植物提取的细胞外囊泡是癌症治疗的新领域

Nanomaterials Pub Date : 2024-08-08 DOI:10.3390/nano14161331
Lishan Cui, G. Perini, Valentina Palmieri, Marco De Spirito, M. Papi
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摘要

纳米医学和生物技术的最新进展揭示了植物源性细胞外囊泡(PDEVs)作为一种新型、有前途的癌症治疗方法的巨大潜力。这些天然生成的纳米级微粒具有优异的生物相容性、靶向递送能力和负载治疗药物的能力,使其成为创新癌症治疗策略的前沿。PDEV 具有独特的特性,可促进肿瘤靶向性和穿透性,从而提高给药系统的疗效。其固有的生物成分可规避免疫反应,使负载的治疗分子直接有效地输送到肿瘤部位。此外,PDEVs 还具有固有的抗癌特性,包括诱导细胞周期停滞和促进肿瘤细胞凋亡途径的能力。这些囊泡还具有抗转移作用,可抑制癌细胞的扩散和生长。PDEV 的多功能性使其可以同时输送多种治疗剂,从而进一步提高了其治疗潜力。封装以及通过电穿孔、超声和孵育等方法载入治疗剂等工程和改性技术使 PDEVs 得以定制,从而提高了其靶向效率和治疗载量。这包括进行表面修饰以提高对特定肿瘤标志物的亲和力,以及封装各种类型的治疗剂,如小分子药物、核酸和蛋白质。它们源于植物,为生产治疗囊泡提供了丰富且可再生的来源,降低了成本,有利于临床应用的可扩展性。本综述深入分析了将 PDEVs 作为新兴抗癌药物用于癌症治疗的最新研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Plant-Derived Extracellular Vesicles as a Novel Frontier in Cancer Therapeutics
Recent advancements in nanomedicine and biotechnology have unveiled the remarkable potential of plant-derived extracellular vesicles (PDEVs) as a novel and promising approach for cancer treatment. These naturally occurring nanoscale particles exhibit exceptional biocompatibility, targeted delivery capabilities, and the capacity to load therapeutic agents, positioning them at the forefront of innovative cancer therapy strategies. PDEVs are distinguished by their unique properties that facilitate tumor targeting and penetration, thereby enhancing the efficacy of drug delivery systems. Their intrinsic biological composition allows for the evasion of the immune response, enabling the efficient transport of loaded therapeutic molecules directly to tumor sites. Moreover, PDEVs possess inherent anti-cancer properties, including the ability to induce cell cycle arrest and promote apoptotic pathways within tumor cells. These vesicles have also demonstrated antimetastatic effects, inhibiting the spread and growth of cancer cells. The multifunctional nature of PDEVs allows for the simultaneous delivery of multiple therapeutic agents, further enhancing their therapeutic potential. Engineering and modification techniques, such as encapsulation, and the loading of therapeutic agents via electroporation, sonication, and incubation, have enabled the customization of PDEVs to improve their targeting efficiency and therapeutic load capacity. This includes surface modifications to increase affinity for specific tumor markers and the encapsulation of various types of therapeutic agents, such as small molecule drugs, nucleic acids, and proteins. Their plant-derived origin offers an abundant and renewable source to produce therapeutic vesicles, reducing costs and facilitating scalability for clinical applications. This review provides an in-depth analysis of the latest research on PDEVs as emerging anti-cancer agents in cancer therapy.
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