首页> 美国卫生研究院文献>Frontiers in Pharmacology >Achieving Acetylcholine Receptor Clustering in Tissue-Engineered Skeletal Muscle Constructs In vitro through a Materials-Directed Agrin Delivery Approach
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Achieving Acetylcholine Receptor Clustering in Tissue-Engineered Skeletal Muscle Constructs In vitro through a Materials-Directed Agrin Delivery Approach

机译:通过材料定向的Agrin传递方法在体外实现组织工程化的骨骼肌构造中的乙酰胆碱受体簇。

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摘要

Volumetric muscle loss (VML) can result from trauma, infection, congenital anomalies, or surgery, and produce permanent functional and cosmetic deficits. There are no effective treatment options for VML injuries, and recent advances toward development of muscle constructs lack the ability to achieve innervation necessary for long-term function. We sought to develop a proof-of-concept biomaterial construct that could achieve acetylcholine receptor (AChR) clustering on muscle-derived cells (MDCs) in vitro. The approach consisted of the presentation of neural (Z+) agrin from the surface of microspheres embedded with a fibrin hydrogel to muscle cells (C2C12 cell line or primary rat MDCs). AChR clustering was spatially restricted to areas of cell (C2C12)-microsphere contact when the microspheres were delivered in suspension or when they were incorporated into a thin (2D) fibrin hydrogel. AChR clusters were observed from 16 to 72 h after treatment when Z+ agrin was adsorbed to the microspheres, and for greater than 120 h when agrin was covalently coupled to the microspheres. Little to no AChR clustering was observed when agrin-coated microspheres were delivered from specially designed 3D fibrin constructs. However, cyclic stretch in combination with agrin-presenting microspheres led to dramatic enhancement of AChR clustering in cells cultured on these 3D fibrin constructs, suggesting a synergistic effect between mechanical strain and agrin stimulation of AChR clustering in vitro. These studies highlight a strategy for maintaining a physiological phenotype characterized by motor endplates of muscle cells used in tissue engineering strategies for muscle regeneration. As such, these observations may provide an important first step toward improving function of tissue-engineered constructs for treatment of VML injuries.
机译:体积肌肉损失(VML)可能是由于外伤,感染,先天畸形或手术引起的,并造成永久性的功能和美容缺陷。目前尚无针对VML损伤的有效治疗选择,并且肌肉构造发展的最新进展缺乏实现长期功能所需的神经支配能力。我们试图开发一种概念验证的生物材料构建体,该构建体可以在体外在肌肉衍生细胞(MDC)上实现乙酰胆碱受体(AChR)聚类。该方法包括将神经纤维蛋白(Z +)从微纤维表面植入纤维蛋白水凝胶,呈现给肌肉细胞(C2C12细胞系或原代大鼠MDC)。当微球以悬浮液形式输送或掺入薄的(2D)纤维蛋白水凝胶中时,AChR聚类在空间上局限于细胞(C2C12)-微球接触区域。当Z +凝集素吸附到微球上时,在处理后16至72小时观察到AChR簇,而当凝集素共价偶联到微球上时,观察到超过120 h。当从特别设计的3D纤维蛋白构建体中递送有凝集素涂层的微球时,几乎没有观察到AChR聚集。然而,周期性拉伸结合有凝集素的微球体导致在这些3D纤维蛋白构建体上培养的细胞中AChR簇的显着增强,这表明机械应变和凝集素刺激体外AChR簇之间具有协同作用。这些研究突出了一种维持生理表型的策略,该生理表型的特征在于用于肌肉再生的组织工程策略中使用的肌肉细胞的运动终板。这样,这些观察结果可提供迈出重要的第一步,以改善用于治疗VML损伤的组织工程构造的功能。

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