Department of Medical Physiology, College of Medicine, Texas A&M Health Science Center, Temple, Texas.
Microcirculation. 2019 Aug;26(6):e12527. doi: 10.1111/micc.12527. Epub 2019 May 7.
This study was undertaken to characterize structural and pharmacological properties of the pig popliteal artery in order to develop a novel system for the examination of lower limb blood flow regulation in a variety of cardiovascular pathologies, such as diabetes-induced peripheral artery disease.
Popliteal arteries were isolated from streptozocin-induced diabetic pigs or age-matched saline-injected control pigs for morphological study using transmission electron microscopy and for examination of vasoreactivity to pharmacological agents using wire myography.
Transmission electron microscopy of the porcine popliteal artery wall revealed the presence of endothelial cell-smooth muscle cell interactions (myoendothelial junctions) and smooth muscle cell-smooth muscle cell interactions, for which we have coined the term "myo-myo junctions." These myo-myo junctions were shown to feature plaques indicative of connexin expression. Further, the pig popliteal artery was highly responsive to a variety of vasoconstrictors including norepinephrine, phenylephrine, and U46619, and vasodilators including acetylcholine, adenosine 5'-[β-thio] diphosphate, and bradykinin. Finally, 2 weeks after streptozocin-induced diabetes, the normalized vasoconstriction of the pig popliteal artery to norepinephrine was unaltered compared to control.
The pig popliteal artery displays structural and pharmacological properties that might prove useful in future studies of diabetes-associated peripheral artery disease and other lower limb cardiovascular diseases.
本研究旨在对猪膕动脉的结构和药理学特性进行研究,以开发一种新的系统,用于检查各种心血管病理状态(如糖尿病引起的外周动脉疾病)下的下肢血流调节。
从链脲佐菌素诱导的糖尿病猪或年龄匹配的生理盐水注射对照猪中分离膕动脉,用于透射电子显微镜的形态学研究,以及用于检查对药理学药物的血管反应性的线描肌图。
猪膕动脉壁的透射电子显微镜显示存在内皮细胞-平滑肌细胞相互作用(肌内皮连接)和平滑肌细胞-平滑肌细胞相互作用,我们将其称为“肌-肌连接”。这些肌-肌连接表现出提示连接蛋白表达的斑块。此外,猪膕动脉对多种血管收缩剂(包括去甲肾上腺素、苯肾上腺素和 U46619)和血管扩张剂(包括乙酰胆碱、腺苷 5'-[β-硫]二磷酸和缓激肽)高度敏感。最后,在链脲佐菌素诱导的糖尿病后 2 周,与对照相比,猪膕动脉对去甲肾上腺素的正常血管收缩反应没有改变。
猪膕动脉显示出的结构和药理学特性可能在未来的糖尿病相关外周动脉疾病和其他下肢心血管疾病的研究中具有应用价值。