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Microbiome’s role in musculoskeletal health through the gut-bone axis insights

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Microbiome’s role in musculoskeletal health through the gut-bone axis insights. / Li, Zhengrui; Wang, Qi; Huang, Xufeng et al.
In: Gut Microbes, Vol. 16, No. 1, 2410478, 31.12.2024.

Research output: Contribution to Journal/MagazineReview articlepeer-review

Harvard

Li, Z, Wang, Q, Huang, X, Wu, Y & Shan, D 2024, 'Microbiome’s role in musculoskeletal health through the gut-bone axis insights', Gut Microbes, vol. 16, no. 1, 2410478. https://doi.org/10.1080/19490976.2024.2410478

APA

Li, Z., Wang, Q., Huang, X., Wu, Y., & Shan, D. (2024). Microbiome’s role in musculoskeletal health through the gut-bone axis insights. Gut Microbes, 16(1), Article 2410478. https://doi.org/10.1080/19490976.2024.2410478

Vancouver

Li Z, Wang Q, Huang X, Wu Y, Shan D. Microbiome’s role in musculoskeletal health through the gut-bone axis insights. Gut Microbes. 2024 Dec 31;16(1):2410478. Epub 2024 Oct 10. doi: 10.1080/19490976.2024.2410478

Author

Li, Zhengrui ; Wang, Qi ; Huang, Xufeng et al. / Microbiome’s role in musculoskeletal health through the gut-bone axis insights. In: Gut Microbes. 2024 ; Vol. 16, No. 1.

Bibtex

@article{0f9bd324db81438fa472768d1aeeb697,
title = "Microbiome{\textquoteright}s role in musculoskeletal health through the gut-bone axis insights",
abstract = "The interplay between the human microbiome and the musculoskeletal system represents a burgeoning field of research with profound implications for understanding and treating musculoskeletal disorders. This review articulates the pivotal role of the microbiome in modulating bone health, highlighting the gut-bone axis as a critical nexus for potential therapeutic intervention. Through a meticulous analysis of recent clinical research, we underscore the microbiome{\textquoteright}s influence on osteoporosis, sarcopenia, osteoarthritis, and rheumatoid arthritis, delineating both the direct and indirect mechanisms by which microbiota could impact musculoskeletal integrity and function. Our investigation reveals novel insights into the microbiota{\textquoteright}s contribution to bone density regulation, hormone production, immune modulation, and nutrient absorption, laying the groundwork for innovative microbiome-based strategies in musculoskeletal disease management. Significantly, we identify the challenges hindering the translation of research into clinical practice, including the limitations of current microbial sequencing techniques and the need for standardized methodologies in microbiome studies. Furthermore, we highlight promising directions for future research, particularly in the realm of personalized medicine, where the microbiome{\textquoteright}s variability offers unique opportunities for tailored treatment approaches. This review sets a new agenda for leveraging gut microbiota in the diagnosis, prevention, and treatment of musculoskeletal conditions, marking a pivotal step toward integrating microbiome science into clinical musculoskeletal care.",
keywords = "Microbiome, gut-bone axis, musculoskeletal health, bone health, musculoskeletal disease",
author = "Zhengrui Li and Qi Wang and Xufeng Huang and Yinteng Wu and Dan Shan",
year = "2024",
month = dec,
day = "31",
doi = "10.1080/19490976.2024.2410478",
language = "English",
volume = "16",
journal = "Gut Microbes",
issn = "1949-0976",
publisher = "Landes Bioscience",
number = "1",

}

RIS

TY - JOUR

T1 - Microbiome’s role in musculoskeletal health through the gut-bone axis insights

AU - Li, Zhengrui

AU - Wang, Qi

AU - Huang, Xufeng

AU - Wu, Yinteng

AU - Shan, Dan

PY - 2024/12/31

Y1 - 2024/12/31

N2 - The interplay between the human microbiome and the musculoskeletal system represents a burgeoning field of research with profound implications for understanding and treating musculoskeletal disorders. This review articulates the pivotal role of the microbiome in modulating bone health, highlighting the gut-bone axis as a critical nexus for potential therapeutic intervention. Through a meticulous analysis of recent clinical research, we underscore the microbiome’s influence on osteoporosis, sarcopenia, osteoarthritis, and rheumatoid arthritis, delineating both the direct and indirect mechanisms by which microbiota could impact musculoskeletal integrity and function. Our investigation reveals novel insights into the microbiota’s contribution to bone density regulation, hormone production, immune modulation, and nutrient absorption, laying the groundwork for innovative microbiome-based strategies in musculoskeletal disease management. Significantly, we identify the challenges hindering the translation of research into clinical practice, including the limitations of current microbial sequencing techniques and the need for standardized methodologies in microbiome studies. Furthermore, we highlight promising directions for future research, particularly in the realm of personalized medicine, where the microbiome’s variability offers unique opportunities for tailored treatment approaches. This review sets a new agenda for leveraging gut microbiota in the diagnosis, prevention, and treatment of musculoskeletal conditions, marking a pivotal step toward integrating microbiome science into clinical musculoskeletal care.

AB - The interplay between the human microbiome and the musculoskeletal system represents a burgeoning field of research with profound implications for understanding and treating musculoskeletal disorders. This review articulates the pivotal role of the microbiome in modulating bone health, highlighting the gut-bone axis as a critical nexus for potential therapeutic intervention. Through a meticulous analysis of recent clinical research, we underscore the microbiome’s influence on osteoporosis, sarcopenia, osteoarthritis, and rheumatoid arthritis, delineating both the direct and indirect mechanisms by which microbiota could impact musculoskeletal integrity and function. Our investigation reveals novel insights into the microbiota’s contribution to bone density regulation, hormone production, immune modulation, and nutrient absorption, laying the groundwork for innovative microbiome-based strategies in musculoskeletal disease management. Significantly, we identify the challenges hindering the translation of research into clinical practice, including the limitations of current microbial sequencing techniques and the need for standardized methodologies in microbiome studies. Furthermore, we highlight promising directions for future research, particularly in the realm of personalized medicine, where the microbiome’s variability offers unique opportunities for tailored treatment approaches. This review sets a new agenda for leveraging gut microbiota in the diagnosis, prevention, and treatment of musculoskeletal conditions, marking a pivotal step toward integrating microbiome science into clinical musculoskeletal care.

KW - Microbiome

KW - gut-bone axis

KW - musculoskeletal health

KW - bone health

KW - musculoskeletal disease

U2 - 10.1080/19490976.2024.2410478

DO - 10.1080/19490976.2024.2410478

M3 - Review article

VL - 16

JO - Gut Microbes

JF - Gut Microbes

SN - 1949-0976

IS - 1

M1 - 2410478

ER -