Na Kun, Lee Eun Seong, Bae You Han
Division of Biotechnology, The Catholic University of Korea, 43-1 Yeokgok 2-dong, Wonmi-gu, Bucheon-si, Gyeonggi-do 420-743, Korea.
Bioconjug Chem. 2007 Sep-Oct;18(5):1568-74. doi: 10.1021/bc070052e. Epub 2007 Aug 10.
The principal objective of this study was to fabricate doxorubicin-loaded self-organized nanogels composed of hydrophobized pullulan (PUL)-Nalpha-Boc-L-histidine (bHis) conjugates. Their responses to tumor extracellular pH (pHe) were determined, and they were also evaluated with regard to their anticancer efficacy against breast cancer cell lines (MCF-7). bHis was grafted to a PUL-deoxycholic acid (DO) conjugate (PUL-DO) via an ester linkage. PUL-DO/bHis conjugates with two different degrees of bHis substitutions (PUL-DO/bHis36 and PUL-DO/bHis78) were synthesized. PUL-DO/bHis nanogels formed via dialysis at a pH of 8.5 evidenced larger particle sizes (<140 nm) and lower critical aggregation concentrations (CACs) than did the PUL-DO nanogels (90 nm). The pH-dependent CAC of PUL-DO/bHis78 changed dramatically, from 1.2 microg/mL at pH 8.5, to 10 at 7.0, and to 660 at 6.2. A similar tendency in pH-dependent size was also noted. The ionization of the imidazole ring in bHis is principally responsible for pH dependency. The bHis moieties function as a switching tool responding to external pH. Doxorubicin (DOX)-loaded nanogels were assessed for pH-dependent releasing kinetics. The release rate of DOX from the PUL-DO/bHis78 nanogels increased significantly with reductions in pH. This resulted in increased cytotoxicity (30% cell viability at a dose of 10 microg/mL DOX equivalent) against sensitive MCF-7 cells at a pH of 6.8 and low cytotoxicity at pH 7.4 (65% cell viability at an identical dose). The results show that PUL-DO/bHis nanogels may potentially be employed as anti-tumor drug carriers.
本研究的主要目的是制备由疏水化支链淀粉(PUL)-Nα-叔丁氧羰基-L-组氨酸(bHis)共轭物组成的载阿霉素自组装纳米凝胶。测定了它们对肿瘤细胞外pH值(pHe)的响应,并评估了它们对乳腺癌细胞系(MCF-7)的抗癌效果。bHis通过酯键连接到PUL-脱氧胆酸(DO)共轭物(PUL-DO)上。合成了具有两种不同bHis取代度的PUL-DO/bHis共轭物(PUL-DO/bHis36和PUL-DO/bHis78)。通过在pH 8.5下透析形成的PUL-DO/bHis纳米凝胶比PUL-DO纳米凝胶(90 nm)具有更大的粒径(<140 nm)和更低的临界聚集浓度(CACs)。PUL-DO/bHis78的pH依赖性CAC变化显著,从pH 8.5时的1.2 μg/mL变为pH 7.0时的10,再到pH 6.2时的660。在pH依赖性尺寸方面也观察到类似趋势。bHis中咪唑环的电离是pH依赖性的主要原因。bHis部分作为响应外部pH的开关工具发挥作用。评估了载阿霉素(DOX)纳米凝胶的pH依赖性释放动力学。DOX从PUL-DO/bHis78纳米凝胶中的释放速率随着pH值降低而显著增加。这导致在pH 6.8时对敏感MCF-7细胞的细胞毒性增加(10 μg/mL DOX当量剂量下细胞活力为30%),而在pH 7.4时细胞毒性较低(相同剂量下细胞活力为65%)。结果表明,PUL-DO/bHis纳米凝胶可能有潜力用作抗肿瘤药物载体。