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人类扩张型心肌病左心室类花生酸谱的变化。

Changes in the Left Ventricular Eicosanoid Profile in Human Dilated Cardiomyopathy.

作者信息

Sosnowski Deanna K, Jamieson K Lockhart, Darwesh Ahmed M, Zhang Hao, Keshavarz-Bahaghighat Hedieh, Valencia Robert, Viveiros Anissa, Edin Matthew L, Zeldin Darryl C, Oudit Gavin Y, Seubert John M

机构信息

Faculty of Pharmacy and Pharmaceutical Sciences, University of Alberta, Edmonton, AB, Canada.

Department of Medicine, Mazankowski Alberta Heart Institute, Edmonton, AB, Canada.

出版信息

Front Cardiovasc Med. 2022 May 19;9:879209. doi: 10.3389/fcvm.2022.879209. eCollection 2022.

Abstract

OBJECTIVE

Metabolites derived from -3 and -6 polyunsaturated fatty acids (PUFAs) have both beneficial and detrimental effects on the heart. However, contribution of these lipid mediators to dilated cardiomyopathy (DCM)-associated mitochondrial dysfunction remains unknown. This study aimed to characterize DCM-specific alterations in the PUFA metabolome in conjunction with cardiac mitochondrial quality in human explanted heart tissues.

METHODS

Left ventricular tissues obtained from non-failing control (NFC) or DCM explanted hearts, were assessed for -3 and -6 PUFA metabolite levels using LC-MS/MS. mRNA and protein expression of CYP2J2, CYP2C8 and epoxide hydrolase enzymes involved in -3 and -6 PUFA metabolism were quantified. Cardiac mitochondrial quality was assessed by transmission electron microscopy, measurement of respiratory chain complex activities and oxygen consumption (respiratory control ratio, RCR) during ADP-stimulated ATP production.

RESULTS

Formation of cardioprotective CYP-derived lipid mediators, epoxy fatty acids (EpFAs), and their corresponding diols were enhanced in DCM hearts. These findings were corroborated by increased expression of CYP2J2 and CYP2C8 enzymes, as well as microsomal and soluble epoxide hydrolase enzymes, suggesting enhanced metabolic flux and EpFA substrate turnover. DCM hearts demonstrated marked damage to mitochondrial ultrastructure and attenuated mitochondrial function. Incubation of fresh DCM cardiac fibers with the protective EpFA, 19,20-EDP, significantly improved mitochondrial function.

CONCLUSIONS

The current study demonstrates that increased expressions of CYP-epoxygenase enzymes and epoxide hydrolases in the DCM heart correspond with enhanced PUFA-derived EpFA turnover. This is accompanied by severe mitochondrial functional impairment which can be rescued by the administration of exogenous EpFAs.

摘要

目的

源自ω-3和ω-6多不饱和脂肪酸(PUFA)的代谢产物对心脏既有有益作用,也有有害影响。然而,这些脂质介质对扩张型心肌病(DCM)相关的线粒体功能障碍的作用尚不清楚。本研究旨在结合人离体心脏组织中的心脏线粒体质量,表征DCM特异性的PUFA代谢组变化。

方法

使用液相色谱-串联质谱法(LC-MS/MS)评估从非衰竭对照(NFC)或DCM离体心脏获取的左心室组织中ω-3和ω-6 PUFA代谢产物水平。对参与ω-3和ω-6 PUFA代谢的CYP2J2、CYP2C8和环氧水解酶的mRNA和蛋白表达进行定量。通过透射电子显微镜、测量呼吸链复合物活性以及在ADP刺激的ATP产生过程中测量氧气消耗(呼吸控制率,RCR)来评估心脏线粒体质量。

结果

在DCM心脏中,具有心脏保护作用的CYP衍生脂质介质环氧脂肪酸(EpFAs)及其相应的二醇的形成增加。CYP2J2和CYP2C8酶以及微粒体和可溶性环氧水解酶表达的增加证实了这些发现,表明代谢通量和EpFA底物周转率增强。DCM心脏表现出线粒体超微结构的明显损伤和线粒体功能减弱。用具有保护作用的EpFA 19,20-EDP孵育新鲜的DCM心脏纤维可显著改善线粒体功能。

结论

当前研究表明,DCM心脏中CYP-环氧酶和环氧水解酶的表达增加与PUFA衍生的EpFA周转率增强相对应。这伴随着严重的线粒体功能损害,而外源性EpFAs的给药可以挽救这种损害。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/881c/9160304/e59fb82ffb9e/fcvm-09-879209-g0001.jpg

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