首页> 外文OA文献 >Comparison of the autoradiographic binding distribution of [3H]-gabapentin with excitatory amino acid receptor and amino acid uptake site distributions in rat brain.
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Comparison of the autoradiographic binding distribution of [3H]-gabapentin with excitatory amino acid receptor and amino acid uptake site distributions in rat brain.

机译:[3H]-加巴喷丁的放射自显影结合分布与大鼠脑中兴奋性氨基酸受体和氨基酸摄取位点分布的比较。

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摘要

1. Gabapentin is a novel anticonvulsant with an unknown mechanism of action. Recent homogenate binding studies with [3H]-gabapentin have suggested a structure-activity relationship similar to that shown for the amino acid transport system responsible for the uptake of large neutral amino acids (LNAA). 2. The autoradiographic binding distribution of [3H]-gabapentin in rat brain was compared with the distributions for excitatory amino acid receptor subtypes and the uptake sites for excitatory and large neutral amino acids in consecutive rat brain sections. 3. Densitometric measurement of the autoradiographic images followed by normalisation with respect to the hippocampus CA1 stratum radiatum, was carried out before comparison of each binding distribution with that of [3H]-gabapentin by linear regression analysis. The correlation coefficients observed showed no absolute correlation was observed between the binding distributions of [3H]-gabapentin and those of the excitatory amino acid receptor subtypes. The acidic and large neutral amino acid uptake site distributions demonstrated a much closer correlation to the [3H]-gabapentin binding site distribution. The correlation coefficients for D-[3H]-aspartate, L-[3H]-leucine and L-[3H]-isoleucine binding site distributions were 0.76, 0.90 and 0.88 respectively. 4. Concentration-dependent inhibition by unlabelled gabapentin of autoradiographic binding of L-[3H]-leucine and L-[3H]-isoleucine was observed, with non-specific binding levels being reached at concentrations between 10 and 100 microM. 5. Excitotoxic quinolinic acid lesion studies in rat brain caudate putamen and autoradiography were carried out for the amino acid uptake sites mentioned above. The resulting glial infiltration of the lesioned areas was visualized by autoradiography using the peripheral benzodiazepine receptor specific ligand [3H]-PK11195. A significant decrease in binding density in the lesioned area compared with sham-operated animals was observed for D-[3H]-aspartate, L-[3H]-leucine, L-[3H]-isoleucine and [3H]-gabapentin, whilst [3H]-PK11195 showed a significant increase in binding density indicative of glial infiltration into the lesioned area. These results suggest that the gabapentin binding site and the acidic and LNAA uptake site may be present on cell bodies of a neuronal population of cells. 6. From these studies it appears that [3H]-gabapentin, L-[3H]-leucine and L-[3H]-isoleucine bind to the same site in rat brain. The inhibition of [3H]-gabapentin binding by the LNAA uptake system-specific ligand, BCH, suggests that [3H]-gabapentin may label this uptake site, termed system-L. Conversely these ligands could be labelling a novel site that coincidentally has a similar structure-activity relationship to this uptake site. These results suggest a novel mechanistically relevant site of action for gabapentin and may enable further anti-epileptic agents of this type to be developed.
机译:加巴喷丁是一种新型的抗惊厥药,其作用机理未知。最近与[3H]-加巴喷丁的匀浆结合研究表明,结构-活性关系类似于氨基酸转运系统所显示的结构,该关系负责摄取大的中性氨基酸(LNAA)。 2.比较了大鼠大脑中[3H]-加巴喷丁的放射自显影结合分布与兴奋性氨基酸受体亚型的分布以及兴奋性和大中性氨基酸的摄取部位。 3.在通过线性回归分析将每个结合分布与[3H]-加巴喷丁的结合分布进行比较之前,进行了放射自显影图像的光密度测量,然后相对于海马CA1放射状层进行了归一化。观察到的相关系数表明,[3H]-加巴喷丁的结合分布与兴奋性氨基酸受体亚型的结合分布之间没有绝对的相关性。酸性和较大的中性氨基酸摄取位点分布表明与[3H]-加巴喷丁结合位点分布密切相关。 D- [3H]-天冬氨酸,L- [3H]-亮氨酸和L- [3H]-异亮氨酸结合位点的相关系数分别为0.76、0.90和0.88。 4.观察到未标记的加巴喷丁对L- [3H]-亮氨酸和L- [3H]-异亮氨酸的放射自显影结合的浓度依赖性抑制,当浓度在10至100μM之间时达到非特异性结合水平。 5.针对上述氨基酸摄取部位,在大鼠脑尾状壳核中进行了兴奋性喹啉酸损害的研究和放射自显影。使用周围苯并二氮杂receptor受体特异性配体[3H] -PK11195,通过放射自显影观察病变区域产生的神经胶质浸润。与假手术动物相比,D- [3H]-天门冬氨酸,L- [3H]-亮氨酸,L- [3H]-异亮氨酸和[3H]-加巴喷丁在病变区域的结合密度显着降低。 [3H] -PK11195的结合密度显着增加,表明神经胶质浸润进入病变区域。这些结果表明加巴喷丁结合位点以及酸性和LNAA摄取位点可能存在于神经元细胞群体的细胞体上。 6.从这些研究看来,[3H]-加巴喷丁,L- [3H]-亮氨酸和L- [3H]-异亮氨酸与大鼠脑中的相同位点结合。 LNAA摄取系统特异性配体BCH对[3H]-加巴喷丁结合的抑制作用表明[3H]-加巴喷丁可能标记了该摄取位点,称为系统L。相反,这些配体可以标记一个新位点,该位点恰好与此摄取位点具有相似的结构活性关系。这些结果表明加巴喷丁的新的机械相关的作用部位,并可能使这种类型的进一步的抗癫痫药得以开发。

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