Simonetta Vannucchi
University of Florence
34 Papers
596 Citations
Simonetta Vannucchi is an academic researcher from University of Florence. The author has contributed to research in topics: Heparin & Glycosaminoglycan. The author has an hindex of 16, co-authored 34 publications.
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Papers
Surface heparan sulphate as a control element in eukariotic cells: a working model.
TL;DR: A model based on a cell-cycle dependent exposure of heparan sulphate on the cell surface with a consequent change in the potential of membrane proteins to move in the fluid lipid bilayer to explain some cellular transformations is presented.
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Exposure of trypsin-removable sulphated polyanions on the surface of normal and virally transformed BHK21/C13 cells
TL;DR: A sulphated glycosaminoglycan component (tentatively identified as heparan sulphate) is removed from the transformed cells in a significantly lower relative amount as compared with the control untransformed cells.
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Effects of 0.2 T static magnetic field on human skin fibroblasts.
Stefania Pacini,Massimo Gulisano,Benedetta Peruzzi,Eleonora Sgambati,Gherardo Gheri,Silvia Gheri Bryk,Simonetta Vannucchi,G. Polli,Marco Ruggiero +8 more
TL;DR: It is demonstrated that the static magnetic field generated by routinely used magnetic resonance tomograph induces alterations on human skin fibroblasts, including decrease of thymidine incorporation and of second messenger formation.
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•Journal Article
Intercellular Glycosaminoglycans in Normal and Neoplastic Tissues
Vincenzo Chiarugi,Simonetta Vannucchi,Cristina Cella,Gabriella Fibbi,Mario Del Rosso,Renzo Cappelletti +5 more
TL;DR: The electrophoretic patterns of all spontaneous neoplasias analyzed differ significantly from patterns obtained from the tissues of origin, and those of the intercellular glycosaminoglycans are tissue specific.
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Binding ofthebasement-membrane glycoprotein laminin to glycosaminoglycans
Michele Viti,Simonetta Vannucchi,Vincenzo Chiarugi +2 more
- 01 Jan 1981
TL;DR: Competitive-release experiments indicate that glycosaminoglycans share a common binding site on the laminin molecule, whereas hyaluronic acid does not.
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