HCV-induced iron overload has been shown to promote liver fibrosis, steatosis and hepatocellular carcinoma. The zonal-restricted histological distribution of pathological iron deposits has hampered the attempt to perform large-scale in vivo molecular investigations on the comorbidity between iron and HCV. Diagnostic and prognostic markers are not yet available to assess iron overload-induced liver fibrogenesis and progression in HCV infections. Here, by means of Spike-in SILAC proteomic approach, we first unveiled a specific membrane protein expression signature of HCV cell cultures in the presence of iron overload. Computational analysis of proteomic data set highlighted the hepatocytic vitronectin expression as the most promising specific biomarker for iron-associated fibrogenesis in HCV infections. Next, the robustness of our in vitro findings was challenged in human liver biopsies by immunohistochemistry and yielded two major results: i) hepatocytic vitronectin expression is associ
Spike-in SILAC proteomic approach reveals the vitronectin as an early molecular signature of liver fibrosis in Hepatitis C infections with hepatic iron overload / Claudia, Montaldo; Simone, Mattei; Andrea, Baiocchini; Nicolina, Rotiroti; Franca Del Nonno, ; Leopoldo Paolo Pucillo, ; Angela Maria Cozzolino, ; Battistelli, Cecilia; Amicone, Laura; Giuseppe, Ippolito; Vera van Noort, ; Alice, Conigliaro; Tonino, Alonzi; Tripodi, Marco; Mancone, Carmine. - In: PROTEOMICS. - ISSN 1615-9853. - STAMPA. - (2014), pp. 1107-1115. [10.1002/pmic.201300422]
Spike-in SILAC proteomic approach reveals the vitronectin as an early molecular signature of liver fibrosis in Hepatitis C infections with hepatic iron overload
Cecilia Battistelli;AMICONE, Laura;TRIPODI, Marco;MANCONE, Carmine
2014
Abstract
HCV-induced iron overload has been shown to promote liver fibrosis, steatosis and hepatocellular carcinoma. The zonal-restricted histological distribution of pathological iron deposits has hampered the attempt to perform large-scale in vivo molecular investigations on the comorbidity between iron and HCV. Diagnostic and prognostic markers are not yet available to assess iron overload-induced liver fibrogenesis and progression in HCV infections. Here, by means of Spike-in SILAC proteomic approach, we first unveiled a specific membrane protein expression signature of HCV cell cultures in the presence of iron overload. Computational analysis of proteomic data set highlighted the hepatocytic vitronectin expression as the most promising specific biomarker for iron-associated fibrogenesis in HCV infections. Next, the robustness of our in vitro findings was challenged in human liver biopsies by immunohistochemistry and yielded two major results: i) hepatocytic vitronectin expression is associFile | Dimensione | Formato | |
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