Zhao Luo, Niu Mengya, Ma Zilin, He Fengyun, Liu Xinxin, Gong Xunwei, Chai Zhanfei, Wang Ziqing, Feng Qianhua, Wang Lei
School of Pharmaceutical Sciences, Zhengzhou University, Zhengzhou 450001, China.
Henan Key Laboratory of Nanomedicine for Targeting Diagnosis and Treatment, Zhengzhou 450001, China.
Acta Pharm Sin B. 2025 May;15(5):2431-2453. doi: 10.1016/j.apsb.2025.03.021. Epub 2025 Mar 14.
Probiotics have shown excellent application prospects in preventing and treating many diseases. However, their sensitivity to the harsh environment always leads to a massive loss of viability and insufficient therapeutic effect. Fortunately, modified probiotics have emerged and provide multiple possibilities for their use in various diseases. Modification not only endows probiotics with extra capacity to resist severe environments but also gives them exogenous characteristics, such as prolonged retention time and improved therapeutic effects. Modified probiotics could combine with other therapies, which has opened up new avenues to enhance the efficacy of probiotic-based therapy. In this review, we have summarized the current physicochemical and biological modification strategies of probiotics. In addition, the progress of research on probiotic-based combination therapy has also been extensively reviewed, which contributes to the enhanced delivery of probiotics or other active constituents and provides new ideas for disease treatment, bioimaging, and diagnosis.
益生菌在预防和治疗多种疾病方面已展现出卓越的应用前景。然而,它们对恶劣环境的敏感性常常导致活力大量丧失,治疗效果欠佳。幸运的是,修饰益生菌应运而生,为其在各种疾病中的应用提供了多种可能性。修饰不仅赋予益生菌额外的抵抗恶劣环境的能力,还赋予它们一些外在特性,如延长停留时间和提高治疗效果。修饰益生菌可与其他疗法相结合,这为提高基于益生菌的治疗效果开辟了新途径。在本综述中,我们总结了目前益生菌的物理化学和生物学修饰策略。此外,基于益生菌的联合治疗的研究进展也得到了广泛综述,这有助于增强益生菌或其他活性成分的递送,并为疾病治疗、生物成像和诊断提供新思路。