Abstract
Post-stroke osteoporosis (PSO) is a common complication encountered in patients after stroke, characterized by a rapid decline in bone mass and disruption of bone microarchitecture, which significantly elevates the risk of fracture. The pathogenesis of PSO is multifaceted, encompassing factors, such as oxidative stress, inflammatory responses, neurological damage, extended immobilization, and hormonal imbalances, culminating in a dysregulation of bone metabolism. Treatment strategies encompass pharmacological interventions, nutritional supplementation, physical exercise, and rehabilitative training. Emerging therapies, such as stem cell therapy and exosome therapy, are being explored for their potential to promote cellular regeneration and modulate inflammatory responses in the treatment of PSO. Future therapeutic approaches should integrate a comprehensive understanding of the multifactorial pathogenesis of PSO to develop tailored treatment plans, aiming to optimize treatment efficacy and improve patients’ quality of life.
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