Brújula Home

Institutional repository of the Universidad Loyola

View Item 
  •   Brújula Home
  • PRODUCCIÓN CIENTÍFICA Y TRANSFERENCIA
  • Departamento de Salud
  • Artículos
  • View Item
  •   Brújula Home
  • PRODUCCIÓN CIENTÍFICA Y TRANSFERENCIA
  • Departamento de Salud
  • Artículos
  • View Item
    • español
    • English
JavaScript is disabled for your browser. Some features of this site may not work without it.

Browse

All of BrújulaCommunities and CollectionsAuthorsTitlesKeywordsAuthor profilesThis CollectionAuthorsTitlesKeywords

My Account

Login

Statistics

View Usage Statistics

Añadido Recientemente

Novedades
Repository
How to publish
Visibility
FAQs

Multiple Multicomponent Reactions: Unexplored Substrates, Selective Processes, and Versatile Chemotypes in Biomedicine

Author:
Ghashghaei, Ouldouz; Caputo, Samantha; Sintes, Miquel; Revés, Marc; Kielland, Nicola; [et al.]
URI:
https://hdl.handle.net/20.500.12412/7193
ISSN:
0947-6539
DOI:
10.1002/chem.201802877
Date:
2018-09-25
Keyword(s):

Azines

Biological activity

Isocyanides

Multicomponent reactions

Novel scaffolds

Abstract:

Multiple multicomponent reactions rapidly assemble complex structures. Despite being very productive, the lack of selectivity and the reduced number of viable transformations restrict their general application in synthesis. Hereby, we describe a rationale for a selective version of these processes based in the preferential generation of intermediates which are less reactive than the initial substrates. In this way, applying the Groebke-Blackburn-Bienaymé reaction on a range of α-polyamino-polyazines, we prepared a family compact heterocyclic scaffolds with relevant applications in medicinal and biological chemistry (live cell imaging probes, selective binders for DNA quadruplexes, and antiviral agents against human adenoviruses). The approach has general character and yields complex molecular targets in a selective, tunable and direct manner.

Multiple multicomponent reactions rapidly assemble complex structures. Despite being very productive, the lack of selectivity and the reduced number of viable transformations restrict their general application in synthesis. Hereby, we describe a rationale for a selective version of these processes based in the preferential generation of intermediates which are less reactive than the initial substrates. In this way, applying the Groebke-Blackburn-Bienaymé reaction on a range of α-polyamino-polyazines, we prepared a family compact heterocyclic scaffolds with relevant applications in medicinal and biological chemistry (live cell imaging probes, selective binders for DNA quadruplexes, and antiviral agents against human adenoviruses). The approach has general character and yields complex molecular targets in a selective, tunable and direct manner.

 

Es la versión aceptada del artículo. Se puede consultar la versión final en https://doi.org/10.1002/chem.201802877

Es la versión aceptada del artículo. Se puede consultar la versión final en https://doi.org/10.1002/chem.201802877

 
Show full item record
Collections
  • Artículos
Files in this item
Thumbnail
Multiple Multicomponent Reactions, Unexplored.pdf (1.085Mb)
Share
Export to Mendeley
Statistics
Usage statistics
Metrics and citations  
Go to Brújula home

Universidad Loyola

Library

Contact

Facebook Loyola BibliotecaTwitter Loyola Biblioteca

The content of the Repository is protected with a Creative Commons license:

Attribution-NonCommercial-NoDerivatives 4.0 Internacional

Creative Commons Image