Dennis Robert G, Dow Douglas E
Department of Biomedical Engineering, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599-7575, USA.
Tissue Eng. 2007 Oct;13(10):2395-404. doi: 10.1089/ten.2006.0367.
A quantitative understanding of the bulk excitability of skeletal muscle tissues is important for the design of muscle tissue bioreactor systems, implantable muscle stimulators, and other systems where electrical pulses are employed to elicit contractions in muscle tissue both in vitro and in vivo. The purpose of the present study is to systematically compare the excitability of mammalian (rat) skeletal muscle under a range of conditions (including neonatal development, denervation, and chronic in vivo stimulation of denervated muscle) and of self-organized muscle tissue constructs engineered in vitro from both primary cells and cell lines. Excitability is represented by rheobase (R(50), units = V/mm) and chronaxie (C(50), units = microseconds) values, with lower values for each indicating greater excitability. Adult skeletal muscle is the most excitable (R(50) ~ 0.29, C(50) ~ 100); chronically denervated whole muscles (R(50) ~ 2.54, C(50) ~ 690) and muscle engineered in vitro from cell lines (C2C12 + 10T1/2) (R(50) ~ 1.93, C(50) ~ 416) have exceptionally low excitability; muscle engineered in vitro from primary myocytes (R(50) ~ 0.99, C(50) ~ 496) has excitability similar to that of day 14 neonatal rat muscle (R(50) ~ 0.65, C(50) ~ 435); stimulated-denervated muscles retain excellent excitability when chronically electrically stimulated (R(50) ~ 0.40, C(50) ~ 100); and neonatal rat muscle excitability improves during the first 6 weeks of development, steadily approaching that of adult muscle.
对骨骼肌组织整体兴奋性进行定量理解,对于肌肉组织生物反应器系统、可植入肌肉刺激器以及其他在体外和体内利用电脉冲引发肌肉组织收缩的系统设计而言至关重要。本研究的目的是系统比较一系列条件下(包括新生发育、去神经支配以及对去神经支配肌肉的慢性体内刺激)哺乳动物(大鼠)骨骼肌的兴奋性,以及由原代细胞和细胞系体外构建的自组织肌肉组织的兴奋性。兴奋性由基强度(R(50),单位 = V/mm)和时值(C(50),单位 = 微秒)值表示,每个值越低表明兴奋性越高。成年骨骼肌兴奋性最高(R(50) ~ 0.29,C(50) ~ 100);慢性去神经支配的整块肌肉(R(50) ~ 2.54,C(50) ~ 690)以及由细胞系(C2C12 + 10T1/2)体外构建的肌肉(R(50) ~ 1.93,C(50) ~ 416)兴奋性极低;由原代心肌细胞体外构建的肌肉(R(50) ~ 0.99,C(50) ~ 496)的兴奋性与出生后14天的新生大鼠肌肉(R(50) ~ 0.65,C(50) ~ 435)相似;慢性电刺激的去神经支配肌肉在长期电刺激时保持良好的兴奋性(R(50) ~ 0.40,C(50) ~ 100);新生大鼠肌肉的兴奋性在发育的前6周有所提高,稳步接近成年肌肉的兴奋性。