GRECC, Veterans Affairs Puget Sound Health Care System, United States.
Peptides. 2010 Dec;31(12):2284-8. doi: 10.1016/j.peptides.2010.09.011. Epub 2010 Sep 22.
Insulin detemir has a different profile of action on the central nervous system (CNS) than human insulin. It has been hypothesized that this is caused by an altered ability of insulin detemir to cross the blood-brain barrier (BBB). Here, we measured the permeability of the BBB to insulin detemir. We labeled insulin detemir with radioactive iodine (I-Det) and examined its ability to cross the BBB of the mouse. Permeation was assessed after intravenous injection and by brain perfusion in the presence or absence of excess insulin detemir. The ability of insulin detemir to inhibit human insulin transport across the BBB was also assessed. I-Det did not cross the BBB either after intravenous injection or when studied by brain perfusion, a method which removes or reduces the influence of circulating proteins. Unlabeled detemir was about 10 times less potent than human insulin at inhibiting the transport of radioactive human insulin across the BBB. The altered CNS profile of insulin detemir may be caused by its poor access to CNS receptors and by a block of human insulin from crossing the BBB.
胰岛素地特胰岛素对中枢神经系统(CNS)的作用模式与人类胰岛素不同。据推测,这是由于胰岛素地特胰岛素穿越血脑屏障(BBB)的能力发生了改变。在这里,我们测量了 BBB 对胰岛素地特胰岛素的通透性。我们用放射性碘(I-Det)标记胰岛素地特胰岛素,并检查其穿过小鼠 BBB 的能力。在存在或不存在过量胰岛素地特胰岛素的情况下,通过静脉注射和脑灌注评估渗透。还评估了胰岛素地特胰岛素抑制人胰岛素穿过 BBB 转运的能力。I-Det 无论是静脉注射后还是通过脑灌注研究都无法穿过 BBB,脑灌注是一种去除或减少循环蛋白影响的方法。未标记的地特胰岛素在抑制放射性人胰岛素穿过 BBB 的转运方面的作用比人胰岛素弱约 10 倍。胰岛素地特胰岛素在中枢神经系统中的作用模式改变可能是由于其难以进入中枢神经系统受体,以及人胰岛素穿过 BBB 受到阻碍所致。