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1. Differential impact of adenosine nucleotides released by osteocytes on breast cancer growth and bone metastasis

3. Influencia de los factores pre y postcosecha en la calidad de la lechuga IV Gama

5. Connexin- and pannexin-based channels in normal skeletal muscles and their possible role in muscle atrophy.

6. A rare case of transverse testicular ectopia associated with polyorchidism addressed by minimally invasive surgery: A case report.

7. Antibody-activation of connexin hemichannels in bone osteocytes with ATP release suppresses breast cancer and osteosarcoma malignancy.

8. Mechano-activated connexin hemichannels and glutathione transport protect lens fiber cells against oxidative insults.

9. Evaluation of Connexin Hemichannel Activity In Vivo.

10. Mechanosensitive piezo1 calcium channel activates connexin 43 hemichannels through PI3K signaling pathway in bone.

11. Connexin 43 hemichannels regulate mitochondrial ATP generation, mobilization, and mitochondrial homeostasis against oxidative stress.

12. Osteocytes regulate bone anabolic response to mechanical loading in male mice via activation of integrin α5.

13. Connexin hemichannels with prostaglandin release in anabolic function of bone to mechanical loading.

14. Deletions in VANGL1 are a risk factor for antibody-mediated kidney disease.

15. Osteocytic Connexin Hemichannels Modulate Oxidative Bone Microenvironment and Breast Cancer Growth.

16. ATP Inhibits Breast Cancer Migration and Bone Metastasis through Down-Regulation of CXCR4 and Purinergic Receptor P2Y11.

17. Macrophage recruitment in immune-privileged lens during capsule repair, necrotic fiber removal, and fibrosis.

18. Inhibition of astrocyte hemichannel improves recovery from spinal cord injury.

19. Mechanotransduction via the coordinated actions of integrins, PI3K signaling and Connexin hemichannels.

20. Connexin Gap Junctions and Hemichannels Link Oxidative Stress to Skeletal Physiology and Pathology.

21. Mechanosensitive collaboration between integrins and connexins allows nutrient and antioxidant transport into the lens.

22. Regulation of Connexin Gap Junctions and Hemichannels by Calcium and Calcium Binding Protein Calmodulin.

23. Osteocytes and Bone Metastasis.

24. The Role of Connexin Channels in the Response of Mechanical Loading and Unloading of Bone.

25. Postoperative bladder dysfunction and outcomes after minimally invasive extravesical ureteric reimplantation in children using a laparoscopic and a robot-assisted approach: results of a multicentre international survey.

26. Connexin 50 and AQP0 are Essential in Maintaining Organization and Integrity of Lens Fibers.

27. Glucocorticoid-Induced Autophagy Protects Osteocytes Against Oxidative Stress Through Activation of MAPK/ERK Signaling.

28. Multi-Institution Case Series of Pediatric Patients with Laparoscopic Repair of Morgagni Hernia.

29. Connexin hemichannels mediate glutathione transport and protect lens fiber cells from oxidative stress.

30. Cataract-associated connexin 46 mutation alters its interaction with calmodulin and function of hemichannels.

31. Connexin43 Hemichannels in Satellite Glial Cells, Can They Influence Sensory Neuron Activity?

32. Connexin 50 Functions as an Adhesive Molecule and Promotes Lens Cell Differentiation.

33. Biological responses of osteocytic connexin 43 hemichannels to simulated microgravity.

35. Osteocytic connexin hemichannels suppress breast cancer growth and bone metastasis.

37. Mitogen-activated Protein Kinase (MAPK) Activated by Prostaglandin E2 Phosphorylates Connexin 43 and Closes Osteocytic Hemichannels in Response to Continuous Flow Shear Stress.

39. Caspase-2 modulates osteoclastogenesis through down-regulating oxidative stress.

40. Pannexin channels mediate the acquisition of myogenic commitment in C2C12 reserve cells promoted by P2 receptor activation.

41. Connexin 43 channels are essential for normal bone structure and osteocyte viability.

42. Pannexin 1 channels in skeletal muscles.

43. Direct regulation of osteocytic connexin 43 hemichannels through AKT kinase activated by mechanical stimulation.

44. 14-3-3θ facilitates plasma membrane delivery and function of mechanosensitive connexin 43 hemichannels.

45. Elevated Intracellular Ca(2+) Signals by Oxidative Stress Activate Connexin 43 Hemichannels in Osteocytes.

46. The ATP required for potentiation of skeletal muscle contraction is released via pannexin hemichannels.

47. Antibodies targeting extracellular domain of connexins for studies of hemichannels.

48. Diffusion of nitric oxide across cell membranes of the vascular wall requires specific connexin-based channels.

49. Cataract-causing mutation of human connexin 46 impairs gap junction, but increases hemichannel function and cell death.

50. Connexin 43 channels protect osteocytes against oxidative stress-induced cell death.

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