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受体靶向载体的结合和内化:CD44 在透明质酸基纳米颗粒(siRNA 递呈)摄取中的复杂作用

Binding and Internalization in Receptor-Targeted Carriers: The Complex Role of CD44 in the Uptake of Hyaluronic Acid-Based Nanoparticles (siRNA Delivery).

机构信息

NorthWest Centre for Advanced Drug Delivery (NoWCADD), School of Health Sciences, University of Manchester, Oxford Road, Manchester, M13 9PT, UK.

Division of Pharmacy and Optometry, Faculty of Biology, Medicine and Health, University of Manchester, Manchester Academic Health Science Centre, Oxford Road, Manchester, M13 9PL, UK.

出版信息

Adv Healthc Mater. 2019 Dec;8(24):e1901182. doi: 10.1002/adhm.201901182. Epub 2019 Nov 18.

Abstract

CD44 is an endocytic hyaluronic acid (HA) receptor, and is overexpressed in many carcinomas. This has encouraged the use of HA to design CD44-targeting carriers. This paper is about dissecting the mechanistic role of CD44. Here, HA-decorated nanoparticles are used to deliver siRNA to both tumoral (AsPC-1, PANC-1, HT-29, HCT-116) and non-tumoral (fibroblasts, differently polarized THP-1 macrophages, HUVEC) human cell lines, evaluating the initial binding of the nanoparticles, their internalization rate, and the silencing efficiency (cyclophilin B (PPIB) gene). Tumoral cells internalize faster and experience higher silencing than non-tumoral cells. This is promising as it suggests that, in a tumor, HA nanocarriers may have limited off-target effects. More far-reaching is the inter-relation between the four parameters of the study: CD44 expression, HA binding on cell surfaces, internalization rate, and silencing efficiency. No correlation is found between binding (an early event) and any of the other parameters, whereas silencing correlates both with speed of the internalization process and CD44 expression. This study confirms on one hand that HA-based carriers can perform a targeted action, but on the other it suggests that this may not be due to a selective binding event, but rather to a later recognition leading to selective internalization.

摘要

CD44 是一种内吞透明质酸(HA)受体,在许多癌中过表达。这鼓励了使用 HA 来设计针对 CD44 的靶向载体。本文旨在剖析 CD44 的作用机制。在这里,用 HA 修饰的纳米颗粒将 siRNA 递送至肿瘤(AsPC-1、PANC-1、HT-29、HCT-116)和非肿瘤(成纤维细胞、不同极化的 THP-1 巨噬细胞、HUVEC)人细胞系,评估纳米颗粒的初始结合、内化率和沉默效率(亲环素 B(PPIB)基因)。肿瘤细胞比非肿瘤细胞内化更快,沉默效率更高。这很有希望,因为它表明在肿瘤中,HA 纳米载体可能具有有限的脱靶效应。更深远的是研究的四个参数之间的相互关系:CD44 表达、细胞表面上的 HA 结合、内化率和沉默效率。结合(早期事件)与其他任何参数之间均无相关性,而沉默与内化过程的速度和 CD44 表达均相关。本研究一方面证实了基于 HA 的载体可以进行靶向作用,但另一方面表明这可能不是由于选择性结合事件,而是由于随后的识别导致选择性内化。

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