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Exploring Therapeutic Advances: A Comprehensive Review of Intestinal Microbiota Modulators.

作者信息

Pires Lara, González-Paramás Ana M, Heleno Sandrina A, Calhelha Ricardo C

机构信息

Centro de Investigação de Montanha (CIMO), Instituto Politécnico de Bragança, Campus de Santa Apolónia, 5300-253 Bragança, Portugal.

Laboratório Associado para Sustentabilidade e Tecnologia em Regiões de Montanha (SusTEC), Instituto Politécnico de Bragança, Campus de Santa Apolónia, 5300-253 Bragança, Portugal.

出版信息

Antibiotics (Basel). 2024 Aug 1;13(8):720. doi: 10.3390/antibiotics13080720.


DOI:10.3390/antibiotics13080720
PMID:39200020
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11350912/
Abstract

The gut microbiota establishes a mutually beneficial relationship with the host starting from birth, impacting diverse metabolic and immunological processes. Dysbiosis, characterized by an imbalance of microorganisms, is linked to numerous medical conditions, including gastrointestinal disorders, cardiovascular diseases, and autoimmune disorders. This imbalance promotes the proliferation of toxin-producing bacteria, disrupts the host's equilibrium, and initiates inflammation. Genetic factors, dietary choices, and drug use can modify the gut microbiota. However, there is optimism. Several therapeutic approaches, such as probiotics, prebiotics, synbiotics, postbiotics, microbe-derived products, and microbial substrates, aim to alter the microbiome. This review thoroughly explores the therapeutic potential of these microbiota modulators, analysing recent studies to evaluate their efficacy and limitations. It underscores the promise of microbiota-based therapies for treating dysbiosis-related conditions. This article aims to ensure practitioners feel well-informed and up to date on the most influential methods in this evolving field by providing a comprehensive review of current research.

摘要
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e07/11350912/477931d7f5f3/antibiotics-13-00720-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e07/11350912/75186d04af2d/antibiotics-13-00720-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e07/11350912/667a5e95edf6/antibiotics-13-00720-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e07/11350912/477931d7f5f3/antibiotics-13-00720-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e07/11350912/75186d04af2d/antibiotics-13-00720-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e07/11350912/667a5e95edf6/antibiotics-13-00720-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e07/11350912/477931d7f5f3/antibiotics-13-00720-g003.jpg

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[5]
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本文引用的文献

[1]
The Role of Gut Microbiota in the Etiopathogenesis of Multiple Chronic Diseases.

Antibiotics (Basel). 2024-4-25

[2]
Role of Probiotics and Prebiotics in Gut Symbiosis.

Nutrients. 2024-1-12

[3]
Probiotics, prebiotics, and postbiotics in health and disease.

MedComm (2020). 2023-11-4

[4]
The Potential of Xylooligosaccharides as Prebiotics and Their Sustainable Production from Agro-Industrial by-Products.

Foods. 2023-7-12

[5]
Dietary tryptophan metabolite released by intratumoral Lactobacillus reuteri facilitates immune checkpoint inhibitor treatment.

Cell. 2023-4-27

[6]
Exploring the potential impact of probiotic use on drug metabolism and efficacy.

Biomed Pharmacother. 2023-5

[7]
Beneficial Effects of in the DCA Experimental Model of Irritable Bowel Syndrome in Rats.

Nutrients. 2022-12-21

[8]
Design of a self-driven probiotic-CRISPR/Cas9 nanosystem for sono-immunometabolic cancer therapy.

Nat Commun. 2022-12-22

[9]
Postbiotics: Current Trends in Food and Pharmaceutical Industry.

Foods. 2022-10-5

[10]
The clinical evidence for postbiotics as microbial therapeutics.

Gut Microbes. 2022

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