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Your search keyword '"Edoardo Fabini"' showing total 19 results

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19 results on '"Edoardo Fabini"'

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1. Targeting SMYD3 to Sensitize Homologous Recombination-Proficient Tumors to PARP-Mediated Synthetic Lethality

2. Discovery of an Allosteric Ligand Binding Site in SMYD3 Lysine Methyltransferase

3. Discovery of the 4-aminopiperidine-based compound EM127 for the site-specific covalent inhibition of SMYD3

4. Unveiling the Biochemistry of the Epigenetic Regulator SMYD3

5. Small-molecule inhibitors of lysine methyltransferases SMYD2 and SMYD3: current trends

6. Targeting SMYD3 to Sensitize Homologous Recombination-Proficient Tumors to PARP-Mediated Synthetic Lethality

7. EPITOPE IDENTIFICATION OF GLYCATED HSA AND THE EXTRACELLULAR REGION OF HUMAN RAGE BY SPR AND AFFINITY-MS SPECTROMETRY

8. Monitoring drug–serum protein interactions for early ADME prediction through Surface Plasmon Resonance technology

11. Combination of human acetylcholinesterase and serum albumin sensing surfaces as highly informative analytical tool for inhibitor screening

12. Stopped-Flow Enantioselective HPLC-CD Analysis and TD-DFT Stereochemical Characterization of MethylTrans-3-(3,4-Dimethoxyphenyl)Glycidate

13. A SMYD3 Small-Molecule Inhibitor Impairing Cancer Cell Growth

14. Stereochemical characterization of methyl trans-3-(3,4-dimethoxyphenyl)glycidate by enantioselective HPLC-CD analysis and TD-DFT calculations

15. Determination of levamisole and tetramisole in seized cocaine samples by enantioselective high-performance liquid chromatography and circular dichroism detection

16. Surface plasmon resonance and isothermal titration calorimetry to monitor the Ni(II)-dependent binding of Helicobacter pylori NikR to DNA

17. Surface plasmon resonance and circular dichroism characterization of cucurbitacins binding to serum albumins for early pharmacokinetic profiling

18. A SMYD3 small-molecule Inhibitor impairing cancer cell growth

19. Corrigendum to 'Surface plasmon resonance and circular dichroism characterization of cucurbitacins binding to serum albumins for early pharmacokinetic profiling' [J. Pharm. Biomed. Anal. 122 (2016) 166–172]

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