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纳米粒子及其在骨组织中的应用潜力。

Nanoparticles and their potential for application in bone.

机构信息

Institute of Orthopedic Research and Biomechanics, Centre of Musculoskeletal Research, Ulm University, Ulm, Germany.

出版信息

Int J Nanomedicine. 2012;7:4545-57. doi: 10.2147/IJN.S34127. Epub 2012 Aug 17.

Abstract

Biomaterials are commonly applied in regenerative therapy and tissue engineering in bone, and have been substantially refined in recent years. Thereby, research approaches focus more and more on nanoparticles, which have great potential for a variety of applications. Generally, nanoparticles interact distinctively with bone cells and tissue, depending on their composition, size, and shape. Therefore, detailed analyses of nanoparticle effects on cellular functions have been performed to select the most suitable candidates for supporting bone regeneration. This review will highlight potential nanoparticle applications in bone, focusing on cell labeling as well as drug and gene delivery. Labeling, eg, of mesenchymal stem cells, which display exceptional regenerative potential, makes monitoring and evaluation of cell therapy approaches possible. By including bioactive molecules in nanoparticles, locally and temporally controlled support of tissue regeneration is feasible, eg, to directly influence osteoblast differentiation or excessive osteoclast behavior. In addition, the delivery of genetic material with nanoparticulate carriers offers the possibility of overcoming certain disadvantages of standard protein delivery approaches, such as aggregation in the bloodstream during systemic therapy. Moreover, nanoparticles are already clinically applied in cancer treatment. Thus, corresponding efforts could lead to new therapeutic strategies to improve bone regeneration or to treat bone disorders.

摘要

生物材料常用于骨组织的再生治疗和组织工程,近年来已得到极大的改进。因此,研究方法越来越关注纳米粒子,它们在各种应用中具有巨大的潜力。一般来说,纳米粒子根据其组成、大小和形状与骨细胞和组织相互作用的方式截然不同。因此,已经对纳米粒子对细胞功能的影响进行了详细分析,以选择最适合支持骨再生的候选物。这篇综述将重点介绍纳米粒子在骨组织中的潜在应用,包括细胞标记以及药物和基因传递。例如,对间充质干细胞进行标记,这些细胞具有出色的再生潜力,使得对细胞治疗方法的监测和评估成为可能。通过将生物活性分子包含在纳米粒子中,可以实现局部和时间控制的组织再生支持,例如,直接影响成骨细胞分化或过度破骨细胞行为。此外,利用纳米载体递送遗传物质为克服标准蛋白递送方法的某些缺点提供了可能,例如在全身治疗期间在血液中聚集。此外,纳米粒子已在癌症治疗中得到临床应用。因此,相应的努力可能会导致改善骨再生或治疗骨疾病的新治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0898/3423651/b0cf84bb064f/ijn-7-4545f1.jpg

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