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Featured researches published by Grazia Soccio.


American Journal of Pathology | 2001

Hepatocyte growth factor/scatter factor released during peritonitis is active on mesothelial cells.

Teresa Rampino; Giovanni Cancarini; Marilena Gregorini; Paola Guallini; Milena Maggio; Andrea Ranghino; Grazia Soccio; Antonio Dal Canton

Peritonitis causes mesothelial detachment that may result in persistent peritoneal denudation and fibrosis. We investigated whether hepatocyte growth factor (HGF), a scatter factor that induces detachment from substrate and fibroblastic transformation of several cell types, is produced during peritonitis and is active on mesothelial cells. We studied 18 patients on peritoneal dialysis, 9 uncomplicated, 9 with peritonitis. HGF was measured in serum, peritoneal fluid, and supernatant of peripheral blood mononuclear cells and peritoneal mononuclear cells. Primary culture of human peritoneal mesothelial cells and the human mesothelial cell line MeT-5A were conditioned with recombinant HGF, serum, and peritoneal fluid. HGF levels were significantly higher in serum and peritoneal fluid of peritonitic than uncomplicated patients. Mononuclear cells of peritonitic patients produced more HGF than cells of uncomplicated patients. Recombinant HGF, serum, and peritoneal fluid of peritonitic patients caused mesothelial cell growth, detachment, transformation from epithelial to fibroblast-like shape, overexpression of vimentin, and synthesis of type I and III collagen. In conclusion, HGF released during peritonitis causes a change in mesothelial cell phenotype and function. HGF may affect the healing process facilitating repair through mesothelial cell growth, but may contribute to peritoneal fibrosis inducing cell detachment with mesothelial denudation and collagen synthesis.


The American Journal of Surgical Pathology | 2003

The Ron proto-oncogene product is a phenotypic marker of renal oncocytoma

Teresa Rampino; Marilena Gregorini; Grazia Soccio; Milena Maggio; Renato Rosso; Paolo Malvezzi; Chiara Collesi; Antonio Dal Canton

The proto-oncogene product Ron is the receptor for macrophage stimulating protein, a scatter factor that stimulates cell proliferation, prevents apoptosis, and induces an invasive cell phenotype. We investigated the expression of Ron, Ki-67 (proliferation index), p53, and bcl-2 (proapoptotic and antiapoptotic proteins, respectively) in 50 renal tumors (19 clear cell carcinomas, 18 oncocytomas, 7 papillary cell carcinomas, 5 chromophobe cell carcinomas, and 1 carcinoma with sarcomatoid areas). In addition, we studied Ron in normal kidney and in the renal carcinoma cell line Caki-1. Immunostaining and Western blot showed Ron in normal kidney and in all oncocytomas but never in renal cell carcinomas or in Caki-1. In addition, Western blot showed that Ron was expressed in phosphorylated, i.e., active, form. Bcl-2 was strongly expressed in oncocytomas, whereas Ki-67 and p53 were much less expressed in oncocytomas than in carcinomas. These results indicate in Ron a marker that differentiates oncocytoma from the other renal epithelial tumors. We therefore think that Ron may prove to be a new tool for a sound and precise diagnosis of oncocytoma, a benign tumor that cannot always be distinguished from carcinomas at histologic examination. The overexpression of bcl-2, but not p53 in oncocytoma, suggests that the MSP/Ron system sustains the growth of oncocytoma by opposing apoptosis.


Growth Factors Journal | 2007

KCNA1 and TRPC6 ion channels and NHE1 exchanger operate the biological outcome of HGF/scatter factor in renal tubular cells

Teresa Rampino; Marilena Gregorini; Cristina Guidetti; Massimo Broggini; Sergio Marchini; Riccardo Bonomi; Milena Maggio; Elisabetta Roscini; Grazia Soccio; Renza Tiboldo; Antonio Dal Canton

Hepatocyte growth factor (HGF) is a glycoprotein that induces in vitro epithelial tubular cell growth, motility, scattering and branching morphogenesis. The cell machineries that account for HGF biological effects are still unclear. In previous study, we found that HGF upregulated in epithelial tubular cell line (HK2) 3 genes: potassium channel KCNA1, calcium channel (transient receptor potential channel, subfamily C, member 6, TRPC6) and Na+/H+ exchanger-1 (NHE1). In this study, we validated these results with reverse transcription PCR and WB analysis. To investigate whether KCNA1, TRPC6, NHE1 mediate the changes induced by HGF in HK2, we studied the effects of their inhibitors: 4-aminopyridine, charybdotoxin, dendrotoxin K inhibitors of KCNA1, lanthanum, N-(p-amylcinnamoyl) anthranilic acid inhibitors of TRPC6, 5-(N-ethyl-N-isopropyl)amiloride, cariporide inhibitors of NHE1. The inhibitors prevented HGF-induced growth, migration, cytoskeletal reorganization and tubulogenesis in HK2. These results indicate that KCNA1, TRPC6 and NHE1 are cell machineries that are exploited by HGF to effect its biological outcome in renal tubular cells.


