrystals. The prerequisite
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25.05.2022

Electrically Controlling and Optically Observing the Membrane Potential of Supported Lipid Bilayers

Authors Yudovich S, Marzouqe A, Kantorovitsch J, Teblum E, Chen T, Enderlein J, Miller EW, Weiss S Journal Biophysical Journal Citation Biophys J. 2022 May 25:S0006-3495(22)00430-1 Abstract Supported lipid bilayers are a well-developed model system for the study of membranes and their associated proteins, such as membrane channels, enzymes, and
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01.04.2022

Optimal transfer functions for bandwidth-limited imaging

Authors Stallinga S, Radmacher N, Delon A, Enderlein J Journal Physical Review Research Citation Phys. Rev. Research 4, 023003. Abstract One of the fundamental limits of classical optical microscopy is the diffraction limit of optical resolution. It results from the finite bandwidth of the optical transfer function (or OTF) of
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