Literature DB >> 33380613

Glucocorticoid transiently upregulates mitochondrial biogenesis in the osteoblast.

Chien-Ning Hsu1, Chih-Yuan Jen2, Yu-Hsu Chen3, Shao-Yu Peng4, Shinn-Chih Wu5, Chao-Ling Yao6.   

Abstract

Glucocorticoid (GC)-induced bone loss is the most prevalent form of secondary osteoporosis. Previous studies demonstrated that long-term incubation of dexamethasone (DEX) induced oxidative stress and mitochondrial dysfunctions, consequently leading to apoptosis of differentiated osteoblasts. This DEX-induced cell death might be the main causes of bone loss. We previously described that DEX induced biphasic mitochondrial alternations. As GC affects mitochondrial physiology through several different possible routes, the short-term and long-term effects of GC treatment on mitochondria in the osteoblast have not been carefully characterized. Here, we examined the expression levels of genes that are associated with mitochondrial functions at several different time points after incubation with DEX. Mitochondrial biogenesis-mediated genes nuclear respiratory factor 1 (Nrf1) and Nrf2 were upregulated after 4-h incubation, and then declined after 24-h incubation, suggesting that mitochondrial biogenesis were transiently upregulated by DEX. In contrast, mitochondrial fusion gene optic atrophy 1 (Opa1) and mitofusin 2 (Mfn2) started to be elevated as the biogenesis started to decrease. Finally, the mitochondrial fission increased and apoptosis becomes prominent. Agree with the mitochondrial biphasic alterations hypothesis, the results suggested an early increase of mitochondrial activities and biogenesis upon DEX stimulation to the osteoblasts. The oxidative phosphorylation and inducible nitric oxide synthase levels increased results in oxidative stress accumulation, leading to mitochondrial fusion, and subsequently fission and triggering the apoptosis. Our results indicated that the primary effects of GC on mitochondria are promoting their functions and biogenesis. Mitochondrial breakdown and the activation of the apoptotic pathways appeared to be the secondary effect after long-term treatment.

Entities:  

Keywords:  Glucocorticoid; mitochondrial biogenesis; mitochondrial fission; mitochondrial fusion; osteoblast

Year:  2020        PMID: 33380613     DOI: 10.4103/CJP.CJP_51_20

Source DB:  PubMed          Journal:  Chin J Physiol        ISSN: 0304-4920            Impact factor:   1.764


  2 in total

1.  Counteractions of a Novel Hydroalcoholic Extract from Lens Culinaria against the Dexamethasone-Induced Osteoblast Loss of Native Murine Cells.

Authors:  Marina Antonacci; Jacopo Raffaele Dibenedetto; Fatima Maqoud; Gerardo Centoducati; Nicola Colonna; Francesco Leonetti; Domenico Tricarico
Journal:  Cells       Date:  2022-09-20       Impact factor: 7.666

Review 2.  Adrenergic and Glucocorticoid Receptors in the Pulmonary Health Effects of Air Pollution.

Authors:  Myles X Hodge; Andres R Henriquez; Urmila P Kodavanti
Journal:  Toxics       Date:  2021-06-04
  2 in total

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