首页> 外文OA文献 >Effect of alpha tocopherol acetate in Walker 256/B cells-induced oxidative damage in a rat model of breast cancer skeletal metastases
【2h】

Effect of alpha tocopherol acetate in Walker 256/B cells-induced oxidative damage in a rat model of breast cancer skeletal metastases

机译:乙酸α-生育酚对Walker 256 / B细胞诱导的乳腺癌骨转移大鼠模型氧化损伤的影响

摘要

The pathophysiological changes and the oxidative–antioxidative status were evaluated in the bone microenvironment of rat inoculated with Walker 256/B mammary gland carcinoma cells, and used α-tocopherol acetate (ATA) as a countermeasure.Walker 256/B cells were injected into the right femora of aged male rats. Animals were randomized into three groups: 12 rats were injected with saline (control group); 14 rats were injected with Walker 256/B cells (5 × 104) in the medullar cavity (W256 group); 14 rats were inoculated with Walker 256/B cells and treated with ATA (45 mg/kg BW) (W256 + ATA group). After 20 days, rats were euthanized and the femurs were radiographed. Micro architectural parameters were measured by microcomputed tomography and histology. Serum, bone and bone marrow were evaluated for oxidative damage. In parallel, cell cultures were done in the presence of ATA and ROS were measured by fluorescence; apoptotic cells were determined in parallel. W256 groups had osteolytic damages with marked resorption of cortical and trabecular bone. W256 + ATA animals presented marked osteosclerotic areas associated with tumor necrosis areas inside the bone cavity. Levels of lipid peroxidation and protein oxidation were found to increase in W256 rats; a significant reduction in SOD and GSH-p activities was also observed. W256 + ATA group had significantly reduced oxidative damage, but not reversed back to the control levels. The present study shows that Walker 256/B cells induce skeletal metastases associated with oxidative damage in the bone microenvironment. ATA reduced the oxidative stress damage, enhanced osteosclerosis and tumor cell apoptosis both in vitro and in vivo.
机译:在用Walker 256 / B乳腺癌细胞接种的大鼠的骨骼微环境中评估了其病理生理学变化和氧化-抗氧化状态,并使用了α-生育酚乙酸酯(ATA)作为对策。将Walker 256 / B细胞注入老年雄性大鼠的右股骨。将动物随机分为三组:给12只大鼠注射生理盐水(对照组);给动物注射盐水。向14只大鼠的髓腔内注射Walker 256 / B细胞(5×104)(W256组);用Walker 256 / B细胞接种14只大鼠,并用ATA(45 mg / kg BW)治疗(W256 + ATA组)。 20天后,对大鼠实施安乐死,并对股骨进行射线照相。通过微计算机断层扫描和组织学测量微建筑参数。评估血清,骨骼和骨髓的氧化损伤。平行地,在ATA存在下进行细胞培养,并通过荧光测量ROS。平行测定凋亡细胞。 W256组具有溶骨性损害,皮质和小梁骨吸收明显。 W256 + ATA动物表现出明显的骨硬化区域,与骨腔内的肿瘤坏死区域相关。 W256大鼠体内脂质过氧化和蛋白质氧化水平升高;还观察到SOD和GSH-p活性显着降低。 W256 + ATA组具有明显降低的氧化损伤,但未回复至对照水平。本研究表明,Walker 256 / B细胞在骨骼微环境中诱导与氧化损伤相关的骨骼转移。 ATA在体外和体内都减少了氧化应激损伤,增强了骨硬化和肿瘤细胞凋亡。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号