Reconstitution of the host holobiont in germ-free born male rats acutely increases bone growth and affects marrow cellular content

Author:

Czernik Piotr J.12,Golonka Rachel M.132,Chakraborty Saroj132ORCID,Yeoh Beng San132ORCID,Abokor Ahmed A.132ORCID,Saha Piu132,Yeo Ji-Youn132,Mell Blair132,Cheng Xi132ORCID,Baroi Sudipta4,Tian Yuan5,Patterson Andrew D.5,Joe Bina132ORCID,Vijay-Kumar Matam132ORCID,Lecka-Czernik Beata124ORCID

Affiliation:

1. Microbiome Consortium, University of Toledo College of Medicine and Life Sciences, Toledo, Ohio

2. Department of Physiology and Pharmacology, University of Toledo College of Medicine and Life Sciences, Toledo, Ohio

3. Center for Hypertension and Precision Medicine, University of Toledo College of Medicine and Life Sciences, Toledo, Ohio

4. Department of Orthopedic Surgery, University of Toledo College of Medicine and Life Sciences, Toledo, Ohio

5. Department of Veterinary and Biomedical Sciences, The Pennsylvania State University, University Park, Pennsylvania

Abstract

Integration of microbiota in a host begins at birth and progresses during adolescence, forming a multidirectional system of physiological interactions. Here, we present an instantaneous effect of natural, bacterial gut colonization on the acceleration of longitudinal and radial bone growth in germ-free born, 7-wk-old male rats. Changes in bone mass and structure were analyzed after 10 days following the onset of colonization through cohousing with conventional rats and revealed unprecedented acceleration of bone accrual in cortical and trabecular compartments, increased bone tissue mineral density, improved proliferation and hypertrophy of growth plate chondrocytes, bone lengthening, and preferential deposition of periosteal bone in the tibia diaphysis. In addition, the number of small in size adipocytes increased, whereas the number of megakaryocytes decreased, in the bone marrow of conventionalized germ-free rats indicating that not only bone mass but also bone marrow environment is under control of gut microbiota signaling. The changes in bone status paralleled with a positive shift in microbiota composition toward short-chain fatty acids (SCFA)-producing microbes and a considerable increase in cecal SCFA concentrations, specifically butyrate. Furthermore, reconstitution of the host holobiont increased hepatic expression of IGF-1 and its circulating levels. Elevated serum levels of 25-hydroxy vitamin D and alkaline phosphatase pointed toward an active process of bone formation. The acute stimulatory effect on bone growth occurred independently of body mass increase. Overall, the presented model of conventionalized germ-free rats could be used to study microbiota-based therapeutics for combatting dysbiosis-related bone disorders.

Funder

American Diabetes Association Research Foundation

Crohn's and Colitis Foundation

HHS | NIH | National Cancer Institute

HHS | NIH | National Heart, Lung, and Blood Institute

Publisher

American Physiological Society

Subject

Genetics,Physiology

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Gut microbiota in regulation of childhood bone growth;Experimental Physiology;2023-12-29

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