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使用透明质酸修饰的两亲性聚电解质复合物递送来抑制三阴性乳腺癌细胞的生长和迁移:针对细胞周期和磷酸酶蛋白的组合 siRNA 递送。

Combinational siRNA delivery using hyaluronic acid modified amphiphilic polyplexes against cell cycle and phosphatase proteins to inhibit growth and migration of triple-negative breast cancer cells.

机构信息

Faculty of Pharmacy & Pharmaceutical Sciences, U. of Alberta, Edmonton, AB, Canada.

Department of Chemical & Materials Engineering, Faculty of Engineering, U. of Alberta, Edmonton, AB, Canada.

出版信息

Acta Biomater. 2018 Jan 15;66:294-309. doi: 10.1016/j.actbio.2017.11.036. Epub 2017 Nov 26.

Abstract

UNLABELLED

Triple-negative breast cancer is an aggressive form of breast cancer with few therapeutic options if it recurs after adjuvant chemotherapy. RNA interference could be an alternative therapy for metastatic breast cancer, where small interfering RNA (siRNA) can silence the expression of aberrant genes critical for growth and migration of malignant cells. Here, we formulated a siRNA delivery system using lipid-substituted polyethylenimine (PEI) and hyaluronic acid (HA), and characterized the size, ζ-potential and cellular uptake of the nanoparticulate delivery system. Higher cellular uptake of siRNA by the tailored PEI/HA formulation suggested better interaction of complexes with breast cancer cells due to improved physicochemical characteristics of carrier and HA-binding CD44 receptors. The siRNAs against specific phosphatases that inhibited migration of MDA-MB-231 cells were then identified using library screen against 267 protein-tyrosine phosphatases, and siRNAs to inhibit cell migration were further validated. We then assessed the combinational delivery of a siRNA against CDC20 to decrease cell growth and a siRNA against several phosphatases shown to decrease migration of breast cancer cells. Combinational siRNA therapy against CDC20 and identified phosphatases PPP1R7, PTPN1, PTPN22, LHPP, PPP1R12A and DUPD1 successfully inhibited cell growth and migration, respectively, without interfering the functional effect of the co-delivered siRNA. The identified phosphatases could serve as potential targets to inhibit migration of highly aggressive metastatic breast cancer cells. Combinational siRNA delivery against cell cycle and phosphatases could be a promising strategy to inhibit both growth and migration of metastatic breast cancer cells, and potentially other types of metastatic cancer.

STATEMENT OF SIGNIFICANCE

The manuscript investigated the efficacy of a tailored polymeric siRNA delivery system formulation as well as combinational siRNA therapy in metastatic breast cancer cells to inhibit malignant cell growth and migration. The siRNA delivery was undertaken by non-viral means with PEI/HA. We identified six phosphatases that could be critical targets to inhibit migration of highly aggressive metastatic breast cancer cells. We further report on specifically targeting cell cycle and phosphatase proteins to decrease both malignant cell growth and migration simultaneously. Clinical gene therapy against metastatic breast cancer with effective and safe delivery systems is urgently needed to realize the potential of molecular medicine in this deadly disease and our studies in this manuscript is intended to facilitate this endeavor.

摘要

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三阴性乳腺癌是一种侵袭性乳腺癌,如果在辅助化疗后复发,治疗选择很少。RNA 干扰可能是转移性乳腺癌的一种替代疗法,其中小干扰 RNA(siRNA)可以沉默对恶性细胞生长和迁移至关重要的异常基因的表达。在这里,我们使用脂质取代的聚乙烯亚胺(PEI)和透明质酸(HA)构建了 siRNA 递药系统,并对纳米递药系统的大小、ζ-电位和细胞摄取进行了表征。经定制的 PEI/HA 制剂转染的 siRNA 具有更高的细胞摄取率,这表明由于载体和 HA 结合的 CD44 受体的理化特性得到改善,复合物与乳腺癌细胞的相互作用更好。然后,使用针对 267 种蛋白酪氨酸磷酸酶的文库筛选,鉴定出针对特定磷酸酶的 siRNA,这些磷酸酶抑制 MDA-MB-231 细胞的迁移,进一步验证了抑制细胞迁移的 siRNA。然后,我们评估了联合递送 siRNA 以抑制细胞生长和针对已证明可降低乳腺癌细胞迁移的几种磷酸酶的 siRNA 的效果。针对 CDC20 的联合 siRNA 治疗和鉴定的磷酸酶 PPP1R7、PTPN1、PTPN22、LHPP、PPP1R12A 和 DUPD1 分别成功抑制细胞生长和迁移,而不会干扰共递送 siRNA 的功能效果。鉴定出的磷酸酶可能成为抑制高度侵袭性转移性乳腺癌细胞迁移的潜在靶点。针对细胞周期和磷酸酶的联合 siRNA 递送可能是抑制转移性乳腺癌细胞生长和迁移的一种很有前途的策略,并且可能对其他类型的转移性癌症也有效。

意义声明

本文研究了一种经定制的聚合物 siRNA 递药系统配方以及在转移性乳腺癌细胞中联合 siRNA 治疗以抑制恶性细胞生长和迁移的效果。siRNA 递药采用非病毒方法,使用 PEI/HA。我们鉴定了六个可能是抑制高度侵袭性转移性乳腺癌细胞迁移的关键靶点的磷酸酶。我们进一步报告了针对细胞周期和磷酸酶蛋白的特异性靶向,以同时降低恶性细胞的生长和迁移。针对转移性乳腺癌的临床基因治疗需要有效的和安全的递药系统,以实现分子医学在这种致命疾病中的潜力,我们在本文中的研究旨在促进这一努力。

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