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Irradiation by pulsed Nd:YAG laser induces the production of extracellular matrix molecules by cells of the connective tissues. A tool for tissue repair

机译:脉冲Nd:YAG激光辐照会导致结缔组织细胞产生胞外基质分子。组织修复工具

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Many studies demonstrated that mechanical stress is a key factor for tissue homeostasis, while unloading induce loss of mass and impairment of function. Because of their physiological function, muscle, connective tissue, bone and cartilage dynamically interact with mechanical and gravitational stress, modifying their properties through the continuous modification of their composition. Indeed, it is known that mechanical stress increases the production of extracellular matrix (ECM) components by cells, but the mechanotransduction mechanisms and the optimal loading conditions required for an optimal tissue homeostasis are still unknown. Considering the importance of cell activation and ECM production in tissue regeneration, a proper use of mechanical stimulation could be a powerful tool in tissue repair and tissue engineering.Studies exploring advanced modalities for supplying mechanical stimuli are needed to increase our knowledge on mechanobiology and to develop effective clinical applications.Here we describe the effect of photomechanical stress, supplied by a pulsed Nd:YAG laser on ECM production by cells of connective tissues.Cell morphology, production of ECM molecules (collagens, fibronectin, mucopolysaccharides), cell adhesion and cell energy metabolism have been studied by using immunofluorescence and autofluorescence microscopy. The results show that photomechanical stress induces cytoskeleton remodelling, redistribution of membrane integrins, increase in production of ECM molecules. These results could be of consequence for developing clinical protocols for the treatment of connective tissue dideases by pulsed Nd:YAG laser.
机译:许多研究表明,机械应力是组织动态平衡的关键因素,而卸载会导致质量下降和功能受损。由于它们的生理功能,肌肉,结缔组织,骨骼和软骨与机械应力和重力应力动态相互作用,从而通过不断改变其成分来改变其特性。实际上,已知机械应力会增加细胞对细胞外基质(ECM)成分的产生,但是对于最佳组织动态平衡所需的机械转导机制和最佳加载条件仍然未知。考虑到细胞活化和ECM产生在组织再生中的重要性,正确使用机械刺激可能是组织修复和组织工程中的有力工具。 为了增加我们对机械生物学的了解并开发有效的临床应用,需要进行研究以探索提供机械刺激的先进方法。 在这里,我们描述了由Nd:YAG脉冲激光提供的光机械应力对结缔组织细胞ECM产生的影响。 使用免疫荧光和自发荧光显微镜研究了细胞形态,ECM分子(胶原蛋白,纤连蛋白,粘多糖)的产生,细胞粘附和细胞能量代谢。结果表明,光机械应力诱导细胞骨架重塑,膜整联蛋白的重新分布,增加ECM分子的产量。这些结果可能对开发通过脉冲Nd:YAG激光治疗结缔组织二糖酶的临床方案具有重要意义。

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