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首页> 外文期刊>The Journal of biological chemistry >Peptide Derived from HIV-1 TAT Protein Destabilizes a Monolayer of Endothelial Cells in an in Vitro Model of the Blood-Brain Barrier and Allows Permeation of High Molecular Weight Proteins
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Peptide Derived from HIV-1 TAT Protein Destabilizes a Monolayer of Endothelial Cells in an in Vitro Model of the Blood-Brain Barrier and Allows Permeation of High Molecular Weight Proteins

机译:源自HIV-1 TAT蛋白的肽使血脑屏障的体外模型中的单层内皮细胞​​失去了一种单层内皮细胞​​,并允许高分子量蛋白渗透

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Most chemotherapeutic agents are blood-brain barrier (BBB) impermeants. HIV-1-derived TAT protein variants contain a transmembrane domain, which may enable them to cross the BBB and reach the brain. Here we synthesized CAYGRKKRRQRRR, a peptide containing a cysteine moiety attached to the N terminus of the transmembrane domain (C-TAT peptide), and studied its effects in an in vitro BBB model, which we found to reflect penetration by a receptor-independent pathway. Incubation of the brain capillary endothelial cell monolayer with 0.3–0.6 μmol/ml of this C-TAT peptide, for a period of 1–2 h, destabilizes brain capillary endothelial cell monolayer and introduces the ability of impermeant therapeutic agents including high molecular weight proteins to penetrate it substantially. The cysteinyl moiety at position 1 of the C-TAT peptide contributes largely to the destabilizing potency and the penetration efficacy of impermeant substances. The destabilizing effect was reversed using heparin. In summary, experimental conditions allowing a significant increase in entry of impermeant low and high molecular weight substances from the luminal (blood) to the abluminal side (brain) were found in an in vitro BBB model reflecting in vivo protein penetrability by a receptor-independent pathway.
机译:大多数化学治疗剂是血脑屏障(BBB)无缺陷。 HIV-1衍生的TAT蛋白变体含有跨膜结构域,其可以使它们交叉BBB并到达大脑。在这里,我们合成了CaygrkkrrqRRR,一种含有连接到跨膜结构域(C-Tat肽)的半胱氨酸部分(C-Tat肽)的半胱氨酸部分的肽,并研究了其在体外BBB模型中的作用,我们发现由受体无关的途径反映渗透。用0.3-0.6μmol/ ml该C-Tat肽孵育脑毛细管内皮细胞单层,为1-2小时,稳定脑毛细管内皮细胞单层并介绍了包括高分子量蛋白质的缺乏治疗剂的能力基本上渗透它。 C-TAT肽的位置1处的半胱氨酸块部分主要有助于稳定性效力和缺乏物质的渗透效果。使用肝素反转不稳定的效果。总之,在体外BBB模型中,发现允许从腔内(血液)进入腔(血液)进入的实验条件,从腔内(血液)中,在体外蛋白质渗透性中反映的体外BBB模型中发现了受体无关的途径。

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