152 results on '"Lehen'kyi, V'yacheslav"'
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2. TRPV6 Channel Is Involved in Pancreatic Ductal Adenocarcinoma Aggressiveness and Resistance to Chemotherapeutics
3. Characterization of the TRPV6 calcium channel-specific phenotype by RNA-seq in castration-resistant human prostate cancer cells
4. NALCN‐mediated sodium influx confers metastatic prostate cancer cell invasiveness
5. TRPV6 Calcium Channel Targeting by Antibodies Raised against Extracellular Epitopes Induces Prostate Cancer Cell Apoptosis
6. A Novel Anti-TRPV6 Antibody and Its Application in Cancer Diagnosis In Vitro
7. Oncogenic TRP Channels
8. TRPV6 calcium channel translocates to the plasma membrane via Orai 1-mediated mechanism and controls cancer cell survival
9. ORAI1 calcium channel orchestrates skin homeostasis
10. Comparison of fluorescence probes for intracellular sodium imaging in prostate cancer cell lines
11. TRPM7 Ion Channel: Oncogenic Roles and Therapeutic Potential in Breast Cancer
12. A Novel Anti-TRPV6 Antibody and Its Application in Cancer Diagnosis In Vitro.
13. Ca
14. Ca2+ Signaling and Its Potential Targeting in Pancreatic Ductal Carcinoma
15. Role of the TRP Channels in Pancreatic Ductal Adenocarcinoma Development and Progression
16. Tumor Xenograft Models to Study the Role of TRP Channels in Tumorigenesis
17. Oncogenic TRP Channels
18. Retraction notice to “TRPV6 calcium channel regulation, downstream pathways, and therapeutic targeting in cancer” [Cell Calcium (2019) 117–124]
19. Role of the TRPV Channels in the Endoplasmic Reticulum Calcium Homeostasis
20. TRPC7 Is a Receptor-Operated DAG-Activated Channel in Human Keratinocytes
21. Monoclonal Antibodies Targeting Ion Channels and Their Therapeutic Potential
22. Monoclonal Antibodies Targeting Ion Channels and Their Therapeutic Potential
23. RETRACTED: TRPV6 calcium channel regulation, downstream pathways, and therapeutic targeting in cancer
24. Interaction of Human α-1-Acid Glycoprotein (AGP) with Citrate-Stabilized Gold Nanoparticles: Formation of Unexpectedly Strong Binding Events
25. TRPM Family Channels in Cancer
26. Calcium and calcium channels in initiation and progression of prostate cancer
27. Improved photodynamic effect through encapsulation of two photosensitizers in lipid nanocapsules
28. TRPV6 calcium channel regulation, downstream pathways, and therapeutic targeting in cancer.
29. The role of the TRPV6 channel in cancer
30. Study of TRP Channels in Cancer Cells
31. TRP-Channels and Human Prostate Carcinogenesis
32. Acceleration of keratinocyte differentiation by transient receptor potential vanilloid (TRPV6) channel activation
33. Orai1 contributes to the establishment of an apoptosis-resistant phenotype in prostate cancer cells
34. TRPV6 calcium channel translocates to the plasma membrane via Orai1-mediated mechanism and controls cancer cell survival
35. Impaired P2X signalling pathways in renal microvascular myocytes in genetic hypertension
36. TRPV6 channel controls prostate cancer cell proliferation via Ca(2+)/NFAT-dependent pathways
37. Differential role of transient receptor potential channels in Ca2+ entry and proliferation of prostate cancer epithelial cells.: Role of TRP Channels in Proliferation
38. TRPV6 calcium channel translocates to the plasma membrane via Orai1-mediated mechanism and controls cancer cell survival
39. Remodeling of Channel-Forming ORAI Proteins Determines an Oncogenic Switch in Prostate Cancer
40. cGMP-independent effect of nitric oxide on contractility and intracellular calcium level of rat tail artery vascular smooth muscles
41. TRPC channels determine human keratinocyte differentiation: new insight into basal cell carcinoma.
42. TRPV2 Mediates Adrenomedullin Stimulation of Prostate and Urothelial Cancer Cell Adhesion, Migration and Invasion
43. TRPV6 is a Ca2+ entry channel essential for Ca2+-induced differentiation of human keratinocytes.
44. Passive calcium leak via translocon is a first step for iPLA2-pathway regulated store operated channels activation.
45. Differential role of transient receptor potential channels in Ca2+ entry and proliferation of prostate cancer epithelial cells.
46. Cytoskeleton Reorganization as an Alternative Mechanism of Store-Operated Calcium Entry Control in Neuroendocrine-Differentiated Cells
47. Ion channnels and transporters in cancer. 5. Ion channels in control of cancer and cell apoptosis
48. TRP channels in cell survival and cell death in normal and transformed cells
49. TRPV6 Determines the Effect of Vitamin D3 on Prostate Cancer Cell Growth
50. Role of Cationic Channel TRPV2 in Promoting Prostate Cancer Migration and Progression to Androgen Resistance
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