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通过引入人工膜受体抑制外泌体通讯治疗转移性胰腺癌。

Curbing Exosome Communications via Introducing Artificial Membrane Receptors for Metastatic Pancreatic Cancer Therapy.

机构信息

Key Laboratory of Drug-Targeting and Drug Delivery System of the Education Ministry and Sichuan Province, Sichuan Engineering Laboratory for Plant-Sourced Drug and Sichuan Research Center for Drug Precision Industrial Technology, West China School of Pharmacy, Sichuan University, Chengdu, 610041, P. R. China.

Department of Medical Biochemistry and Biophysics, Karolinska Institutet, Stockholm, SE-17177, Sweden.

出版信息

Adv Mater. 2023 Sep;35(39):e2303736. doi: 10.1002/adma.202303736. Epub 2023 Aug 7.

Abstract

Tumor-derived exosomes (TDEs) carry various biomolecular cargos and play crucial roles in metastasis. TDEs migrate to distal organs for intercellular communication and induce the formation of pre-metastatic niches (PMNs) to support tumor implantation and proliferation. Precise interference in the bioprocess of TDEs is expected to be efficacious for suppressing tumor metastasis. However, targeting both TDEs and the primary tumor is challenging. Here, based on metabolic glycoengineering and bio-orthogonal click chemistry, a two-step delivery strategy is designed to overcome this. During the first step, the tetraacetylated N-azidoacetyl-d-mannosamine-loaded nanoparticle responds to the metabolic activity of tumor cells in the primary tumor, tagging both tumor cells and TDEs with azide groups; dibenzyl-cyclootyne-modified nanoparticles then can, as the second step, specifically react with tumor cells and TDEs through a bio-orthogonal click reaction. This strategy not only inhibits tumor growth in pancreatic cancer models but also curbs the communicative role of TDEs in inducing liver PMNs and metastasis by tracking and downregulating the exosomal macrophage migration inhibitory factor.

摘要

肿瘤来源的外泌体(TDEs)携带各种生物分子货物,并在转移中发挥关键作用。TDEs 迁移到远端器官进行细胞间通讯,并诱导形成预先转移的小生境(PMN),以支持肿瘤植入和增殖。精确干扰 TDEs 的生物过程有望有效抑制肿瘤转移。然而,靶向 TDEs 和原发肿瘤具有挑战性。在这里,基于代谢糖基工程和生物正交点击化学,设计了一种两步递药策略来克服这一挑战。在第一步中,负载四乙酰化 N-叠氮乙酰基-D-甘露糖胺的纳米颗粒响应原发肿瘤中肿瘤细胞的代谢活性,用叠氮基团标记肿瘤细胞和 TDEs;然后,二苄基环辛炔修饰的纳米颗粒可以作为第二步,通过生物正交点击反应特异性地与肿瘤细胞和 TDEs 反应。该策略不仅抑制了胰腺癌模型中的肿瘤生长,还通过跟踪和下调外泌体巨噬细胞迁移抑制因子来抑制 TDEs 在诱导肝 PMN 和转移中的通讯作用。

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