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一种用于递送纳米颗粒和STING激动剂的纯生物制造系统。

A Purely Biomanufactured System for Delivering Nanoparticles and STING Agonists.

作者信息

Li Yu-An, Feng Yi, Li Wenjing, Zhang Yuqin, Sun Yanni, Wang Shifeng, Curtiss Roy, Shi Huoying

机构信息

College of Veterinary Medicine, Yangzhou University, Yangzhou, Jiangsu, 225009, China.

Jiangsu Co-innovation Center for the Prevention and Control of Important Animal Infectious Diseases and Zoonoses, Yangzhou, China.

出版信息

Adv Sci (Weinh). 2025 Jan;12(3):e2408539. doi: 10.1002/advs.202408539. Epub 2024 Nov 26.

Abstract

Nanovaccines have significantly contributed in the prevention and treatment of diseases. However, most of these technologies rely on chemical or hybrid semibiological synthesis methods, which limit the manufacturing performance advantages and improved inoculation outcomes compared with traditional vaccines. Herein, a universal and purely biological nanovaccine system is reported. This system integrates three modules: (1) self-assembling nanoparticles, (2) self-catalyzed synthesis of small-molecule stimulator of interferon gene (STING) agonists, and (3) delivery vectors that target the cytosolic surveillance system. Various nanoparticles are efficiently self-assembled using this system. After confirming the excellent immunostimulatory and lymph node targeting of this system, its broad-spectrum antiviral efficacy is further demonstrated. By leveraging the comprehensive biosynthetic capabilities of bacterial cells, this system can efficiently combine various adjuvant-active modular components and antigenic cargo, thereby providing a highly diversified and potent vaccine platform.

摘要

纳米疫苗在疾病的预防和治疗方面做出了重大贡献。然而,这些技术大多依赖化学或混合半生物合成方法,与传统疫苗相比,这限制了其生产性能优势和接种效果的提升。在此,报道了一种通用的纯生物纳米疫苗系统。该系统整合了三个模块:(1)自组装纳米颗粒,(2)干扰素基因刺激物(STING)激动剂小分子的自催化合成,以及(3)靶向胞质监测系统的递送载体。利用该系统可高效自组装各种纳米颗粒。在确认该系统具有出色的免疫刺激和淋巴结靶向性后,进一步证明了其广谱抗病毒功效。通过利用细菌细胞的综合生物合成能力,该系统能够有效地将各种具有佐剂活性的模块化组件和抗原性物质结合起来,从而提供一个高度多样化且高效的疫苗平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42e9/11744655/2ac7cab36686/ADVS-12-2408539-g007.jpg

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