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Nutrient-regulated dynamics of chondroprogenitors in the postnatal murine growth plate

摘要Longitudinal bone growth relies on endochondral ossification in the cartilaginous growth plate, where chondrocytes accumulate and synthesize the matrix scaffold that is replaced by bone. The chondroprogenitors in the resting zone maintain the continuous turnover of chondrocytes in the growth plate. Malnutrition is a leading cause of growth retardation in children; however, after recovery from nutrient deprivation, bone growth is accelerated beyond the normal rate, a phenomenon termed catch-up growth. Although nutritional status is a known regulator of long bone growth, it is largely unknown whether and how chondroprogenitor cells respond to deviations in nutrient availability. Here, using fate-mapping analysis in Axin2CreERT2 mice, we showed that dietary restriction increased the number of Axin2+ chondroprogenitors in the resting zone and simultaneously inhibited their differentiation. Once nutrient deficiency was resolved, the accumulated chondroprogenitor cells immediately restarted differentiation and formed chondrocyte columns, contributing to accelerated growth. Furthermore, we showed that nutrient deprivation reduced the level of phosphorylated Akt in the resting zone and that exogenous IGF-1 restored the phosphorylated Akt level and stimulated differentiation of the pooled chondroprogenitors, decreasing their numbers. Our study of Axin2CreERT2 revealed that nutrient availability regulates the balance between accumulation and differentiation of chondroprogenitors in the growth plate and further demonstrated that IGF-1 partially mediates this regulation by promoting the committed differentiation of chondroprogenitor cells.

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作者 Takeshi Oichi [1] Joe Kodama [2] Kimberly Wilson [2] Hongying Tian [2] Yuka Imamura Kawasawa [3] Yu Usami [4] Yasushi Oshima [5] Taku Saito [5] Sakae Tanaka [5] Masahiro Iwamoto [2] Satoru Otsuru [2] Motomi Enomoto-Iwamoto [2] 学术成果认领
作者单位 Department of Orthopedics,School of Medicine,University of Maryland,Baltimore,MD 21201,USA;Sensory&Motor System Medicine,Faculty of Medicine,The University of Tokyo,Bunkyo-ku,Tokyo 1138655,Japan;Department of Orthopedics,Teikyo University School of Medicine,Tokyo 1738608,Japan [1] Department of Orthopedics,School of Medicine,University of Maryland,Baltimore,MD 21201,USA [2] Department of Biochemistry and Molecular Biology,Pennsylvania State University College of Medicine,Hershey,PA 17033,USA [3] Department of Oral Pathology,Osaka University Graduate School of Dentistry,Suita,Osaka 5650871,Japan [4] Sensory&Motor System Medicine,Faculty of Medicine,The University of Tokyo,Bunkyo-ku,Tokyo 1138655,Japan [5]
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DOI 10.1038/s41413-023-00258-9
发布时间 2023-08-02(万方平台首次上网日期,不代表论文的发表时间)
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骨研究(英文版)

骨研究(英文版)

2023年11卷2期

340-353页

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