Nanoparticle tension probes patterned at the nanoscale: impact of integrin clustering on force transmission

纳米尺度图案化的纳米颗粒张力探针:整合素聚集对力传递的影响

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Abstract

Herein we aimed to understand how nanoscale clustering of RGD ligands alters the mechano-regulation of their integrin receptors. We combined molecular tension fluorescence microscopy with block copolymer micelle nanolithography to fabricate substrates with arrays of precisely spaced probes that can generate a 10-fold fluorescence response to pN-forces. We found that the mechanism of sensing ligand spacing is force-mediated. This strategy is broadly applicable to investigating receptor clustering and its role in mechanotransduction pathways.

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