← Explorer/Network

Interoceptive regulation of skeletal tissue homeostasis and repair

Yao Xiao, Changhao Han, Yunhao Wang +6 more2023Bone ResearchReview
10.1038/s41413-023-00285-6PubMedFree full text
Hypothalamic-PituitaryMusculoskeletalNeurological

Abstract

Abstract Recent studies have determined that the nervous system can sense and respond to signals from skeletal tissue, a process known as skeletal interoception, which is crucial for maintaining bone homeostasis. The hypothalamus, located in the central nervous system (CNS), plays a key role in processing interoceptive signals and regulating bone homeostasis through the autonomic nervous system, neuropeptide release, and neuroendocrine mechanisms. These mechanisms control the differentiation of mesenchymal stem cells into osteoblasts (OBs), the activation of osteoclasts (OCs), and the functional activities of bone cells. Sensory nerves extensively innervate skeletal tissues, facilitating the transmission of interoceptive signals to the CNS. This review provides a comprehensive overview of current research on the generation and coordination of skeletal interoceptive signals by the CNS to maintain bone homeostasis and their potential role in pathological conditions. The findings expand our understanding of intersystem communication in bone biology and may have implications for developing novel therapeutic strategies for bone diseases.

Cited By (1)

  • Skeletal interoception in osteoarthritisBone Research · 2024

References (1)

  • The Role of NPY in the Regulation of Bone MetabolismFrontiers in Endocrinology · 2022

Related Papers

  • Crosstalk Between the Neuroendocrine System and Bone HomeostasisEndocrine Reviews · 2023 · 3 shared tags
  • Adipokines: Do They Affect the Osteochondral Unit?Rheumato · 2025 · 3 shared tags
  • Polymorphism of Melanocortin Receptor Genes—Association with Inflammatory Traits and DiseasesDiseases · 2025 · 3 shared tags
  • Genetics of Obesity in Humans: A Clinical ReviewInternational Journal of Molecular Sciences · 2022 · 3 shared tags
  • Deciphering The Transcriptional Activities of Genes Coding For Adipokines and Their Receptors in Porcine Ex Situ -Protected Mesenchymal Stem Cells Undergoing Adipogenic DifferentiationAnnals of Animal Science · 2024 · 3 shared tags
  • Mechanisms of Potential Central Nervous System Injury in Chronic Inflammatory Response Syndrome2023 · 3 shared tags