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基于生物材料支架的核酸纳米药物在骨科组织修复中的应用:挑战、进展及未来展望。

Delivering Nucleic-Acid Based Nanomedicines on Biomaterial Scaffolds for Orthopedic Tissue Repair: Challenges, Progress and Future Perspectives.

机构信息

Tissue Engineering Research Group (TERG), Dept. of Anatomy, Royal College of Surgeons in Ireland (RCSI), 123, St. Stephens Green, Dublin 2, Dublin, Ireland.

Trinity Centre for Bioengineering (TCBE), Trinity College Dublin, Dublin 2, Dublin, Ireland.

出版信息

Adv Mater. 2016 Jul;28(27):5447-69. doi: 10.1002/adma.201505088. Epub 2016 Feb 3.

Abstract

As well as acting to fill defects and allow for cell infiltration and proliferation in regenerative medicine, biomaterial scaffolds can also act as carriers for therapeutics, further enhancing their efficacy. Drug and protein delivery on scaffolds have shown potential, however, supraphysiological quantities of therapeutic are often released at the defect site, causing off-target side effects and cytotoxicity. Gene therapy involves the introduction of foreign genes into a cell in order to exert an effect; either replacing a missing gene or modulating expression of a protein. State of the art gene therapy also encompasses manipulation of the transcriptome by harnessing RNA interference (RNAi) therapy. The delivery of nucleic acid nanomedicines on biomaterial scaffolds - gene-activated scaffolds -has shown potential for use in a variety of tissue engineering applications, but as of yet, have not reached clinical use. The current state of the art in terms of biomaterial scaffolds and delivery vector materials for gene therapy is reviewed, and the limitations of current procedures discussed. Future directions in the clinical translation of gene-activated scaffolds are also considered, with a particular focus on bone and cartilage tissue regeneration.

摘要

除了在再生医学中起到填补缺陷、允许细胞浸润和增殖的作用外,生物材料支架还可以作为治疗药物的载体,进一步提高其疗效。支架上的药物和蛋白质递送显示出了潜力,然而,治疗药物的超生理剂量通常在缺陷部位释放,导致脱靶副作用和细胞毒性。基因治疗包括将外源基因引入细胞以发挥作用;既可以替代缺失的基因,也可以调节蛋白质的表达。最先进的基因治疗还包括利用 RNA 干扰 (RNAi) 治疗来操纵转录组。核酸纳米药物在生物材料支架上的递送——基因激活支架——在各种组织工程应用中显示出了潜力,但到目前为止,尚未达到临床应用。本文综述了基因治疗用生物材料支架和递送载体材料的最新进展,并讨论了目前方法的局限性。还考虑了基因激活支架在临床转化方面的未来发展方向,特别关注骨和软骨组织再生。

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