ACS Appl Mater Interfaces. 2019 Jul 10;11(27):23880-23892. doi: 10.1021/acsami.9b06155. Epub 2019 Jun 25.
Various natural compounds including epigallocatechin gallate (EGCG) and curcumin (CU) have potential in developing anticancer therapy. However, their clinical use is commonly limited by instability and low tissue distribution. EGCG and CU combined treatment can improve the efficacy with synergistic effects. To improve the synergistic effect and overcome the limitations of low tissue distribution, we applied a dual cancer-targeted nanoparticle system to co-deliver EGCG and CU. Nanoparticles were composed of hyaluronic acid, fucoidan, and poly(ethylene glycol)-gelatin to encapsulate EGCG and CU. Furthermore, a dual targeting system was established with hyaluronic acid and fucoidan, which were used as agents for targeting CD44 on prostate cancer cells and P-selectin in tumor vasculature, respectively. Their effect and efficacy were investigated in prostate cancer cells and a orthotopic prostate tumor model. The EGCG/CU-loaded nanoparticles bound to prostate cancer cells, which were uptaken more into cells, leading to a better anticancer efficiency compared to the EGCG/CU combination solution. In addition, the releases of EGCG and CU were regulated by their pH value that avoided the premature release. In mice, treatment of the cancer-targeted EGCG/CU-loaded nanoparticles significantly attenuated the orthotopic tumor growth without inducing organ injuries. Overall, the dual-targeted nanoparticle system for the co-delivery of EGCG and CU greatly improved its synergistic effect in cancer therapy, indicating its great potential in developing treatments for prostate cancer therapy.
各种天然化合物,包括表没食子儿茶素没食子酸酯 (EGCG) 和姜黄素 (CU),在开发抗癌疗法方面具有潜力。然而,它们的临床应用通常受到不稳定性和低组织分布的限制。EGCG 和 CU 的联合治疗可以通过协同作用提高疗效。为了提高协同作用并克服低组织分布的限制,我们应用了一种双重癌症靶向纳米粒子系统来共递 EGCG 和 CU。纳米粒子由透明质酸、褐藻糖胶和聚乙二醇-明胶组成,以包裹 EGCG 和 CU。此外,建立了一个双重靶向系统,使用透明质酸和褐藻糖胶分别作为针对前列腺癌细胞上的 CD44 和肿瘤血管中的 P-选择素的靶向剂。在前列腺癌细胞和原位前列腺肿瘤模型中研究了它们的效果和功效。载有 EGCG/CU 的纳米粒子与前列腺癌细胞结合,更多地被细胞摄取,与 EGCG/CU 联合溶液相比,具有更好的抗癌效率。此外,EGCG 和 CU 的释放受到其 pH 值的调节,避免了过早释放。在小鼠中,用癌症靶向 EGCG/CU 载药纳米粒子治疗明显抑制了原位肿瘤的生长,而没有引起器官损伤。总的来说,共递 EGCG 和 CU 的双重靶向纳米粒子系统大大提高了其在癌症治疗中的协同作用,表明其在开发前列腺癌治疗方法方面具有很大的潜力。