Mechanosensitive Conjugated Oligoelectrolytes for Visualizing Temporal Changes in Live Cells
Abstract
Abstract Membrane‐intercalating conjugated oligoelectrolytes (COEs) are lipid‐bilayer‐spanning molecules that serve as fluorescent dyes for bioimaging. However, COE emission has thus far only been capable of visualizing dye location and their preferential accumulation in different membrane‐bound intracellular compartments. Herein, we report the first example of environmentally sensitive COEs for visualizing temporal changes in live cells, providing information on the physical properties of intracellular lipid bilayer membranes. The new COE‐BY series is designed around a BODIPY central unit with a membrane‐spanning topology and six cationic pendant groups ensuring solubility in aqueous media. These reporters feature high two‐photon absorption cross section, NIR‐II excitation capabilities under multiphoton excitation, and high dye brightness; all highly desirable photophysical features for bioimaging. The emission lifetime of the probes was sensitive to changes to both the lipid composition of model vesicle systems and membrane tension within cells, induced by either mechanical or osmotic stress. Using two‐photon fluorescence lifetime imaging microscopy, it is possible to use the most efficient emitter, namely, COE‐BYPhOC4 , to image changes in the mechanical properties of intracellular membranes. We show that these COEs remain stably vesicle‐bound within the endolysosomal pathway over extended periods, allowing for long‐term monitoring of the associated biophysical changes of these vesicles over time.
Article Details
Authors (14)
Ji‐Yu Zhu
Department of Chemistry National University of Singapore Singapore 117543 Singapore
Samuel J. W. Chan
Department of Chemistry National University of Singapore Singapore 117543 Singapore
Hongyue Cui
Mechanobiology Institute National University of Singapore Singapore 117411 Singapore
Alexander A. Mikhalovsky
Department of Chemistry and Biochemistry Center for Polymers and Organic Solids University of California Santa Barbara Santa Barbara California 93106 USA
Fernando L. Garcia
Institute for Functional Intelligent Materials National University of Singapore Singapore 117544 Singapore
Brandon Yeow Wee Goh
Mechanobiology Institute National University of Singapore Singapore 117411 Singapore
Wilson Wee Mia Soh
Department of Chemistry National University of Singapore Singapore 117543 Singapore
Alex S. Moreland
Department of Chemistry and Biochemistry Center for Polymers and Organic Solids University of California Santa Barbara Santa Barbara California 93106 USA
Jakkarin Limwongyut
Department of Chemistry National University of Singapore Singapore 117543 Singapore
Sukanya Shyamasundar
Department of Anatomy Yong Loo Lin School of Medicine National University of Singapore Singapore 117594 Singapore
Ya Jun Wu
Department of Anatomy Yong Loo Lin School of Medicine National University of Singapore Singapore 117594 Singapore
Fengyi Liang
Department of Anatomy Yong Loo Lin School of Medicine National University of Singapore Singapore 117594 Singapore
Rong Li
Guillermo C. Bazan