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大袋鼠科有袋动物(袋鼠和沙袋鼠)红细胞扩散性水渗透性的核磁共振研究。

NMR studies of diffusional water permeability of red blood cells from macropodid marsupials (kangaroos and wallabies).

作者信息

Benga G, Chapman B E, Gallagher C H, Cooper D, Kuchel P W

机构信息

Department of Biochemistry, University of Sydney, NSW, Australia.

出版信息

Comp Biochem Physiol Comp Physiol. 1993 Apr;104(4):799-803. doi: 10.1016/0300-9629(93)90157-y.

DOI:10.1016/0300-9629(93)90157-y
PMID:8097985
Abstract
  1. The water permeabilities of the red blood cell (RBC) membranes of five species of macropodid marsupials were monitored by using a Mn(2+)-doping 1H nuclear magnetic resonance (NMR) technique. 2. Since this appears to be the first time that this type of measurement at 400 MHz for 1H has been reported, an analysis of instrumental parameters influencing the estimated value of the water exchange time (Te), and of the diffusional water permeability (Pd), was performed on samples of human RBC. 3. It was found that a short interpulse delay in the Carr-Purcell-Meiboom-Gill pulse sequence had to be used (around 100 microseconds) to avoid an underestimation of the relaxation times, that occurred as the result of molecular diffusion through non-uniform local magnetic fields in and around the cells. 4. There were no significant differences, in the water permeabilities of the RBC membranes, between the five species (Macropus rufogriseus, M. parma, M. eugenii, M. parryi and Wallabia bicolor). 5. There were also no significant differences between various colonies of M. eugenii living in different habitats. 6. The average values of Pd were 9.1 x 10(-3) cm/sec at 24.6 degrees C, 10.4 x 10(-3) cm/sec at 30 degrees C, 12.6 x 10(-3) cm/sec at 37 degrees C, and 14.7 x 10(-3) cm/sec at 42.1 degrees C; these were more than twice as high as those for human RBC. 7. In agreement with the high water permeability the RBC of macropodids displayed a relatively low activation energy of water diffusion across their membranes, approximately 21 kJ/mol, compared with 25 kJ/mol for human RBC.
摘要
  1. 采用锰(2+)掺杂的1H核磁共振(NMR)技术监测了五种袋鼠科有袋动物红细胞(RBC)膜的水渗透性。2. 由于这似乎是首次报道在400MHz下对1H进行此类测量,因此对人红细胞样本进行了影响水交换时间(Te)估计值和扩散水渗透性(Pd)的仪器参数分析。3. 研究发现,在Carr-Purcell-Meiboom-Gill脉冲序列中必须使用短的脉冲间隔延迟(约100微秒),以避免因分子通过细胞内外不均匀局部磁场扩散而导致的弛豫时间低估。4. 这五个物种(赤褐大袋鼠、帕尔马大袋鼠、尤金大袋鼠、帕里大袋鼠和双色沙袋鼠)的红细胞膜水渗透性之间没有显著差异。5. 生活在不同栖息地的尤金大袋鼠的不同群体之间也没有显著差异。6. Pd的平均值在24.6℃时为9.1×10(-3)cm/秒,在30℃时为10.4×10(-3)cm/秒,在37℃时为12.6×10(-3)cm/秒,在42.1℃时为14.7×10(-3)cm/秒;这些值是人红细胞的两倍多。7. 与高水渗透性一致,袋鼠科动物的红细胞跨膜水扩散的活化能相对较低,约为21kJ/mol,而人红细胞为25kJ/mol。

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