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11. Expression of Reversion-Inducing Cysteine-Rich Protein with Kazal Motifs (RECK) Gene and Its Regulation by miR200b in Ovarian Endometriosis.

12. Myo‐inositol trispyrophosphate prevents right ventricular failure and improves survival in monocrotaline‐induced pulmonary hypertension in the rat.

18. Comparative analysis of the effect of hypoxia in two different tumor cell models shows the differential involvement of PTEN control of proangiogenic pathways.

19. Endothelial precursor cell-based therapy to target the pathologic angiogenesis and compensate tumor hypoxia

23. Oxygen therapeutic window induced by myo-inositol trispyrophosphate (ITPP)–Local pO2 study in murine tumors.

29. Hypoxia, but Not Normoxia, Reduces Effects of Resveratrol on Cisplatin Treatment in A2780 Ovarian Cancer Cells: A Challenge for Resveratrol Use in Anticancer Adjuvant Cisplatin Therapy.

30. Tumour suppressor PTEN activity is differentially inducible by myo‐inositol phosphates.

32. High Hemin Concentration Induces Escape from Senescence of Normoxic and Hypoxic Colon Cancer Cells.

34. Stable tumor vessel normalization with pO2 increase and endothelial PTEN activation by inositol trispyrophosphate brings novel tumor treatment

36. "Endothelial Antibody Factory" at the Blood Brain Barrier: Novel Approach to Therapy of Neurodegenerative Diseases.

37. miRNA Pattern in Hypoxic Microenvironment of Kidney Cancer—Role of PTEN.

38. Heme Oxygenase-1 Has a Greater Effect on Melanoma Stem Cell Properties Than the Expression of Melanoma-Initiating Cell Markers.

45. Escape From Cisplatin-Induced Senescence of Hypoxic Lung Cancer Cells Can Be Overcome by Hydroxychloroquine.

47. Right ventricular myocardial oxygen tension is reduced in monocrotaline-induced pulmonary hypertension in the rat and restored by myo-inositol trispyrophosphate.

49. Tumour angiogenesis normalized by myo‐inositol trispyrophosphate alleviates hypoxia in the microenvironment and promotes antitumor immune response.

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