The improvement of tissue engineering and regenerative medicine is strictly related to the development of suitable scaffolds, displaying structural and chemical properties matching as much as possible those of the extracellular matrix (ECM). On this field, the development of scaffolds via electrospinning of natural polymers coupled with the use of solvents and crosslinking agents with low toxicity is of outstanding interest. In this study we optimized the working conditions in order to prepare electrospun gelatin scaffolds able to retain the original nanofibers morphology after exposure to water.

S. Panzavolta, M. Gioffrè, C. Gualandi, A. Fiorani, M.F. Focarete, B. Bracci, et al. (2011). Electrospun gelatin scaffolds. S.N. : s.n.

Electrospun gelatin scaffolds

PANZAVOLTA, SILVIA;GUALANDI, CHIARA;FIORANI, ANDREA;FOCARETE, MARIA LETIZIA;BRACCI, BARBARA;BIGI, ADRIANA
2011

Abstract

The improvement of tissue engineering and regenerative medicine is strictly related to the development of suitable scaffolds, displaying structural and chemical properties matching as much as possible those of the extracellular matrix (ECM). On this field, the development of scaffolds via electrospinning of natural polymers coupled with the use of solvents and crosslinking agents with low toxicity is of outstanding interest. In this study we optimized the working conditions in order to prepare electrospun gelatin scaffolds able to retain the original nanofibers morphology after exposure to water.
2011
Atti del Congresso Nazionale SIB 2011
31
31
S. Panzavolta, M. Gioffrè, C. Gualandi, A. Fiorani, M.F. Focarete, B. Bracci, et al. (2011). Electrospun gelatin scaffolds. S.N. : s.n.
S. Panzavolta; M. Gioffrè; C. Gualandi; A. Fiorani; M.F. Focarete; B. Bracci; A. Bigi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/113042
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