Natural oligosaccharides inhibitors of heparanase and selectins are emerging as promising drugs for cancer therapy. As an alternative tool to the natural ones, sulfated tri maltose C-C-linked dimers (alfa,alfa alfa,beta and beta,beta STMCs) were prepared by bromo-maltotriose electroreduction on silver cathode,1 followed by sulfation. The presence of an interglycosidic C-C bond makes STMCs less vulnerable to metabolic processing then their O-analogues. For this reason, STMCs have been studied as drug candidates and inhibitors of carbohydrate processing enzymes. Their activity as inhibitor of Pselectin in vivo and in the attenuation of metastasis both on B16-BL6 melanoma cells and on MC- 38 carcinoma cells2 prompted to the optimization of their synthetic process. Therefore, the electrochemical process for the C-C coupling of the model molecule acetobromoglucose has been investigated by changing various reaction conditions such as solvent and arrangement of the electrolytic cell, aiming at the final scale-up of the reaction.

COLETTI, A., VALERIO, A.M., D'ANGELO, A., SCIALDONE, O., VISMARA, E. (2012). Electrochemical synthesis of C-glycosides as non-natural mimetics of biologically active oligosaccharides. In XXXIV CONVEGNO NAZIONALE DIVISIONE DI CHIMICA ORGANICA.PAVIA, 10-14 SETTEMBRE 2012.

Electrochemical synthesis of C-glycosides as non-natural mimetics of biologically active oligosaccharides

D'ANGELO, Adriana;SCIALDONE, Onofrio;
2012-01-01

Abstract

Natural oligosaccharides inhibitors of heparanase and selectins are emerging as promising drugs for cancer therapy. As an alternative tool to the natural ones, sulfated tri maltose C-C-linked dimers (alfa,alfa alfa,beta and beta,beta STMCs) were prepared by bromo-maltotriose electroreduction on silver cathode,1 followed by sulfation. The presence of an interglycosidic C-C bond makes STMCs less vulnerable to metabolic processing then their O-analogues. For this reason, STMCs have been studied as drug candidates and inhibitors of carbohydrate processing enzymes. Their activity as inhibitor of Pselectin in vivo and in the attenuation of metastasis both on B16-BL6 melanoma cells and on MC- 38 carcinoma cells2 prompted to the optimization of their synthetic process. Therefore, the electrochemical process for the C-C coupling of the model molecule acetobromoglucose has been investigated by changing various reaction conditions such as solvent and arrangement of the electrolytic cell, aiming at the final scale-up of the reaction.
set-2012
CONVEGNO NAZIONALE DIVISIONE DI CHIMICA ORGANICA
PAVIA
10-14 SETTEMBRE 2012
XXXIV
2012
1
COLETTI, A., VALERIO, A.M., D'ANGELO, A., SCIALDONE, O., VISMARA, E. (2012). Electrochemical synthesis of C-glycosides as non-natural mimetics of biologically active oligosaccharides. In XXXIV CONVEGNO NAZIONALE DIVISIONE DI CHIMICA ORGANICA.PAVIA, 10-14 SETTEMBRE 2012.
Proceedings (atti dei congressi)
COLETTI, A; VALERIO, AM; D'ANGELO, A; SCIALDONE, O; VISMARA, E
File in questo prodotto:
File Dimensione Formato  
1.chimica organica copertina.pdf

accesso aperto

Dimensione 134.38 kB
Formato Adobe PDF
134.38 kB Adobe PDF Visualizza/Apri
1.proceeding Electrochemical synthesis of C-glycosides as non-natural mimetics of biologically active oligosaccharides.pdf

accesso aperto

Dimensione 93.88 kB
Formato Adobe PDF
93.88 kB Adobe PDF Visualizza/Apri
1.TC ORGANICA.pdf

accesso aperto

Dimensione 146.33 kB
Formato Adobe PDF
146.33 kB Adobe PDF Visualizza/Apri

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10447/76594
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus ND
  • ???jsp.display-item.citation.isi??? ND
social impact