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巨噬细胞膜包被的纳米囊泡用于双靶向药物递送以抑制肿瘤并诱导巨噬细胞极化

英文原题:Macrophage membrane-coated nanovesicles for dual-targeted drug delivery to inhibit tumor and induce macrophage polarization.

查看英文原题

Macrophage membrane-coated nanovesicles for dual-targeted drug delivery to inhibit tumor and induce macrophage polarization.

PubMed 2022/11/09(内容时间) Bioact Mater Q1 · IF 23.6(JCR 2025)

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研究概要

本研究预期实现肿瘤抑制与巨噬细胞极化的双重目的,并为肿瘤提供一种新的治疗策略。

研究思路结论见上方概要

肿瘤微环境(TME)中的免疫抑制性M2巨噬细胞可介导肿瘤的治疗耐药性,并严重影响肿瘤患者的临床疗效和预后。本研究旨在开发一种新型药物递送系统,用于双重靶向肿瘤和巨噬细胞,以抑制肿瘤并诱导巨噬细胞极化。

本研究在体外和体内探讨了甲基转移酶样14(METTL14)的抗肿瘤作用。本研究还探索了METTL14调控巨噬细胞的潜在机制。我们进一步构建了环(Arg-Gly-Asp)(cRGD)肽修饰的巨噬细胞膜包被纳米囊泡,以共递送METTL14和TLR4激动剂。

我们发现METTL14在体外显著抑制肿瘤生长。METTL14可能下调TICAM2并抑制巨噬细胞的Toll样受体4(TLR4)通路,同时,METTL14与TLR4激动剂联合可诱导巨噬细胞M1极化。巨噬细胞膜包被的纳米囊泡具有易于修饰、载药以及双重靶向肿瘤和巨噬细胞的特点,而cRGD修饰可进一步增强其靶向能力。研究表明,该纳米囊泡可提高METTL14的体内稳定性,并双重靶向肿瘤和巨噬细胞以抑制肿瘤并诱导巨噬细胞M1极化。

展开英文摘要原文

Immunosuppressive M2 macrophages in the tumor microenvironment (TME) can mediate the therapeutic resistance of tumors, and seriously affect the clinical efficacy and prognosis of tumor patients. This study aims to develop a novel drug delivery system for dual-targeting tumor and macrophages to inhibit tumor and induce macrophage polarization.

The anti-tumor effects of methyltransferase like 14 (METTL14) were investigated both in vitro and in vivo. The underlying mechanisms of METTL14 regulating macrophages were also explored in this study. We further constructed the cyclic (Arg-Gly-Asp) (cRGD) peptide modified macrophage membrane-coated nanovesicles to co-deliver METTL14 and the TLR4 agonist.

We found that METTL14 significantly inhibits the growth of tumor in vitro. METTL14 might downregulate TICAM2 and inhibit the Toll-like receptor 4 (TLR4) pathway of macrophages, meanwhile, the combination of METTL14 and the TLR4 agonist could induce M1 polarization of macrophages. Macrophage membrane-coated nanovesicles are characterized by easy modification, drug loading, and dual-targeting tumor and macrophages, and cRGD modification can further enhance its targeting ability. It showed that the nanovesicles could improve the in vivo stability of METTL14, and dual-target tumor and macrophages to inhibit tumor and induce M1 polarization of macrophages.

This study anticipates achieving the dual purposes of tumor inhibition and macrophage polarization, and providing a new therapeutic strategy for tumors.

论文信息

作者
Huang X、Wang L、Guo H、Zhang W
第一作者单位
Department of Orthopaedics, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430022, China.China
通讯作者单位
Department of Endocrinology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430022, China.China
期刊
Bioactive materials2023 May
原文标识
PubMed 36406251 · DOI 10.1016/j.bioactmat.2022.09.027