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首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Drug transporter expression and localization in rat nasal respiratory and olfactory mucosa and olfactory bulb.
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Drug transporter expression and localization in rat nasal respiratory and olfactory mucosa and olfactory bulb.

机译:药物转运蛋白在大鼠鼻呼吸道和嗅粘膜及嗅球中的表达和定位。

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摘要

Uptake of drugs and other xenobiotics from the nasal cavity and into either the brain or systemic circulation can occur through several different mechanisms, including paracellular transport and movement along primary olfactory nerve axons, which extend from the nasal cavity to the olfactory bulb of the brain. The present study was conducted to expand knowledge on a third means of uptake, namely the expression of drug transporters in the rat nasal epithelium. We used branched DNA technology to compare the level of expression of nine transporters [(equilibrative nucleoside transporters (ENT)1 and ENT2; organic cation transporter (OCT)1, 2, and 3; OCTN1; organic anion-transporting polypeptide (OATP)3; and multidrug resistance (MRP)1 and MRP4] in nasal respiratory mucosa, olfactory mucosa, and olfactory bulb to the level of expression of these transporters in the liver and kidney. Transporters with high expression in the nasal respiratory mucosa or olfactory tissues were immunolocalized by immunohistochemistry. ENT1 and ENT2 expression was relatively high in nasal epithelia and olfactory bulb, which may explain the uptake of intranasally administered nucleoside derivatives observed by other investigators. OATP3 immunoreactivity was high in olfactory epithelium and olfactory nerve bundles, which suggests that substrates transported by OATP3 may be candidates for intranasal administration.
机译:可以通过几种不同的机制发生从鼻腔和大脑或全身循环吸收药物和其他异生素的过程,包括沿鼻嗅神经轴突的副细胞运输和运动,这些过程从鼻腔延伸到大脑的嗅球。进行本研究以扩展关于第三种摄取途径的知识,即大鼠鼻上皮中药物转运蛋白的表达。我们使用分支DNA技术比较了九种转运蛋白的表达水平[(平衡核苷转运蛋白(ENT)1和ENT2;有机阳离子转运蛋白(OCT)1、2和3; OCTN1;有机阴离子转运多肽(OATP)3 ;鼻呼吸道黏膜,嗅觉黏膜和嗅球中的多药耐药性(MRP)1和MRP4]对这些转运蛋白在肝和肾中的表达水平的影响。鼻腔上皮细胞和嗅球中的ENT1和ENT2表达较高,这可能解释了其他研究者观察到的鼻腔给药核苷衍生物的摄取;嗅上皮和嗅神经束中OATP3的免疫反应性较高,这表明通过OATP3可能是鼻内给药的候选药物。

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