Item request has been placed! ×
Item request cannot be made. ×
loading  Processing Request

Exploring Mannosylpurines as Copper Chelators and Cholinesterase Inhibitors with Potential for Alzheimer’s Disease

Item request has been placed! ×
Item request cannot be made. ×
loading   Processing Request
  • معلومة اضافية
    • Contributors:
      DQ - Departamento de Química
    • بيانات النشر:
      Multidisciplinary Digital Publishing Institute, 2022.
    • الموضوع:
      2022
    • نبذة مختصرة :
      Funding Information: This research was funded by the EUROPEAN UNION project entitled “Diagnostic and Drug Discovery Initiative for Alzheimer’s Disease” (D3i4AD), FP7-PEOPLE-2013-IAPP, grant agreement 612347. FUNDAÇÃO PARA A CIÊNCIA E A TECNOLOGIA (FCT, PORTUGAL) also funded this research through the financial support of Centro de Química Estrutural (project UIDB/00100/2020), Institute of Molecular Sciences (project LA/P/0056/2020) and project PTDC/QUI-QFI/29527/2017. Publisher Copyright: © 2022 by the authors. Alzheimer’s Disease (AD) is characterized by a progressive cholinergic neurotransmission imbalance, with a decrease of acetylcholinesterase (AChE) activity followed by a significant increase of butyrylcholinesterase (BChE) in the later AD stages. BChE activity is also crucial for the development of Aβ plaques, the main hallmarks of this pathology. Moreover, systemic copper dyshomeostasis alters neurotransmission leading to AD. In the search for structures targeting both events, a set of novel 6-benzamide purine nucleosides was synthesized, differing in glycone configuration and N7/N9 linkage to the purine. Their AChE/BChE inhibitory activity and metal ion chelating properties were evaluated. Selectivity for human BChE inhibition required N9-linked 6-deoxy-α-d-mannosylpurine structure, while all three tested β-d-derivatives appeared as non-selective inhibitors. The N9-linked l-nucleosides were cholinesterase inhibitors except the one embodying either the acetylated sugar or the N-benzyl-protected nucleobase. These findings highlight that sugar-enriched molecular entities can tune bioactivity and selectivity against cholinesterases. In addition, selective copper chelating properties over zinc, aluminum, and iron were found for the benzyl and acetyl-protected 6-deoxy-α-l-mannosyl N9-linked purine nucleosides. Computational studies highlight molecular conformations and the chelating molecular site. The first dual target compounds were disclosed with the perspective of generating drug candidates by improving water solubility. publishersversion published
    • File Description:
      application/pdf
    • ISSN:
      1424-8247
    • الرقم المعرف:
      10.3390/ph16010054
    • Rights:
      OPEN
    • الرقم المعرف:
      edsair.doi.dedup.....631b3eb6342266bf21a9d01953642538