Institute of Microcirculation, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing,
Physiol Res. 2020 Dec 22;69(6):1039-1049. doi: 10.33549/physiolres.934448. Epub 2020 Nov 2.
Pancreatic microcirculatory dysfunction emerged as a novel mechanism in the development of hypertension. However, the changes of pancreatic microcirculation profiles in hypertension remain unknown. Pancreatic microcirculatory blood distribution pattern and microvascular vasomotion of spontaneously hypertensive rats (SHRs) and Wistar Kyoto rats (WKYs) were determined by laser Doppler. Wavelet transform analysis was performed to convert micro-hemodynamic signals into time-frequency domains, based on which amplitude spectral scalograms were constructed. The amplitudes of characteristic oscillators were compared between SHRs and WKYs. The expression of eNOS was determined by immunohistochemistry, and plasma nitrite/nitrate levels were measured by Griess reaction. Additionally, endothelin-1, malondialdehyde, superoxide dismutase and interleukin-6 were determined by enzyme-linked immunosorbent assay. SHRs exhibited a lower scale blood distribution pattern with decreased average blood perfusion, frequency and amplitude. Wavelet transform spectral analysis revealed significantly reduced amplitudes of endothelial oscillators. Besides reduced expression of eNOS, the blood microcirculatory chemistry complements micro-hemodynamic profiles as demonstrated by an increase in plasma nitrite/nitrate, endothelin-1, malondialdehyde, interleukin-6 and a decrease of superoxide dismutase in SHRs. Here, we described abnormal pancreatic microcirculation profiles in SHRs, including disarranged blood distribution pattern, impaired microvascular vasomotion and reduced amplitudes of endothelial oscillators.
胰腺微循环功能障碍作为高血压发生的一种新机制已经显现。然而,高血压患者胰腺微循环的变化情况仍不清楚。我们通过激光多普勒来检测自发性高血压大鼠(SHR)和 Wistar 京都大鼠(WKY)的胰腺微循环血流分布模式和微血管舒缩运动。我们基于小波变换分析将微血流动力学信号转换到时频域,并据此构建幅度谱标度图。我们比较了 SHR 和 WKY 之间特征振荡器的振幅。我们通过免疫组织化学来检测 eNOS 的表达,并用格里希反应测量血浆亚硝酸盐/硝酸盐水平。此外,我们还通过酶联免疫吸附试验来测定内皮素-1、丙二醛、超氧化物歧化酶和白细胞介素-6。SHR 表现出较低的血流分布模式,平均血流灌注、频率和幅度降低。小波变换频谱分析显示内皮振荡器的振幅明显降低。除了 eNOS 表达减少外,血液微循环化学也补充了微血流动力学特征,表现为 SHR 血浆中亚硝酸盐/硝酸盐、内皮素-1、丙二醛、白细胞介素-6 增加,超氧化物歧化酶减少。在此,我们描述了 SHR 中异常的胰腺微循环特征,包括血流分布模式紊乱、微血管舒缩运动受损以及内皮振荡器振幅降低。