Ho Benjamin N, Pfeffer Claire M, Singh Amareshwar T K
Department of Biology, Division of Natural and Social Sciences, Carthage College, Kenosha, WI, U.S.A.
Anticancer Res. 2017 Nov;37(11):5975-5981. doi: 10.21873/anticanres.12044.
The emerging field of nanotechnology meets the demands for innovative approaches in the diagnosis and treatment of cancer. The nanoparticles are biocompatible and biodegradable and are made of a core, a particle that acts as a carrier, and one or more functional groups on the core which target specific sites. Nanotech in drug delivery includes nanodisks, High Density Lipoprotein nanostructures, liposomes, and gold nanoparticles. The fundamental advantages of nanoparticles are: improved delivery of water-insoluble drugs, targeted delivery, co-delivery of two or more drugs for combination therapy, and visualization of the drug delivery site by combining imaging system and a therapeutic drug. One of the potential applications of nanotechnology is in the treatment of cancer. Conventional methods for cancer treatments have included chemotherapy, surgery, or radiation. Early recognition and treatment of cancer with these approaches is still challenging. Innovative technologies are needed to overcome multidrug resistance, and increase drug localization and efficacy. Application of nanotechnology to cancer biology has brought in a new hope for developing treatment strategies on cancer. In this study, we present a review on the recent advances in nanotechnology-based approaches in cancer treatment.
新兴的纳米技术领域满足了癌症诊断和治疗中对创新方法的需求。纳米颗粒具有生物相容性和可生物降解性,由一个核心、一个充当载体的颗粒以及核心上的一个或多个靶向特定部位的官能团组成。药物递送中的纳米技术包括纳米盘、高密度脂蛋白纳米结构、脂质体和金纳米颗粒。纳米颗粒的基本优势在于:改善水不溶性药物的递送、靶向递送、联合递送两种或更多种药物以进行联合治疗,以及通过将成像系统与治疗药物相结合来可视化药物递送部位。纳米技术的潜在应用之一是癌症治疗。癌症的传统治疗方法包括化疗、手术或放疗。利用这些方法对癌症进行早期识别和治疗仍然具有挑战性。需要创新技术来克服多药耐药性,并提高药物定位和疗效。将纳米技术应用于癌症生物学为开发癌症治疗策略带来了新希望。在本研究中,我们对基于纳米技术的癌症治疗方法的最新进展进行综述。