Nazir Asiya, Hussain Fathima Hasnain Nadeem, Nadeem Hussain Tuahir Hassan, Al Dweik Rania, Raza Afsheen
Department of Biomedical Sciences, College of Health Sciences, Abu Dhabi University, Abu Dhabi, United Arab Emirates.
College of Medicine and Health Sciences, Khalifa University, Abu Dhabi, United Arab Emirates.
Front Immunol. 2025 Apr 29;16:1570233. doi: 10.3389/fimmu.2025.1570233. eCollection 2025.
The human body functions as a complex ecosystem, hosting trillions of microbes that collectively form the microbiome, pivotal in immune system regulation. The host-microbe immunological axis maintains homeostasis and influences key physiological processes, including metabolism, epithelial integrity, and neural function. Recent advancements in microbiome-based therapeutics, including probiotics, prebiotics and fecal microbiota transplantation, offer promising strategies for immune modulation. Microbial therapies leveraging microbial metabolites and engineered bacterial consortia are emerging as novel therapeutic strategies. However, significant challenges remain, including individual microbiome variability, the complexity of host-microbe interactions, and the need for precise mechanistic insights. This review comprehensively examines the host microbiota immunological interactions, elucidating its mechanisms, therapeutic potential, and the future directions of microbiome-based immunomodulation in human health. It will also critically evaluate challenges, limitations, and future directions for microbiome-based precision medicine.
人体如同一个复杂的生态系统,容纳着数万亿微生物,它们共同构成了微生物组,在免疫系统调节中起着关键作用。宿主 - 微生物免疫轴维持着体内平衡,并影响包括新陈代谢、上皮完整性和神经功能在内的关键生理过程。基于微生物组的治疗方法,包括益生菌、益生元及粪便微生物群移植等方面的最新进展,为免疫调节提供了有前景的策略。利用微生物代谢产物和工程化细菌群落的微生物疗法正成为新的治疗策略。然而,重大挑战依然存在,包括个体微生物组的变异性、宿主 - 微生物相互作用的复杂性以及对精确作用机制深入了解的需求。本综述全面审视了宿主微生物群的免疫相互作用,阐明其机制、治疗潜力以及基于微生物组的免疫调节在人类健康中的未来方向。它还将批判性地评估基于微生物组的精准医学面临的挑战、局限性及未来方向。