首页> 美国卫生研究院文献>Journal of Cerebral Blood Flow Metabolism >Distribution of glycylsarcosine and cefadroxil among cerebrospinal fluid choroid plexus and brain parenchyma after intracerebroventricular injection is markedly different between wild-type and Pept2 null mice
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Distribution of glycylsarcosine and cefadroxil among cerebrospinal fluid choroid plexus and brain parenchyma after intracerebroventricular injection is markedly different between wild-type and Pept2 null mice

机译:野生型和Pept2缺失型小鼠脑室内注射后脑脊液脉络丛和脑实质中的糖基肌氨酸和头孢氨苄的分布明显不同

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摘要

The purpose of this study was to define the cerebrospinal fluid (CSF) clearance kinetics, choroid plexus uptake, and parenchymal penetration of PEPT2 substrates in different regions of the brain after intracerebroventricular administration. To accomplish these objectives, we performed biodistribution studies using [14C]glycylsarcosine (GlySar) and [3H]cefadroxil, along with quantitative autoradiography of [14C]GlySar, in wild-type and Pept2 null mice. We found that PEPT2 deletion markedly reduced the uptake of GlySar and cefadroxil in choroid plexuses at 60 mins by 94% and 82% (P<0.001), respectively, and lowered their CSF clearances by about fourfold. Autoradiography showed that GlySar concentrations in the lateral, third, and fourth ventricle choroid plexuses were higher in wild-type as compared with Pept2 null mice (P<0.01). Uptake of GlySar by the ependymal–subependymal layer and septal region was higher in wild-type than in null mice, but the half-distance of penetration into parenchyma was significantly less in wild-type mice. The latter is probably because of the clearance of GlySar from interstitial fluid by brain cells expressing PEPT2, which stops further penetration. These studies show that PEPT2 knockout can significantly modify the spatial distribution of GlySar and cefadroxil (and presumably other peptides/mimetics and peptide-like drugs) in brain.
机译:这项研究的目的是定义脑室内给药后脑脊髓液(CSF)清除动力学,脉络丛摄取和PEPT2底物在大脑不同区域的实质渗透。为实现这些目标,我们使用[ 14 C]糖基肌氨酸(GlySar)和[ 3 H]头孢曲定进行了生物分布研究,并对[ 14 < / sup> C] GlySar,在野生型和Pept2空小鼠中。我们发现,PEPT2缺失显着降低了60分钟时脉络丛中GlySar和头孢羟氨苄的摄取,分别降低了94%和82%(P <0.001),并使它们的CSF清除率降低了约四倍。放射自显影显示与野生型Pept2小鼠相比,野生型侧脑室,第三脑室和第四脑室脉络丛中的GlySar浓度更高(P <0.01)。在野生型小鼠中,室管膜-室管膜层和中隔膜区对GlySar的吸收要高于无用小鼠,但在野生型小鼠中,其渗透到实质的半程明显较少。后者可能是因为表达PEPT2的脑细胞清除了GlySar从组织液中清除的作用,从而阻止了其进一步渗透。这些研究表明,PEPT2基因敲除可显着改变大脑中GlySar和头孢羟氨苄(以及可能的其他肽/模拟物和类似肽的药物)的空间分布。

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