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首页> 外文期刊>British Journal of Cancer >Examination by laser scanning confocal fluorescence imaging microscopy of the subcellular localisation of anthracyclines in parent and multidrug resistant cell lines
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Examination by laser scanning confocal fluorescence imaging microscopy of the subcellular localisation of anthracyclines in parent and multidrug resistant cell lines

机译:通过激光扫描共聚焦荧光成像显微镜检查亲本和多药耐药细胞系中蒽环类药物的亚细胞定位

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摘要

This study highlights the usefulness of laser scanning confocal microscopy in the examination of subcellular disposition of anthracyclines in tumour cell lines. The distribution of anthracycline compounds has been studied in two pairs of parental and multidrug resistant (MDR) cell lines. For the parental EMT6 mouse mammary tumour cell line EMT6/P treated with doxorubicin (DOX) the anthracycline fluorescence was shown to be predominantly nuclear but with some particulate cytoplasmic fluorescence and very low levels of plasma membrane staining. In the same experiments much fainter fluorescence was seen for the EMT6/AR1.0 MDR subline which hyperexpresses P-glycoprotein. The loss of nuclear fluorescence was comparatively greater than loss of cytoplasmic fluorescence. For the human large cell lung cancer line COR-L23/P cellular DOX disposition was markedly nuclear with nuclear membrane staining and diffuse cytoplasmic fluorescence. For the MDR line COR-L23/R, which lacks P-glycoprotein expression, DOX fluorescence was reduced in the nucleus compared with the parental line, but an intense area of perinuclear staining was seen consistent with localisation to the Golgi apparatus. The morpholinyl-substituted analogue MR-DOX achieved very similar subcellular distribution in both parental and MDR lines, consistent with its retention of activity in the latter. The presence of verapamil during anthracycline exposure increased the intensity of fluorescence in the MDR lines, particularly in the nucleus. Relatively little effect was seen in the parental lines. Confocal microscopy provides high resolution images of the subcellular distribution of anthracyclines in parent and MDR cell lines. Differences in drug disposition in various cell lines may provide insights into the mechanism of multidrug resistance and suggest strategies for its therapeutic circumvention.
机译:这项研究突出了激光扫描共聚焦显微镜在检查肿瘤细胞系中蒽环类抗生素的亚细胞配置中的有用性。蒽环类化合物的分布已在两对亲本和多药耐药(MDR)细胞系中进行了研究。对于用阿霉素(DOX)处理的亲代EMT6小鼠乳腺肿瘤细胞系EMT6 / P,蒽环类荧光素显示出主要是核的,但具有一些微粒的细胞质荧光和非常低的质膜染色水平。在同一实验中,对于超表达P-糖蛋白的EMT6 / AR1.0 MDR子系,观察到了更弱的荧光。核荧光的损失相对大于细胞质荧光的损失。对于人类大细胞肺癌系,COR-L23 / P细胞的DOX处置具有明显的核性,并具有核膜染色和弥散性细胞质荧光。对于缺少P-糖蛋白表达的MDR株系COR-L23 / R,与亲本株系相比,核中的DOX荧光减少,但是看到的核周染色的强烈区域与高尔基体的定位一致。吗啉基取代的类似物MR-DOX在亲本和MDR品系中均实现了非常相似的亚细胞分布,与其在后者中的活性保持一致。蒽环类抗生素暴露期间维拉帕米的存在增加了MDR系(尤其是细胞核)中荧光的强度。在亲本系中观察到相对较少的影响。共聚焦显微镜提供了蒽环类在亲本和MDR细胞系中亚细胞分布的高分辨率图像。各种细胞系中药物配置的差异可能会提供对多药耐药性机制的见识,并提出其治疗性规避策略。

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