内化
纳米颗粒
细胞生物学
细胞
纳米技术
癌细胞
内吞循环
效应器
机械敏感通道
化学
细胞膜
生物物理学
材料科学
癌症
生物
内吞作用
离子通道
生物化学
遗传学
受体
作者
Marco Cassani,Soraia Fernandes,Jorge Oliver‐De La Cruz,Helena Ďuríková,Jan Vrbský,Marek Patočka,Veronika Hegrová,Šimon Klimovič,Jan Přibyl,Doriana Debellis,Petr Skládal,Francesca Cavalieri,Frank Caruso,Giancarlo Forte
标识
DOI:10.1101/2023.03.10.532035
摘要
Abstract Interactions between living cells and nanoparticles have been extensively studied to enhance the delivery of therapeutics. Nanoparticles size, shape, stiffness and surface charge have been regarded as the main features able to control the fate of cell-nanoparticle interactions. However, the clinical translation of nanotherapies has so far been limited, and there is a need to better understand the biology of cell-nanoparticle interactions. This study investigated the role of cellular mechanosensitive components in cell-nanoparticle interactions. We demonstrate that the genetic and pharmacologic inhibition of yes-associated protein (YAP), a key component of cancer cell mechanosensing apparatus and Hippo pathway effector, improves nanoparticle internalization in triple-negative breast cancer cells regardless of nanoparticle properties or substrate characteristics. This process occurs through YAP-dependent regulation of endocytic pathways, cell mechanics, and membrane organization. Hence, we propose targeting YAP may sensitize triple negative breast cancer cells to chemotherapy and increase the selectivity of nanotherapy.
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