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Nucleic acids and analogs for bone regeneration

机译:用于骨骼再生的核酸和类似物

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摘要

With the incidence of different bone diseases increasing, effective therapies are needed that coordinate a combination of various technologies and biological materials. Bone tissue engineering has also been considered as a promising strategy to repair various bone defects. Therefore, different biological materials that can promote stem cell proliferation, migration, and osteoblastic differentiation to accelerate bone tissue regeneration and repair have also become the focus of research in multiple fields. Stem cell therapy, biomaterial scaffolds, and biological growth factors have shown potential for bone tissue engineering; however, off-target effects and cytotoxicity have limited their clinical use. The application of nucleic acids (deoxyribonucleic acid or ribonucleic acid) and nucleic acid analogs (peptide nucleic acids or locked nucleic acids), which are designed based on foreign genes or with special structures, can be taken up by target cells to exert different effects such as modulating protein expression, replacing a missing gene, or targeting specific gens or proteins. Due to some drawbacks, nucleic acids and nucleic acid analogs are combined with various delivery systems to exert enhanced effects, but current studies of these molecules have not yet satisfied clinical requirements. In-depth studies of nucleic acid or nucleic acid analog delivery systems have been performed, with a particular focus on bone tissue regeneration and repair. In this review, we mainly introduce delivery systems for nucleic acids and nucleic acid analogs and their applications in bone repair and regeneration. At the same time, the application of conventional scaffold materials for the delivery of nucleic acids and nucleic acid analogs is also discussed.
机译:随着不同骨疾病的发生率增加,需要有效的疗法来协调各种技术和生物材料的结合。骨组织工程学也被认为是修复各种骨缺损的有前途的策略。因此,可以促进干细胞增殖,迁移和成骨细胞分化以促进骨组织再生和修复的不同生物材料也已成为多个领域研究的重点。干细胞疗法,生物材料支架和生物生长因子已显示出在骨组织工程中的潜力。然而,脱靶效应和细胞毒性限制了其临床应用。基于外源基因或特殊结构设计的核酸(脱氧核糖核酸或核糖核酸)和核酸类似物(肽核酸或锁核酸)的应用可以被靶细胞吸收以发挥不同的作用,例如例如调节蛋白质表达,替换缺失的基​​因或靶向特定基因或蛋白质。由于一些缺陷,核酸和核酸类似物与各种递送系统结合以发挥增强的作用,但是这些分子的当前研究尚未满足临床要求。已经进行了对核酸或核酸类似物递送系统的深入研究,特别着重于骨组织的再生和修复。在这篇综述中,我们主要介绍核酸和核酸类似物的递送系统及其在骨修复和再生中的应用。同时,还讨论了常规支架材料在递送核酸和核酸类似物中的应用。

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