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用胞吐聚合物点工程化雌性生殖干细胞。

Engineering Female Germline Stem Cells with Exocytotic Polymer Dots.

机构信息

College of Chemistry and Materials Science, The Education Ministry Key Lab of Resource Chemistry, Joint International Research Laboratory of Resource Chemistry of Ministry of Education, Shanghai Key Laboratory of Rare Earth Functional Materials, and Shanghai Frontiers Science Center of Biomimetic Catalysis, Shanghai Engineering Research Center of Green Energy Chemical Engineering, Shanghai Normal University, Shanghai, 200234, China.

Department of Laboratory Medicine, West China Hospital, Sichuan University, Chengdu, 610041, China.

出版信息

Adv Mater. 2023 Jun;35(24):e2210458. doi: 10.1002/adma.202210458. Epub 2023 Apr 28.

Abstract

Germline stem cells (GSCs) are the only cell population capable of passing genetic information to offspring, making them attractive targets in reproductive biology and fertility research. However, it is generally more difficult to introduce exogenous biomolecules into GSCs than other cell types, impeding the exploration and manipulation of these cells for biomedical purposes. Herein, semiconductor polymer dots (Pdots)-based nanocomplex Pdot-siRNA is developed and achieves effective knockdown of target genes in female germline stem cells (FGSCs). Advantage of high fluorescence brightness of Pdots is taken for comprehensive investigation of their cellular uptake, intracellular trafficking, and exocytosis in FGSCs. Importantly, Pdots show excellent biocompatibility and minimally disturb the differentiation of FGSCs. Intracellular Pdots escape from the lysosomes and undergo active exocytosis, which makes them ideal nanocarriers for bioactive cargos. Moreover, Pdot-siRNA can penetrate into 3D ovarian organoids derived from FGSCs and down-regulate the expression levels of target genes. This study investigates the interface between a type of theranostic nanoparticles and FGSCs for the first time and sheds light on the manipulation and medical application of FGSCs.

摘要

生殖干细胞 (GSCs) 是唯一能够将遗传信息传递给后代的细胞群体,这使得它们成为生殖生物学和生育力研究中极具吸引力的目标。然而,通常将外源性生物分子导入 GSCs 比导入其他细胞类型更为困难,这阻碍了对这些细胞的探索和操纵,以用于生物医学目的。本文开发了基于半导体聚合物点 (Pdots) 的纳米复合物 Pdot-siRNA,实现了对雌性生殖干细胞 (FGSCs) 中靶基因的有效敲低。利用 Pdots 高荧光亮度的优势,全面研究了其在 FGSCs 中的细胞摄取、细胞内转运和胞吐作用。重要的是,Pdots 表现出优异的生物相容性,对 FGSCs 的分化干扰极小。细胞内的 Pdots 从溶酶体中逃逸并发生主动胞吐,使其成为生物活性载体的理想纳米载体。此外,Pdot-siRNA 可以穿透源自 FGSCs 的 3D 卵巢类器官,并下调靶基因的表达水平。本研究首次研究了治疗性纳米颗粒与 FGSCs 之间的相互作用,为 FGSCs 的操纵和医学应用提供了新的思路。

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