Shanghai Tenth People's Hospital, Tongji University School of Medicine, 500 Zhen-Nan Road, Shanghai, 200311, China.
Department of Zoology, Utkal University, Bhubaneswar, 751004, India.
Drug Deliv Transl Res. 2024 Apr;14(4):934-944. doi: 10.1007/s13346-023-01442-4. Epub 2023 Oct 10.
Extracellular vesicles (EVs) show promising potential to be used as therapeutics, disease biomarkers, and drug delivery vehicles. We aimed to modify EVs with miR-155 to modulate macrophage immune response that can be potentially used against infectious diseases. Primarily, we characterized T cells (EL-4) EVs by several standardized techniques and confirmed that the EVs could be used for experimental approaches. The bioactivities of the isolated EVs were confirmed by the uptake assessment, and the results showed that target cells can successfully uptake EVs. To standardize the loading protocol by electroporation for effective biological functionality, we chose fluorescently labelled miR-155 mimics because of its important roles in the immune regulations to upload them into EVs. The loading procedure showed that the dosage of 1 µg of miRNA mimics can be efficiently loaded to the EVs at 100 V, further confirmed by flow cytometry. The functional assay by incubating these modified EVs (mEVs) with in vitro cultured cells led to an increased abundance of miR-155 and decreased the expressions of its target genes such as TSHZ3, Jarid2, ZFP652, and WWC1. Further evaluation indicated that these mEVs induced M1-type macrophage polarization with increased TNF-α, IL-6, IL-1β, and iNOS expression. The bioavailability analysis revealed that mEVs could be detected in tissues of the livers. Overall, our study demonstrated that EVs can be engineered with miR-155 of interest to modulate the immune response that may have implications against infectious diseases.
细胞外囊泡 (EVs) 在作为治疗药物、疾病生物标志物和药物递送载体方面显示出有前景的潜力。我们旨在通过修饰 EVs 上的 miR-155 来调节巨噬细胞免疫反应,这可能在对抗传染病方面具有潜在用途。首先,我们通过几种标准化技术对 T 细胞 (EL-4) EVs 进行了表征,并确认 EVs 可用于实验方法。通过摄取评估确认了分离的 EVs 的生物活性,结果表明靶细胞可以成功摄取 EVs。为了通过电穿孔标准化负载方案以实现有效的生物学功能,我们选择了荧光标记的 miR-155 模拟物,因为它在免疫调节中具有重要作用,可将其上传到 EVs 中。负载程序表明,在 100V 下可以将 1μg 的 miRNA 模拟物有效地加载到 EVs 中,进一步通过流式细胞术进行了确认。通过将这些修饰的 EVs (mEVs) 与体外培养的细胞孵育进行功能测定,导致 miR-155 的丰度增加,并且其靶基因如 TSHZ3、Jarid2、ZFP652 和 WWC1 的表达减少。进一步的评估表明,这些 mEVs 诱导了 M1 型巨噬细胞极化,增加了 TNF-α、IL-6、IL-1β 和 iNOS 的表达。生物利用度分析表明,mEVs 可以在肝脏组织中检测到。总体而言,我们的研究表明,可以通过修饰 EVs 上的感兴趣的 miR-155 来调节免疫反应,这可能对对抗传染病具有意义。