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交变电刺激和机械刺激诱导的细胞外基质重塑增加了工程化骨骼肌组织的收缩。

Extracellular matrix remodelling induced by alternating electrical and mechanical stimulations increases the contraction of engineered skeletal muscle tissues.

机构信息

Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.

BioSystem and Micromechanics IRG, Singapore-MIT Alliance for Research and Technology, National University of Singapore, Singapore, 117543, Singapore.

出版信息

Sci Rep. 2019 Feb 25;9(1):2732. doi: 10.1038/s41598-019-39522-6.

Abstract

Engineered skeletal muscles are inferior to natural muscles in terms of contractile force, hampering their potential use in practical applications. One major limitation is that the extracellular matrix (ECM) not only impedes the contraction but also ineffectively transmits the forces generated by myotubes to the load. In the present study, ECM remodelling improves contractile force in a short time, and a coordinated, combined electrical and mechanical stimulation induces the desired ECM remodelling. Notably, the application of single and combined stimulations to the engineered muscles remodels the structure of their ECM networks, which determines the mechanical properties of the ECM. Myotubes in the tissues are connected in parallel and in series to the ECM. The stiffness of the parallel ECM must be low not to impede contraction, while the stiffness of the serial ECM must be high to transmit the forces to the load. Both the experimental results and the mechanistic model suggest that the combined stimulation through coordination reorients the ECM fibres in such a way that the parallel ECM stiffness is reduced, while the serial ECM stiffness is increased. In particular, 3 and 20 minutes of alternating electrical and mechanical stimulations increase the force by 18% and 31%, respectively.

摘要

工程化骨骼肌在收缩力方面逊于天然肌肉,这限制了它们在实际应用中的潜力。一个主要的限制是细胞外基质 (ECM) 不仅阻碍收缩,而且还不能有效地将肌管产生的力传递到负载上。在本研究中,ECM 重塑在短时间内提高了收缩力,协调的电-机械联合刺激诱导了所需的 ECM 重塑。值得注意的是,对工程化肌肉进行单一和联合刺激的应用重塑了其 ECM 网络的结构,而 ECM 网络的结构决定了 ECM 的机械性能。组织中的肌管与 ECM 呈并联和串联连接。并联 ECM 的刚度必须低,以免阻碍收缩,而串联 ECM 的刚度必须高,以将力传递到负载。实验结果和力学模型都表明,通过协调进行的联合刺激以一种使并联 ECM 刚度降低、串联 ECM 刚度增加的方式重新定向 ECM 纤维。特别是,交替电-机械刺激 3 分钟和 20 分钟分别使力增加了 18%和 31%。

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