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一种新型合成斑蝥素类似物对肝癌细胞系的凋亡活性

Apoptotic activity of a novel synthetic cantharidin analogue on hepatoma cell lines.

作者信息

Kok Stanton Hon Lung, Chui Chung Hin, Lam Wing Sze, Chen Jien, Lau Fung Yi, Cheng Gregory Yin Ming, Wong Raymond Siu Ming, Lai Paul Po San, Leung Thomas Wai Tong, Tang Johnny Cheuk On, Chan Albert Sun Chi

机构信息

Cancer Drug and Development Centre, State Key Laboratory of Chinese Medicine and Molecular Pharmacology, Department of Applied Biology and Chemical Technology, The Hong Kong Polytechnic University, Hong Kong, PR China.

出版信息

Int J Mol Med. 2006 May;17(5):945-9.

Abstract

Cantharidin isolated from Mylabris caraganae and other insects is used traditionally as an anti-cancer drug. However, its toxicity on the renal system and suppression effect on bone marrow limits its clinical usage. Recently, we have synthesized two cantharidin analogues, CAN 029 (compound 2) and CAN 030 (compound 3). Although both showed an apoptotic induction ability on cancer cells, they were still relatively toxic towards non-malignant haematological disordered bone marrow. Based on the principle structure of cantharidin, we have further chemically synthesized another analogue, CAN 032. The cytotoxic activity of this analogue was screened on both Hep3B hepatocellular carcinoma and SK-Hep-1 liver adenocarcinoma cell lines by [3-(4,5-dimethylthiazol-2-yl)-5-(3-carboxymethoxyphenyl)-2-(4-sulfophenyl)-2H-tetrazolium] (MTS) assay. Morphological changes of hepatoma cell lines were recorded under an inverted microscope. The possible tolerance of these analogues was further investigated using non-malignant haematological bone marrow primary culture. CAN 032 showed a significant cytotoxic response on both hepatoma cell lines in which the potencies were comparable to that of cantharidin. Further screening on the bone marrow tolerance revealed that compound CAN 032 showed a relatively less toxic effect. Phase contrast microscopy demonstrated that cell shrinkage, rounding, loss of adherent property and loss of colony-formation ability were induced. The dose-dependence of the response of CAN 032 on Hep3B was further assayed by DNA fragmentation gel electrophoresis. The G1 peak of Hep3B cells was reduced. Chemically synthesized CAN 032 may provide an improved therapeutic advantage over traditional cantharidin.

摘要

从豆芫菁等昆虫中分离出的斑蝥素传统上被用作抗癌药物。然而,其对肾脏系统的毒性以及对骨髓的抑制作用限制了其临床应用。最近,我们合成了两种斑蝥素类似物,CAN 029(化合物2)和CAN 030(化合物3)。尽管两者都显示出对癌细胞的凋亡诱导能力,但它们对非恶性血液系统紊乱的骨髓仍具有相对毒性。基于斑蝥素的结构原理,我们进一步化学合成了另一种类似物CAN 032。通过[3-(4,5-二甲基噻唑-2-基)-5-(3-羧甲氧基苯基)-2-(4-磺基苯基)-2H-四唑](MTS)测定法,在Hep3B肝癌细胞系和SK-Hep-1肝腺癌细胞系上筛选了该类似物的细胞毒性活性。在倒置显微镜下记录肝癌细胞系的形态变化。使用非恶性血液系统骨髓原代培养进一步研究了这些类似物的可能耐受性。CAN 032对两种肝癌细胞系均显示出显著的细胞毒性反应,其效力与斑蝥素相当。对骨髓耐受性的进一步筛选表明,化合物CAN 032显示出相对较小的毒性作用。相差显微镜显示诱导了细胞收缩、变圆、粘附特性丧失和集落形成能力丧失。通过DNA片段凝胶电泳进一步测定了CAN 032对Hep3B反应的剂量依赖性。Hep3B细胞的G1峰降低。化学合成的CAN 032可能比传统的斑蝥素具有更好的治疗优势。

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