Aug 2026· Gut microbes· Vol 18· 0 citations· 78 references
Medicine
TL;DR
This review established strict boundaries between SynComs and traditional donor-derived preparations, comparatively evaluating “top-down” and “bottom-up” construction strategies, and explored the mechanisms underlying the SynComs-mediated synergistic restoration of intestinal homeostasis via direct targeted antagonism and modulation of the host immune network.
Abstract
ABSTRACT Gut microbiome dysbiosis causes various intestinal diseases. However, an undefined composition and potential biosafety risks limit the applicability of traditional fecal microbiota transplantation (FMT). Synthetic microbial communities (SynComs), which are compositionally defined and rationally designed emerging live biotherapeutics, offer a novel alternative to FMT. This review establishes strict boundaries between SynComs and traditional donor-derived preparations, comparatively evaluating “top-down” and “bottom-up” construction strategies. We explored the mechanisms underlying the SynComs-mediated synergistic restoration of intestinal homeostasis via direct targeted antagonism and modulation of the host immune network. Moreover, we systematically evaluated the current research landscape of SynComs in Clostridioides difficile infection, inflammatory bowel disease, and colorectal cancer. This review examines fundamental challenges, including host colonization resistance, chemistry, manufacturing, and control barriers, biosafety risks, and microbiokinetic regulatory frameworks, thereby addressing the translational gap. Our analysis of current literature provides a theoretical basis for the clinical translation of SynComs as emerging live biotherapeutics.
Abstract Microbiome-based therapeutics have rapidly evolved into a transformative field at the intersection of infectious diseases, microbial ecology, and precision medicine. Clostridioides difficile infection (CDI) represents the most extensively studied model, providing a framework for understanding microbiome-driven...
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Broad-spectrum antibiotics remain the default response to enteric dysbiosis and opportunistic pathobionts such as Clostridioides difficile, yet their collateral destru Opri?anuction of protective commensals perpetuates a cycle of relapse and antimicrobial resistance. Over the past decade, the field has begun to move aw...
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