Matsumoto S, Yamamoto A, Takakura Y, Hashida M, Tanigawa N, Sezaki H
Cancer Res. 1986 Sep;46(9):4463-8.
Cellular interaction and in vitro antitumor activity of a polymeric prodrug of mitomycin C (MMC), mitomycin C-dextran conjugate (MMC-D), were studied in relation to its physicochemical characteristics. MMC-D with cationic and anionic charges were examined. The cationic MMC-D was synthesized using a spacer, epsilon-aminocaproic acid and dextrans with molecular weights of 10,000, 70,000, or 500,000 [MMC(C6)Dcat]. The anionic MMC-D was synthesized using 6-bromohexanoic acid as a spacer and dextran with a molecular weight of 70,000 [MMC(C6)Dan]. Cellular adsorption was determined by measuring the concentration of the drug in the medium after incubation with three tumor cell lines, Ehrlich ascites carcinoma, L1210 leukemia, and AH66 ascites hepatoma cells. MMC(C6)Dcat was adsorbed more readily than MMC or MMC(C6)Dan on the tumor cell surface by an electrostatic force. The percentage of adsorption remained almost constant during the course of incubation and no significant difference was observed between the incubation at 4 degrees C and that at 37 degrees C. A corresponding increase in the amounts of MMC(C6)Dcat adsorbed on with higher molecular weights was noted, which conformed to Langmuir's adsorption isotherm. In vitro antitumor activity was evaluated using L1210 and EAC cell culture systems and human tumor colony forming assay. MMC(C6)Dcat showed growth inhibition essentially equal to that of MMC in continuous drug exposure experiments. In a 1-h drug exposure experiment, MMC(C6)Dcat with a molecular weight of 70,000 or 500,000 was more active than MMC, and a good correlation was observed between the effects of MMC(C6)Dcat and the extent of cellular interaction. These results show that cellular interaction played an important role in the manifestation of the antitumor effect of MMC-D and that these phenomena are governed by the physicochemical properties of macromolecular prodrugs, such as electric charge and molecular weight.
研究了丝裂霉素C(MMC)的聚合物前药丝裂霉素C - 葡聚糖缀合物(MMC - D)的细胞相互作用和体外抗肿瘤活性与其物理化学特性的关系。研究了带阳离子和阴离子电荷的MMC - D。阳离子型MMC - D是使用间隔物ε-氨基己酸和分子量为10,000、70,000或500,000的葡聚糖合成的[MMC(C6)Dcat]。阴离子型MMC - D是使用6 - 溴己酸作为间隔物和分子量为70,000的葡聚糖合成的[MMC(C6)Dan]。通过测量与三种肿瘤细胞系(艾氏腹水癌、L1210白血病和AH66腹水肝癌细胞)孵育后培养基中药物的浓度来测定细胞吸附。MMC(C6)Dcat通过静电力比MMC或MMC(C6)Dan更容易吸附在肿瘤细胞表面。在孵育过程中吸附百分比几乎保持恒定,并且在4℃和37℃孵育之间未观察到显著差异。注意到随着分子量增加MMC(C6)Dcat吸附量相应增加,这符合朗缪尔吸附等温线。使用L1210和EAC细胞培养系统以及人肿瘤集落形成试验评估体外抗肿瘤活性。在连续药物暴露实验中,MMC(C6)Dcat显示出与MMC基本相同的生长抑制作用。在1小时药物暴露实验中,分子量为70,000或500,000的MMC(C6)Dcat比MMC更具活性,并且在MMC(C6)Dcat的作用与细胞相互作用程度之间观察到良好的相关性。这些结果表明细胞相互作用在MMC - D抗肿瘤作用的表现中起重要作用,并且这些现象受大分子前药的物理化学性质(如电荷和分子量)的支配。