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Telocytes: Connective tissue repair and communication cells

机译:电视:结缔组织修复和通信细胞

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The mechanotransduction features of fibroblasts are well established, with the potential for different degrees, durations frequency and direction of biomechanical loading (as in myofascial release) and unloading (as in counterstrain), having been shown, in in-vitro studies, to have predictable effects on tissue remodelling and inflammatory processes (as examples) (Zein-Hamoud and Standley, 2015). Mechanosensitivity has now also been identified as a feature of telocytes - a highly versatile, newly identified, different category of connective tissue cell, that is also active in repair and regeneration, recently described and characterized by Popescu et al, (2011), in Bucharest, Romania. (Cretoiu, 2016). The question therefore arises as to how, and to what degree, appropriately applied biomechanical load, associated with the therapeutic use of movement and manual treatment, may be capable of positively influencing these connective tissue cells in their known homeostatic roles?
机译:成纤维细胞的机械手术特征很好,具有不同程度的潜力,持续频率和生物力学载荷的方向(如在肌筋释放)和卸载(如在体内)中,在体外研究中显示出可预测的 对组织重塑和炎症过程的影响(如实施例)(Zein-Hamoud和Standley,2015)。 机械敏感性现在也被鉴定为鸟束的一种特征 - 一种高度通用的,新鉴定的不同类别的结缔组织细胞,其在修复和再生中也是活跃的,最近描述和以Popescu等,(2011)在布加勒斯特 , 罗马尼亚。 (克里多伊,2016)。 因此,该问题涉及如何以及与何种程度,适当应用的生物力学载荷,与运动和手动治疗的治疗用途相关,可以在其已知的稳态角色中积极影响这些结缔组织细胞?

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