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细胞性别对纳米颗粒摄取的影响:纳米生物界面被忽视的因素。

Effect of Cell Sex on Uptake of Nanoparticles: The Overlooked Factor at the Nanobio Interface.

机构信息

Department of Biomedical Engineering , Georgia Institute of Technology & Emory University School of Medicine , Atlanta , Georgia 30322 , United States.

Department of Pediatrics , Emory University School of Medicine , Atlanta , Georgia 30322 , United States.

出版信息

ACS Nano. 2018 Mar 27;12(3):2253-2266. doi: 10.1021/acsnano.7b06212. Epub 2018 Mar 14.

Abstract

Cellular uptake of nanoparticles (NPs) depends on the nature of the nanobio system including the solid nanocomponents ( e. g., physicochemical properties of NPs), nanobio interfaces ( e. g., protein corona composition), and the cellular characteristics ( e. g., cell type). In this study, we document the role of sex in cellular uptake of NPs as an "overlooked" factor in nanobio interface investigations. We demonstrate that cell sex leads to differences in NP uptake between male and female human amniotic stem cells (hAMSCs), with greater uptake by female cells. hAMSCs are one of the earliest sources of somatic stem cells. The experiments were replicated with primary fibroblasts isolated from the salivary gland of adult male and female donors of similar ages, and again the extent of NP uptake was altered by cell sex. However, in contrast to hAMSCs, uptake was greater in male cells. We also found out that female versus male amniotic stem cells exhibited different responses to reprogramming into induced pluripotent stem cells (iPSCs) by the Yamanaka factors. Thus, future studies should consider the effect of sex on the nanobio interactions to optimize clinical translation of NPs and iPSC biology and to help researchers to better design and produce safe and efficient therapeutic sex-specific NPs.

摘要

细胞对纳米颗粒(NPs)的摄取取决于纳米生物系统的性质,包括固体纳米组件(例如,NPs 的物理化学性质)、纳米生物界面(例如,蛋白质冠组成)和细胞特征(例如,细胞类型)。在这项研究中,我们记录了性别的作用,即细胞摄取 NPs 的一个“被忽视的”因素,这是纳米生物界面研究中的一个因素。我们证明,细胞性别导致男性和女性人羊膜干细胞(hAMSCs)之间 NP 摄取的差异,女性细胞的摄取量更大。hAMSCs 是人体细胞中最早的来源之一。该实验在来自年龄相似的成年男性和女性供体的唾液腺分离的原代成纤维细胞中进行了重复,细胞性别再次改变了 NP 的摄取程度。然而,与 hAMSCs 不同的是,男性细胞的摄取量更大。我们还发现,与男性羊膜干细胞相比,女性羊膜干细胞对通过山中因子重编程为诱导多能干细胞(iPSCs)的反应不同。因此,未来的研究应该考虑性别的影响对纳米生物相互作用,以优化 NPs 的临床转化和 iPSC 生物学,并帮助研究人员更好地设计和生产安全有效的治疗性性别特异性 NPs。

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