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振动治疗增强骨质疏松性骨折愈合:成骨细胞的作用。

Enhancement of osteoporotic fracture healing by vibration treatment: The role of osteocytes.

机构信息

Department of Orthopaedics and Traumatology, The Chinese University of Hong Kong, Hong Kong SAR, China.

Department of Orthopaedics and Traumatology, The Chinese University of Hong Kong, Hong Kong SAR, China.

出版信息

Injury. 2021 Jun;52 Suppl 2:S97-S100. doi: 10.1016/j.injury.2020.05.020. Epub 2020 May 21.

Abstract

The prevalence of osteoporotic fracture is high due to global aging problem. Delayed and impaired healing in osteoporotic fractures increase the socioeconomic burden significantly. Through intensive animal and clinical research in recent years, the pathogenesis of osteoporotic fracture healing is unveiled, including decreased inflammatory response, reduced mesenchymal stem cells and deteriorated angiogenesis, etc. The enhancement of osteoporotic fracture healing is important in shortening hospitalization, thus reducing related complications. Mechanical stimulation is currently the most well-accepted approach for rehabilitation of osteoporotic fracture patients. Some new interventions providing mechanical signals were explored extensively in recent years, including vibration treatment, and osteoporotic fracture healing was found to respond very well to these signals. Vibration treatment could accelerate osteoporotic fracture healing with improved callus formation, mineralization and remodeling. However, the mechanism of how osteoporotic fracture bones sense mechanical signals and relay to bone formation remains unanswered. Osteocytes are the most abundant cells in bone tissues. Cumulative evidence confirm that osteocyte is a type of mechanosensory cell and shows altered morphology and reduced cell density during aging. Meanwhile, osteocytes serve as endocrine cells to regulate bone and mineral homeostasis. However, the contribution of osteocytes in osteoporotic fracture healing is largely unknown. A recent in vivo study was conducted to examine the morphological and functional changes of osteocytes after vibration treatment in an osteoporotic metaphyseal fracture rat model. The findings demonstrated that vibration treatment induced significant outgrowth of canaliculi and altered expression of various proteins (E11, DMP1, FGF23 and sclerostin), particularly osteocyte-specific dentin matrix protein 1 (DMP1) which was greatly increased. DMP1 may play a major role in relaying mechanical signals to bone formation, which may require further experiments to consolidate. Most importantly, vibration treatment significantly increased the mineralization and accelerated the osteoporotic fracture healing in metaphyseal fracture model. In summary, osteocyte is the major cell type to sense mechanical signals and facilitate downstream healing in osteoporotic fracture bone. Vibration treatment has good potential to be translated for clinical application to benefit osteoporotic fracture patients, while randomized controlled trials are required to validate its efficacy.

摘要

由于全球老龄化问题,骨质疏松性骨折的患病率很高。骨质疏松性骨折愈合延迟和受损会显著增加社会经济负担。通过近年来对动物和临床的深入研究,揭示了骨质疏松性骨折愈合的发病机制,包括炎症反应减弱、间充质干细胞减少和血管生成恶化等。增强骨质疏松性骨折愈合对于缩短住院时间、减少相关并发症非常重要。机械刺激是目前康复骨质疏松性骨折患者最被认可的方法。近年来,广泛探索了一些提供机械信号的新干预措施,包括振动治疗,发现这些信号对骨质疏松性骨折愈合有很好的反应。振动治疗可以加速骨质疏松性骨折愈合,改善骨痂形成、矿化和重塑。然而,骨质疏松性骨折骨骼如何感知机械信号并将其传递到骨形成的机制仍未得到解答。成骨细胞是骨组织中最丰富的细胞。越来越多的证据证实,成骨细胞是一种机械敏感细胞,在衰老过程中形态发生改变,细胞密度降低。同时,成骨细胞作为内分泌细胞调节骨和矿物质的内稳态。然而,成骨细胞在骨质疏松性骨折愈合中的作用在很大程度上是未知的。最近的一项体内研究检查了在骨质疏松性干骺端骨折大鼠模型中振动治疗后成骨细胞的形态和功能变化。研究结果表明,振动治疗诱导了明显的骨小管生长和各种蛋白质(E11、DMP1、FGF23 和 Sost)表达的改变,特别是成骨细胞特异性牙本质基质蛋白 1(DMP1)的表达大大增加。DMP1 可能在将机械信号传递到骨形成中起主要作用,这可能需要进一步的实验来证实。最重要的是,振动治疗显著增加了矿化并加速了干骺端骨折模型中的骨质疏松性骨折愈合。总之,成骨细胞是感知机械信号并促进骨质疏松性骨折骨下游愈合的主要细胞类型。振动治疗具有很好的转化为临床应用的潜力,使骨质疏松性骨折患者受益,但需要随机对照试验来验证其疗效。

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