Indian Institute of Integrative Medicine, CSIR, Canal Road, Jammu 180001, India.
Mol Pharm. 2013 Jan 7;10(1):225-35. doi: 10.1021/mp300385m. Epub 2012 Dec 13.
A pentacyclic triterpenediol (TPD) from Boswellia serrata has significant cytotoxic and apoptotic potential in a large number of human cancer cell lines. To enhance its anticancer potential, it was successfully formulated into solid lipid nanoparticles (SLNs) by the microemulsion method with 75% drug entrapment efficiency. SEM and TEM studies indicated that TPD-SLNs were regular, solid, and spherical particles in the range of 100-200 nm, and the system indicated that they were more or less stable upon storing up to six months. TPD loaded SLNs showed significantly higher cytotoxic/antitumor potential than the parent drug. TPD-SLNs have 40-60% higher cytotoxic and apoptotic potential than the parent drug in terms of IC(50), extent of apoptosis, DNA damage, and expression of pro-apoptotic proteins like TNF-R1, cytochrome-c, and PARP cleavage in HL-60 cells. Moreover, blank SLNs did not have any cytotoxic effect on the cancer as well as in normal mouse peritoneal macrophages. The in vivo antitumor potential of TPD-SLNs was significantly higher than that of TPD alone in Sarcoma-180 solid tumor bearing mice. Therefore, SLNs of TPD successfully increased the apoptotic and anticancer potential of TPD at comparable doses (both in vitro and in vivo). This work provides new insight into improvising the therapeutic efficacy of TPD by adopting novel delivery strategies such as solid lipid nanoparticles.
一种来自 Boswellia serrata 的五环三萜二醇 (TPD) 在大量人类癌细胞系中具有显著的细胞毒性和凋亡潜力。为了提高其抗癌潜力,它通过微乳液法成功地被制成固体脂质纳米粒 (SLN),药物包封率为 75%。SEM 和 TEM 研究表明,TPD-SLN 是 100-200nm 范围内的规则、固体和球形颗粒,该系统表明,在储存长达六个月的时间内,它们或多或少是稳定的。与母体药物相比,负载 TPD 的 SLN 显示出更高的细胞毒性/抗肿瘤潜力。在 HL-60 细胞中,TPD-SLN 在 IC50、凋亡程度、DNA 损伤以及 TNF-R1、细胞色素-c 和 PARP 切割等促凋亡蛋白的表达方面表现出比母体药物高 40-60%的细胞毒性和凋亡潜力。此外,空白 SLN 对癌细胞和正常小鼠腹腔巨噬细胞均无细胞毒性作用。与单独使用 TPD 相比,TPD-SLN 在肉瘤-180 荷瘤小鼠中的体内抗肿瘤潜力显著提高。因此,在可比剂量下(体外和体内),TPD 的 SLN 成功提高了 TPD 的凋亡和抗癌潜力。这项工作为通过采用新型给药策略(如固体脂质纳米粒)来提高 TPD 的治疗效果提供了新的思路。