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阻滞细胞周期及其对伤口愈合的影响。

Arresting cell cycles and the effect on wound healing.

作者信息

Vande Berg Jerry S, Robson Martin C

机构信息

Core Clinical and Research Imaging Facility, V-151, San Diego Veterans Administration Medical Center, 3350 La Jolla Village Drive, San Diego, CA 92161, USA.

出版信息

Surg Clin North Am. 2003 Jun;83(3):509-20. doi: 10.1016/S0039-6109(02)00195-0.

Abstract

Wounds that contain a significant number of fibroblasts that are arrested because of senescence, damaged DNA, or enduring quiescence do not heal. As the arrested population of cells decreases and more cells that divide and contribute to wound repair populate the wound, the wound is more likely to achieve closure. Having an understanding of the regulatory mechanisms within the cell cycle is important to wound repair, particularly chronic wounds. The theory of cellular senescence in chronic wounds is new and has never been tested. Studies seem to show that senescent cells in chronic wounds are a significant part of the wounding process. Senescence is irreversible, and senescent cells are refractory to growth factor therapy. Future growth factor therapies or genetic transfections that are capable of repairing the short circuit in cycling cells or overriding the senescent condition will be important partners in the successful treatment of chronic wound patients.

摘要

含有大量因衰老、DNA损伤或长期静止而停滞的成纤维细胞的伤口无法愈合。随着停滞的细胞群体减少,更多参与伤口修复的分裂细胞填充伤口,伤口更有可能实现闭合。了解细胞周期内的调节机制对伤口修复很重要,尤其是慢性伤口。慢性伤口中的细胞衰老理论是新的,尚未经过验证。研究似乎表明,慢性伤口中的衰老细胞是伤口形成过程的重要组成部分。衰老是不可逆的,衰老细胞对生长因子治疗具有抗性。未来能够修复循环细胞中的短路或克服衰老状态的生长因子疗法或基因转染将成为成功治疗慢性伤口患者的重要手段。

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