18 results on '"Fornelli, Claudia"'
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2. NAD+ repletion with niacin counteracts cancer cachexia
3. BNIP3 Downregulation Ameliorates Muscle Atrophy in Cancer Cachexia.
4. The BET inhibitor JQ1 targets fat metabolism and counteracts obesity
5. Production of KRIT1-knockout and KRIT1-knockin Mouse Embryonic Fibroblasts as Cellular Models of CCM Disease
6. Amino Acids in Cancer and Cachexia: An Integrated View
7. Heterozygous Loss of KRIT1 in Mice Affects Metabolic Functions of the Liver, Promoting Hepatic Oxidative and Glycative Stress
8. NAD+ repletion with niacin counteracts cancer cachexia
9. NAD+ repletion with niacin counteracts cancer cachexia.
10. KRIT1 Deficiency Promotes Aortic Endothelial Dysfunction
11. KRIT1 Loss-Of-Function Associated with Cerebral Cavernous Malformation Disease Leads to Enhanced S-Glutathionylation of Distinct Structural and Regulatory Proteins
12. Yeast-Derived Recombinant Avenanthramides Inhibit Proliferation, Migration and Epithelial Mesenchymal Transition of Colon Cancer Cells
13. KRIT1 loss-of-function induces a sustained Nrf2-mediated adaptive homeostasis that sensitizes cells to oxidative stress: implication for Cerebral Cavernous Malformation disease
14. Identification of risk factors and biomarkers of diagnostic and prognostic value associated with clinical progression and severity of cerebral cavernous malformations
15. Data in support of sustained upregulation of adaptive redox homeostasis mechanisms caused by KRIT1 loss-of-function
16. P-278 - KRIT1 loss-of-function induces a sustained Nrf2-mediated adaptive homeostasis that sensitizes cells to oxidative stress: implication for Cerebral Cavernous Malformation disease
17. P-132 - Identification of risk factors and biomarkers of diagnostic and prognostic value associated with clinical progression and severity of cerebral cavernous malformations
18. Production of KRIT1-knockout and KRIT1-knockin Mouse Embryonic Fibroblasts as Cellular Models of CCM Disease.
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