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首页> 外文期刊>British Journal of Cancer >Retinoid metabolism and all-trans retinoic acid-induced growth inhibition in head and neck squamous cell carcinoma cell lines
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Retinoid metabolism and all-trans retinoic acid-induced growth inhibition in head and neck squamous cell carcinoma cell lines

机译:类维生素A代谢和全反式维甲酸诱导的头颈部鳞状细胞癌细胞系的生长抑制

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摘要

Retinoids can reverse potentially premalignant lesions and prevent second primary tumours in patients with head and neck squamous cell carcinoma (HNSCC). Furthermore, it has been reported that acquired resistance to all-trans retinoic acid (RA) in leukaemia is associated with decreased plasma peak levels, probably the result of enhanced retinoid metabolism. The aim of this study was to investigate the metabolism of retinoids and relate this to growth inhibition in HNSCC. Three HNSCC cell lines were selected on the basis of a large variation in the all-trans RA-induced growth inhibition. Cells were exposed to 9.5 nM (radioactive) for 4 and 24 h, and to 1 and 10 microM (nonradioactive) all-trans RA for 4, 24, 48 and 72 h, and medium and cells were analysed for retinoid metabolites. At all concentrations studied, the amount of growth inhibition was proportional to the extent at which all-trans-, 13- and 9-cis RA disappeared from the medium as well as from the cells. This turnover process coincided with the formation of a group of as yet unidentified polar retinoid metabolites. The level of mRNA of cellular RA-binding protein II (CRABP-II), involved in retinoid homeostasis, was inversely proportional to growth inhibition. These findings indicate that for HNSCC retinoid metabolism may be associated with growth inhibition.
机译:类维生素A可逆转潜在的癌前病变,并预防头颈部鳞状细胞癌(HNSCC)患者的第二原发肿瘤。此外,据报道,白血病中对全反式维甲酸(RA)的获得性耐药与血浆峰值水平降低有关,这可能是类维生素A代谢增强的结果。这项研究的目的是调查类维生素A的代谢,并将其与HNSCC中的生长抑制联系起来。基于全反式RA诱导的生长抑制的大变化选择了三种HNSCC细胞系。将细胞暴露于9.5 nM(放射性)4和24小时,以及暴露于1和10 microM(非放射性)全反式RA 4、24、48和72小时,并分析培养基和细胞的类维生素A代谢产物。在所研究的所有浓度下,生长抑制的量与全反式,13-和9-顺式RA从培养基以及细胞中消失的程度成比例。该更新过程与一组尚未确定的极性类视黄醇代谢产物同时发生。参与类维生素A动态平衡的细胞RA结合蛋白II(CRABP-II)的mRNA水平与生长抑制成反比。这些发现表明,对于HNSCC,类维生素A代谢可能与生长抑制有关。

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