首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Pore-forming bioinks to enable spatio-temporally defined gene delivery in bioprinted tissues
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Pore-forming bioinks to enable spatio-temporally defined gene delivery in bioprinted tissues

机译:形成孔形成生物链,以在生生物印刷组织中启用时空定义的基因递送

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摘要

The regeneration of complex tissues and organs remains a major clinical challenge. With a view towards bio-printing such tissues, we developed a new class of pore-forming bioink to spatially and temporally control the presentation of therapeutic genes within bioprinted tissues. By blending sacrificial and stable hydrogels, we were able to produce bioinks whose porosity increased with time following printing. When combined with amphi-pathic peptide-based plasmid DNA delivery, these bioinks supported enhanced non-viral gene transfer to stem cells in vitro. By modulating the porosity of these bioinks, it was possible to direct either rapid and transient (pore forming bioinks), or slower and more sustained (solid bioinks) transfection of host or transplanted cells in vivo. To demonstrate the utility of these bioinks for the bioprinting of spatially complex tissues, they were next used to zonally position stem cells and plasmids encoding for either osteogenic (BMP2) or chondrogenic (combination of TGF-j33, BMP2 and SOX9) genes within networks of 3D printed thermoplastic fibers to produce mechanically reinforced, gene activated constructs. In vivo, these bioprinted tissues supported the development of a vascularised, bony tissue overlaid by a layer of stable cartilage. When combined with multiple-tool bio-fabrication strategies, these gene activated bioinks can enable the bioprinting of a wide range of spatially complex tissues.
机译:复杂组织和器官的再生仍然是一个主要的临床挑战。通过对生物印刷这种组织的观点,我们开发了一种新的孔形成生物链,以在空间上进行空间,并时间控制生物印刷组织内治疗基因的呈现。通过混合牺牲和稳定的水凝胶,我们能够产生孔隙率随着印刷后的时间而增加的生物链。当结合Amphi-Paincienc肽的质粒DNA递送时,这些生物链支持增强的非病毒基因在体外转移到干细胞。通过调节这些生物链的孔隙率,可以直接快速和瞬时(孔形成生物链),或者在体内转染宿主或移植细胞的较慢和更持续的(固体生物链接)。为了证明这些生物链的实用性对于空间复杂组织的生物印刷,它们被用于对齐地定位用于骨质发生(BMP2)或软骨内(TGF-J33,BMP2和SOX9)基因内的骨质发生(BMP2)或软骨组合的质粒3D印刷热塑性纤维以生产机械增强的基因活化构建体。在体内,这些生物印刷组织支持覆盖一层稳定的软骨覆盖的血管化的骨组织的发展。当与多工具生物制造策略结合时,这些基因活化的生物链可以使得宽范围的空间复杂组织的生物印刷。

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