人弹性蛋白样多肽(HELP)水凝胶上成肌细胞的粘附、增殖和分化

P. D'andrea, Deborah Civita, M. Cok, L. Ulloa Severino, F. Vita, D. Scaini, L. Casalis, P. Lorenzon, I. Donati, A. Bandiera
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引用次数: 19

摘要

细胞外基质的生化、力学和地形特性对骨骼肌细胞的形态发生、增殖和分化起着至关重要的作用。人弹性蛋白样多肽(help)是一种重组仿生蛋白,旨在模仿天然基质蛋白的某些特性;当用作成肌细胞粘附底物时,它们刺激体外肌生成。考虑到细胞外基质的生物物理特性对骨骼肌细胞的影响,本研究的目的是研究HELP水凝胶对成肌细胞活力和功能的影响。方法将弹性蛋白样主链与IV型胶原α2链中的41aa序列融合,合成了一种新的多肽HELPc,该序列含有两个精氨酸酰-甘氨酸-天冬氨酸(RGD)基序。为了获得水凝胶,HELPc的酶交联是由谷氨酰胺转酶完成的。在这里,我们采用不同单体密度的非交联HELPc玻璃涂层和交联HELPc水凝胶作为C2C12细胞的粘附底物,用于成肌细胞模型。结果通过比较细胞的粘附、增殖和分化,发现了一些显著的差异。根据支撑刚度,HELPc底物的粘附决定了细胞形态、扩散、黏附灶形成和细胞骨架组织。水凝胶极大地刺激细胞增殖,特别是在低血清培养基中,并部分抑制肌源性分化。总的来说,结果强调了这些基因工程多肽作为解剖肌肉形成关键步骤的工具的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Myoblast Adhesion, Proliferation and Differentiation on Human Elastin-Like Polypeptide (HELP) Hydrogels
Background The biochemical, mechanical and topographic properties of extracellular matrix are crucially involved in determining skeletal muscle cell morphogenesis, proliferation and differentiation. Human elastin-like polypeptides (HELPs) are recombinant biomimetic proteins designed to mimic some properties of the native matrix protein; when employed as myoblast adhesion substrates, they stimulate in vitro myogenesis. Given the influence that the biophysical properties of extracellular matrix have on skeletal muscle cells, the aim of this work was to investigate the effects of HELP hydrogels on myoblasts’ viability and functions. Methods We recently synthesized a novel polypeptide, HELPc, by fusing the elastin-like backbone to a 41aa sequence present in the α2 chain of type IV collagen, containing two arginyl-glycyl-aspartic acid (RGD) motifs. To obtain hydrogels, the enzymatic cross-linking of the HELPc was accomplished by transglutaminase. Here, we employed both non-cross-linked HELPc glass coatings and cross-linked HELPc hydrogels at different monomer densities, as adhesion substrates for C2C12 cells, used as a myoblast model. Results By comparing cell adhesion, proliferation and differentiation, we revealed several striking differences. Depending on support rigidity, adhesion to HELPc substrates dictated cell morphology, spreading, focal adhesion formation and cytoskeletal organization. Hydrogels greatly stimulated cell proliferation, particularly in low-serum medium, and partially inhibited myogenic differentiation. Conclusions On the whole, the results underline the potential of these genetically engineered polypeptides as a tool for dissecting crucial steps in myogenesis.
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来源期刊
Journal of Applied Biomaterials & Biomechanics
Journal of Applied Biomaterials & Biomechanics 生物-材料科学:生物材料
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