Passeri D, Rinaldi F, Ingallina C, Carafa M, Rossi M, Terranova M L, Marianecci C
J Nanosci Nanotechnol. 2015 Feb;15(2):972-88. doi: 10.1166/jnn.2015.9734.
Nanodiamonds are a novel class of nanomaterials which have raised much attention for application in biomedical field, as they combine the possibility of being produced on large scale using relatively inexpensive synthetic processes, of being fluorescent as a consequence of the presence of nitrogen vacancies, of having their surfaces functionalized, and of having good biocompatibility. Among other applications, we mainly focus on drug delivery, including cell interaction, targeting, cancer therapy, gene and protein delivery. In addition, nanodiamonds for bone and dental implants and for antibacterial use is discussed. Techniques for detection and imaging of nanodiamonds in biological tissues are also reviewed, including electron microscopy, fluorescence microscopy, Raman mapping, atomic force microscopy, thermal imaging, magnetic resonance imaging, and positron emission tomography, either in vitro, in vivo, or ex vivo. Toxicological aspects related to the use of nanodiamonds are also discussed. Finally, patents, preclinical and clinical trials based on the use of nanodiamonds for biomedical applications are reviewed.
纳米金刚石是一类新型纳米材料,因其可通过相对廉价的合成工艺大规模生产、因存在氮空位而具有荧光特性、表面可功能化且具有良好的生物相容性,在生物医学领域的应用备受关注。在其他应用中,我们主要关注药物递送,包括细胞相互作用、靶向、癌症治疗、基因和蛋白质递送。此外,还讨论了用于骨和牙科植入物以及抗菌用途的纳米金刚石。还综述了生物组织中纳米金刚石的检测和成像技术,包括体外、体内或离体的电子显微镜、荧光显微镜、拉曼映射、原子力显微镜、热成像、磁共振成像和正电子发射断层扫描。还讨论了与使用纳米金刚石相关的毒理学方面。最后,综述了基于纳米金刚石用于生物医学应用的专利、临床前和临床试验。
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