Microbiome-to-Therapy Translational Pathways: New Frontiers in Gut-Targeted Medicine

Authors

  • S Thillaikharasee Department of Pharmaceutics, The Erode College of Pharmacy, Veppampalayam, Erode- 638112 Author
  • S Radhakrishnan Department of Pharmaceutics, The Erode College of Pharmacy, Veppampalayam, Erode- 638112 Author
  • C Kannan Department of Pharmaceutics, The Erode College of Pharmacy, Veppampalayam, Erode- 638112 Author
  • R Sambathkumar Department of Pharmaceutics, The Erode College of Pharmacy, Veppampalayam, Erode- 638112 Author

DOI:

https://doi.org/10.33974/bzgve378

Keywords:

Gut Microbiome, Therapeutics, Personalized Medicine, Dysbiosis, Innovation

Abstract

Recent investigations into the human gut microbiome have substantially deepened our knowledge of microbial colonization, maturation, and dysbiosis across health and disease. The gut microbiota’s extensive metabolic repertoire and its central role in regulating host physiology make it an attractive target for novel therapeutics. Microbiome-based interventions seek to reshape the gut ecosystem via additive, subtractive, or modulatory approaches, employing native or engineered microbes, antibiotics, bacteriophages, and bacteriocins. These strategies present innovative alternatives to conventional treatments by enabling personalized, integrative, and potentially more sustainable care. Although the healthcare sector increasingly recognizes the therapeutic and economic promise of microbiome-based therapies, most candidates remain in early development and confront substantial technical, regulatory, and translational hurdles. This review surveys the current landscape of microbiome therapeutics, emphasizing clinical applications, development status, and future directions for integrating the microbiome into modern medicine.

Downloads

Download data is not yet available.

Published

07-08-2026

How to Cite

Microbiome-to-Therapy Translational Pathways: New Frontiers in Gut-Targeted Medicine. (2026). International Journal of Research in Pharmaceutical Sciences and Technology, 9(3). https://doi.org/10.33974/bzgve378

Most read articles by the same author(s)

Similar Articles

11-20 of 87

You may also start an advanced similarity search for this article.