Chen Haojie, Lei Pengyu, Ji Hao, Yang Qinsi, Peng Bo, Ma Jiahui, Fang Yimeng, Qu Linkai, Li Hua, Wu Wei, Jin Libo, Sun Da
Institute of Life Sciences & Biomedical Collaborative Innovation Center of Zhejiang Province, Wenzhou University, Wenzhou, 325035, China.
Wenzhou Institute, University of Chinese Academy of Sciences, Wenzhou, 325000, China.
Mater Today Bio. 2023 Jan 6;18:100543. doi: 10.1016/j.mtbio.2023.100543. eCollection 2023 Feb.
With the in-depth and comprehensive study of bacteria and their related ecosystems in the human body, bacterial-based drug delivery system has become an emerging biomimetic platform that can retain the innate biological functions. Benefiting from its good biocompatibility and ideal targeting ability as a biological carrier, Nissle 1917 (ECN) has been focused on the treatment strategies of inflammatory bowel disease and tumor. The advantage of a bacterial carrier is that it can express exogenous protein while also acting as a natural capsule by releasing drug slowly as a result of its own colonization impact. In order to survive in harsh environments such as the digestive tract and tumor microenvironment, ECN can be modified or genetically engineered to enhance its function and host adaptability. The adoption of ECN carries or expresses drugs which are essential for accurate diagnosis and treatment. This review briefly describes the properties of ECN, the relationship between ECN and inflammation and tumor, and the strategy of using surface modification and genetic engineering to modify ECN as a delivery carrier for disease treatment.
随着对人体细菌及其相关生态系统的深入全面研究,基于细菌的药物递送系统已成为一个能够保留固有生物学功能的新兴仿生平台。作为一种生物载体,Nissle 1917(大肠杆菌Nissle 1917株,ECN)因其良好的生物相容性和理想的靶向能力,一直被用于炎症性肠病和肿瘤的治疗策略研究。细菌载体的优势在于它能够表达外源蛋白,同时由于自身的定植作用缓慢释放药物,还能起到天然胶囊的作用。为了在消化道和肿瘤微环境等恶劣环境中生存,ECN可以通过修饰或基因工程改造来增强其功能和宿主适应性。采用ECN携带或表达对准确诊断和治疗至关重要的药物。本文综述简要介绍了ECN的特性、ECN与炎症和肿瘤的关系,以及利用表面修饰和基因工程改造ECN作为疾病治疗递送载体的策略。