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脉冲电磁场刺激骺软骨发育模型中成软骨分化

Stimulation of Chondrogenesis in a Developmental Model of Endochondral Bone Formation by Pulsed Electromagnetic Fields.

机构信息

Department of Orthopedic Surgery, Warren Alpert Medical School of Brown University, Providence, RI 02903, USA.

出版信息

Int J Mol Sci. 2023 Feb 7;24(4):3275. doi: 10.3390/ijms24043275.

Abstract

Notable characteristics of the skeleton are its responsiveness to physical stimuli and its ability to remodel secondary to changing biophysical environments and thereby fulfill its physiological roles of stability and movement. Bone and cartilage cells have many mechanisms to sense physical cues and activate a variety of genes to synthesize structural molecules to remodel their extracellular matrix and soluble molecules for paracrine signaling. This review describes the response of a developmental model of endochondral bone formation which is translationally relevant to embryogenesis, growth, and repair to an externally applied pulsed electromagnetic field (PEMF). The use of a PEMF allows for the exploration of morphogenesis in the absence of distracting stimuli such as mechanical load and fluid flow. The response of the system is described in terms of the cell differentiation and extracellular matrix synthesis in chondrogenesis. Emphasis is placed upon dosimetry of the applied physical stimulus and some of the mechanisms of tissue response through a developmental process of maturation. PEMFs are used clinically for bone repair and have other potential clinical applications. These features of tissue response and signal dosimetry can be extrapolated to the design of clinically optimal stimulation.

摘要

骨骼的显著特征是其对物理刺激的反应性,以及能够重塑自身以适应不断变化的生物物理环境,从而履行其稳定和运动的生理功能。骨骼和软骨细胞有许多机制来感知物理线索,并激活多种基因来合成结构分子,以重塑其细胞外基质和可溶性分子以进行旁分泌信号传递。 本综述描述了软骨内骨形成的发育模型对外部施加的脉冲电磁场(PEMF)的反应,该模型与胚胎发生、生长和修复具有转化相关性。 使用 PEMF 可以在没有机械负荷和流体流动等干扰刺激的情况下探索形态发生。该系统的反应是根据软骨发生中的细胞分化和细胞外基质合成来描述的。 重点介绍了通过成熟的发育过程,应用物理刺激的剂量学和组织反应的一些机制。 PEMF 临床上用于骨修复,还有其他潜在的临床应用。 可以将这些组织反应和信号剂量学特征外推到临床最佳刺激的设计中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bd1/9967535/d189dec434f8/ijms-24-03275-g001.jpg

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