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首页> 外文期刊>Neurosurgery >Engineering of the extracellular matrix: working toward neural stem cell programming and neurorestoration--concept and progress report.
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Engineering of the extracellular matrix: working toward neural stem cell programming and neurorestoration--concept and progress report.

机译:细胞外基质工程:致力于神经干细胞编程和神经修复-概念和进展报告。

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In the concept of neurorestoration, cellular and structural elements that have been lost are replaced, and their function is restored. Central to this therapeutic strategy is the transplantation of neural progenitor cells such as clonogenically expanded stem cells. Stem cells make decisions regarding fate and patterning in response to external environmental signals. The therapeutic effectiveness of neural stem cells may be facilitated by the ability to manipulate these signals in a temporal and spatially appropriate fashion. Artificial deoxyribonucleic acid and artificial protein technology combines elements of protein engineering, molecular biology, and recombinant deoxyribonucleic acid technology to produce proteins with functional domains derived from naturally occurring proteins and represents a potentially powerful tool to modulate stem cell behavior. To this end, we have developed three artificial extracellular matrix proteins that incorporate the active domain of hJagged1 and hDelta1 into an elastin backbone. hJagged1 and hDelta1 are members of the DSL family of ligands to the Notch receptor, a signaling system that is very important in development and is the strongest known signal to instruct neural progenitor cells to choose glial fates over neuronal fates. The successful cloning of the artificial genes was confirmed by test digestions with appropriate restriction enzymes as well as direct deoxyribonucleic acid sequencing. In addition, we have demonstrated that all three artificial extracellular matrix proteins express at a high level in a prokaryotic host. This report describes the concept and progress in an entirely novel and previously unreported approach to modulate neural stem cell behavior. Its future application could include in vitro processing of stem cells before transplantation, supporting and programming the cells after transplantation, as well as the development of bioactive biomaterials.
机译:在神经修复的概念中,已丢失的细胞和结构元件被替换,其功能得以恢复。该治疗策略的核心是神经祖细胞(例如克隆形成的干细胞)的移植。干细胞根据外界环境信号做出关于命运和模式的决定。通过以时间和空间适当的方式操纵这些信号的能力可以促进神经干细胞的治疗效果。人工脱氧核糖核酸和人工蛋白质技术结合了蛋白质工程,分子生物学和重组脱氧核糖核酸技术的要素,可生产具有衍生自天然蛋白质的功能域的蛋白质,并且代表了调节干细胞行为的潜在强大工具。为此,我们开发了三种人工细胞外基质蛋白,它们将hJagged1和hDelta1的活性域整合到弹性蛋白骨架中。 hJagged1和hDelta1是Notch受体的DSL配体家族的成员,Notch受体是一种在发育中非常重要的信号系统,是指示神经祖细胞选择神经胶质命运而非神经元命运的最强信号。通过用适当的限制酶进行的试验消化以及直接的脱氧核糖核酸测序,证实了人工基因的成功克隆。此外,我们已经证明,所有三种人工细胞外基质蛋白均在原核宿主中高水平表达。该报告描述了一种全新的,以前未报道的调节神经干细胞行为的方法的概念和进展。它的未来应用可能包括移植前干细胞的体外加工,移植后对细胞的支持和编程以及生物活性生物材料的开发。

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