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281 results on '"Unciti ‐ Broceta, Asier"'

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4. High throughput screening identifies dasatinib as synergistic with trametinib in low grade serous ovarian carcinoma

5. Discovery of senolytics using machine learning

12. Enhanced Efficiency of Pd(0)-Based Single Chain Polymeric Nanoparticles for in Vitro Prodrug Activation by Modulating the Polymer’s Microstructure

13. Enhanced efficiency of Pd(0)-based single chain polymeric nanoparticles for in vitro prodrug activation by modulating the polymer’s microstructure

16. Extracellular vesicles-mediated bio-orthogonal catalysis in growing tumors

17. Oncogenic BRAF, unrestrained by TGFβ-receptor signalling, drives right-sided colonic tumorigenesis

20. Development of Biocompatible Cu(I)‐Microdevices for Bioorthogonal Uncaging and Click Reactions.

23. An ErbB2/c-Src axis links bioenergetics with PRC2 translation to drive epigenetic reprogramming and mammary tumorigenesis

24. Discovery of senolytics using machine learning

25. In cellulo bioorthogonal catalysis by encapsulated AuPd nanoalloys: Overcoming intracellular deactivation

26. Supporting Information for In cellulo bioorthogonal catalysis by encapsulated AuPd nanoalloys: Overcoming intracellular deactivation

27. Code and data for 'Discovery of senolytics using machine learning' [Dataset]

31. Supplementary Data from A Conformation Selective Mode of Inhibiting SRC Improves Drug Efficacy and Tolerability

33. Data from A Conformation Selective Mode of Inhibiting SRC Improves Drug Efficacy and Tolerability

35. Macrophages promote anti-androgen resistance in prostate cancer bone disease

38. Small Molecule Kinase Inhibitor Drugs (1995–2021): Medical Indication, Pharmacology, and Synthesis

40. A conformation selective mode of inhibiting SRC improves drug efficacy and tolerability

44. Biocompatible devices for bio-orthogonal organometallic catalysis

45. Developing Pd(ii) based amphiphilic polymeric nanoparticles for pro-drug activation in complex media

49. A novel mode of inhibiting SRC improves drug efficacy and tolerability

50. Loss of Integrin-Linked Kinase Sensitizes Breast Cancer to SRC Inhibitors

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