Clinical Science | 2011

Mesenchymal stromal cells improve renal injury in anti-Thy 1 nephritis by modulating inflammatory cytokines and scatter factors

Teresa Rampino; Marilena Gregorini; Giulia Bedino; Giovanni Piotti; Elisa Gabanti; Adalberto Ibatici; Nadia Sessarego; Cristina Piacenza; Chiara Teresa Balenzano; Pasquale Esposito; Francesca Bosio; Grazia Soccio; Francesco Frassoni; Antonio Dal Canton

MSC (mesenchymal stromal cells) can differentiate into renal adult cells, and have anti-inflammatory and immune-modulating activity. In the present study, we investigated whether MSC have protective/reparative effects in anti-Thy1 disease, an Ab (antibody)-induced mesangiolysis resulting in mesangioproliferative nephritis. We studied five groups of rats: (i) rats injected with anti-Thy1.1 Ab on day 0 (group A); (ii) rats injected with anti-Thy1.1 Ab on day 0+MSC on day 3 (group B); (iii) rats injected with anti-Thy1.1 Ab on day 0+mesangial cells on day 3 (group C); (iv) rats injected with saline on day 0+MSC on day 3 (group D); and (v) rats injected with saline on day 0 (group E). Rats were killed on days 1, 3, 7 and 14. MSC prevented the increase in serum creatinine, proteinuria, glomerular monocyte influx and glomerular histopathological injury. Furthermore, MSC suppressed the release of IL-6 (interleukin-6) and TGF-β (transforming growth factor-β), modulated glomerular PDGF-β (platelet-derived growth factor-β), and reset the scatter factors and their receptors, potentiating HGF (hepatocyte growth factor)/Met and inactivating MSP (macrophage-stimulating protein)/Ron (receptor origin nantaise). Few MSC were found in the kidney. These results indicate that MSC improve anti-Thy 1 disease not by replacing injured cells, but by preventing cytokine-driven inflammation and modulating PDGF-β and the scatter factors, i.e. systems that regulate movement and proliferation of monocytes and mesangial cells.


American Journal of Kidney Diseases | 2008

Severe Symptomatic Hyponatremia During Sibutramine Therapy: A Case Report

Pasquale Esposito; Teresa Rampino; Marilena Gregorini; Grazia Soccio; Giovanni Piotti; Giulia Bedino; Chiara Teresa Balenzano; Elisabetta Roscini; Laura Cosmai; Valentina Portalupi; Carmelo Libetta; Antonio Dal Canton

Sibutramine, a serotonin reuptake inhibitor, currently is used in treatment of obesity. The known side effects of sibutramine, ie, hypertension and tachycardia, depend on its adrenergic and serotoninergic effects. We describe a case of life-threatening hyponatremia associated with sibutramine use in an obese woman. We hypothesize that sibutramine, through its effect on neurotransmitters, may induce antidiuretic hormone secretion and lead to a syndrome of inappropriate antidiuretic hormone secretion. We advise careful monitoring of water-electrolytic balance during sibutramine therapy.


Kidney International | 1999

Hemodialysis prevents liver disease caused by hepatitis C virus: Role of hepatocyte growth factor

Teresa Rampino; Eloisa Arbustini; Marilena Gregorini; Paola Guallini; Carmelo Libetta; Milena Maggio; Andrea Ranghino; Enrico Maria Silini; Grazia Soccio; Antonio Dal Canton


Kidney International | 1998

Hemodialysis stimulates hepatocyte growth factor release

Teresa Rampino; Carmelo Libetta; Walter De Simone; Andrea Ranghino; Grazia Soccio; Marilena Gregorini; Paola Guallini; Luca Tamagnone; Antonio Dal Canton


Journal of The American Society of Nephrology | 2002

Macrophage-Stimulating Protein Is Produced by Tubular Cells and Activates Mesangial Cells

Teresa Rampino; Chiara Collesi; Marilena Gregorini; Milena Maggio; Grazia Soccio; Paola Guallini; Antonio Dal Canton


Nephrology Dialysis Transplantation | 2005

Hepatocyte growth factor and its receptor Met are induced in crescentic glomerulonephritis

Teresa Rampino; Marilena Gregorini; Giovanni Camussi; Pier Giulio Conaldi; Grazia Soccio; Milena Maggio; Antonella Bottelli; Antonio Dal Canton


American Journal of Kidney Diseases | 2006

Henle loop basement membrane as initial site for Randall plaque formation.

V. Sepe; Gabriella Adamo; Alfredo La Fianza; Carmelo Libetta; Maria G. Giuliano; Grazia Soccio; Antonio Dal Canton

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