Artificially engineered vesicular vehicles for targeted therapy

Zhigang Wang , Yufei Yan , Rui Li, Ying Zhu, Gen Yang
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Abstract

Vesicular vehicles have been one of the most potential platforms for therapeutic delivery. Here, we commentate on recent advances in the development of therapeutic vesicular delivery platforms, emphasizing two intriguing works, namely, the chimeric nanobody-decorated immunoliposomes (Wan et al.) and the retrovirus-like capsids incorporated extracellular vesicles (Jiang et al.). In the work of Wan et al., the researchers proposed a novel strategy for antitumor immunoliposome construction by the one-step self-assembly of lipids with rationally designed chimeric nanobody that comprises a nanobody against human epidermal growth factor receptor 2, a flexible peptide linker, and a human single transmembrane domain. By leveraging the natural cell systems (e.g., E coli.) to synthesize the chimeric nanobody, this technique provides a facile and robust strategy for producing immunoliposome platforms, ensuring suitability for industrial manufacturing and distribution, regulatory compliance, and clinical use. In the work of Jiang et al., taking advantage of the natural extracellular vesicle biogenesis system, the researchers introduced the activity-regulated cytoskeleton-associated protein inside the vesicle lumen and thus constructed endogenous retrovirus-like vesicles for mRNA drug delivery to neurons. This technique offers a significative strategy for developing sophisticated delivery platforms, manifesting broad application potential for different disease therapeutics. Overall, these two works have represented two typical paradigms for the artificial construction of vesicular vesicles. Considering their complementary merits, in the future, the integration of artificial engineering technologies and natural biosynthesis systems is anticipated to be a promising strategy to expedite the development of potent delivery systems.

用于靶向治疗的人工设计囊泡载体
囊泡载体一直是最具潜力的治疗递送平台之一。在此,我们将对治疗性囊泡递送平台的最新进展进行评述,并着重介绍两项引人入胜的研究成果,即嵌合纳米抗体装饰的免疫脂质体(Wan 等人)和包含细胞外囊泡的逆转录病毒样囊壳(Jiang 等人)。在 Wan 等人的研究中,研究人员提出了一种新的抗肿瘤免疫脂质体构建策略,即用合理设计的嵌合纳米抗体一步自组装脂质,嵌合纳米抗体包括一个针对人表皮生长因子受体 2 的纳米抗体、一个灵活的肽连接体和一个人单跨膜结构域。通过利用天然细胞系统(如大肠杆菌)合成嵌合纳米抗体,该技术为生产免疫脂质体平台提供了一种简便而稳健的策略,确保其适用于工业生产和分销、符合法规要求和临床使用。在 Jiang 等人的研究中,研究人员利用天然细胞外囊泡生物生成系统,在囊泡腔内引入了活性调控细胞骨架相关蛋白,从而构建了内源性逆转录病毒样囊泡,用于向神经元递送 mRNA 药物。这项技术为开发复杂的递送平台提供了重要策略,在不同疾病治疗方面具有广泛的应用潜力。总之,这两项工作代表了人工构建囊泡的两个典型范例。考虑到它们的互补性,未来,人工工程技术与天然生物合成系统的整合有望成为加速开发强效递送系统的一种有前途的策略。
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来源期刊
Extracellular vesicle
Extracellular vesicle Biochemistry, Genetics and Molecular Biology (General)
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