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用于抗癌治疗的毒素靶向设计。II:不同化学连接的去甲血球凝集素-抗体偶联物的制备及生物学比较

Toxin-targeted design for anticancer therapy. II: Preparation and biological comparison of different chemically linked gelonin-antibody conjugates.

作者信息

Delprino L, Giacomotti M, Dosio F, Brusa P, Ceruti M, Grosa G, Cattel L

机构信息

Istituto di Chimica Farmaceutica Applicata, University of Turin, Italy.

出版信息

J Pharm Sci. 1993 Jul;82(7):699-704. doi: 10.1002/jps.2600820706.

Abstract

To obtain more potent immunotoxins for anticancer therapy a gelonin-AR3 antibody immunoconjugate was prepared with different new linkers and coupling procedures. The gelonin was derivatized with the heterobifunctional thioimidate linkers ethyl-acetyl-3-mercaptopropionthioimidate (AMPT) and 3-(4-carboxamidophenyldithio)propionthioimidate (CDPT), and with the succinimidyl type reagents N-succinimidyl-3-(4-carboxamidophenyldithio)propionate (SCDP) and N-succinimidyl-S-acetyl thiolacetate (SATA). The biological activity of gelonin modified with different linkers (AMPT, CDPT, SCDP, SATA) was determined by a rabbit reticulocyte assay. We found that AMPT was the molecule of choice to derivatize the toxin, confirming the preferability of thioimidate linkers. The monoclonal antibody Mab was derivatized with CDPT and SCDP. Then the following immunoconjugates were prepared with different procedures: Mab-CDPT with gelonin-AMPT; Mab-CDPT with gelonin-CDPT; Mab-SCDP with gelonin-SATA. To verify whether selection of the most suitable coupling procedure could affect the antitumoral activity of the gelonin-AR3 immunoconjugate, the three immunotoxins were tested on target HT-29 human colon carcinoma cells versus nontarget MeWo cells. The gelonin immunoconjugate linked via the AMPT-CDPT thioimidate reagents showed highest antitumoral activity as well as best selectivity for the target cells.

摘要

为了获得更有效的用于抗癌治疗的免疫毒素,制备了一种带有不同新型连接子和偶联程序的相思子毒素 - AR3抗体免疫缀合物。相思子毒素用异双功能硫代亚氨酸酯连接子乙基 - 乙酰基 - 3 - 巯基丙硫代亚氨酸酯(AMPT)和3 - (4 - 羧酰胺苯基二硫代)丙硫代亚氨酸酯(CDPT),以及琥珀酰亚胺型试剂N - 琥珀酰亚胺 - 3 - (4 - 羧酰胺苯基二硫代)丙酸酯(SCDP)和N - 琥珀酰亚胺 - S - 乙酰硫代乙酸酯(SATA)进行衍生化。通过兔网织红细胞测定法测定用不同连接子(AMPT、CDPT、SCDP、SATA)修饰的相思子毒素的生物活性。我们发现AMPT是衍生化毒素的首选分子,证实了硫代亚氨酸酯连接子的优越性。单克隆抗体Mab用CDPT和SCDP进行衍生化。然后用不同程序制备了以下免疫缀合物:Mab - CDPT与相思子毒素 - AMPT;Mab - CDPT与相思子毒素 - CDPT;Mab - SCDP与相思子毒素 - SATA。为了验证选择最合适的偶联程序是否会影响相思子毒素 - AR3免疫缀合物的抗肿瘤活性,对三种免疫毒素在靶标HT - 29人结肠癌细胞与非靶标MeWo细胞上进行了测试。通过AMPT - CDPT硫代亚氨酸酯试剂连接的相思子毒素免疫缀合物显示出最高的抗肿瘤活性以及对靶细胞的最佳选择性。

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