Laboratory of Biomedical Engineering, University of Patras, Patras 26500, Greece.
Clin Hemorheol Microcirc. 2010;45(1):53-65. doi: 10.3233/CH-2010-1326.
In the present study, the role of the nucleus and its contribution to the deformability of the passive neutrophils was investigated. To determine the rheological properties of the nucleus and of the neutrophil itself, deformation tests on single neutrophil and sequestered nucleus have been performed by micropipette under low aspiration pressure (80 Pa = 2-3 Pcr). The stiffness of the nucleus was found to be larger than that of the neutrophil, and its viscosity was found almost ten-fold higher. A subpopulation of neutrophils (Sub-A) showed two phases of deformation, a first rapid phase and a second phase with a constant deformation rate up to their full entrance, with an apparent viscosity mu app-second-Phase(N Sub-A) = 286 +/- 123 Pa x s, calculated by the liquid drop model. Another subpopulation (Sub-B) of the tested neutrophils displayed three deformation phases: a first one reflecting the rapid entry of cell into the micropipette, a second with constant deformation rate, and a third phase, with a slower, also constant, deformation rate were recorded. The corresponding apparent viscosities were found as mu app-second-Phase(N Sub-B) = 341 +/- 94 Pa x s and mu app-third-Phase(N Sub-B) = 1651 +/- 734 Pa x s. The apparent viscosity values of the neutrophilic nucleus, mu app (N nucl) = 2468 +/- 1345 Pa x s and of the whole neutrophil calculated in the third phase of deformation, mu app-third-Phase(N Sub-B) = 1651 +/- 734 Pa.s were comparable. These results support our hypothesis that the nucleus plays a significant role in the mechanical and rheological behavior of the neutrophil, especially when it has to pass through openings much smaller than its size.
在本研究中,研究了细胞核的作用及其对被动中性粒细胞变形性的贡献。为了确定细胞核和中性粒细胞本身的流变特性,通过微管在低抽吸压力(80 Pa=2-3 Pcr)下对单个中性粒细胞和隔离的细胞核进行了变形测试。发现细胞核的刚性大于中性粒细胞,其粘度几乎高十倍。一部分中性粒细胞(Sub-A)显示出两个变形阶段,第一阶段快速变形,第二阶段以恒定的变形率直到完全进入,表观粘度 mu app-second-Phase(N Sub-A) = 286 ± 123 Pa x s,通过液滴模型计算。另一部分测试的中性粒细胞(Sub-B)显示了三个变形阶段:第一阶段反映了细胞快速进入微管,第二阶段具有恒定的变形率,第三阶段记录了较慢但也恒定的变形率。相应的表观粘度分别为 mu app-second-Phase(N Sub-B) = 341 ± 94 Pa x s 和 mu app-third-Phase(N Sub-B) = 1651 ± 734 Pa x s。中性粒细胞核的表观粘度值 mu app (N nucl) = 2468 ± 1345 Pa x s 和在变形的第三阶段计算的整个中性粒细胞的表观粘度值 mu app-third-Phase(N Sub-B) = 1651 ± 734 Pa.s 相当。这些结果支持我们的假设,即细胞核在中性粒细胞的力学和流变行为中起着重要作用,特别是当它必须通过比自身尺寸小得多的开口时。