首页> 美国卫生研究院文献>The Journal of Nutrition >Apolipoprotein A1 Regulates Coenzyme Q10 Absorption Mitochondrial Function and Infarct Size in a Mouse Model of Myocardial Infarction
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Apolipoprotein A1 Regulates Coenzyme Q10 Absorption Mitochondrial Function and Infarct Size in a Mouse Model of Myocardial Infarction

机译:载脂蛋白A1调节心肌梗塞小鼠模型中的辅酶Q10吸收线粒体功能和梗塞大小。

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摘要

HDL and apolipoprotein A1 (apoA1) concentrations inversely correlate with risk of death from ischemic heart disease; however, the role of apoA1 in the myocardial response to ischemia has not been well defined. To test whether apoA1, the primary HDL apolipoprotein, has an acute anti-inflammatory role in ischemic heart disease, we induced myocardial infarction via direct left anterior descending coronary artery ligation in apoA1 null (apoA1−/−) and apoA1 heterozygous (apoA1+/−) mice. We observed that apoA1+/− and apoA1−/− mice had a 52% and 125% increase in infarct size as a percentage of area at risk, respectively, compared with wild-type (WT) C57BL/6 mice. Mitochondrial oxidation contributes to tissue damage in ischemia–reperfusion injury. A substantial defect was present at baseline in the electron transport chain of cardiac myocytes from apoA1−/− mice localized to the coenzyme Q (CoQ) pool with impaired electron transfer (67% decrease) from complex II to complex III. Administration of coenzyme Q10 (CoQ10) to apoA1 null mice normalized the cardiac mitochondrial CoQ pool and reduced infarct size to that observed in WT mice. CoQ10 administration did not significantly alter infarct size in WT mice. These data identify CoQ pool content leading to impaired mitochondrial function as major contributors to infarct size in the setting of low HDL/apoA1. These data suggest a previously unappreciated mechanism for myocardial stunning, cardiac dysfunction, and muscle pain associated with low HDL and low apoA1 concentrations that can be corrected by CoQ10 supplementation and suggest populations of patients that may benefit particularly from CoQ10 supplementation.
机译:高密度脂蛋白和载脂蛋白A1(apoA1)的浓度与缺血性心脏病的死亡风险呈负相关。然而,apoA1在心肌缺血反应中的作用尚未明确。为了测试主要的HDL载脂蛋白apoA1在缺血性心脏病中是否具有急性消炎作用,我们通过在apoA1无效(apoA1 -/-)中直接左前降支结扎诱导了心肌梗塞和apoA1杂合(apoA1 +/- )小鼠。我们观察到apoA1 +/- 和apoA1 -/-小鼠的梗塞面积占危险区域的百分比分别比分别增加52%和125%野生型(WT)C57BL / 6小鼠。线粒体氧化有助于缺血再灌注损伤中的组织损伤。在基线时,apoA1 -/-小鼠的心肌细胞电子传输链中存在一个严重缺陷,该缺陷位于复合物II到复合物II之间的电子转移受阻(减少67%),而辅酶Q(CoQ)库中复杂的III。向apoA1无效小鼠施用辅酶Q10(CoQ10)使心脏线粒体CoQ池正常化,并且梗死面积缩小至WT小鼠。辅酶Q10的施用并未显着改变WT小鼠的梗塞面积。这些数据表明在低HDL / apoA1的情况下导致线粒体功能受损的辅酶Q库含量是导致梗死面积的主要因素。这些数据表明,以前可以通过补充辅酶Q10纠正的与低HDL和低apoA1浓度有关的心肌惊厥,心脏功能障碍和肌肉疼痛的机制尚未得到了解,并建议可能特别受益于辅酶Q10的患者人群。

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