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脉冲电磁场作为糖皮质激素诱导性骨质疏松症的一种有前景的治疗方法。

Pulsed electromagnetic fields as a promising therapy for glucocorticoid-induced osteoporosis.

作者信息

Zhang Tianxiao, Zhao Zhiliang, Wang Tiantian

机构信息

Innovation Center for Wound Repair, West China Hospital, Sichuan University, Chengdu, China.

Key Laboratory of Rehabilitation Medicine, West China Hospital, Sichuan University, Chengdu, Sichuan, China.

出版信息

Front Bioeng Biotechnol. 2023 Mar 3;11:1103515. doi: 10.3389/fbioe.2023.1103515. eCollection 2023.

Abstract

Glucocorticoid-induced osteoporosis (GIOP) is considered the third type of osteoporosis and is accompanied by high morbidity and mortality. Long-term usage of glucocorticoids (GCs) causes worsened bone quality and low bone mass their effects on bone cells. Currently, there are various clinical pharmacological treatments to regulate bone mass and skeletal health. Pulsed electromagnetic fields (PEMFs) are applied to treat patients suffering from delayed fracture healing and non-unions. PEMFs may be considered a potential and side-effect-free therapy for GIOP. PEMFs inhibit osteoclastogenesis, stimulate osteoblastogenesis, and affect the activity of bone marrow mesenchymal stem cells (BMSCs), osteocytes and blood vessels, ultimately leading to the retention of bone mass and strength. However, the underlying signaling pathways which PEMFs influence GIOP remain unclear. This review attempts to summarize the underlying cellular mechanisms of GIOP. Furthermore, recent advances showing that PEMFs affect bone cells are discussed. Finally, we discuss the possibility of using PEMFs as therapy for GIOP.

摘要

糖皮质激素性骨质疏松症(GIOP)被认为是第三种骨质疏松症类型,且发病率和死亡率都很高。长期使用糖皮质激素(GCs)会导致骨质恶化和骨量降低,这是其对骨细胞产生的影响。目前,有多种临床药物治疗方法可用于调节骨量和骨骼健康。脉冲电磁场(PEMFs)被应用于治疗骨折愈合延迟和骨不连的患者。PEMFs可能被视为一种治疗GIOP的潜在且无副作用的疗法。PEMFs可抑制破骨细胞生成,刺激成骨细胞生成,并影响骨髓间充质干细胞(BMSCs)、骨细胞和血管的活性,最终导致骨量和骨强度的维持。然而,PEMFs影响GIOP的潜在信号通路仍不清楚。本综述试图总结GIOP的潜在细胞机制。此外,还讨论了显示PEMFs影响骨细胞的最新进展。最后,我们探讨了将PEMFs用作GIOP治疗方法的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7feb/10020513/1f758f010886/fbioe-11-1103515-g001.jpg

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