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用于靶向小干扰 RNA 递送和随后逆转人乳腺癌细胞系 MCF-7/ADR 中阿霉素耐药性的多价蛋氨酸功能化生物相容性嵌段共聚物。

Multivalent methionine-functionalized biocompatible block copolymers for targeted small interfering RNA delivery and subsequent reversal effect on adriamycin resistance in human breast cancer cell line MCF-7/ADR.

机构信息

Research Center of Clinical Oncology, Jiangsu Cancer Hospital, Jiangsu Institute of Cancer Research, Nanjing Medical University Affiliated Cancer Hospital, Nanjing, China.

Collaborative Innovation Center of Suzhou Nano Science and Technology, Southeast University, Nanjing, China.

出版信息

J Gene Med. 2017 Aug;19(8). doi: 10.1002/jgm.2969.

Abstract

BACKGROUND

Cationic polymers are outstanding representatives of the most efficient small interfering RNA (siRNA) vectors. Low cytotoxicity and siRNA protecting effect can be obtained with these cationic polymers via a variety of structural modifications. Nevertheless, the gap between their efficiency and the requirement for therapeutic processes is still noticeable.

METHODS

A cationic polymer vector was synthesized via the copolymerization of N-(1,3-dihydroxy propan-2-yl)methacrylamide (DHPMA) and N-(3-aminopropyl)methacrylamide (APMA).

RESULTS

APMA provides amine functionality that allows the conjugation of guanidine and methionine groups. Attributed to the hydroxy groups of DHPMA, the synthesized guanidine and methionine grafted DHPMA-b-APMA block copolymer (mDG) is water soluble and has good biocompatibility. The obtained mDG has high zeta potential, narrow molecular weight distribution, better membrane-penetrating ability, high transfection efficiency, tumor cell targeting ability and high stability.

CONCLUSIONS

The synthesized polymer vector can deliver siRNA molecules into tumor cells and then reverse drug resistance by down regulation of P-glycoprotein mRNA expression.

摘要

背景

阳离子聚合物是最有效的小干扰 RNA(siRNA)载体的杰出代表。通过各种结构修饰,可以用这些阳离子聚合物获得低细胞毒性和 siRNA 保护作用。然而,它们的效率与治疗过程的要求之间仍然存在明显的差距。

方法

通过 N-(1,3-二羟基丙基)甲基丙烯酰胺(DHPMA)和 N-(3-氨丙基)甲基丙烯酰胺(APMA)的共聚合成了阳离子聚合物载体。

结果

APMA 提供了伯胺官能团,允许胍和甲硫氨酸基团的连接。由于 DHPMA 的羟基,合成的胍和甲硫氨酸接枝 DHPMA-b-APMA 嵌段共聚物(mDG)是水溶性的,具有良好的生物相容性。所得到的 mDG 具有高 ζ 电位、窄分子量分布、更好的膜穿透能力、高转染效率、肿瘤细胞靶向能力和高稳定性。

结论

合成的聚合物载体可以将 siRNA 分子递送入肿瘤细胞,然后通过下调 P-糖蛋白 mRNA 表达来逆转耐药性。

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