Effects of electrical stimulation on rat limb regeneration, a new look at an old model

再生(生物学) 刺激 软骨 功能性电刺激 胚芽 干细胞 医学 解剖 截肢 生物 神经科学 细胞生物学 外科
作者
Liudmila Leppik,Dara Froemel,Andrei Slavici,Zachri N. Ovadia,Lukasz Hudak,Dirk Henrich,Ingo Marzi,John H. Barker
出处
期刊:Scientific Reports [Springer Nature]
卷期号:5 (1) 被引量:62
标识
DOI:10.1038/srep18353
摘要

Abstract Limb loss is a devastating disability and while current treatments provide aesthetic and functional restoration, they are associated with complications and risks. The optimal solution would be to harness the body’s regenerative capabilities to regrow new limbs. Several methods have been tried to regrow limbs in mammals, but none have succeeded. One such attempt, in the early 1970s, used electrical stimulation and demonstrated partial limb regeneration. Several researchers reproduced these findings, applying low voltage DC electrical stimulation to the stumps of amputated rat forelimbs reporting “blastema and new bone, bone marrow, cartilage, nerve, skin, muscle and epiphyseal plate formation”. In spite of these encouraging results this research was discontinued. Recently there has been renewed interest in studying electrical stimulation, primarily at a cellular and subcellular level and studies have demonstrated changes in stem cell behavior with increased proliferation, differentiation, matrix formation and migration, all important in tissue regeneration. We applied electrical stimulation, in vivo , to the stumps of amputated rat limbs and observed significant new bone, cartilage and vessel formation and prevention of neuroma formation. These findings demonstrate that electricity stimulates tissue regeneration and form the basis for further research leading to possible new treatments for regenerating limbs.

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