Author:
Chankamngoen Wasutorn,Krungchanuchat Saowalak,Thongbunchoo Jirawan,Sirinonthanawech Naraporn,Teerapornpuntakit Jarinthorn,Panupinthu Nattapon,Charoenphandhu Narattaphol
Abstract
AbstractIron overload negatively affects bone mass and strength. However, the impact of iron excess on osteocytes—important bone cells for mechanotransduction and remodeling—is poorly understood. Herein, we examined the effects of iron exposure on osteocytes during their maturation process. We discovered that iron overload caused apoptosis of osteocytes in early and late stages of differentiation. Notably, the expression of key proteins for iron entry was downregulated during differentiation, suggesting that mature osteocytes were less susceptible to iron toxicity due to limited iron uptake. Furthermore, iron overload also enriched a subpopulation of mature osteocytes, as indicated by increased expression of Dmp1, a gene encoding protein for bone mineralization. These iron-exposed osteocytes expressed high levels of Sost, Tnfsf11 and Fgf23 transcripts. Consistently, we demonstrated that exogenous FGF23 stimulated the formation and survival of osteoclasts, suggesting its regulatory role in bone resorption. In addition, iron overload downregulated the expression of Cx43, a gene encoding gap junction protein in the dendritic processes, and impaired YAP1 nuclear translocation in response to fluid flow in differentiated osteocytes. It can be concluded that iron overload induces cellular adaptation in differentiating osteocytes, resulting in insensitivity to mechanical stimulation and potential disruption of the balance in bone remodeling.
Funder
Thailand Research Fund (TRF)/TSRI through the International Research Network Program
Postdoctoral fellow awarded by Mahidol University to S.K.
Mahidol University [Fundamental Fund: fiscal year 2022 by National Science Research and Innovation Fund (NSRF); to N.P.]
Central Instrumental Facility (CIF/CNI), Faculty of Science, Mahidol University
Thailand Toray Science Foundation
Mahidol University
Distinguished Research Professor supported by Mahidol University–National Research Council of Thailand (NRCT) to N.C.
Publisher
Springer Science and Business Media LLC
Cited by
1 articles.
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