首页> 外文期刊>European Journal of Pharmacology: An International Journal >Potentiation of the antitumor effect of 11-keto-beta-boswellic acid by its 3-alpha-hexanoyloxy derivative.
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Potentiation of the antitumor effect of 11-keto-beta-boswellic acid by its 3-alpha-hexanoyloxy derivative.

机译:11-酮-β-乳香酸的3-α-己酰氧基衍生物可增强其抗肿瘤作用。

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We recently discovered that a propionyloxy derivative of 11-keto-beta-boswellic acid (PKBA) showed better anticancer potential than other boswellic acids including AKBA, encompassing the importance of acyl group at the 3-alpha-hydroxy position of KBA. In continuation of our previous work, other higher derivatives (with increasing alkoxy chain length at 3-alpha-hydroxy position) including butyryloxy (BKBA) and hexanoyloxy (HKBA) derivatives of KBA were synthesized. The respective IC(50) values of BKBA and HKBA in HL-60 cells were found to be 7.7 and 4.5 mug/ml. IC(50) value of HKBA was comparatively lower than that of BKBA, and further lower than that of the previously reported derivative (PKBA, IC(50) 8.7 mug/ml). In order to compare the anticancer potential of HKBA with PKBA, detailed in vitro pro-apoptotic and in vivo anticancer studies were carried out. The induction of apoptosis by HKBA was measured using various parameters including fluorescence and scanning electron microscopy, DNA fragmentation and Annexin V-FITC binding. The extent of DNA damage was measured using neutral comet assay. HKBA was further evaluated for its effect on DNA cell cycle and mitochondria where it was found to arrest cells in G(2)/M phase and also induced loss of mitochondrial membrane potential. These events were associated with increased expression of cytosolic cytochrome c and cleavage of PARP. Target based studies showed that HKBA inhibited the enzymatic activity of topoisomerases I and II at low doses than that of PKBA. In vivo studies also revealed a low dose inhibitory effect of HKBA on ascitic and solid murine tumor models.
机译:我们最近发现,11-酮-β-乳香酸(PKBA)的丙酰氧基衍生物比包括AKBA的其他乳香酸显示出更好的抗癌潜力,这涵盖了KBA的3-α-羟基位置的酰基的重要性。在继续我们先前的工作时,还合成了KBA的丁酰氧基(BKBA)和己酰氧基(HKBA)衍生物等其他高级衍生物(随着3-α-羟基位置烷氧基链长度的增加)。发现HL-60细胞中BKBA和HKBA的IC(50)分别为7.7和4.5 mug / ml。 HKBA的IC(50)值比BKBA的低,但比先前报道的衍生物(PKBA,IC(50)8.7杯/毫升)低。为了比较HKBA和PKBA的抗癌潜力,进行了详细的体外促凋亡和体内抗癌研究。使用各种参数,包括荧光和扫描电子显微镜,DNA片段化和膜联蛋白V-FITC结合,测量HKBA对细胞凋亡的诱导作用。使用中性彗星测定法测量DNA损伤的程度。进一步评估了HKBA对DNA细胞周期和线粒体的影响,在该处发现它可以使细胞停滞在G(2)/ M期,并诱导线粒体膜电位的丧失。这些事件与胞浆细胞色素c的表达增加和PARP的裂解有关。基于目标的研究表明,HKBA在低剂量下比PKBA抑制拓扑异构酶I和II的酶活性。体内研究还显示了HKBA对腹水和实体鼠肿瘤模型的低剂量抑制作用。

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