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1. suppl data for article Di-Luoffo et al

5. Phosphoproteomics identifies PI3K inhibitor-selective adaptive responses in pancreatic cancer cell therapy and resistance

6. Pancreatic Cancer Intrinsic PI3Kα Activity accelerates Metastasis and rewires Macrophage Component

7. The lipid kinase PI3Kα is required for aggregation and survival of ovarian intraperitoneal cancer cells

13. C11 - La sous-unité P85 de la PI3K : un effecteur direct de l’effet apoptotique du récepteur de somatostatine SST2 dans les cellules cancéreuses pancréatiques

14. Novel synergistic mechanism for sst2 somatostatin and TNFα receptors to induce apoptosis: crosstalk between NF-κB and JNK pathways.

15. Physiology of somatostatin receptors

16. The p110β isoform of phosphoinositide 3-kinase signals downstream of G protein-coupled receptors and is functionally redundant with p110γ

17. Pharmacokinetics of idelalisib in chronic lymphocytic leukemia and follicular lymphoma disclose better outcomes for patients with lower exposure.

18. The E3 ubiquitin ligase TRIP12 is required for pancreatic acinar cell plasticity and pancreatic carcinogenesis.

19. Reprogramming of endothelial gene expression by tamoxifen inhibits angiogenesis and ERα-negative tumor growth.

20. A microfluidic mechano-chemostat for tissues and organisms reveals that confined growth is accompanied with increased macromolecular crowding.

21. Transducing compressive forces into cellular outputs in cancer and beyond.

22. Targeting Class I-II-III PI3Ks in Cancer Therapy: Recent Advances in Tumor Biology and Preclinical Research.

23. Upregulated Apelin Signaling in Pancreatic Cancer Activates Oncogenic Signaling Pathways to Promote Tumor Development.

24. Phosphoproteomics Identifies PI3K Inhibitor-selective Adaptive Responses in Pancreatic Cancer Cell Therapy and Resistance.

25. Pancreatic cancer intrinsic PI3Kα activity accelerates metastasis and rewires macrophage component.

26. Organismal roles for the PI3Kα and β isoforms: their specificity, redundancy or cooperation is context-dependent.

27. Nuclear upregulation of class I phosphoinositide 3-kinase p110β correlates with high 47S rRNA levels in cancer cells.

28. The type of KRAS mutation drives PI3Kα/γ signalling dependency: Implication for the choice of targeted therapy in pancreatic adenocarcinoma patients.

29. Mechanical Control of Cell Proliferation Increases Resistance to Chemotherapeutic Agents.

30. Laser-assisted 3D bioprinting of exocrine pancreas spheroid models for cancer initiation study.

31. Paclitaxel induces lymphatic endothelial cells autophagy to promote metastasis.

32. eIF4A inhibition circumvents uncontrolled DNA replication mediated by 4E-BP1 loss in pancreatic cancer.

33. Experimental pancreatic cancer develops in soft pancreas: novel leads for an individualized diagnosis by ultrafast elasticity imaging.

34. Effect of combined inhibition of p110 alpha PI3K isoform and STAT3 pathway in ovarian cancer platinum-based resistance.

35. Lymphatic Vasculature Requires Estrogen Receptor-α Signaling to Protect From Lymphedema.

36. Signal-Targeted Therapies and Resistance Mechanisms in Pancreatic Cancer: Future Developments Reside in Proteomics.

38. Targeting PI3K Signaling in Combination Cancer Therapy.

39. Nucleolin Promotes Heat Shock-Associated Translation of VEGF-D to Promote Tumor Lymphangiogenesis.

40. Pancreatic preneoplastic lesions plasma signatures and biomarkers based on proteome profiling of mouse models.

41. Loss of p27Kip¹ promotes metaplasia in the pancreas via the regulation of Sox9 expression.

42. Implication of PI3K/Akt pathway in pancreatic cancer: When PI3K isoforms matter?

43. Novel Role for p110β PI 3-Kinase in Male Fertility through Regulation of Androgen Receptor Activity in Sertoli Cells.

44. Pancreatic cell plasticity and cancer initiation induced by oncogenic Kras is completely dependent on wild-type PI 3-kinase p110α.

45. Somatostatin analogs: does pharmacology impact antitumor efficacy?

46. Hypoxia induces VEGF-C expression in metastatic tumor cells via a HIF-1α-independent translation-mediated mechanism.

47. Inhibition of the p110α isoform of PI 3-kinase stimulates nonfunctional tumor angiogenesis.

48. Both p110α and p110β isoforms of PI3K can modulate the impact of loss-of-function of the PTEN tumour suppressor.

49. Regulation and roles of PI3Kβ, a major actor in platelet signaling and functions.

50. The emerging mechanisms of isoform-specific PI3K signalling.

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