Literature DB >> 33180356

Piezo1 Inactivation in Chondrocytes Impairs Trabecular Bone Formation.

Gretl Hendrickx1, Verena Fischer2, Astrid Liedert2, Simon von Kroge1, Melanie Haffner-Luntzer2, Laura Brylka1, Eva Pawlus1, Michaela Schweizer3, Timur Yorgan1, Anke Baranowsky1, Tim Rolvien1, Mona Neven1, Udo Schumacher4, David J Beech5, Michael Amling1, Anita Ignatius2, Thorsten Schinke1.   

Abstract

The skeleton is a dynamic tissue continuously adapting to mechanical stimuli. Although matrix-embedded osteocytes are considered as the key mechanoresponsive bone cells, all other skeletal cell types are principally exposed to macroenvironmental and microenvironmental mechanical influences that could potentially affect their activities. It was recently reported that Piezo1, one of the two mechanically activated ion channels of the Piezo family, functions as a mechanosensor in osteoblasts and osteocytes. Here we show that Piezo1 additionally plays a critical role in the process of endochondral bone formation. More specifically, by targeted deletion of Piezo1 or Piezo2 in either osteoblast (Runx2Cre) or osteoclast lineage cells (Lyz2Cre), we observed severe osteoporosis with numerous spontaneous fractures specifically in Piezo1Runx2Cre mice. This phenotype developed at an early postnatal stage and primarily affected the formation of the secondary spongiosa. The presumptive Piezo1Runx2Cre osteoblasts in this region displayed an unusual flattened appearance and were positive for type X collagen. Moreover, transcriptome analyses of primary osteoblasts identified an unexpected induction of chondrocyte-related genes in Piezo1Runx2Cre cultures. Because Runx2 is not only expressed in osteoblast progenitor cells, but also in prehypertrophic chondrocytes, these data suggested that Piezo1 functions in growth plate chondrocytes to ensure trabecular bone formation in the process of endochondral ossification. To confirm this hypothesis, we generated mice with Piezo1 deletion in chondrocytes (Col2a1Cre). These mice essentially recapitulated the phenotype of Piezo1Runx2Cre animals, because they displayed early-onset osteoporosis with multiple fractures, as well as impaired formation of the secondary spongiosa with abnormal osteoblast morphology. Our data identify a previously unrecognized key function of Piezo1 in endochondral ossification, which, together with its role in bone remodeling, suggests that Piezo1 represents an attractive target for the treatment of skeletal disorders.
© 2020 The Authors. Journal of Bone and Mineral Research published by Wiley Periodicals LLC on behalf of American Society for Bone and Mineral Research (ASBMR). © 2020 The Authors. Journal of Bone and Mineral Research published by Wiley Periodicals LLC on behalf of American Society for Bone and Mineral Research (ASBMR).

Entities:  

Keywords:  CHONDROCYTE; ENDOCHONDRAL OSSIFICATION; MECHANOSENSATION; OSTEOBLAST; PIEZO1

Mesh:

Substances:

Year:  2020        PMID: 33180356     DOI: 10.1002/jbmr.4198

Source DB:  PubMed          Journal:  J Bone Miner Res        ISSN: 0884-0431            Impact factor:   6.741


  13 in total

Review 1.  Piezo channels for skeletal development and homeostasis: Insights from mouse genetic models.

Authors:  Xuguang Nie; Man-Kyo Chung
Journal:  Differentiation       Date:  2022-07-03       Impact factor: 3.533

2.  Mechanical forces couple bone matrix mineralization with inhibition of angiogenesis to limit adolescent bone growth.

Authors:  Maria Dzamukova; Tobias M Brunner; Jadwiga Miotla-Zarebska; Frederik Heinrich; Laura Brylka; Mir-Farzin Mashreghi; Anjali Kusumbe; Ralf Kühn; Thorsten Schinke; Tonia L Vincent; Max Löhning
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3.  Impact of Whole Body Vibration and Zoledronic Acid on Femoral Structure after Ovariectomy: Morphological Evaluation.

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Journal:  J Clin Med       Date:  2022-04-26       Impact factor: 4.964

4.  Excessive mechanical stress-induced intervertebral disc degeneration is related to Piezo1 overexpression triggering the imbalance of autophagy/apoptosis in human nucleus pulpous.

Authors:  Sheng Shi; Xing-Jian Kang; Zhi Zhou; Zhi-Min He; Shuang Zheng; Shi-Sheng He
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5.  Novel and reproducible technique coping with intraoperative anchor pullout during arthroscopic rotator cuff repair.

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Journal:  Knee Surg Sports Traumatol Arthrosc       Date:  2020-03-30       Impact factor: 4.342

6.  A mouse model of disuse osteoporosis based on a movable noninvasive 3D-printed unloading device.

Authors:  Junhui Li; Jiangyu Geng; Tingting Lin; Mingxiang Cai; Yao Sun
Journal:  J Orthop Translat       Date:  2022-01-06       Impact factor: 5.191

Review 7.  Piezo1 Channels as Force Sensors in Mechanical Force-Related Chronic Inflammation.

Authors:  Hailin Liu; Jialing Hu; Qingcui Zheng; Xiaojin Feng; Fenfang Zhan; Xifeng Wang; Guohai Xu; Fuzhou Hua
Journal:  Front Immunol       Date:  2022-01-26       Impact factor: 7.561

Review 8.  Roles of mechanosensitive channel Piezo1/2 proteins in skeleton and other tissues.

Authors:  Lei Qin; Tailin He; Sheng Chen; Dazhi Yang; Weihong Yi; Huiling Cao; Guozhi Xiao
Journal:  Bone Res       Date:  2021-10-20       Impact factor: 13.567

Review 9.  The Mechanism of Bone Remodeling After Bone Aging.

Authors:  Huankun Fang; Zhiqin Deng; Jianquan Liu; Siyu Chen; Zhenhan Deng; Wencui Li
Journal:  Clin Interv Aging       Date:  2022-04-05       Impact factor: 4.458

Review 10.  Disuse Osteoporosis: Clinical and Mechanistic Insights.

Authors:  Tim Rolvien; Michael Amling
Journal:  Calcif Tissue Int       Date:  2021-03-18       Impact factor: 4.000

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