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姜黄素补充后铁和钴水平降低并不是导致幼虫发育延长的原因,也不会影响 D. melanogaster 的氧化应激耐受性和多胺状态。

Reduced iron and cobalt levels in response to curcumin supplementation are not responsible for the prolonged larval development and do not affect the oxidative stress tolerance and polyamine status of D. melanogaster.

机构信息

Division of Food Science, Institute of Human Nutrition and Food Science, University of Kiel, Kiel, Germany.

出版信息

Biofactors. 2024 Jan-Feb;50(1):161-180. doi: 10.1002/biof.2000. Epub 2023 Aug 19.

DOI:10.1002/biof.2000
PMID:37597249
Abstract

Recent reports indicated that the phytochemical curcumin possesses iron-chelating activity. Here, by employing the fruit fly Drosophila melanogaster, we conducted feeding studies supplementing curcumin or, as a control, the iron chelator bathophenanthroline (BPA). First, the absorption and further metabolization of dietary curcuminoids were proved by metabolomics analyses. Next, we found that 0.2% dietary curcumin, similar to BPA, lowered the iron but also the cobalt content, and to a lesser extent affected the manganese and zinc status. Supplementation during larval stages was required and sufficient for both compounds to elicit these alterations in adult animals. However, curcumin-induced retarded larval development was not attributable to the changed trace metal status. In addition, a reduction in the iron content of up to 70% by curcumin or BPA supplementation did not reduce heme-dependent catalase activity and tolerance toward H O in D. melanogaster. Moreover, polyamines were not influenced by curcumin treatment and decreased iron levels. This was confirmed for selected organs from 0.2% curcumin-treated mice, except for the spleen. Here, elevated spermidine level and concomitant upregulation of genes involved in polyamine production were associated with a putatively anemia-derived increased spleen mass. Our data underline that the metal-chelating property of curcumin needs to be considered in feeding studies.

摘要

最近的报告表明,植物化学物质姜黄素具有螯合铁的活性。在这里,我们通过使用黑腹果蝇 Drosophila melanogaster 进行喂养研究,补充姜黄素或作为对照补充铁螯合剂浴苯并菲咯啉 (BPA)。首先,通过代谢组学分析证明了膳食姜黄素类化合物的吸收和进一步代谢。接下来,我们发现 0.2%的膳食姜黄素与 BPA 相似,降低了铁但也降低了钴含量,并在较小程度上影响了锰和锌的状态。幼虫期的补充对于这两种化合物在成年动物中引起这些变化是必需和充分的。然而,姜黄素诱导的幼虫发育迟缓并不是由于痕量金属状态的改变。此外,姜黄素或 BPA 补充将铁含量降低高达 70%并不会降低依赖血红素的过氧化氢酶活性和 D. melanogaster 对 H2O2 的耐受性。此外,多胺不受姜黄素处理的影响,铁水平下降。这一点在 0.2%姜黄素处理的小鼠的选定器官中得到了证实,除了脾脏。在这里,升高的亚精胺水平和参与多胺产生的基因的上调与脾脏质量增加有关,这可能是贫血引起的。我们的数据强调,在喂养研究中需要考虑姜黄素的金属螯合特性。

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