Modulation of Angiotensin II-Induced Cellular Hypertrophy by Cannflavin-C: Unveiling the Impact on Cytochrome P450 1B1 and Arachidonic Acid Metabolites.

IF 4.4 3区 医学 Q1 PHARMACOLOGY & PHARMACY Drug Metabolism and Disposition Pub Date : 2024-07-16 DOI:10.1124/dmd.124.001705
Ahmad H Alammari, Fadumo Ahmed Isse, Conor O'Croinin, Neal M Davies, Ayman O S El-Kadi
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Abstract

This research aimed to clarify the impacts of cannflavin-C on angiotensin II (Ang II)-induced cardiac hypertrophy and their potential role in modulating cytochrome P450 1B1 (CYP1B1) and arachidonic acid (AA) metabolites. Currently there is no evidence to suggest that cannflavin-C, a prenylated flavonoid, has any significant effects on the heart or cardiac hypertrophy. The metabolism of arachidonic acid (AA) into midchain hydroxyeicosatetraenoic acids (HETEs), facilitated by CYP1B1 enzyme, plays a role in the development of cardiac hypertrophy, which is marked by enlarged cardiac cells. Adult human ventricular cardiomyocyte (AC16) cell line was cultured and exposed to cannflavin-C in the presence and absence of Ang II. The assessment of mRNA expression pertaining to cardiac hypertrophic markers and cytochromes P450 (P450s) was conducted via real-time polymerase chain reaction (PCR), whereas the quantification of P450 protein levels was carried out through western blot analysis. Ang II induced hypertrophic markers myosin heavy chain (β/α-MHC), atrial natriuretic peptide (ANP), and brain natriuretic peptide (BNP) and increased cell surface area, whereas cannflavin-C mitigated these effects. Gene and protein expression analysis revealed that cannflavin-C downregulated CYP1B1 gene expression, protein level, and enzyme activity assessed by 7-methoxyresorufin O-deethylase (MROD). Arachidonic acid metabolites analysis, using liquid chromatography-tandem mass spectrometry (LC-MS/MS), demonstrated that Ang II increased midchain (R/S)-HETE concentrations, which were attenuated by cannflavin-C. This study provides novel insights into the potential of cannflavin-C in modulating arachidonic acid metabolites and attenuating Ang II-induced cardiac hypertrophy, highlighting the importance of this compound as potential therapeutic agents for cardiac hypertrophy. SIGNIFICANCE STATEMENT: This study demonstrates that cannflavin-C offers protection against cellular hypertrophy induced by angiotensin II. The significance of this research lies in its novel discovery, which elucidates a mechanistic pathway involving the inhibition of CYP1B1 by cannflavin-C. This discovery opens up new avenues for leveraging this compound in the treatment of heart failure.

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Cannflavin-C 对血管紧张素 II 诱导的细胞肥大的调节作用:揭示对细胞色素 P450 1B1 和花生四烯酸代谢物的影响
这项研究的目的是阐明黄腐酸-C 对血管紧张素 II(Ang II)诱导的心脏肥大的影响,以及它们在调节细胞色素 P450 1B1 (CYP1B1)和花生四烯酸(AA)代谢物中的潜在作用。目前没有证据表明,前炔基黄酮类化合物 Cannflavin-C 对心脏或心肌肥大有任何显著影响。花生四烯酸(AA)在 CYP1B1 酶的作用下代谢成中链羟基二十碳四烯酸(HETEs),在心肌肥大的发展过程中起着作用,心肌肥大表现为心脏细胞增大。在有或没有 Ang II 的情况下,培养成人心室心肌细胞株(AC16)并将其暴露于 Canflavin-C 中。通过实时聚合酶链式反应(PCR)评估与心脏肥大标志物和 CYPs 有关的 mRNA 表达,并通过 Western 印迹分析对 CYPs 蛋白水平进行定量。Ang II 可诱导肥大标志物肌球蛋白重链(β/α-MHC)、心房利钠肽(ANP)和脑利钠肽(BNP),并增加细胞表面积,而 cannflavin-C 可减轻这些影响。基因和蛋白质表达分析表明,丁黄素-C 下调了 CYP1B1 基因表达、蛋白质水平以及用 7-甲氧基甲状腺素 O-脱乙基酶(MROD)评估的酶活性。使用 LC-MS/MS 进行的花生四烯酸代谢物分析表明,Ang II 增加了中链(R/S)-HETEs 的浓度,而 cannflavin-C 则降低了这一浓度。这项研究为我们提供了新的视角,让我们了解到 cannflavin-C 在调节花生四烯酸代谢物和减轻 Ang II 诱导的心肌肥厚方面的潜力,突出了该化合物作为潜在的心肌肥厚治疗药物的重要性。意义声明 本研究表明,可可黄素-C 可防止 Ang II 诱导的细胞肥大。这项研究的意义在于它的新发现,它阐明了一种涉及到坎夫拉韦素-C抑制CYP 1B1的机制途径。这一发现为利用这种化合物治疗心力衰竭开辟了新途径。
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来源期刊
CiteScore
6.50
自引率
12.80%
发文量
128
审稿时长
3 months
期刊介绍: An important reference for all pharmacology and toxicology departments, DMD is also a valuable resource for medicinal chemists involved in drug design and biochemists with an interest in drug metabolism, expression of drug metabolizing enzymes, and regulation of drug metabolizing enzyme gene expression. Articles provide experimental results from in vitro and in vivo systems that bring you significant and original information on metabolism and disposition of endogenous and exogenous compounds, including pharmacologic agents and environmental chemicals.
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