China Pharmaceutical University, Nanjing 210009, China ; Key Laboratory of Drug Quality Control and Pharmacovigilance, Ministry of Education, China Pharmaceutical University, Nanjing 210009, China.
Biomed Res Int. 2013;2013:578290. doi: 10.1155/2013/578290. Epub 2013 Sep 30.
Carbon nanotubes (CNTs) are allotropes of carbon, made of graphite and constructed in cylindrical tubes with nanometer in diameter and several millimeters in length. Their impressive structural, mechanical, and electronic properties are due to their small size and mass, their strong mechanical potency, and their high electrical and thermal conductivity. CNTs have been successfully applied in pharmacy and medicine due to their high surface area that is capable of adsorbing or conjugating with a wide variety of therapeutic and diagnostic agents (drugs, genes, vaccines, antibodies, biosensors, etc.). They have been first proven to be an excellent vehicle for drug delivery directly into cells without metabolism by the body. Then other applications of CNTs have been extensively performed not only for drug and gene therapies but also for tissue regeneration, biosensor diagnosis, enantiomer separation of chiral drugs, extraction and analysis of drugs and pollutants. Moreover, CNTs have been recently revealed as a promising antioxidant. This minireview focuses the applications of CNTs in all fields of pharmacy and medicine from therapeutics to analysis and diagnosis as cited above. It also examines the pharmacokinetics, metabolism and toxicity of different forms of CNTs and discusses the perspectives, the advantages and the obstacles of this promising bionanotechnology in the future.
碳纳米管(CNTs)是碳的同素异形体,由石墨制成,呈圆柱形管,直径纳米级,长度数毫米。由于其尺寸小、质量轻、机械强度高、导电性和导热性好,因此具有令人印象深刻的结构、机械和电子性能。由于其高表面积能够吸附或与各种治疗剂和诊断剂(药物、基因、疫苗、抗体、生物传感器等)结合,因此 CNTs 已成功应用于药学和医学领域。它们首先被证明是一种将药物直接递送到细胞内而不被身体代谢的极好载体。然后,除了药物和基因治疗外, CNTs 的其他应用也得到了广泛的开展,包括组织再生、生物传感器诊断、手性药物对映体分离、药物和污染物的提取和分析。此外,CNTs 最近被发现是一种有前途的抗氧化剂。本篇迷你综述重点介绍了 CNTs 在药学和医学各个领域的应用,从治疗到分析和诊断,如前所述。它还检查了不同形式的 CNTs 的药代动力学、代谢和毒性,并讨论了这种有前途的生物纳米技术在未来的前景、优势和障碍。