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Featured researches published by G. Freddi.


Journal of Raman Spectroscopy | 1998

Raman spectroscopic studies of silk fibroin from Bombyx mori

Patrizia Monti; G. Freddi; A. Bertoluzza; Nobutami Kasai; Masuhiro Tsukada

This study was focused on the conformational characterization of Bombyx mori silk fibroin in film, fiber and powder form by means of Fourier transform Raman spectroscopy. Native and regenerated silk fibroin films prepared by casting dilute silk fibroin solutions (<1%, w/v) display characteristic conformationally sensitive bands at 1660 cm-1 (amide I), in the range 1276–1244 cm-1 (a complex amide III region with multiple detectable maxima) and at 1107 and 938 cm-1. This spectral pattern can be related to a prevalently random coil conformation, with traces of α-helix. Liquid silk, prepared by casting the silk gland content (fibroin concentration 20–25%, w/v), shows almost the same wavenumbers in the amide I and III ranges, while differences appear below 1000 cm-1, where three bands at 952, 930 and 867 cm-1 increase in intensity. The spectral differences between films and liquid silk are discussed with a view to identifying possible markers for silk I structure, a crystalline modification of silk fibroin. The treatment of both native and regenerated films with 50% (v/v) methanol solution induces the conformational transition to a β-sheet structure, as demonstrated by the shift of amide I to 1665 cm-1 and the appearance of new maxima at 1262 and 1236 cm-1 (amide III) and at 1084 cm-1. When liquid silk is cast at above 50°C, the prevailing conformation taken by silk fibroin is β-sheet, whatever the rate of drying. By comparing the Raman spectra of silk fibroin fiber and powder, both having a β-sheet structure, a difference in the tyrosine doublet bands and in the amide I band can be observed. The value of the I853/I830 (Rtyr) intensity ratio increases in the powder while amide I shifts to lower wavenumbers, suggesting that the hydrogen bonds involving the tyrosil residues are weaker in the powder than in the fiber.


Journal of Applied Polymer Science | 2001

Absorption of metal cations by modified B. mori Silk and preparation of fabrics with antimicrobial activity

Takayuki Arai; G. Freddi; G. M. Colonna; E. Scotti; Alessandra Boschi; R. Murakami; Masuhiro Tsukada

Silk fabrics were modified by treatment with tannic acid (TA) solution or by acylation with ethylenediaminetetraacetic (EDTA) dianhydride. Kinetics of modification with TA and acylation with EDTA–dianhydride was investigated. The physico-mechanical properties of silk fabrics acylated with EDTA–dianhydride remained unchanged regardless of chemical modification. The absorption of metal cations (Ag+, Cu2+) by untreated and modified silk fabrics was studied as a function of the kind of modifying agent, weight gain, and pH of the metal solution. The absorption of Cu2+ at alkaline pH was not significantly influenced by chemical modification of the silk substrate. The absorption of Ag+ by acylated silk remained at a level as low as untreated silk, while was enhanced by TA. The higher the content of TA, the higher the absorption of Ag+. With respect to the pH of the metal solution, the acylation with EDTA–dianhydride enabled silk to absorb and bind metal cations even in the acidic and neutral pH range, where tannic acid had no effect. Medium to high levels of metal desorption were exhibited by untreated and modified silk fabrics towards the metal cations, with the only exception of the silk–tannic acid–Ag complex, which displayed an extraordinary stability. All metal-containing silks exhibited significant antibacterial activity.


Archive | 1995

Vibrational Characterization of Silk Fibroins

A. Bertoluzza; Patrizia Monti; M. Tsukada; G. Freddi

Among fibrous proteins, silk fibroins represent a class of natural polymers which exhibit interesting chemical and physical properties suitable to applications also in the biomedical field.


Journal of Raman Spectroscopy | 2001

Spectroscopic characterization of Bombyx mori silk fibroin: Raman spectrum of Silk I

Patrizia Monti; Paola Taddei; G. Freddi; Tetsuo Asakura; Masuhiro Tsukada


Journal of Applied Polymer Science | 2001

Binding of metal cations to chemically modified wool and antimicrobial properties of the wool–metal complexes

G. Freddi; Takayuki Arai; G. M. Colonna; Alessandra Boschi; Masuhiro Tsukada


Journal of Applied Polymer Science | 2003

Preparation of metal‐containing protein fibers and their antimicrobial properties

Masuhiro Tsukada; Takayuki Arai; G. M. Colonna; Alessandra Boschi; G. Freddi


Journal of Applied Polymer Science | 1997

Graft copolymerization of benzyl methacrylate onto wool fibers

Masuhiro Tsukada; Hideki Shiozaki; G. Freddi; John S. Crighton


Journal of Applied Polymer Science | 2007

Fibers based on cellulose–silk fibroin blend

Enrico Marsano; Maurizio Canetti; G. Conio; Paola Corsini; G. Freddi


Journal of Applied Polymer Science | 2001

Acylation of Silk and wool with acid anhydrides and preparation of water-repellent fibers

Takayuki Arai; G. Freddi; R. Innocenti; David L. Kaplan; Masuhiro Tsukada


Journal of Applied Polymer Science | 1992

Chemical modification of silk with aromatic acid anhydrides

Masuhiro Tsukada; Yoko Goto; G. Freddi; Hideki Shiozaki

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Takayuki Arai

Kitami Institute of Technology

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Alessandra Boschi

Stazione Sperimentale per la Seta

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G. M. Colonna

Stazione Sperimentale per la Seta

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Norihiko Minoura

National Institute of Advanced Industrial Science and Technology

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