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中性粒细胞的黏度及其通过小孔的转运时间。

The viscosity of neutrophils and their transit times through small pores.

作者信息

Hochmuth R M, Needham D

机构信息

Department of Mechanical Engineering and Materials Science, Duke University, Durham, North Carolina 27706.

出版信息

Biorheology. 1990;27(6):817-28. doi: 10.3233/bir-1990-27603.

Abstract

Passive neutrophils from five different individuals are rapidly aspirated at constant suction pressure and at room temperature into a pipet with a diameter of 4 microns. The excess suction pressures (i.e., the pressures in excess of the small threshold pressure required to produce continuous flow into the pipet) are 5000, 10,000 and 20,000 dyn/cm2 (0.5, 1 and 2 kPa) and are comparable to those encountered in the microcirculation. The rate of entry into the pipet is modeled with a linearized version of a theory by Yeung and Evans for the newtonian flow of a neutrophil into a pipet or pore. From this theory and measurements of the cell size and its rate of entry into the pipet, we can calculate a value for the cytoplasmic viscosity. A linear (newtonian) fit of the theory to the experimental data gives a value for the viscosity of 1050 poise. A non-linear fit predicts a decrease in the "apparent viscosity" from about 1500 poise at zero excess pressure to 1000 poise at an excess aspiration pressure of 20,000 dyn/cm2. Our experiments and analysis also allow us to calculate a value for the transit time through short pores over a wide range of excess aspiration pressures and pore diameters. For example, for a pore diameter of 3 microns and an aspiration pressure of 1250 dyn/cm2, we predict a transit time of about 70 s. At 6 microns and 20,000 dyn/cm2, the predicted transit time is only about 0.04 s.

摘要

来自五个不同个体的被动中性粒细胞在室温下以恒定的抽吸压力被快速吸入直径为4微米的移液管中。多余的抽吸压力(即超过使液体持续流入移液管所需的小阈值压力的压力)分别为5000、10000和20000达因/平方厘米(0.5、1和2千帕),与微循环中遇到的压力相当。中性粒细胞进入移液管的速率用杨和埃文斯提出的一个理论的线性化版本来模拟,该理论描述了中性粒细胞在牛顿流体状态下进入移液管或孔隙的流动。根据这个理论以及对细胞大小和其进入移液管速率的测量,我们可以计算出细胞质粘度的值。将该理论与实验数据进行线性(牛顿)拟合,得到粘度值为1050泊。非线性拟合预测“表观粘度”会从零多余压力下的约1500泊降至多余抽吸压力为20000达因/平方厘米时的1000泊。我们的实验和分析还使我们能够计算出在广泛的多余抽吸压力和孔径范围内通过短孔隙的转运时间值。例如,对于孔径为3微米且抽吸压力为1250达因/平方厘米的情况,我们预测转运时间约为70秒。在孔径为6微米且抽吸压力为20000达因/平方厘米时,预测的转运时间仅约为0.04秒。

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