Hinman L M, Hamann P R, Wallace R, Menendez A T, Durr F E, Upeslacis J
Medical Research Division, American Cyanamid Company, Lederle Laboratories, Pearl River, New York 10965.
Cancer Res. 1993 Jul 15;53(14):3336-42.
The calicheamicin family of antitumor antibiotics are capable of producing double-stranded DNA breaks at sub-picomolar concentrations. Their potency suggested that the calicheamicins would be excellent candidates for targeted delivery and a hydrazide prepared from the most potent and abundant of the naturally occurring derivative, gamma 1I, was linked to oxidized sugars on CT-M-01, an internalizing anti-polyepithelial mucin antibody. The conjugates retained the immunoreactivity of the unmodified antibody and were specifically cytotoxic toward antigen positive tumor cells in vitro and in vivo. Hydrazide analogues of less potent calicheamicin derivatives were also prepared and conjugated to CT-M-01. Comparison of the therapeutic efficacy of the conjugates against the MX-1 xenograft tumor implanted s.c. in nude mice showed that conjugates of derivatives missing the rhamnose, a sugar residue that is part of the DNA binding region of the drug, were not as promising as antitumor therapies. However, conjugates of two derivatives, alpha 3I and N-acetyl-gamma 1I, in which the rhamnose residue is present but the amino sugar residue of the parent drug is either missing or modified, significantly inhibited tumor growth over a 4-fold dose range and produced long-term tumor-free survivors. Sterically hindering methyl groups adjacent to the disulfide in the linker further increased the therapeutic window of these potent conjugates.
抗肿瘤抗生素的加利车霉素家族能够在亚皮摩尔浓度下产生双链DNA断裂。它们的效力表明,加利车霉素将是靶向递送的极佳候选物,并且由最有效且含量丰富的天然衍生物γ1I制备的酰肼与内化抗多上皮粘蛋白抗体CT-M-01上的氧化糖相连。这些缀合物保留了未修饰抗体的免疫反应性,并且在体外和体内对抗抗原阳性肿瘤细胞具有特异性细胞毒性。还制备了效力较低的加利车霉素衍生物的酰肼类似物,并将其与CT-M-01缀合。比较这些缀合物对裸鼠皮下植入的MX-1异种移植肿瘤的治疗效果表明,缺少鼠李糖(该药物DNA结合区域的一部分糖残基)的衍生物的缀合物作为抗肿瘤疗法并不那么有前景。然而,两种衍生物α3I和N-乙酰基-γ1I的缀合物,其中存在鼠李糖残基,但母体药物的氨基糖残基缺失或修饰,在4倍剂量范围内显著抑制肿瘤生长,并产生长期无瘤存活者。在连接子中与二硫键相邻处进行空间位阻甲基化进一步增加了这些强效缀合物的治疗窗口。