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Dynamics of absorption metabolism and excretion of 5-aminolevulinic acid in human intestinal Caco-2 cells

机译:5-氨基乙酰丙酸在人肠Caco-2细胞中的吸收代谢和排泄动态

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摘要

5-Aminolevulinic acid (ALA) is a precursor for the biosynthesis of porphyrins and heme. Although the oral administration of ALA has been widely applied in clinical settings, the dynamics of its absorption, metabolism, and excretion within enterocytes remain unknown. In this study, after enterocytic differentiation, Caco-2 cells were incubated with 200 µM ALA and/or 100 µM sodium ferrous citrate (SFC) for up to 72 h. Both ALA and the combination of ALA and SFC promoted the synthesis of heme, without affecting the expression of genes involved in intestinal iron transport, such as DMT1 and FPN. The enhanced heme synthesis in Caco-2 cells was more pronounced under the effect of the combination of ALA and SFC than under the effect of ALA alone, as reflected by the induced expression of heme oxygenase 1 (HO-1), as well as a reduced protein level of the transcriptional corepressor Bach1. Chromatin immunoprecipitation analysis confirmed Bach1 chromatin occupancy at the enhancer regions of HO-1, which were significantly decreased by the addition of ALA and SFC. Finally, Transwell culture of Caco-2 cells suggested that the administered ALA to the intestinal lumen was partially transported into vasolateral space. These findings enhance our understanding of the absorption and metabolism of ALA in enterocytes, which could aid in the development of a treatment strategy for various conditions such as anemia.
机译:5-氨基乙酰丙酸(ALA)是卟啉和血红素生物合成的前体。尽管口服ALA已广泛应用于临床,但其吸收,代谢和排泄在肠细胞内的动力学仍未知。在这项研究中,在肠细胞分化后,将Caco-2细胞与200μMALA和/或100μM柠檬酸亚铁钠(SFC)孵育长达72小时。 ALA以及ALA和SFC的组合均可促进血红素的合成,而不会影响与肠铁运输有关的基因(如DMT1和FPN)的表达。在ALA和SFC的联合作用下,Caco-2细胞中血红素合成的增强比在单独ALA的作用下更为显着,这由血红素加氧酶1(HO-1)的诱导表达以及降低转录共受体Bach1的蛋白质水平。染色质免疫沉淀分析证实HO-1增强子区域的Bach1染色质占有率,通过添加ALA和SFC显着降低。最后,Caco-2细胞的Transwell培养表明,向肠腔施用的ALA已部分转运至血管外侧空间。这些发现增强了我们对肠上皮细胞中ALA吸收和代谢的理解,这有助于制定针对各种疾病(例如贫血)的治疗策略。

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