Department of Dermatology, University of Wisconsin, Medical Sciences Center #B-25, 1300 University Avenue, Madison, Wisconsin 53706, USA.
Pharm Res. 2010 Jun;27(6):1054-60. doi: 10.1007/s11095-010-0087-9. Epub 2010 Mar 11.
Chemoprevention through the use of bioactive food components is a practical approach for cancer control. Despite abundant efficacy data under preclinical settings, this strategy has resulted in limited success for human cancer control. Amongst many reasons, inefficient systemic delivery and bioavailability of promising chemopreventive agents are considered to significantly contribute to such a disconnect. We recently introduced a novel concept in which we utilized nanotechnology for enhancing the outcome of chemoprevention (Cancer Res. 2009; 69:1712-6) and termed it nanochemoprevention. To establish the proof-of-principle of nanotechnology for cancer management, we determined the efficacy of a well-known chemopreventive agent epigallocatechin-3-gallate (EGCG) encapsulated in polylactic acid (PLA)-polyethylene glycol (PEG) nanoparticles in preclinical settings and observed that, compared to non-encapsulated EGCG, nano-EGCG retained its biological efficacy with over 10-fold dose advantage both in cell culture system and in vivo settings in athymic nude mice implanted with human prostate cancer cells. This study laid the foundation of nanochemoprevention by bioactive food components. Since oral consumption is the most desirable and acceptable form of delivery of bioactive food components, it will be important to develop nanoparticles containing bioactive food components that are suitable for oral consumption for which experiments are underway in this laboratory.
通过使用生物活性食物成分进行化学预防是癌症控制的一种实用方法。尽管在临床前环境下有大量的疗效数据,但这种策略在人类癌症控制方面仅取得了有限的成功。其中许多原因包括有前途的化学预防剂的系统递送和生物利用度效率低下,被认为是导致这种脱节的重要原因。我们最近引入了一个新概念,即利用纳米技术来增强化学预防的效果(Cancer Res. 2009; 69:1712-6),并将其称为纳米化学预防。为了确立纳米技术在癌症管理中的原理证明,我们确定了封装在聚乳酸(PLA)-聚乙二醇(PEG)纳米粒子中的一种已知化学预防剂表没食子儿茶素-3-没食子酸酯(EGCG)在临床前环境中的疗效,并且观察到与非封装的 EGCG 相比,纳米 EGCG 在细胞培养系统和荷人前列腺癌细胞的裸鼠体内均保留了其生物学功效,其剂量优势超过 10 倍。这项研究为生物活性食物成分的纳米化学预防奠定了基础。由于口服是生物活性食物成分最理想和可接受的给药形式,因此开发适合口服的含有生物活性食物成分的纳米粒子将非常重要,本实验室正在进行这方面的实验。