Moon Du Geon, Christ George, Stitzel Joel D, Atala Anthony, Yoo James J
Wake Forest Institute for Regenerative Medicine, Wake Forest University School of Medicine, Winston-Salem, North Carolina 27157, USA.
Tissue Eng Part A. 2008 Apr;14(4):473-82. doi: 10.1089/tea.2007.0104.
The inability to engineer clinically relevant functional muscle tissue remains a major hurdle to successful skeletal muscle reconstructive procedures. This article describes an in vitro preconditioning protocol that improves the contractility of engineered skeletal muscle after implantation in vivo. Primary human muscle precursor cells (MPCs) were seeded onto collagen-based acellular tissue scaffolds and subjected to cyclic strain in a computer-controlled bioreactor system. Control constructs (static culture conditions) were run in parallel. Bioreactor preconditioning produced viable muscle tissue constructs with unidirectional orientation within 5 days, and in vitro-engineered constructs were capable of generating contractile responses after 3 weeks of bioreactor preconditioning. MPC-seeded constructs preconditioned in the bioreactor for 1 week were also implanted onto the latissimus dorsi muscle of athymic mice. Analysis of tissue constructs retrieved 1 to 4 weeks postimplantation showed that bioreactor-preconditioned constructs, but not statically cultured control tissues, generated tetanic and twitch contractile responses with a specific force of 1% and 10%, respectively, of that observed on native latissimus dorsi. To our knowledge, this is the largest force generated for tissue-engineered skeletal muscle on an acellular scaffold. This finding has important implications to the application of tissue engineering and regenerative medicine to skeletal muscle replacement and reconstruction.
无法构建具有临床相关性的功能性肌肉组织仍然是成功进行骨骼肌重建手术的主要障碍。本文描述了一种体外预处理方案,该方案可提高工程化骨骼肌在体内植入后的收缩能力。将原代人肌肉前体细胞(MPC)接种到基于胶原蛋白的无细胞组织支架上,并在计算机控制的生物反应器系统中施加循环应变。平行设置对照构建体(静态培养条件)。生物反应器预处理在5天内产生了具有单向排列的有活力的肌肉组织构建体,并且经过3周生物反应器预处理的体外工程构建体能够产生收缩反应。在生物反应器中预处理1周的接种MPC的构建体也被植入到无胸腺小鼠的背阔肌上。对植入后1至4周取出的组织构建体的分析表明,经过生物反应器预处理的构建体,而不是静态培养的对照组织,产生了强直收缩和抽搐收缩反应,其比力分别为天然背阔肌上观察到的比力的1%和10%。据我们所知,这是在无细胞支架上为组织工程化骨骼肌产生的最大力量。这一发现对组织工程和再生医学在骨骼肌替代和重建中的应用具有重要意义。