首页> 外文期刊>International Journal of Photoenergy >Effect of Low Power Laser Irradiation on the Ability of Cell Growth and Myogenic Differentiation of Myoblasts CulturedIn Vitro
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Effect of Low Power Laser Irradiation on the Ability of Cell Growth and Myogenic Differentiation of Myoblasts CulturedIn Vitro

机译:低功率激光辐照对体外培养成肌细胞细胞生长及成肌分化能力的影响

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As a therapeutic modality, low power laser irradiation (LPLI) has been used clinically in the treatment of skeletal muscle injuries and other myopathic conditions, but the cellular and molecular mechanisms attributed to this therapy were still unclear. Myoblasts are a type of myogenic stem cells quiescence in mature skeletal muscle fibers and are considered as the source cells during the regenerating process. The purpose of this paper was to investigate the effects of LPLI on the proliferation and myogenic differentiation of the cultured myoblasts and to find out the major candidates responsible for LPLI-induced muscle regenerationin vivo. In this study, primary rat myoblasts were exposed to helium-neon (He-Ne) laser. Cell proliferation, differentiation, and the cellular responses to LPLI were monitored by using morphological observation and molecular biological methods. It was found that LPLI at a certain fluence could increase the cell growth potential for myoblasts and further induce more cells entering into S phase of the mitotic cycle as indicated by high levels of bromodeoxyuridine (BrdU) incorporation, while at the same time inhibiting theirin vitrodifferentiation and decreasing the expression of myogenic regulatory genes to a certain extent. Taken together, these results provide experimental evidence for the clinical applications of LPLI in regenerating skeletal muscle.
机译:作为一种治疗方法,低功率激光照射(LPLI)已在临床上用于治疗骨骼肌损伤和其他肌病,但归因于这种治疗的细胞和分子机制仍不清楚。成肌细胞是成熟骨骼肌纤维中的一种成肌干细胞静止状态,在再生过程中被视为源细胞。本文的目的是研究LPLI对培养的成肌细胞增殖和成肌分化的影响,并找出负责LPLI诱导的体内肌肉再生的主要候选药物。在这项研究中,原代大鼠成肌细胞暴露于氦氖(He-Ne)激光。通过使用形态学观察和分子生物学方法来监测细胞对LPLI的增殖,分化和细胞反应。发现高通量溴脱氧尿嘧啶核苷(BrdU)掺入表明,一定浓度的LPLI可增加成肌细胞的细胞生长潜力,并进一步诱导更多细胞进入有丝分裂周期的S期,同时抑制其体外分化。并在一定程度上降低成肌调节基因的表达。综上所述,这些结果为LPLI在再生骨骼肌中的临床应用提供了实验证据。

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