Ryujyu Science Corporation, 39-4 Kosora-cho, Seto, Aichi 489-0842, Japan.
Department of Infectious Disease Control, Faculty of Medicine, Oita University, 1-1 Idaigaoka, Hasama-machi, Yufu, Oita 879-5593, Japan.
Beilstein J Nanotechnol. 2014 Dec 1;5:2293-307. doi: 10.3762/bjnano.5.238. eCollection 2014.
The anticancer efficacy of a supramolecular complex that was used as an artificial enzyme against multi-drug-resistant cancer cells was confirmed. A complex of diethylaminoethyl-dextran-methacrylic acid methylester copolymer (DDMC)/paclitaxel (PTX), obtained with PTX as the guest and DDMC as the host, formed a nanoparticle 50-300 nm in size. This complex is considered to be useful as a drug delivery system (DDS) for anticancer compounds since it formed a stable polymeric micelle in water. The resistance of B16F10 melanoma cells to PTX was shown clearly through a maximum survival curve. Conversely, the DDMC/PTX complex showed a superior anticancer efficacy and cell killing rate, as determined through a Michaelis-Menten-type equation, which may promote an allosteric supramolecular reaction to tubulin, in the same manner as an enzymatic reaction. The DDMC/PTX complex showed significantly higher anticancer activity compared to PTX alone in mouse skin in vivo. The median survival times of the saline, PTX, DDMC/PTX4 (particle size 50 nm), and DDMC/PTX5 (particle size 290 nm) groups were 120 h (treatment (T)/control (C), 1.0), 176 h (T/C, 1.46), 328 h (T/C, 2.73), and 280 h (T/C, 2.33), respectively. The supramolecular DDMC/PTX complex showed twice the effectiveness of PTX alone (p < 0.036). Above all, the DDMC/PTX complex is not degraded in cells and acts as an intact supramolecular assembly, which adds a new species to the range of DDS.
证实了一种超分子复合物作为人工酶对多药耐药癌细胞的抗癌功效。用紫杉醇(PTX)作为客体,二乙氨基乙基-葡聚糖-甲基丙烯酸甲酯共聚物(DDMC)作为主体,得到的 DDMC/PTX 复合物形成了 50-300nm 大小的纳米颗粒。由于该复合物在水中形成了稳定的聚合物胶束,因此被认为是一种有前途的抗癌化合物的药物传递系统(DDS)。通过最大生存曲线清楚地表明了 B16F10 黑色素瘤细胞对 PTX 的耐药性。相反,DDMC/PTX 复合物表现出优越的抗癌功效和细胞杀伤率,通过米氏方程(Michaelis-Menten-type equation)确定,这可能会促进微管蛋白的变构超分子反应,就像酶反应一样。与单独使用 PTX 相比,DDMC/PTX 复合物在体内小鼠皮肤中表现出明显更高的抗癌活性。生理盐水、PTX、DDMC/PTX4(粒径 50nm)和 DDMC/PTX5(粒径 290nm)组的中位生存时间分别为 120h(治疗(T)/对照(C),1.0)、176h(T/C,1.46)、328h(T/C,2.73)和 280h(T/C,2.33)。超分子 DDMC/PTX 复合物的效果是单独使用 PTX 的两倍(p<0.036)。最重要的是,DDMC/PTX 复合物在细胞中不会降解,而是作为一个完整的超分子组装体发挥作用,为 DDS 增加了一个新的物种。