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Inhibition of the norepinephrine transporter by χ-conotoxin dendrimers

  • Jingjing Wan
  • , Andreas Brust
  • , Rebecca F. Bhola
  • , Prerna Jha
  • , Mehdi Mobli
  • , Richard J. Lewis
  • , Macdonald J. Christie
  • , Paul F. Alewood*
  • *此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

Peptide dendrimers are a novel class of macromolecules of emerging interest with the potential of delayed renal clearance due to their molecular size and enhanced activity due to the multivalency effect. In this work, an active analogue of the disulfide-rich χ-conotoxin χ-MrIA (χ-MrIA), a norepinephrine reuptake (norepinephrine transporter) inhibitor, was grafted onto a polylysine dendron. Dendron decoration was achieved by employing copper-catalyzed alkyne-azide cycloaddition with azido-PEG chain-modified χ-MrIA analogues, leading to homogenous 4-mer and 8-mer χ-MrIA dendrimers with molecular weights ranging from 8 to 22 kDa. These dendrimers were investigated for their impact on peptide secondary structure, in vitro functional activity, and potential anti-allodynia in vivo. NMR studies showed that the χ-MrIA tertiary structure was maintained in the χ-MrIA dendrimers. In a functional norepinephrine transporter reuptake assay, χ-MrIA dendrimers showed slightly increased potency relative to the azido-PEGylated χ-MrIA analogues with similar potency to the parent peptide. In contrast to χ-MrIA, no anti-allodynic action was observed when the χ-MrIA dendrimers were administered intrathecally in a rat model of neuropathic pain, suggesting that the larger dendrimer structures are unable to diffuse through the spinal column tissue and reach the norepinephrine transporter.

源语言英语
页(从-至)280-289
页数10
期刊Journal of Peptide Science
22
5
DOI
出版状态已出版 - 5月 2016
已对外发布

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