细菌细胞外囊泡:连接病原体生物学和治疗创新。

Zahra Salehi Moghaddam, Ashkan Dehghan, Saba Halimi, Fatemeh Najafi, Ali Nokhostin, Arya Eimagh Naeini, Iman Akbarzadeh, Qun Ren
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引用次数: 0

摘要

细菌细胞外囊泡(BEVs)的主要作用与细胞间通讯和宿主-病原体相互作用等多种过程有关。这篇全面的综述探讨了bev在不同生物学领域的多方面功能,强调了它们作为疾病贡献者和治疗可能性载体的多方面功能。我们研究了bev在细菌群落内和细菌与宿主之间的复杂相互作用,它们通过货物递送机制参与疾病发展,以及它们对微生物生态的有益影响。该综述重点强调了bev在生物医学科学中的应用,它们正在彻底改变疫苗开发、靶向药物输送和癌症治疗。通过利用bev的固有特性来控制药物释放,靶向抗原递送和免疫调节,它们为精准医疗提供了一个有前途的前沿。此外,bev的诊断潜力通过其生物标志物能力进行了探索,为疾病状态和治疗效果提供了有价值的见解。展望未来,本文强调了将BEV研究转化为临床实践,促进BEV表征和规模化生产中标准化方法的使用所面临的挑战和机遇。bev的各种能力,从促进病原体毒力到推动治疗创新,突显了它们作为未来生物医学进步基石的潜力。意义声明:细菌细胞外囊泡(BEVs)在发病机制和治疗创新中都扮演着关键角色。本文探讨了它们作为疾病媒介和生物医学应用中有前景的生物材料的双重性质,并全面综述了它们在疾病机制和微生物生态学中的作用,以及它们在疫苗开发、靶向药物递送、癌症治疗和诊断等生物医学应用中的潜力。它强调了bev在细菌群落内和细菌与宿主之间的复杂相互作用。本综述还讨论了将BEV研究转化为临床实践的当前进展、挑战和机遇。本文提出的见解将BEV定位为未来生物医学进步的基石,倡导BEV表征和可扩展生产技术的标准化方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bacterial Extracellular Vesicles: Bridging Pathogen Biology and Therapeutic Innovation.

The main role of bacterial extracellular vesicles (BEVs) has been associated with various processes such as intercellular communication and host-pathogen interactions. This comprehensive review explores the multifaceted functions of BEVs across different biological domains, emphasizing their dual nature as contributors to disease and potential vehicles for therapeutic intervention. We examine the intricate interactions of BEVs within bacterial communities and between bacteria and hosts, their involvement in disease development through cargo delivery mechanisms, and their beneficial impact on microbial ecology. The review also highlights BEVs' applications in biomedical field, where they are revolutionizing vaccine development, targeted drug delivery, and cancer therapy. By utilizing the inherent properties of BEVs for controlled drug release, targeted antigen delivery, and immune modulation, they offer a promising frontier in precision medicine. In addition, the diagnostic potential of BEVs is explored through their utility as biomarkers, providing valuable insights into disease states and treatment efficacy. Looking forward, this review underscores the challenges and opportunities in translating BEV research to clinical practice, promoting the need of standardized methods in BEV characterization and scaling up production. The diverse abilities of BEVs, ranging from contributing to pathogen virulence to driving therapeutic innovation, highlight their potential as a cornerstone in the future of biomedical advancements. STATEMENT OF SIGNIFICANCE: Bacterial extracellular vesicles (BEVs) are emerging as pivotal players in both pathogenesis and therapeutic innovation. This review explores their dual nature as agents of disease and as promising biomaterials for biomedical applications, and provides a comprehensive survey on their involvement in disease mechanisms and microbial ecology, and their potential in biomedical applications such as vaccine development, targeted drug delivery, cancer therapy, and diagnosis. It highlights the complex interactions of BEVs within bacterial communities and between bacteria and hosts. This review also addresses current advancements, challenges, and opportunities in translating BEV research into clinical practice. The insights presented here position BEVs as a cornerstone in the future of biomedical advancements, advocating for standardized methods in BEV characterization and scalable production techniques.

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