[1]
Izzotti A, Calin G, Arrigo P, Steele V, Croce C, De Flora S. Downregulation of microRNA expression in the lung of rats exposed to cigarette smoke. FASEB J 2009; 23: 806-12.
[2]
Izzotti A, Cartiglia C, Balansky R, D’Agostini F, Longobardi M, De Flora S. Selective induction of gene expression in rat lung by hexavalent chromium. Mol Carcinog 2002; 35: 75-84.
[3]
Izzotti A, Bagnasco M, Cartiglia C, Longobardi M, De Flora S. Proteomic analysis as related to transcriptome data in the lung of chromium (VI) treated rats. Int J Oncol 2004; 24: 1513-22.
[4]
Geretto M, Pulliero A, Rosano C, Zhabayeva D, Bersimbaev R, Izzotti A. Resistance to cancer chemotherapeutic drugs recognizes pivotal regulators in microRNA. Am J Cancer Res 2017; 7: 1350-71.
[5]
Kaina B, Izzotti A. Xud J, et al. Inherent and toxicant-provoked reduction in DNA repair capacity: A key mechanism for personalized risk assessment, cancer prevention and intervention, and response to therapy. Int J Hyg Environ Health 2018; 221: 993-1006.
[6]
Izzotti A, Pulliero A. The effects of environmental chemical carcinogens on the microRNA machinery. Int J Hygiene En Health 2014; 217: 601-27.
[7]
Izzotti A, Pulliero A, Puntoni R, et al. Duration of exposure to environmental carcinogens affects DNA-adduct level in human lymphocytes. Biomarkers 2010; 15: 575-82.
[9]
Izzotti A, Carozzo S, Pulliero A, Zhhhabayeva D, Ravetti JL, Bersimbaev R. Extracellular microRNA in liquid biopsy: Applicability in cancer diagnosis and prevention. Am J Cancer Res 2016; 6(7): 1461-93.
[10]
Izzotti A, Longobardi MG, La Maestra S, et al. Release of extracellular miRNAs in body fluids form 10 organs in mice exposed to cigarette smoke. Theranostic 2018; 8: 2147-60.
[11]
Izzotti A, Calin G, Steele V, Croce C, De Flora S. Relationship of microRNA expression in mouse lung with age and exposure to cigarette smoke and light. FASEB J 2009; 23: 3243-50.
[12]
Izzotti A, Cartiglia C, Steele VE, De Flora S. MicroRNAs as targets for dietary and pharmacological inhibitors of mutagenesis and carcinogenesis. Mutat Res 2012; 751(2): 287-303.
[13]
Izzotti A, Balansky R, Ganchev G, et al. Early and late effects of aspirin and naproxen on microRNAs in the lung and blood of mice, either unexposed or exposed to cigarette smoke. Oncotarget 2017; 8: 85716-48.
[14]
Izzotti A, Larghero P, Balansky R, Pfeffer U, Steele V, De Flora S. Interplay between histopathological alterations, cigarette smoke and cancer chemopreventive agents in defining microRNA profiles in mouse lung. Mutat Res Fund Mech 2011; 717: 17-24.
[16]
Calzia D, Ottaggio L, Cora A, et al. Characterization of C2C12 cells in simulated microgravity. Possible use for myoblast regeneration. J Cell Physiology 2019 In press
[17]
Pulliero A, Fazzi E, Cartiglia C, et al. The Aicardi-Goutières syndrome. Molecular and clinical features of RNAse deficiency and microRNA overload. Mutat Res 2011; 717(1-2): 99-108.
[18]
Pulliero A, Marengo B, Fenoglio D, et al. Prevention of lymphocyte neurotoxic effects by microRNA delivery.MicroRNA 2014; 2(3): 187-93.
[19]
Izzotti A, Ceccaroli C, Longobardi MG, et al. Molecular damage in glaucoma: From anterior to posterior eye segment.The microrna role. MicroRNA 2015; 4(1): 3-17.
[20]
Degan P, Cappelli E, Longobardi M, et al. A global microRNA profile in fanconi anemia: A pilot study. Metab Synd Relat Disord 2019; 17(1): 53-9.
[21]
Wang D, Pajerowska-Mukhtar K, Hendrickson Culler A, Dong X. Salicylic acid inhibits pathogen growth in plants through repression of the auxin signaling pathway. Curr Biol 2007; 17: 1784-90.
[22]
Schommer C, Palatnik JF, et al. Control of Jasmonate biosynthesis and senescence by miR319 targets. Plos Biol 2008; 6e230
[23]
Zhang L, Hou D, Chen X, et al. Exogenous plant MIR168a specifically targets mammalian LDLRAP1: Evidence of cross-kingdom regulation by microRNA. Cell Res 2012; 22: 107-26.
[24]
Liang H, Zhang S, Fu Z, Wang Y, Wang N, Liu Y. Effective detection and quantification of dietetically absorbed plant microRNAs in human plasma. J Nutr Biochem 2014; 26: 505-12.
[25]
Chin AR, Fong MY, Somlo G, et al. Cross-kingdom inhibition of breast cancer growth by plant miR159. Cell Res 2016; 26(2): 217-28.