Siddiqui Imtiaz A, Sanna Vanna
Department of Dermatology, University of Wisconsin, Madison, WI, USA.
Department of Chemistry and Pharmacy, Laboratory of Nanomedicine, University of Sassari, Sassari, Italy.
Mol Nutr Food Res. 2016 Jun;60(6):1330-41. doi: 10.1002/mnfr.201600035. Epub 2016 Apr 4.
Chemoprevention of human cancer by dietary products is a practical approach of cancer control, especially when chemoprevention is involved during the early stages of the carcinogenesis process. Research over the last few decades has clearly demonstrated the efficacy of dietary products for chemoprevention in cell culture and preclinical animal model systems. However, these in vitro and in vivo effects have not been able to be translated to bedside for clinical use. Among many reasons, inefficient systemic delivery and bioavailability of promising chemopreventive agents are considered to significantly contribute to such a disconnection. Since its advent in the field of cancer, nanotechnology has provided researchers with expertise to explore new avenues for diagnosis, prevention, and therapy of the disease. In a similar trait, we introduced a novel concept in which nanotechnology was utilized for enhancing the outcome of chemoprevention (Cancer Res. 2009; 69:1712-1716). This idea, which we termed as 'nanochemoprevention', was exploited by several laboratories and has now become an advancing field in chemoprevention research. This review summarizes some of these applications of nanotechnology in medicine, particularly focused on controlled and sustained release of bioactive compounds with emphasis on current and future utilization of nanochemoprevention for prevention and therapy of cancer.
通过膳食产品进行人类癌症的化学预防是一种切实可行的癌症控制方法,尤其是在致癌过程的早期阶段涉及化学预防时。过去几十年的研究清楚地证明了膳食产品在细胞培养和临床前动物模型系统中进行化学预防的功效。然而,这些体外和体内效应尚未能够转化为临床应用。在众多原因中,有前景的化学预防剂的全身递送效率低下和生物利用度被认为是造成这种脱节的重要原因。自从纳米技术在癌症领域出现以来,它为研究人员提供了探索该疾病诊断、预防和治疗新途径的专业知识。同样,我们引入了一个新概念,即利用纳米技术来提高化学预防的效果(《癌症研究》2009年;69:1712 - 1716)。这个我们称之为“纳米化学预防”的想法被几个实验室采用,现在已成为化学预防研究中的一个前沿领域。本综述总结了纳米技术在医学中的一些应用,特别关注生物活性化合物的控释和缓释,重点是纳米化学预防在癌症预防和治疗中的当前及未来应用。