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Sexually dimorphic estrogen sensing in skeletal stem cells controls skeletal regeneration

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单位: [1]Stanford Univ, Dept Surg, Sch Med, Stanford, CA 94305 USA [2]Stanford Univ, Inst Stem Cell Biol & Regenerat Med, Sch Med, Stanford, CA 94305 USA [3]Huazhong Univ Sci & Technol,Tongji Hosp,Tongji Med Coll,Dept Orthopaed Surg,Wuhan,Peoples R China [4]Stanford Univ, Dept Bioengn, Palo Alto, CA 94305 USA [5]Univ Alabama Birmingham, Dept Surg, Birmingham, AL 35233 USA [6]Birmingham VA Med Ctr, Birmingham, AL 35233 USA [7]Stanford Hosp & Clin, Div Plast & Reconstruct Surg, Palo Alto, CA USA [8]Paracelsus Med Univ Salzburg, Spinal Cord Injury & Tissue Regenerat Ctr Salzbur, Dept Transfus Med, Salzburg, Austria [9]Paracelsus Med Univ Salzburg, Cell Therapy Inst, Salzburg, Austria [10]RIKEN, Ctr Integrat Med Sci & Adv Data Sci Project, Tokyo, Japan [11]Stanford Univ, Dept Orthoped Surg, Palo Alto, CA 94305 USA
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How bone-related sexually dimorphic traits are regulated hasn't been examined at the stem cell level. Here the authors show that skeletal stem cells (SSC), in female but not male mice, are directly controlled by estrogen signaling, which could be augmented to improve fracture repair. Sexually dimorphic tissues are formed by cells that are regulated by sex hormones. While a number of systemic hormones and transcription factors are known to regulate proliferation and differentiation of osteoblasts and osteoclasts, the mechanisms that determine sexually dimorphic differences in bone regeneration are unclear. To explore how sex hormones regulate bone regeneration, we compared bone fracture repair between adult male and female mice. We found that skeletal stem cell (SSC) mediated regeneration in female mice is dependent on estrogen signaling but SSCs from male mice do not exhibit similar estrogen responsiveness. Mechanistically, we found that estrogen acts directly on the SSC lineage in mice and humans by up-regulating multiple skeletogenic pathways and is necessary for the stem cell's ability to self- renew and differentiate. Our results also suggest a clinically applicable strategy to accelerate bone healing using localized estrogen hormone therapy.

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出版当年[2021]版:
大类 | 1 区 综合性期刊
小类 | 1 区 综合性期刊
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大类 | 1 区 综合性期刊
小类 | 1 区 综合性期刊
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Q1 MULTIDISCIPLINARY SCIENCES
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Q1 MULTIDISCIPLINARY SCIENCES

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第一作者单位: [1]Stanford Univ, Dept Surg, Sch Med, Stanford, CA 94305 USA [2]Stanford Univ, Inst Stem Cell Biol & Regenerat Med, Sch Med, Stanford, CA 94305 USA
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通讯机构: [1]Stanford Univ, Dept Surg, Sch Med, Stanford, CA 94305 USA [2]Stanford Univ, Inst Stem Cell Biol & Regenerat Med, Sch Med, Stanford, CA 94305 USA [5]Univ Alabama Birmingham, Dept Surg, Birmingham, AL 35233 USA [6]Birmingham VA Med Ctr, Birmingham, AL 35233 USA
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