Giri S N, Peoples S A
Proc Soc Exp Biol Med. 1975 Feb;148(2):540-3. doi: 10.3181/00379727-148-38579.
It was demonstrated by equilibrium dialysis that dog red cells have a greater ability to bind chlorpromazine than rat red cells. Dog plasma was shown to have a greater ability to bind chlopromazine than rat plasma although this difference was not statistically significant. In the presence of CPZ (10-3M), the 50% hemolysis time of dog red cells suspended in homologous plasma or in 0.9% buffered NaCl solution was much greater than that of rat red cells treated in the same manner. The 50% hemolysis time of dog red cells suspended in homologous plasma was considerably shortened when they were suspended in rat plasma. Conversely, an increase in the 50% hemolysis time was obtained when rat red cells were suspended in dog plasma. Several possibilities for the slower rate of CPZ-induced hemolysis of dog red cells as compared to rat has been discussed in the present report.
平衡透析表明,犬红细胞比大鼠红细胞具有更强的结合氯丙嗪的能力。犬血浆比大鼠血浆显示出更强的结合氯丙嗪的能力,尽管这种差异无统计学意义。在存在CPZ(10-3M)的情况下,悬浮于同源血浆或0.9%缓冲NaCl溶液中的犬红细胞的50%溶血时间比以相同方式处理的大鼠红细胞长得多。当犬红细胞悬浮于大鼠血浆中时,其悬浮于同源血浆中的50%溶血时间显著缩短。相反,当大鼠红细胞悬浮于犬血浆中时,50%溶血时间增加。本报告讨论了与大鼠相比,氯丙嗪诱导犬红细胞溶血速率较慢的几种可能性。