The aggregation properties of two peptide-porphyrin conjugates were investigated by optical spectroscopy and microscopy imaging with nanometer resolution. Specifically, a tetraphenylporphyrin platform was functionalized by (L)-magainin, a 23-residue long antimicrobial peptide, and by a (L)-magainin analogue differing from the parent peptide by a single residue substitution, i.e. an Ala vs. Phe replacement in the position 5 of the peptide chain. Spectroscopic and microscopy results show that this single-site substitution has a small effect on the secondary structure attained by the two peptide analogues, but deeply affects the morphology of the mesoscopic structures deposited on hydrophilic mica from methanol/water solutions. In particular, only the Ala-substituted peptide-porphyrin conjugate was shown to be able to form micrometric fibrils, coating homogeneously a hydrophilic mica surface. These results pave the way for potential applications of porphyrin-peptide compounds in localized photodynamic therapy and for designing solid-state stereoselective sensors.

Cimino, R., Grelloni, E., Magna, G., Monti, D., Stefanelli, M., Gatto, E., et al. (2020). Tuning the morphology of mesoscopic structures of porphyrin macrocycles functionalized by an antimicrobial peptide. JOURNAL OF PORPHYRINS AND PHTHALOCYANINES, 24(5-7), 920-928 [10.1142/S1088424619502006].

Tuning the morphology of mesoscopic structures of porphyrin macrocycles functionalized by an antimicrobial peptide

Magna, G;Monti, D;Stefanelli, M;Gatto, E;Venanzi, M
2020-01-01

Abstract

The aggregation properties of two peptide-porphyrin conjugates were investigated by optical spectroscopy and microscopy imaging with nanometer resolution. Specifically, a tetraphenylporphyrin platform was functionalized by (L)-magainin, a 23-residue long antimicrobial peptide, and by a (L)-magainin analogue differing from the parent peptide by a single residue substitution, i.e. an Ala vs. Phe replacement in the position 5 of the peptide chain. Spectroscopic and microscopy results show that this single-site substitution has a small effect on the secondary structure attained by the two peptide analogues, but deeply affects the morphology of the mesoscopic structures deposited on hydrophilic mica from methanol/water solutions. In particular, only the Ala-substituted peptide-porphyrin conjugate was shown to be able to form micrometric fibrils, coating homogeneously a hydrophilic mica surface. These results pave the way for potential applications of porphyrin-peptide compounds in localized photodynamic therapy and for designing solid-state stereoselective sensors.
2020
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore CHIM/02 - CHIMICA FISICA
English
Con Impact Factor ISI
chiral nanostructures
hierarchical self-assembly
hybrid materials
organic coating
porphyrin-peptide conjugates
European Union’s Horizon 2020 Research and Innovation programme under the Marie Sklodowska-Curie grant agreement No. 690901.
Cimino, R., Grelloni, E., Magna, G., Monti, D., Stefanelli, M., Gatto, E., et al. (2020). Tuning the morphology of mesoscopic structures of porphyrin macrocycles functionalized by an antimicrobial peptide. JOURNAL OF PORPHYRINS AND PHTHALOCYANINES, 24(5-7), 920-928 [10.1142/S1088424619502006].
Cimino, R; Grelloni, E; Magna, G; Monti, D; Stefanelli, M; Gatto, E; Placidi, E; Biscaglia, F; Gobbo, M; Venanzi, M
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/260534
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