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高同型半胱氨酸血症会使多不饱和脂肪酸衍生的类二十烷酸的血浆水平失调。

Hyperhomocysteinemia dysregulates plasma levels of polyunsaturated fatty acids-derived eicosanoids.

作者信息

Al-Shabrawey Mohamed, Elmarakby Ahmed, Samra Yara, Moustafa Mohamed, Looney Stephen W, Maddipati Krishna Rao, Tawfik Amany

机构信息

Department of Foundational Medical Studies and Eye Research Center, Oakland University William Beaumont School of Medicine, Rochester, Michigan, USA.

Eye Research Institute, Oakland University, Rochester, Michigan, USA.

出版信息

Life Res (Auckl). 2022 Apr;5(2). doi: 10.53388/2022-0106-103.

Abstract

Hyperhomocysteinemia (HHcy) contributes to the incidence of many cardiovascular diseases (CVD). Our group have previously established crucial roles of eicosanoids and homocysteine in the incidence of vascular injury in diabetic retinopathy and renal injury. Using cystathionine-β-synthase heterozygous mice (cβs) as a model of HHcy, the current study was designed to determine the impact of homocysteine on circulating levels of lipid mediators derived from polyunsaturated fatty acids (PUFA). Plasma samples were isolated from wild-type (WT) and cβs mice for the assessment of eicosanoids levels using LC/MS. Plasma 12/15-lipoxygenase (12/15-LOX) activity significantly decreased in cβs vs. WT control mice. LOX-derived metabolites from both omega-3 and omega-6 PUFA were also reduced in cβs mice compared to WT control ( < 0.05). Contrary to LOX metabolites, cytochrome P450 (CYP) metabolites from omega-3 and omega-6 PUFA were significantly elevated in cβs mice compared to WT control. Epoxyeicosatrienoic acids (EETs) are epoxides derived from arachidonic acid (AA) metabolism by CYP with anti-inflammatory properties and are known to limit vascular injury, however their physiological role is limited by their rapid degradation by soluble epoxide hydrolase (sEH) to their corresponding diols (DiHETrEs). In cβs mice, a significant decrease in the plasma EETs bioavailability was obvious as evident by the decrease in EETs/ DiHETrEs ratio relative to WT control mice. Cyclooxygenase (COX) metabolites were also significantly decreased in cβs vs. WT control mice. These data suggest that HHcy impacts eicosanoids metabolism through decreasing LOX and COX metabolic activities while increasing CYP metabolic activity. The increase in AA metabolism by CYP was also associated with increase in sEH activity and decrease in EETs bioavailability. Dysregulation of eicosanoids metabolism could be a contributing factor to the incidence and progression of HHcy-induced CVD.

摘要

高同型半胱氨酸血症(HHcy)会导致多种心血管疾病(CVD)的发生。我们团队先前已确定类花生酸和同型半胱氨酸在糖尿病视网膜病变的血管损伤和肾损伤发生过程中起关键作用。本研究以胱硫醚-β-合酶杂合小鼠(cβs)作为HHcy模型,旨在确定同型半胱氨酸对源自多不饱和脂肪酸(PUFA)的脂质介质循环水平的影响。从野生型(WT)和cβs小鼠中分离血浆样本,使用液相色谱/质谱法评估类花生酸水平。与WT对照小鼠相比,cβs小鼠的血浆12/15-脂氧合酶(12/15-LOX)活性显著降低。与WT对照相比,cβs小鼠中来自ω-3和ω-6 PUFA的LOX衍生代谢物也减少(<0.05)。与LOX代谢物相反,与WT对照相比,cβs小鼠中来自ω-3和ω-6 PUFA的细胞色素P450(CYP)代谢物显著升高。环氧二十碳三烯酸(EETs)是由CYP通过花生四烯酸(AA)代谢产生的具有抗炎特性的环氧化物,已知其可限制血管损伤,然而它们的生理作用因被可溶性环氧化物水解酶(sEH)迅速降解为相应的二醇(DiHETrEs)而受到限制。在cβs小鼠中,相对于WT对照小鼠,EETs/ DiHETrEs比值降低,这明显表明血浆EETs生物利用度显著降低。与WT对照小鼠相比,cβs小鼠中的环氧化酶(COX)代谢物也显著减少。这些数据表明,HHcy通过降低LOX和COX代谢活性,同时增加CYP代谢活性来影响类花生酸代谢。CYP介导的AA代谢增加还与sEH活性增加和EETs生物利用度降低有关。类花生酸代谢失调可能是HHcy诱导的CVD发生和发展的一个促成因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b9e/9632953/0a5118e4326a/nihms-1843160-f0001.jpg

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