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Progress and outlook of inorganic nanoparticles for delivery of nucleic acid sequences related to orthopedic pathologies: A review

机译:无机纳米颗粒用于与骨科病理学相关的核酸序列的研究进展与展望

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摘要

The anticipated growth in the aging population will drastically increase medical needs of society; of which, one of the largest components will undoubtedly be from orthopedic-related pathologies. There are several proposed solutions being investigated to cost-effectively prepare for the future-pharmaceuticals, implant devices, cell and gene therapies, or some combination thereof. Gene therapy is one of the more promising possibilities because it seeks to correct the root of the problem, thereby minimizing treatment duration and cost. Currently, viral vectors have shown the highest efficacies, but immunological concerns remain. Nonviral methods show reduced immune responses but are regarded as less efficient. The nonviral paradigms consist of mechanical and chemical approaches. While organic-based materials have been used more frequently in particle-based methods, inorganic materials capable of delivery have distinct advantages, especially advantageous in orthopedic applications. The inorganic gene therapy field is highly interdisciplinary in nature, and requires assimilation of knowledge across the broad fields of cell biology, biochemistry, molecular genetics, materials science, and clinical medicine. This review provides an overview of the role each area plays in orthopedic gene therapy as well as possible future directions for the field.
机译:人口老龄化的预期增长将大大增加社会的医疗需求;其中,最大的组成部分之一无疑将来自与骨科相关的病理学。有几种提议的解决方案正在研究中,以经济有效地为未来的药物,植入设备,细胞和基因疗法或它们的某种组合做准备。基因治疗是最有前途的可能性之一,因为它试图纠正问题的根源,从而最大程度地减少治疗时间和成本。目前,病毒载体显示出最高的功效,但仍存在免疫学问题。非病毒方法显示出降低的免疫反应,但效率较低。非病毒范例包括机械和化学方法。尽管基于有机物的材料在基于颗粒的方法中被更频繁地使用,但是能够输送的无机材料具有明显的优势,尤其在整形外科应用中是有利的。无机基因治疗领域本质上是高度交叉学科,需要细胞生物学,生物化学,分子遗传学,材料科学和临床医学等广泛领域的知识吸收。这篇综述概述了每个领域在骨科基因治疗中的作用,以及该领域的未来发展方向。

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