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姜黄素类似物黄腐酚及其相关的类姜黄素异黄腐酚和 8-异戊烯基柚皮素对人细胞色素 P4501A1(CBR1)具有很强的抑制作用。

Potent inhibition of human carbonyl reductase 1 (CBR1) by the prenylated chalconoid xanthohumol and its related prenylflavonoids isoxanthohumol and 8-prenylnaringenin.

机构信息

Institute of Toxicology and Pharmacology for Natural Scientists, University Medical School Schleswig-Holstein, Campus Kiel, Brunswikerstr. 10, D-24105, Kiel, Germany.

Institute of Toxicology and Pharmacology for Natural Scientists, University Medical School Schleswig-Holstein, Campus Kiel, Brunswikerstr. 10, D-24105, Kiel, Germany.

出版信息

Chem Biol Interact. 2019 May 25;305:156-162. doi: 10.1016/j.cbi.2019.02.031. Epub 2019 Mar 6.

Abstract

In terms of drug disposal and metabolism SDR21C1 (carbonyl reductase 1; CBR1) exerts an assorted substrate spectrum among a large variety of clinically relevant substances. Additionally, this short-chain dehydrogenase/reductase is extensively expressed in most tissues of the human body, thus underpinning its role in xenobiotic metabolism. Reduction of the chemotherapeutic daunorubicin (DAUN) to daunorubicinol (DAUNol) is a prominent example of its metabolic properties in terms of chemoresistance and cardiotoxicity. The hop-derived prenylated chalcone xanthohumol (XN) and its physiological metabolites isoxanthohumol (IX) and 8-prenylnaringenin (8-PN) have previously been reported to inhibit other DAUN reducing reductases and dehydrogenases including AKR1B1 and AKR1B10. Also with regard to their effects by means of interacting with cancer-related molecular pathways, XN and related prenylated flavonoids in particular have been in the focus of recent studies. In this study, inhibitory properties of these substances were examined with CBR1-mediated 2,3-hexanedione and DAUN reduction. All substances tested in this study turned out to efficiently inhibit recombinant human CBR1 within a low micromolar to submicromolar range. Among the substances tested, 8-PN turned out to be the most effective inhibitor when using 2,3-hexanedione as a substrate (K(app) = 180 ± 20 nM). Inhibition rates of recombinant CBR1-mediated DAUN reduction were somewhat weaker with IC50-values ranging from 11 to 20 μM. XN, IX and 8-PN also efficiently inhibited DAUN reduction by SW480 colon adenocarcinoma cytosol (IC = 3.71 ± 0.26 μM with 8-PN as inhibitor). This study identifies prenylated inhibitors, which might potentially interact with endogenous CBR1-driven (de-)toxication systems.

摘要

就药物处置和代谢而言,SDR21C1(羰基还原酶 1;CBR1)在各种临床相关物质中表现出多样化的底物谱。此外,这种短链脱氢酶/还原酶在人体大多数组织中广泛表达,因此它在异源生物代谢中发挥作用。将化疗药物柔红霉素(DAUN)还原为柔红霉素醇(DAUNol)是其代谢特性在化学抗性和心脏毒性方面的一个突出例子。源自啤酒花的 prenylated chalcones xanthohumol (XN)及其生理代谢物 isoxanthohumol (IX) 和 8-prenylnaringenin (8-PN) 先前已被报道可抑制其他 DAUN 还原还原酶和脱氢酶,包括 AKR1B1 和 AKR1B10。此外,就其通过与癌症相关的分子途径相互作用的效果而言,XN 和相关的 prenylated flavonoids 尤其成为最近研究的焦点。在这项研究中,通过 CBR1 介导的 2,3-己二酮和 DAUN 还原来检查这些物质的抑制特性。在这项研究中测试的所有物质都在低微摩尔至亚微摩尔范围内有效地抑制重组人 CBR1。在所测试的物质中,当使用 2,3-己二酮作为底物时,8-PN 是最有效的抑制剂(K(app) = 180 ± 20 nM)。重组 CBR1 介导的 DAUN 还原的抑制率较弱,IC50 值范围为 11 至 20 µM。XN、IX 和 8-PN 也有效地抑制了 SW480 结肠腺癌细胞溶质中的 DAUN 还原(以 8-PN 作为抑制剂时,IC = 3.71 ± 0.26 µM)。这项研究确定了 prenylated 抑制剂,它们可能与内源性 CBR1 驱动的(去)解毒系统相互作用。

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