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Catecholamine Metabolism in Paraganglioma and Pheochromocytoma: Similar Tumors in Different Sites?

机译:副神经节瘤和嗜铬细胞瘤中的儿茶酚胺代谢:不同部位的相似肿瘤?

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摘要

Pheochromocytoma (PHEO) and paraganglioma (PGL) are catecholamine-producing neuroendocrine tumors that arise respectively inside or outside the adrenal medulla. Several reports have shown that adrenal glucocorticoids (GC) play an important regulatory role on the genes encoding the main enzymes involved in catecholamine (CAT) synthesis i.e. tyrosine hydroxylase (TH), dopamine β-hydroxylase (DBH) and phenylethanolamine N-methyltransferase (PNMT). To assess the influence of tumor location on CAT metabolism, 66 tissue samples (53 PHEO, 13 PGL) and 73 plasma samples (50 PHEO, 23 PGL) were studied. Western blot and qPCR were performed for TH, DBH and PNMT expression. We found a significantly lower intra-tumoral concentration of CAT and metanephrines (MNs) in PGL along with a downregulation of TH and PNMT at both mRNA and protein level compared with PHEO. However, when PHEO were partitioned into noradrenergic (NorAd) and mixed tumors based on an intra-tumoral CAT ratio (NE/E >90%), PGL and NorAd PHEO sustained similar TH, DBH and PNMT gene and protein expression. CAT concentration and composition were also similar between NorAd PHEO and PGL, excluding the use of CAT or MNs to discriminate between PGL and PHEO on the basis of biochemical tests. We observed an increase of TH mRNA concentration without correlation with TH protein expression in primary cell culture of PHEO and PGL incubated with dexamethasone during 24 hours; no changes were monitored for PNMT and DBH at both mRNA and protein level in PHEO and PGL. Altogether, these results indicate that long term CAT synthesis is not driven by the close environment where the tumor develops and suggest that GC alone is not sufficient to regulate CAT synthesis pathway in PHEO/PGL.
机译:嗜铬细胞瘤(PHEO)和副神经节瘤(PGL)是产生儿茶酚胺的神经内分泌肿瘤,分别出现在肾上腺髓质内部或外部。几篇报道表明,肾上腺糖皮质激素(GC)在编码参与儿茶酚胺(CAT)合成的主要酶即酪氨酸羟化酶(TH),多巴胺β-羟化酶(DBH)和苯乙醇胺N-甲基转移酶(PNMT)的基因上起重要的调节作用。 )。为了评估肿瘤位置对CAT代谢的影响,研究了66个组织样品(53个PHEO,13 PGL)和73个血浆样品(50个PHEO,23 PGL)。对TH,DBH和PNMT表达进行蛋白质印迹和qPCR。我们发现,与PHEO相比,PGL中CAT和肾上腺素(MNs)的肿瘤内浓度显着降低,并且在mRNA和蛋白质水平上TH和PNMT的下调。但是,当PHEO根据肿瘤内CAT比(NE / E> 90%)被分为去甲肾上腺素能(NorAd)和混合肿瘤时,PGL和NorAd PHEO维持相似的TH,DBH和PNMT基因和蛋白质表达。 NorAd PHEO和PGL之间的CAT浓度和组成也相似,但根据生化测试,不使用CAT或MN区分PGL和PHEO。我们观察到在24小时内与地塞米松一起孵育的PHEO和PGL的原代细胞培养物中,TH mRNA浓度增加与TH蛋白表达无关。在PHEO和PGL中,在mRNA和蛋白质水平上均未检测到PNMT和DBH的变化。总而言之,这些结果表明长期的CAT合成不受肿瘤发展的封闭环境的驱动,并且表明仅GC不足以调节PHEO / PGL中的CAT合成途径。

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