首页> 外文期刊>Peptides: An International Journal >In vitro binding and in vivo biodistribution studies of the neuroprotective peptide humanin using (125I)humanin derivatives.
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In vitro binding and in vivo biodistribution studies of the neuroprotective peptide humanin using (125I)humanin derivatives.

机译:使用(125I)humanin衍生物对神经保护肽humanin进行体外结合和体内生物分布研究。

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摘要

Humanin (HN) and HN-derivatives are a family of peptides first reported in the last decade with potent in vitro and in vivo neuroprotective activity, which is mediated through a not completely elucidated mechanism. Recently, our group has evaluated the effect of various HN-derivatives on the 3-quinuclidinyl benzilate (QNB)-induced impairment of spatial orientation and memory in rats, by employing the T-maze test. In the present work four new, tyrosine containing HN-derivatives were synthesized (Y-PAGASRLLLTGEIDLP, peptide I; Y-PAGASRLLLLTGEIDLP, peptide II; Y-SALLRSIPAPAGASRLLLTGEIDLP, peptide III; Y-SALLRSIPAPAGASRLLLLTGEIDLP, peptide IV). The neuroprotective action of these peptides was evaluated in the T-maze test and the most active among them (peptides I and III) was radiolabeled with (125)I. The pure monoradioiodinated peptides were used in: (i) in vitro binding studies with various neuronal cell lines and with brain and stomach membranes from rats and mice and (ii) in vivo biodistribution studies in rats and mice. Moreover, the metabolic stability of the above radiolabeled peptides was studied. Under the experimental conditions used, our data do not confirm the existence of specific binding sites for HN on the neuronal tissue. Nevertheless, they are setting the basis for further relevant studies aiming at the clarification of the mode of the neuroprotective action of HN-peptides.
机译:Humanin(HN)和HN衍生物是近十年来首次报道的具有有效的体外和体内神经保护活性的肽家族,该活性是通过尚未完全阐明的机制介导的。最近,我们的小组通过T迷宫测试评估了各种HN衍生物对3-喹啉基苯甲酸根(QNB)诱导的大鼠空间定向和记忆力损伤的影响。在本工作中,合成了四个新的含酪氨酸的HN衍生物(Y-PAGASRLLLTGEIDLP,肽I; Y-PAGASRLLLLTGEIDLP,肽II; Y-SALLRSIPAPAGASRLLLTGEIDLP,肽III; Y-SALLRSIPAPAGASRLLLLTGEIDLP,肽IV)。在T-迷宫测试中评估了这些肽的神经保护作用,并用(125)I放射性标记了其中最活跃的(肽I和III)。纯的单放射性碘标记的肽用于:(i)与各种神经元细胞系以及大鼠和小鼠的脑膜和胃膜的体外结合研究,以及(ii)大鼠和小鼠的体内生物分布研究。此外,研究了上述放射性标记肽的代谢稳定性。在使用的实验条件下,我们的数据不能证实神经元组织上HN的特异性结合位点的存在。但是,它们为进一步阐明HN肽的神经保护作用方式的研究奠定了基础。

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