Department of Infectious Disease Control, Faculty of Medicine, Oita University, 1-1 Idaigaoka, Hasama-machi, Yufu, Oita, 879-5593, Japan,
Drug Deliv Transl Res. 2015 Feb;5(1):38-50. doi: 10.1007/s13346-014-0213-z.
The resistance of cancer cells to chemotherapeutic drugs (MDR) is a major problem to be solved. A supramolecular DEAE-dextran-MMA copolymer (DDMC)/paclitaxel (PTX) complex was obtained by using PTX as the guest and DDMC as the host having 50-300 nm in diameter. The drug resistance of B16F10 melanoma cells to paclitaxel was observed, but there is no drug resistance of melanoma cells to the DDMC/PTX complex in vitro. The cell death rate was determined using Michaelis-Menten kinetics, as the DDMC/PTX complex promoted allosteric supramolecular reaction to tubulin. The DDMC/PTX complex showed a very superior anti-cancer activity to paclitaxel alone in vivo. The median survival time (MST) of the saline, PTX, DDMC/PTX4 (particle size, 50 nm), and DDMC/PTX5 (particle size, 290 nm) groups were 120 h (T/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 the twofold effectiveness of PTX alone (p < 0.036). Histochemical analysis indicated that the administration of DDMC/PTX complex decreased distant metastasis and increased the survival of mice. A mouse of DDMC/PTX4 group in vivo was almost curing after small dermatorrhagia owing to its anti-angiogenesis, and it will be the hemorrhagic necrotic symptom of tumor by the release of "tumor necrosis factor alpha (TNF-α)" cytokine. As the result, the medicinal action of the DDMC/PTX complex will suppress the tumor-associated action of M2 macrophages and will control the metastasis of cancer cells.
癌细胞对化疗药物(MDR)的耐药性是一个亟待解决的问题。采用 PTX 作为客体,DDMC 作为主体,得到了一种超分子 DEAE-葡聚糖-MMA 共聚物(DDMC)/紫杉醇(PTX)复合物,其粒径为 50-300nm。观察到 B16F10 黑色素瘤细胞对紫杉醇的耐药性,但黑色素瘤细胞对体外的 DDMC/PTX 复合物无耐药性。采用米氏动力学法测定细胞死亡率,发现 DDMC/PTX 复合物促进了微管蛋白的变构超分子反应。DDMC/PTX 复合物在体内的抗癌活性明显优于单独使用紫杉醇。生理盐水、PTX、DDMC/PTX4(粒径 50nm)和 DDMC/PTX5(粒径 290nm)组的中位生存时间(MST)分别为 120h(T/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)。组织化学分析表明,DDMC/PTX 复合物的给药减少了远处转移并增加了小鼠的存活率。DDMC/PTX4 组的一只小鼠在体内因抗血管生成而几乎治愈,且由于“肿瘤坏死因子-α(TNF-α)”细胞因子的释放,会出现出血性坏死症状。结果,DDMC/PTX 复合物的药效会抑制肿瘤相关的 M2 巨噬细胞的作用,并控制癌细胞的转移。