Relationship between arterial blood pressure and blood viscosity in spontaneously hypertensive rats treated with pentoxifylline.

IF 1 4区 医学 Q4 BIOPHYSICS
Biorheology Pub Date : 2016-07-26 DOI:10.3233/BIR-15100
Mark B Plotnikov, Oleg I Aliev, Alexey V Nosarev, Alexander Y Shamanaev, Anastasia V Sidekhmenova, Yana Anfinogenova, Anna M Anishchenko, Ekaterina V Pushkina
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引用次数: 9

Abstract

Background: Systemic arterial pressure (AP) depends on two physiological variables: cardiac output (CO) and total peripheral resistance (TPR). The latter depends on vascular hindrance and blood viscosity (BV). However, the relative contributions of the vascular and rheological factors to TPR remain unclear.

Objective: The aim of our work was to study the haemodynamic and haemorheologic effects of a treatment course with pentoxifylline (PTX) in SHRs in an effort to assess the impact of the rheological factor on TPR and AP.

Methods: The effects of the treatment course with PTX (100 mg/kg/day p.o. for six weeks) on BV, plasma viscosity, haematocrit, erythrocyte aggregation and deformability, mean AP (MAP), stroke volume (SV), CO, and TPR were studied in SHRs and in control Wistar Kyoto (WKY) rats.

Results: PTX-treated SHRs had a lower BV, lower erythrocyte aggregation, and higher erythrocyte deformability index compared with the controls. The TPR level was higher by 43% compared with that in WKY rats and did not differ from the values obtained from control SHRs. In SHRs, moderate and strong positive correlations were found between BV and MAP and between BV and TPR. PTX-treated SHRs did not have any significant correlations between the above mentioned parameters.

Conclusions: Treatment with PTX attenuated whole blood viscosity, but did not affect the AP and hemodynamic parameters in the experimental SHRs compared with the control SHRs. The magnitude of the rheologic effects of PTX was insufficient to cause appreciable decreases in TPR and AP.

己酮茶碱对自发性高血压大鼠动脉血压和血液粘度的影响。
背景:全身动脉压(AP)取决于两个生理变量:心输出量(CO)和总外周阻力(TPR)。后者取决于血管阻塞和血液粘度(BV)。然而,血管和流变学因素对TPR的相对影响尚不清楚。目的:我们的工作的目的是研究血液动力学的疗程和haemorheologic效果与pentoxifylline (PTX)月为了评估流变的影响因素对TPR和AP.Methods:疗程的影响与PTX(100毫克/公斤/天以上六个星期)BV,血浆粘度、血细胞压积,红细胞聚集和可变形性,意味着美联社(MAP),中风量(SV)、CO和TPR研究萎缩和控制纯种京都WKY大鼠。结果:与对照组相比,ptx治疗的SHRs BV较低,红细胞聚集较低,红细胞变形指数较高。TPR水平比WKY大鼠高43%,与对照SHRs值无差异。在SHRs中,BV与MAP、BV与TPR之间存在中强正相关。ptx处理的SHRs在上述参数之间无显著相关性。结论:与对照组相比,PTX治疗降低了全血黏度,但不影响实验SHRs的AP和血流动力学参数。PTX的流变效应不足以引起TPR和AP的明显降低。
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来源期刊
Biorheology
Biorheology 医学-工程:生物医学
CiteScore
2.00
自引率
0.00%
发文量
5
审稿时长
>12 weeks
期刊介绍: Biorheology is an international interdisciplinary journal that publishes research on the deformation and flow properties of biological systems or materials. It is the aim of the editors and publishers of Biorheology to bring together contributions from those working in various fields of biorheological research from all over the world. A diverse editorial board with broad international representation provides guidance and expertise in wide-ranging applications of rheological methods to biological systems and materials. The scope of papers solicited by Biorheology extends to systems at different levels of organization that have never been studied before, or, if studied previously, have either never been analyzed in terms of their rheological properties or have not been studied from the point of view of the rheological matching between their structural and functional properties. This biorheological approach applies in particular to molecular studies where changes of physical properties and conformation are investigated without reference to how the process actually takes place, how the forces generated are matched to the properties of the structures and environment concerned, proper time scales, or what structures or strength of structures are required.
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