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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Genetically engineered liquid-crystalline viral films for directing neural cell growth.
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Genetically engineered liquid-crystalline viral films for directing neural cell growth.

机译:基因工程液晶病毒膜,用于指导神经细胞的生长。

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摘要

Designing biomimetic matrices with precisely controlled structural organization that provides biochemical and physical cues to regulate cell behavior is critical for the development of tissue-regenerating materials. We have developed novel liquid-crystalline film matrices made from genetically engineered M13 bacteriophages (viruses) that exhibit the ability to control and guide cell behavior for tissue-regenerating applications. To facilitate adhesion between the viruses and cells, 2700 copies of the M13 major coat protein were genetically engineered to display integrin-binding peptides (RGD). The resulting nanofiber-like viruses displaying RGD motifs were biocompatible with neuronal cells and could be self-assembled to form long-range-ordered liquid-crystalline matrices by a simple shearing method. The resulting aligned structures were able to dictate the direction of cell growth. Future use of these virus-based materials for regenerating target tissues in vivo would provide great opportunities for various tissue therapies.
机译:设计具有精确控制的结构组织的仿生基质,可以提供生化和物理线索来调节细胞行为,这对于组织再生材料的开发至关重要。我们已经开发了由基因工程M13噬菌体(病毒)制成的新型液晶薄膜基质,该基质具有控制和引导组织再生应用中细胞行为的能力。为了促进病毒和细胞之间的粘附,对2700份M13主要外壳蛋白进行了基因工程改造,以展示整联蛋白结合肽(RGD)。产生的具有RGD图案的纳米纤维样病毒与神经元细胞具有生物相容性,可以通过简单的剪切方法自组装形成长程有序的液晶矩阵。产生的对齐结构能够决定细胞生长的方向。这些基于病毒的材料未来在体内再生靶组织的用途将为各种组织疗法提供巨大的机会。

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