CD81 引导的异源 EV 与乳腺癌细胞之间存在异质性相互作用。

IF 9 2区 医学 Q1 CELL BIOLOGY
Elena Gurrieri, Giulia Carradori, Michela Roccuzzo, Michael Pancher, Daniele Peroni, Romina Belli, Caterina Trevisan, Michela Notarangelo, Wen-Qiu Huang, Agata S A Carreira, Alessandro Quattrone, Guido Jenster, Timo L M Ten Hagen, Vito Giuseppe D'Agostino
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引用次数: 0

摘要

背景:细胞外囊泡 (EV) 是细胞分泌的颗粒,是细胞间通信的天然载体。通过对 EV 进行功能化处理,可以捕获异质分子货物并靶向特定细胞群,有望推动生物医学应用的发展。然而,获得的 EVs 的效率、细胞暴露受体对 EV 相互作用的贡献,以及功能性货物释放的可预测性与高分子量重组 mRNAs 的潜在共享,对于推进异源 EVs 在靶向治疗中的应用至关重要:在这项工作中,我们选择了流行的EV标记物CD81作为融合蛋白的跨膜导向,其C端GFP报告物包含或不包含靶向HER2受体的曲妥珠单抗轻链。我们进行了高含量成像分析,以跟踪 EV 与细胞的相互作用,包括 HER2 表达受控的同源乳腺癌细胞。我们验证了携带多柔比星的重组 EV 在 EV 供体细胞处理后的功能性货物运输。然后,我们使用常用作 HER2 难治性、曲妥珠单抗耐药模型的 JIMT-1 细胞进行了体内研究,在移植的肿瘤中检测到长度超过 2000 nt 的重组 mRNA:结果:融合蛋白参与了囊泡转运动力学,并根据其在 HEK293T 细胞中的表达水平在分泌型 EV 上积累。尽管存在 GFP,但分泌型 EV 群体仍具有 HER2 受体结合能力,并可用于追踪 EV 细胞间的相互作用。在HER2阳性(SK-BR-3)或阴性(MDA-MB-231)乳腺癌细胞系之间,EV的总体分布没有发生变化,在这种情况下,异源细胞中的HER2暴露明显影响了异源EV的趋向性,这证明了抗HER2 EV的特异性,EV约占大量分泌囊泡的20%。这种特异性相互作用与多柔比星-EVs 在异位表达 HER2 的 MDA-MB-231 中细胞杀伤活性的提高以及在 HER2 受体被敲除的 SK-BR-3 中毒性的降低密切相关,从而克服了游离药物的作用。有趣的是,重组EV中以全长mRNA形式存在的融合蛋白对应转录本可以到达JIMT-1异种移植小鼠的正位乳腺肿瘤,提高了我们在组织活检中检测穿透性货物的灵敏度:这项研究强调了创建分泌型异源 EV 平台的定量基础,并显示了 EV 细胞啮合机制背后单一受体-配体相互作用的局限性,现在这已成为预测功能趋向性和设计新一代基于 EV 的纳米载体的关键步骤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CD81-guided heterologous EVs present heterogeneous interactions with breast cancer cells.

Background: Extracellular vesicles (EVs) are cell-secreted particles conceived as natural vehicles for intercellular communication. The capacity to entrap heterogeneous molecular cargoes and target specific cell populations through EV functionalization promises advancements in biomedical applications. However, the efficiency of the obtained EVs, the contribution of cell-exposed receptors to EV interactions, and the predictability of functional cargo release with potential sharing of high molecular weight recombinant mRNAs are crucial for advancing heterologous EVs in targeted therapy applications.

Methods: In this work, we selected the popular EV marker CD81 as a transmembrane guide for fusion proteins with a C-terminal GFP reporter encompassing or not Trastuzumab light chains targeting the HER2 receptor. We performed high-content imaging analyses to track EV-cell interactions, including isogenic breast cancer cells with manipulated HER2 expression. We validated the functional cargo delivery of recombinant EVs carrying doxorubicin upon EV-donor cell treatment. Then, we performed an in vivo study using JIMT-1 cells commonly used as HER2-refractory, trastuzumab-resistant model to detect a more than 2000 nt length recombinant mRNA in engrafted tumors.

Results: Fusion proteins participated in vesicular trafficking dynamics and accumulated on secreted EVs according to their expression levels in HEK293T cells. Despite the presence of GFP, secreted EV populations retained a HER2 receptor-binding capacity and were used to track EV-cell interactions. In time-frames where the global EV distribution did not change between HER2-positive (SK-BR-3) or -negative (MDA-MB-231) breast cancer cell lines, the HER2 exposure in isogenic cells remarkably affected the tropism of heterologous EVs, demonstrating the specificity of antiHER2 EVs representing about 20% of secreted bulk vesicles. The specific interaction strongly correlated with improved cell-killing activity of doxorubicin-EVs in MDA-MB-231 ectopically expressing HER2 and reduced toxicity in SK-BR-3 with a knocked-out HER2 receptor, overcoming the effects of the free drug. Interestingly, the fusion protein-corresponding transcripts present as full-length mRNAs in recombinant EVs could reach orthotopic breast tumors in JIMT-1-xenografted mice, improving our sensitivity in detecting penetrant cargoes in tissue biopsies.

Conclusions: This study highlights the quantitative aspects underlying the creation of a platform for secreted heterologous EVs and shows the limits of single receptor-ligand interactions behind EV-cell engagement mechanisms, which now become the pivotal step to predict functional tropism and design new generations of EV-based nanovehicles.

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来源期刊
Journal of Biomedical Science
Journal of Biomedical Science 医学-医学:研究与实验
CiteScore
18.50
自引率
0.90%
发文量
95
审稿时长
1 months
期刊介绍: The Journal of Biomedical Science is an open access, peer-reviewed journal that focuses on fundamental and molecular aspects of basic medical sciences. It emphasizes molecular studies of biomedical problems and mechanisms. The National Science and Technology Council (NSTC), Taiwan supports the journal and covers the publication costs for accepted articles. The journal aims to provide an international platform for interdisciplinary discussions and contribute to the advancement of medicine. It benefits both readers and authors by accelerating the dissemination of research information and providing maximum access to scholarly communication. All articles published in the Journal of Biomedical Science are included in various databases such as Biological Abstracts, BIOSIS, CABI, CAS, Citebase, Current contents, DOAJ, Embase, EmBiology, and Global Health, among others.
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