Cheng Lei, Gu Xuemei, Sanderson John E, Wang Xisha, Lee Kwongman, Yao Xinsheng, Liu Hongwei, Cheung Winghong L, Li Ming
Department of Medicine and Therapeutics, 9th Floor, Clinical Building, Prince of Wales Hospital, The Chinese University of Hong Kong, Shatin, NT, Hong Kong.
Int J Biochem Cell Biol. 2006;38(7):1123-33. doi: 10.1016/j.biocel.2005.12.004. Epub 2006 Jan 6.
Muscle repair following severe injury is slow and incomplete due to the limited regenerative capacity of muscles comprising the function. In this study, one pure compound structurally corresponding to triterpenoid, which can directly induce the activation, proliferation and maturation of quiescent satellite cells into myocytes in vitro, was isolated from Geum japonicum. The potential effect of this compound on myogenesis was further tested in repair of severe muscle injury. It was found that this compound could significantly stimulate the regenerative potential of the damaged muscle resulting in regeneration of myotubes and myotube bundles time-dependently replacing the damaged muscle tissues. This compound-mediated active regeneration of new myofibers repairing damaged muscles was probably due to its direct action on activation and proliferation of quiescent myogenic precursor cells and enhancement of their maturation into regenerating myotubes, as was demonstrated in our primary myogenic precursor cells culture experiments. The up-regulated expression of endogenous phospho-Akt1 in compound-treated myogenic precursor cells may also contribute to the process of myofiber regeneration and muscle repair probably via promoting myogenic cell survival capacity.
由于构成该功能的肌肉再生能力有限,严重损伤后的肌肉修复缓慢且不完全。在本研究中,从日本水杨梅中分离出一种结构上与三萜类化合物相对应的纯化合物,该化合物在体外可直接诱导静止卫星细胞激活、增殖并成熟为肌细胞。在严重肌肉损伤修复中进一步测试了该化合物对肌生成的潜在作用。结果发现,该化合物可显著刺激受损肌肉的再生潜能,导致肌管和肌管束再生,并随时间推移取代受损肌肉组织。这种化合物介导的新肌纤维主动再生以修复受损肌肉,可能是由于其直接作用于静止肌源性前体细胞的激活和增殖,并促进其成熟为再生肌管,这在我们的原代肌源性前体细胞培养实验中得到了证实。化合物处理的肌源性前体细胞中内源性磷酸化Akt1表达上调,也可能通过提高肌源性细胞存活能力,促进肌纤维再生和肌肉修复过程。