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首页> 外文期刊>Biomaterials >Highly versatile cell-penetrating peptide loaded scaffold for efficient and localised gene delivery to multiple cell types: From development to application in tissue engineering
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Highly versatile cell-penetrating peptide loaded scaffold for efficient and localised gene delivery to multiple cell types: From development to application in tissue engineering

机译:高通用的细胞穿透肽,用于有效和局部基因递送到多种细胞类型的高效和局部基因:从开发到组织工程中的应用

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摘要

Gene therapy has recently come of age with seven viral vector-based therapies gaining regulatory approval in recent years. In tissue engineering, non-viral vectors are preferred over viral vectors, however, lower transfection efficiencies and difficulties with delivery remain major limitations hampering clinical translation. This study describes the development of a novel multi-domain cell-penetrating peptide, GET, designed to enhance cell interaction and intracellular translocation of nucleic acids; combined with a series of porous collagen-based scaffolds with proven regenerative potential for different indications. GET was capable of transfecting cell types from all three germ layers, including stem cells, with an efficiency comparable to Lipofectamine (R) 3000, without inducing cytotoxicity. When implanted in vivo, GET gene-activated scaffolds allowed for host cell infiltration, transfection localized to the implantation site and sustained, but transient, changes in gene expression - demonstrating both the efficacy and safety of the approach. Finally, GET carrying osteogenic (pBMP-2) and angiogenic (pVEGF) genes were incorporated into collagen-hydroxyapatite scaffolds and with a single 2 mu g dose of therapeutic pDNA, induced complete repair of critical-sized bone defects within 4 weeks. GET represents an exciting development in gene therapy and by combining it with a scaffold-based delivery system offers tissue engineering solutions for a myriad of regenerative indications.
机译:最近,基因治疗最近患有七年的病毒载体的疗法近年来的监管批准。在组织工程中,非病毒载体优选在病毒载体上,然而,较低的转染效率和交付困难仍然是临床翻译的主要限制。本研究描述了新型多域细胞穿透肽的发展,旨在增强细胞相互作用和核酸细胞内易位;结合一系列基于多孔胶原基的支架,具有证明不同适应症的再生潜力。得到能够从所有三种胚层(包括干细胞)转染细胞类型,其效率与Lipofectamine(R)3000相当,而不诱导细胞毒性。当植入体内时,获得允许基因活化的支架,允许宿主细胞浸润,局部转染,局部化,但持续的,基因表达的变化 - 展示了方法的功效和安全性。最后,将携带成骨(PBMP-2)和血管生成(PVEGF)基因掺入胶原 - 羟基磷灰石支架中,并用单次2μg治疗性PDNA掺入,在4周内诱导完全修复临界骨缺损。 GET代表基因治疗中的令人兴奋的发展,并通过将其与基于脚手架的递送系统相结合,为无数的再生适应症提供组织工程解决方案。

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