胞浆
细胞
化学
人口
生物化学
氧化应激
生物物理学
酶
生物
医学
环境卫生
作者
Xiaomei Shi,Yi‐Tong Xu,Bing‐Yu Zhou,Bing Wang,Si‐Yuan Yu,Weiwei Zhao,Dechen Jiang,Hong‐Yuan Chen,Jing‐Juan Xu
标识
DOI:10.1002/anie.202215801
摘要
Single-cell protein therapeutics is expected to promote our in-depth understanding of how a specific protein with a therapeutic dosage treats the cell without population averaging. However, it has not yet been tackled by current single-cell nanotools. We address this challenge by the use of a double-barrel nanopipette, in which one lumen was used for electroosmotic cytosolic protein delivery and the other was customized for ionic evaluation of the consequence. Upon injection of protein DJ-1 through the delivery lumen, upregulation of the antioxidant protein could protect neural PC-12 cells against oxidative stress from phorbol myristate acetate exposure, as deduced by targeting of the cytosolic hydrogen peroxide by the detecting lumen. The nanotool developed in this study for single-cell protein therapeutics provides a perspective for future single-cell therapeutics involving different therapeutic modalities, such as peptides, enzymes and nucleic acids.
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