OxLDL/LOX-1 mediated sex, age, stiffness, and endothelial dependent alterations in mouse thoracic aortic vascular reactivity.

IF 3.2 3区 医学 Q2 PHYSIOLOGY
Frontiers in Physiology Pub Date : 2024-11-05 eCollection Date: 2024-01-01 DOI:10.3389/fphys.2024.1471272
Trevor S Wendt, Saema Ansar, Rayna J Gonzales
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引用次数: 0

Abstract

Elevated plasma levels of oxidized low-density lipoprotein (oxLDL) are a risk factor and key component that accelerates and worsens cardiovascular disease fueling inflammation, plaque buildup and vascular damage. OxLDL can elicit its detrimental action via lectin-like oxLDL receptor 1 (LOX-1). In this study, we determined whether oxLDL, via LOX-1, alters aortic vascular reactivity and determined if sex and age differences exist. Thoracic aortic endothelium-intact or -denuded ring segments were isolated from 7 to 12 months old intact C57BL/6J female and male mice and pre-incubated with oxLDL ex vivo (50ug/dL; 2 h). Using wire myography, cumulative concentration-response curves to phenylephrine (PE) were generated to determine contractile responses. From these curves, the EC50 was determined and used to contract rings to assess acetylcholine (ACh) dependent relaxation. Calculated aortic stiffness and remodeling were also assessed. BI-0115 (10 μ M; selective LOX-1 inhibitor) was used to determine LOX-1 dependence. We observed differential sex, age, endothelial cell, and LOX-1 dependent alterations to the efficacy of PE-induced contractile responses and ACh-mediated vasorelaxation in thoracic aortic rings following oxLDL exposure. Additionally, we observed a distinct sex and age effect on thoracic aortic stiffness following exposure to oxLDL. There was also a sex effect on calculated vessel diameter, as well as an age effect on oxLDL-mediated aortic remodeling that was LOX-1 dependent. Thus, LOX-1 inhibition and the resulting attenuation of oxLDL/endothelial-mediated alterations in aortic function suggests that there are differential sex differences in the role of oxLDL/LOX-1 in the thoracic aorta of middle-aged male and female mice. NEW and NOTEWORTHY. We investigated the effects of oxLDL via the LOX-1 receptor on murine thoracic aortic vasoreactivity, stiffness, and remodeling across age and sex. Acute exposure to oxLDL led to altered vasoreactivity, endothelial dysfunction, and changes in aortic stiffness and remodeling. These effects were in-part age, sex, endothelial, and LOX-1 dependent. This study reveals potential complex interactions in oxLDL/LOX-1-mediated vascular responses that could serve as potential therapeutic intervention for vascular diseases such as atherosclerosis and stroke.

OxLDL/LOX-1 介导的小鼠胸主动脉血管反应性的性别、年龄、僵硬度和内皮依赖性改变。
血浆中氧化低密度脂蛋白(oxLDL)水平的升高是一种风险因素,也是加速和恶化心血管疾病的关键因素,会助长炎症、斑块堆积和血管损伤。氧化低密度脂蛋白可通过凝集素样氧化低密度脂蛋白受体 1(LOX-1)产生有害作用。在这项研究中,我们确定了 oxLDL 是否会通过 LOX-1 改变主动脉血管反应性,并确定是否存在性别和年龄差异。从 7 到 12 个月大的完整 C57BL/6J 雌性和雄性小鼠身上分离出胸主动脉内皮-未触及或凹陷的环段,并在体外用 oxLDL 预先孵育(50ug/dL;2 小时)。使用线性肌电图生成苯肾上腺素(PE)的累积浓度-反应曲线,以确定收缩反应。根据这些曲线确定 EC50,并用于收缩环以评估乙酰胆碱(ACh)依赖性松弛。还评估了计算得出的主动脉僵硬度和重塑情况。BI-0115(10 μ M;选择性 LOX-1 抑制剂)用于确定 LOX-1 依赖性。我们观察到,在暴露于 oxLDL 后,胸主动脉环中 PE 诱导的收缩反应和 ACh 介导的血管舒张的有效性发生了不同的性别、年龄、内皮细胞和 LOX-1 依赖性变化。此外,我们还观察到,暴露于 oxLDL 后,胸主动脉僵硬度会受到不同性别和年龄的影响。在计算的血管直径上也存在性别效应,而且年龄效应对 LOX-1 介导的主动脉重塑也有依赖性。因此,LOX-1 的抑制作用以及由此导致的 oxLDL/内皮介导的主动脉功能改变的减弱表明,在中年雌雄小鼠的胸主动脉中,oxLDL/LOX-1 的作用存在不同的性别差异。新颖性我们研究了 oxLDL 通过 LOX-1 受体对不同年龄和性别的小鼠胸主动脉血管活性、僵硬度和重塑的影响。急性暴露于 oxLDL 会导致血管活性改变、内皮功能障碍以及主动脉僵硬度和重塑的变化。这些影响部分取决于年龄、性别、内皮和 LOX-1。这项研究揭示了 oxLDL/LOX-1 介导的血管反应中潜在的复杂相互作用,可作为动脉粥样硬化和中风等血管疾病的潜在治疗干预措施。
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来源期刊
CiteScore
6.50
自引率
5.00%
发文量
2608
审稿时长
14 weeks
期刊介绍: Frontiers in Physiology is a leading journal in its field, publishing rigorously peer-reviewed research on the physiology of living systems, from the subcellular and molecular domains to the intact organism, and its interaction with the environment. Field Chief Editor George E. Billman at the Ohio State University Columbus is supported by an outstanding Editorial Board of international researchers. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide.
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