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首页> 外文期刊>Frontiers in Neurology >Cationic Arginine-Rich Peptides (CARPs): A Novel Class of Neuroprotective Agents With a Multimodal Mechanism of Action
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Cationic Arginine-Rich Peptides (CARPs): A Novel Class of Neuroprotective Agents With a Multimodal Mechanism of Action

机译:阳离子精氨酸丰富的肽(鲤鱼):一种新型的神经保护剂,具有多式联的作用机制

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There are virtually no clinically available neuroprotective drugs for the treatment of acute and chronic neurological disorders, hence there is an urgent need for the development of new neuroprotective molecules. Cationic arginine-rich peptides (CARPs) are an expanding and relatively novel class of compounds, which possess intrinsic neuroprotective properties. Intriguingly, CARPs possess a combination of biological properties unprecedented for a neuroprotective agent including the ability to traverse cell membranes and enter the CNS, antagonize calcium influx, target mitochondria, stabilize proteins, inhibit proteolytic enzymes, induce pro-survival signaling, scavenge toxic molecules, and reduce oxidative stress as well as, having a range of anti-inflammatory, analgesic, anti-microbial, and anti-cancer actions. CARPs have also been used as carrier molecules for the delivery of other putative neuroprotective agents across the blood-brain barrier and blood-spinal cord barrier. However, there is increasing evidence that the neuroprotective efficacy of many, if not all these other agents delivered using a cationic arginine-rich cell-penetrating peptide (CCPPs) carrier (e.g., TAT) may actually be mediated largely by the properties of the carrier molecule, with overall efficacy further enhanced according to the amino acid composition of the cargo peptide, in particular its arginine content. Therefore, in reviewing the neuroprotective mechanisms of action of CARPs we also consider studies using CCPPs fused to a putative neuroprotective peptide. We review the history of CARPs in neuroprotection and discuss in detail the intrinsic biological properties that may contribute to their cytoprotective effects and their usefulness as a broad-acting class of neuroprotective drugs.
机译:几乎没有临床上可用的神经保护药物用于治疗急性和慢性神经系统疾病,因此迫切需要开发新的神经保护分子。阳离子精氨酸富含肽(鲤鱼)是一种膨胀和相对新颖的化合物,其具有内在的神经保护性。有趣的是,鲤鱼具有前所未有的神经保护剂的生物学性质的组合,包括遍历细胞膜的能力并进入CNS,拮抗钙流入,靶线粒体,稳定蛋白质,抑制蛋白水解,诱导促求生存信号,清除毒性分子,并减少氧化应激以及具有一系列抗炎,镇痛,抗微生物和抗癌动作。鲤鱼还被用作载体分子,用于递送血脑屏障和血脊髓屏障的其他推定的神经保护剂。然而,增加了许多的神经保护效果,如果不是使用富含阳离子精氨酸的细胞渗透肽(例如,TAT)递送的所有这些其他代理人实际上可以在很大程度上通过载体的性质来介导分子,具有根据货物肽的氨基酸组成进一步增强的整体疗效,特别是其精氨酸含量。因此,在审查鲤鱼的神经保护作用机制方面,我们还考虑使用CCPP融合给推定的神经保护肽的研究。我们审查了神经保护术中鲤鱼的历史,并详细讨论了可能有助于其细胞保护作用及其作为一种广泛的神经保护药物的有用性的生物学性质。

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