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November 1, 2025Antioxidants5 citationsOpen Access

Reactive Oxygen Species (ROS) Drive Osteocyte Dysfunction in Diabetic Osteoporosis by Impairing Autophagy and Triggering Apoptosis

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MHMengqi HanMZMinyue ZhaoFBFurong Bai

Key Points

  • Hyperglycemia-induced oxidative stress leads to osteocyte apoptosis by activating mTOR and impairing autophagy.
  • Key findings include increased levels of reactive oxygen species and changes in apoptosis markers in osteocytes.
  • Observational analysis of osteocyte responses in a high glucose environment, utilizing MLO-Y4 cells and primary mouse osteocytes.
  • Findings highlight the potential for targeted therapies involving rapamycin to mitigate oxidative stress effects.

Abstract

This study investigates the mechanisms underlying osteocyte injury in a high glucose (HG) environment and explores potential therapeutic targets and diagnostic markers for diabetic osteoporosis, a common complication of type 2 diabetes mellitus (T2DM). Hyperglycemia induces oxidative stress through the reactive oxygen species (ROS) production, which impair osteocytes and accelerate bone loss. To examine these effects, MLO-Y4 cells and primary mouse osteocytes were cultured under normal glucose and HG conditions, with additional treatments using N-acetylcysteine (NAC, ROS scavenger) and rapamycin (autophagy promoter and mTOR inhibitor). Cell viability, ROS levels, and the autophagy and apoptosis markers expression (Beclin1, LC3, p62, Bax, Bcl2, cytochrome C, and caspase3) were assessed using CCK8/ATP level assay, flow cytometry, Western blot, qRT-PCR, immunofluorescence, and TUNEL staining. The results showed that HG inhibits cell proliferation, induces insulin resistance, generates ROS, alters antioxidant enzymes, and promotes oxidative stress, leading to mTOR activation, subsequent autophagy inhibition, and osteocyte apoptosis. NAC mitigated these effects, while rapamycin prevented HG-induced apoptosis by inhibiting mTOR activation and promoting autophagy. This suggests that ROS-induced mTOR activation impairs autophagy and hinders the clearance of damaged osteocytes, triggering apoptosis. This research provides foundational evidence and novel insights into diabetic osteoporosis pathogenesis and potential therapies.

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Cite This Study

Han et al. (2025) studied this question.

synapsesocial.com/papers/69054ffa1a99e50463de698fhttps://doi.org/10.3390/antiox14111306
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