The prevention effect of pulsed electromagnetic fields treatment on senile osteoporosis in vivo via improving the inflammatory bone microenvironment.

IF 1.6 4区 生物学 Q3 BIOLOGY Electromagnetic Biology and Medicine Pub Date : 2024-04-02 Epub Date: 2024-02-08 DOI:10.1080/15368378.2024.2314093
Jun Zhou, Feiyang Jia, Mengjian Qu, Pengyun Ning, Xiarong Huang, Lu Tan, Danni Liu, Peirui Zhong, Qi Wu
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Abstract

This study aimed to assess PEMF in a rat model of senile osteoporosis and its relationship with NLRP3-mediated low-grade inflammation in the bone marrow microenvironment. A total of 24 Sprague Dawley (SD) rats were included in this study. Sixteen of them were 24-month natural-aged male SD rats, which were randomly distributed into the Aged group and the PEMF group (n = 8 per group). The remaining 8 3-month -old rats were used as the Young positive control group (n = 8). Rats in the PEMF group received 12 weeks of PEMF with 40 min/day, five days per week, while the other rats received placebo PEMF intervention. Bone mineral density/microarchitecture, serum levels of CTX-1 and P1CP, and NLRP3-related signaling genes and proteins in rat bone marrow were then analyzed. The 12-week of PEMF showed significant mitigation of aging-induced bone loss and bone microarchitecture deterioration, i.e. PEMF increased the bone mineral density of the proximal femur and L5 vertebral body and improved parameters of the proximal tibia and L4 vertebral body. Further analysis showed that PEMF reversed aging-induced bone turnover, specifically, decreased serum CTX-1 and elevated serum P1CP. Furthermore, PEMF also dramatically inhibited NLRP3-mediated low-grade inflammation in the bone marrow, i.e. PEMF inhibited the levels of NLRP3, proCaspase1, cleaved Caspase1, IL-1β, and GSDMD-N. The study demonstrated that PEMF could mitigate the aging-induced bone loss and reverses the deterioration of bone microarchitecture probably through inhibiting NLRP3-mediated low-grade chronic inflammation to improve the inflammatory bone microenvironment in aged rats.

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脉冲电磁场治疗通过改善炎性骨微环境对老年性骨质疏松症的预防作用
本研究旨在评估 PEMF 在老年性骨质疏松症大鼠模型中的应用及其与骨髓微环境中 NLRP3 介导的低度炎症的关系。本研究共纳入了 24 只 Sprague Dawley (SD) 大鼠。其中16只为24个月自然龄雄性SD大鼠,随机分为老龄组和PEMF组(每组8只)。其余 8 只 3 个月大的大鼠作为年轻阳性对照组(n = 8)。PEMF组大鼠接受为期12周的PEMF治疗,每天40分钟,每周5天,其他大鼠接受安慰剂PEMF干预。然后对大鼠骨髓中的骨矿密度/微结构、血清中 CTX-1 和 P1CP 的水平以及 NLRP3 相关信号基因和蛋白进行分析。为期12周的PEMF治疗显示,衰老引起的骨质流失和骨微结构退化得到显著缓解,即PEMF增加了股骨近端和L5椎体的骨矿物质密度,改善了胫骨近端和L4椎体的参数。进一步分析表明,PEMF 逆转了衰老引起的骨质流失,特别是降低了血清 CTX-1 和升高了血清 P1CP。此外,PEMF 还显著抑制了骨髓中 NLRP3 介导的低度炎症,即 PEMF 抑制了 NLRP3、proCaspase1、裂解 Caspase1、IL-1β 和 GSDMD-N 的水平。该研究表明,PEMF 可能通过抑制 NLRP3 介导的低度慢性炎症来改善老龄大鼠的炎性骨微环境,从而缓解老龄诱导的骨质流失并逆转骨微结构的恶化。
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来源期刊
CiteScore
3.60
自引率
11.80%
发文量
33
审稿时长
>12 weeks
期刊介绍: Aims & Scope: Electromagnetic Biology and Medicine, publishes peer-reviewed research articles on the biological effects and medical applications of non-ionizing electromagnetic fields (from extremely-low frequency to radiofrequency). Topic examples include in vitro and in vivo studies, epidemiological investigation, mechanism and mode of interaction between non-ionizing electromagnetic fields and biological systems. In addition to publishing original articles, the journal also publishes meeting summaries and reports, and reviews on selected topics.
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