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Delivery of galanin-like peptide to the brain: targeting with intranasal delivery and cyclodextrins.

机译:甘丙肽样肽向大脑的输送:鼻内输送和环糊精靶向。

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Galanin-like peptide (GALP) shows potential as a therapeutic in the treatment of obesity and related conditions. In this study, we compared the uptake by brain regions and peripheral tissues of radioactively iodinated GALP (I-GALP) after intranasal (i.n.), i.v., and i.c.v. administration. I-GALP was stable in blood and brain during the 10-min study time regardless of route of administration, and similar levels were achieved in cerebrospinal fluid after i.v. and i.n. administration. However, levels in most brain regions were approximately 4 to 10 times higher and uptake by spleen, representative of peripheral tissues, approximately 10% as high after i.n. than i.v. administration. Thus, i.n. administration provided about a 40- to 100 fold improvement in targeting brain versus peripheral tissues compared with i.v. administration. Uptake of I-GALP by whole brain after i.n. administration was inhibited by approximately 50% by 1 mug/mouse of unlabeled GALP, thus demonstrating a saturable component to uptake.Combining I-GALP with cyclodextrins increased brain uptake approximately 3-fold. Selectivity for brain region uptake was also seen with route of administration and with use of cyclodextrins. The hippocampus had the greatest uptake after i.c.v. administration, the cerebellum after i.v. administration, the hypothalamus with i.n. administration without cyclodextrins, the hypothalamus and olfactory bulb (OB) after i.n. administration with alpha-cyclodextrin, and the OB after i.n. administration with dimethyl-beta cyclodextrin. These studies show that intranasal administration is an effective route of administration for the delivery of GALP to the brain and that targeting among brain regions may be possible with the use of various cyclodextrins.
机译:甘丙肽样肽(GALP)在肥胖症和相关疾病的治疗中显示出潜力。在这项研究中,我们比较了鼻内(i.n.),静脉内和静脉内麻醉后放射性碘碘GALP(I-GALP)对大脑区域和周围组织的摄取。行政。无论给药途径如何,I-GALP在10分钟的研究时间内在血液和大脑中均保持稳定,静脉输注后脑脊液中的I-GALP达到相似水平。和i.n.行政。然而,大多数大脑区域的水平大约高出4至10倍,脾脏(代表周围组织)的摄取量大约是i.n后的10%。比i.v.行政。因此,与静脉内注射相比,注射给药在靶向脑部和周围组织方面提供了约40至100倍的改善。行政。 i.n.后全脑摄取I-GALP 1杯/小鼠未标记的GALP可抑制约50%的给药,从而证明可饱和的成分被吸收。I-GALP与环糊精的结合可增加约3倍的大脑吸收。还可以通过给药途径和使用环糊精观察到对大脑区域摄取的选择性。 i.c.v.之后,海马的吸收量最大。行政后,小脑行政管理,下丘脑i.n.后无环糊精,下丘脑和嗅球(OB)的给药。用α-环糊精给药,并在i.n后给药。与二甲基-β-环糊精一起给药。这些研究表明,鼻内给药是将GALP输送至大脑的有效给药途径,并且通过使用各种环糊精可以在大脑区域之间靶向。

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