23 results on '"Spray D."'
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2. A novel form of cellular communication among thymic epithelial cells: intercellular calcium wave propagation
3. Properties of gap junction channels formed of connexin 45 endogenously expressed in human hepatoma (SKHep1) cells
4. Voltage-dependent gap junctional conductance in hepatopancreatic cells of Procambarus clarkii
5. Gap junctions between human corpus cavernosum smooth muscle cells: gating properties and unitary conductance
6. Gap junction-mediated intercellular diffusion of Ca2+ in cultured human corporal smooth muscle cells
7. Humoral factors reduce gap junction sensitivity to cytoplasmic pH. I. Organ ablation studies
8. Distinctive gap junction channel types connect WB cells, a clonal cell line derived from rat liver
9. P2X7 receptor-Pannexin1 complex: pharmacology and signaling.
10. Structure-activity relations of the cardiac gap junction channel
11. Gap junction-mediated intercellular diffusion of Ca2+ in cultured human corporal smooth muscle cells.
12. cAMP delays disappearance of gap junctions between pairs of rat hepatocytes in primary culture.
13. Effects of protein reagents on electrotonic coupling in crayfish septate axon.
14. Some electrical and pharmacological properties of gap junctions between adult ventricular myocytes.
15. Regulation of gap junctional conductance.
16. Effects of protein reagents on electrotonic coupling in crayfish septate axon
17. Cell uncoupling and protein kinase C: correlation in a cell line but not in a differentiated tissue
18. Influence of cytosolic pH on receptor-mediated endocytosis of asialoorosomucoid
19. Inotropic agents modulate gap junctional conductance between cardiac myocytes
20. P2X7 receptor-Pannexin1 complex: pharmacology and signaling.
21. A novel form of cellular communication among thymic epithelial cells: intercellular calcium wave propagation.
22. Gap junction expression and cell proliferation in differentiating cultures of Cx43 KO mouse hepatocytes.
23. Slow intercellular Ca(2+) signaling in wild-type and Cx43-null neonatal mouse cardiac myocytes.
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