Institute of Pharmacology and Toxicology and Key Laboratory of Nanopharmacology and Nanotoxicology, Beijing Academy of Medical Science, Zhengzhou, Henan, People's Republic of China.
Nanoscale Res Lett. 2011 Oct 13;6(1):555. doi: 10.1186/1556-276X-6-555.
Among all cancer treatment options, chemotherapy continues to play a major role in killing free cancer cells and removing undetectable tumor micro-focuses. Although chemotherapies are successful in some cases, systemic toxicity may develop at the same time due to lack of selectivity of the drugs for cancer tissues and cells, which often leads to the failure of chemotherapies. Obviously, the therapeutic effects will be revolutionarily improved if human can deliver the anticancer drugs with high selectivity to cancer cells or cancer tissues. This selective delivery of the drugs has been called target treatment. To realize target treatment, the first step of the strategies is to build up effective target drug delivery systems. Generally speaking, such a system is often made up of the carriers and drugs, of which the carriers play the roles of target delivery. An ideal carrier for target drug delivery systems should have three pre-requisites for their functions: (1) they themselves have target effects; (2) they have sufficiently strong adsorptive effects for anticancer drugs to ensure they can transport the drugs to the effect-relevant sites; and (3) they can release the drugs from them in the effect-relevant sites, and only in this way can the treatment effects develop. The transporting capabilities of carbon nanotubes combined with appropriate surface modifications and their unique physicochemical properties show great promise to meet the three pre-requisites. Here, we review the progress in the study on the application of carbon nanotubes as target carriers in drug delivery systems for cancer therapies.
在所有癌症治疗方案中,化疗仍然在杀死游离癌细胞和消除无法检测到的肿瘤微焦点方面发挥着主要作用。尽管化疗在某些情况下是成功的,但由于药物对癌症组织和细胞缺乏选择性,同时可能会产生全身毒性,这常常导致化疗的失败。显然,如果人类能够将抗癌药物高度选择性地递送到癌细胞或癌症组织中,那么治疗效果将得到革命性的提高。这种药物的选择性递送被称为靶向治疗。为了实现靶向治疗,策略的第一步是建立有效的靶向药物递送系统。一般来说,这样的系统通常由载体和药物组成,其中载体起到靶向递送的作用。用于靶向药物递送系统的理想载体应具有三个功能前提:(1) 它们本身具有靶向作用;(2) 它们对抗癌药物具有足够强的吸附作用,以确保它们能够将药物输送到相关部位;(3) 它们可以在相关部位从载体中释放药物,只有这样才能发挥治疗效果。碳纳米管与适当的表面修饰相结合的输送能力及其独特的物理化学性质显示出很大的潜力,满足了这三个前提条件。在这里,我们综述了将碳纳米管作为癌症治疗药物输送系统的靶向载体的应用研究进展。