36 results on '"Lambertucci, Flavia"'
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2. Biomarker Identification in Liver Cancers Using Desorption Electrospray Ionization Mass Spectrometry (DESI-MS) Imaging: An Approach for Spatially Resolved Metabolomics
3. Isolation of Primary Mouse Hepatocytes and Non-Parenchymal Cells from a Liver with Precancerous Lesions
4. A Mouse Model of Hepatocellular Carcinoma Induced by Streptozotocin and High-Fat Diet
5. Targeted Analysis of Glycerophospholipids and Mono-, Di-, or Tri-Acylglycerides in Liver Cancer
6. A Mouse Model of Non-Alcoholic Steatohepatitis and Hepatocellular Carcinoma Induced by Western Diet and Carbon Tetrachloride
7. Orthotopic Model of Hepatocellular Carcinoma in Mice
8. Protein regulator of cytokinesis 1: a potential oncogenic driver
9. Acyl-CoA binding protein for the experimental treatment of anorexia.
10. Correction: An obesogenic feedforward loop involving PPARγ, acyl-CoA binding protein and GABA receptor
11. An obesogenic feedforward loop involving PPARγ, acyl-CoA binding protein and GABAA receptor
12. Inhibition of acyl-CoA binding protein (ACBP) by means of a GABAARγ2-derived peptide.
13. Inhibition of sirtuins 1 and 2 impairs cell survival and migration and modulates the expression of P-glycoprotein and MRP3 in hepatocellular carcinoma cell lines
14. Full-Spectrum CARS Microscopy of Cells and Tissues with Ultrashort White-Light Continuum Pulses
15. Death of adrenocortical cells during murine acute T. cruzi infection is not associated with TNF-R1 signaling but mostly with the type II pathway of Fas-mediated apoptosis
16. High plasma concentrations of acyl‐coenzyme A binding protein ( ACBP ) predispose to cardiovascular disease: Evidence for a phylogenetically conserved proaging function of ACBP
17. Correction: Acyl-coenzyme a binding protein (ACBP) - a risk factor for cancer diagnosis and an inhibitor of immunosurveillance.
18. Cardio-, hepato- and pneumoprotective effects of autophagy checkpoint inhibition by targeting DBI/ACBP
19. ACBP/DBI protein neutralization confers autophagy-dependent organ protection through inhibition of cell loss, inflammation, and fibrosis
20. Benznidazole, the trypanocidal drug used for Chagas disease, induces hepatic NRF2 activation and attenuates the inflammatory response in a murine model of sepsis
21. High plasma concentrations of acyl‐coenzyme A binding protein (ACBP) predispose to cardiovascular disease: Evidence for a phylogenetically conserved proaging function of ACBP.
22. Cardio-, hepato- and pneumoprotective effects of autophagy checkpoint inhibition by targeting DBI/ACBP.
23. An obesogenic feedforward loop involving PPARγ, acyl-CoA binding protein and GABAA receptor.
24. IFN-α-2b induces apoptosis by decreasing cellular cholesterol levels in rat preneoplastic hepatocytes
25. Rol del receptor del Factor de Necrosis Tumoral alfa (TNFR1) en la patogénesis de la enfermedad del hígado graso no alcohólico
26. Rol del receptor del Factor de Necrosis Tumoral alfa (TNFR1) en la patogénesis de la enfermedad del hígado graso no alcohólico
27. Disruption of tumor necrosis factor alpha receptor 1 signaling accelerates NAFLD progression in mice upon a high-fat diet
28. Benznidazole, the trypanocidal drug used for Chagas disease, induces hepatic NRF2 activation and attenuates the inflammatory response in a murine model of sepsis
29. Benzodiazepines compromise the outcome of cancer immunotherapy.
30. Acyl-coenzyme a binding protein (ACBP) - a risk factor for cancer diagnosis and an inhibitor of immunosurveillance.
31. A Mouse Model of Non-Alcoholic Steatohepatitis and Hepatocellular Carcinoma Induced by Western Diet and Carbon Tetrachloride.
32. A Mouse Model of Hepatocellular Carcinoma Induced by Streptozotocin and High-Fat Diet.
33. Orthotopic Model of Hepatocellular Carcinoma in Mice.
34. Isolation of Primary Mouse Hepatocytes and Non-Parenchymal Cells from a Liver with Precancerous Lesions.
35. Targeted Analysis of Glycerophospholipids and Mono-, Di-, or Tri-Acylglycerides in Liver Cancer.
36. Biomarker Identification in Liver Cancers Using Desorption Electrospray Ionization Mass Spectrometry (DESI-MS) Imaging: An Approach for Spatially Resolved Metabolomics.
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