We report the synthesis and biological characterization of a novel class of multivalent glycoconjugates as hit compounds for the design of new antiadhesive therapies against urogenital tract infections (UTIs) caused by uropathogenic E. coli strains (UPEC). The first step of UTIs is the molecular recognition of high mannose N-glycan expressed on the surface of urothelial cells by the bacterial lectin FimH, allowing the pathogen adhesion required for mammalian cell invasion. The inhibition of FimH-mediated interactions is thus a validated strategy for the treatment of UTIs. To this purpose, we designed and synthesized D-mannose multivalent dendrons supported on a calixarene core introducing a significant structural change from a previously described family of dendrimers bearing the same dendrons units on a flexible pentaerythritol scaffold core. The new molecular architecture increased the inhibitory potency against FimH-mediated adhesion processes by about 16 times, as assessed by yeast agglutination assay. Moreover, the direct molecular interaction of the new compounds with FimH protein was assessed by oncell NMR experiments acquired in the presence of UPEC cells.

Multivalent calix[4]arene-based mannosylated dendrons as new FimH ligands and inhibitors / Palmioli, Alessandro; Moretti, Luca; Vezzoni, Carlo Alberto; Legnani, Laura; Sperandeo, Paola; Baldini, Laura; Sansone, Francesco; Airoldi, Cristina; Casnati, Alessandro. - In: BIOORGANIC CHEMISTRY. - ISSN 0045-2068. - 138:(2023), p. 106613. [10.1016/j.bioorg.2023.106613]

Multivalent calix[4]arene-based mannosylated dendrons as new FimH ligands and inhibitors

Vezzoni, Carlo Alberto;Baldini, Laura;Sansone, Francesco;Casnati, Alessandro
2023-01-01

Abstract

We report the synthesis and biological characterization of a novel class of multivalent glycoconjugates as hit compounds for the design of new antiadhesive therapies against urogenital tract infections (UTIs) caused by uropathogenic E. coli strains (UPEC). The first step of UTIs is the molecular recognition of high mannose N-glycan expressed on the surface of urothelial cells by the bacterial lectin FimH, allowing the pathogen adhesion required for mammalian cell invasion. The inhibition of FimH-mediated interactions is thus a validated strategy for the treatment of UTIs. To this purpose, we designed and synthesized D-mannose multivalent dendrons supported on a calixarene core introducing a significant structural change from a previously described family of dendrimers bearing the same dendrons units on a flexible pentaerythritol scaffold core. The new molecular architecture increased the inhibitory potency against FimH-mediated adhesion processes by about 16 times, as assessed by yeast agglutination assay. Moreover, the direct molecular interaction of the new compounds with FimH protein was assessed by oncell NMR experiments acquired in the presence of UPEC cells.
2023
Multivalent calix[4]arene-based mannosylated dendrons as new FimH ligands and inhibitors / Palmioli, Alessandro; Moretti, Luca; Vezzoni, Carlo Alberto; Legnani, Laura; Sperandeo, Paola; Baldini, Laura; Sansone, Francesco; Airoldi, Cristina; Casnati, Alessandro. - In: BIOORGANIC CHEMISTRY. - ISSN 0045-2068. - 138:(2023), p. 106613. [10.1016/j.bioorg.2023.106613]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11381/2958232
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