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From scrawny to brawny: the quest for neomusculogenesis; smart surfaces and scaffolds for muscle tissue engineering.

机译:从骨瘦如柴的壮壮到新肌肉的形成;用于肌肉组织工程的智能表面和支架。

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The successful generation of functional muscle tissues requires both an in-depth knowledge of muscle tissue physiology and advanced engineering practices. The inherent contractile functionality of muscle is a result of its high-level cellular and matrix organization over a multitude of length scales. While there have been many attempts to produce artificial muscle, a method to fabricate a highly organized construct, comprised of multiple cell types and capable of delivering contractile strengths similar to that of native smooth, skeletal or cardiac muscle has remained elusive. This is largely due to a lack of control over phenotype and spatial organization of cells. This paper covers state-of-the-art approaches to generating both 2D and 3D substrates that provide some form of higher level organization or multiple biochemical, mechanical or electrical cues to cells in order to successfully manipulate their behavior, in a manner that is conducive to the production of contractile muscle tissue. These so-called 'smart surfaces' and 'smart scaffolds' represent vital steps towards surface-engineered substrates for the engineering of muscle tissues, showing confidently that cellular behavior can be effectively and reproducibly manipulated through the design of the physical, chemical and electrical properties of the substrates on which cells are grown. However, many challenges remain to be overcome prior to reaching the ultimate goal of fully functional 3D vascularized engineered muscle.
机译:功能性肌肉组织的成功产生需要对肌肉组织生理学的深入了解和先进的工程实践。肌肉固有的收缩功能是其在许多长度范围内的高级细胞和基质组织的结果。尽管已经进行了许多尝试来生产人造肌肉,但是一种制造高度组织化的构建体的方法仍然难以捉摸,该构建体由多种细胞类型组成并且能够传递与天然平滑肌,骨骼肌或心肌相似的收缩力。这主要是由于缺乏对细胞的表型和空间组织的控制。本文涵盖了产生2D和3D基底的最新方法,这些基底为细胞提供了某种形式的高层组织或多种生化,机械或电学线索,从而以一种有益的方式成功地操纵了它们的行为。产生收缩性肌肉组织。这些所谓的“智能表面”和“智能脚手架”代表了朝着表面工程衬底进行肌肉组织工程的重要步骤,充满信心地表明,通过设计物理,化学和电学性质,可以有效且可重复地操纵细胞行为细胞在其上生长的底物。但是,在达到功能齐全的3D血管化工程肌肉的最终目标之前,仍有许多挑战需要克服。

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