291 results on '"Hla, Timothy"'
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2. Designer high-density lipoprotein particles enhance endothelial barrier function and suppress inflammation
3. Report from the 2023 workshop on endothelial permeability, edema and inflammation
4. Augmentation of Endothelial S1PR1 Attenuates Post-Viral Pulmonary Fibrosis
5. Beta-catenin C-terminus inhibition reduces vascular remodeling by precluding the expression of sphingosine-1-phosphate receptor-1
6. Abstract 367: Beta-catenin C-terminus Signaling Drives Sphingosine-1-phosphate Receptor-1 Expression in Smooth Muscle Cells to Promote Vascular Remodeling
7. Data from Obesity Is Associated with Inflammation and Elevated Aromatase Expression in the Mouse Mammary Gland
8. Supplementary Figures S1-S5 from Induction of Antiproliferative Connective Tissue Growth Factor Expression in Wilms' Tumor Cells by Sphingosine-1-Phosphate Receptor 2
9. Data from Induction of Antiproliferative Connective Tissue Growth Factor Expression in Wilms' Tumor Cells by Sphingosine-1-Phosphate Receptor 2
10. Supplementary Data from Obesity Is Associated with Inflammation and Elevated Aromatase Expression in the Mouse Mammary Gland
11. Supplementary Data from Obesity Is Associated with Inflammation and Elevated Aromatase Expression in the Mouse Mammary Gland
12. Supplementary Data from Obesity Is Associated with Inflammation and Elevated Aromatase Expression in the Mouse Mammary Gland
13. Data from Induction of Antiproliferative Connective Tissue Growth Factor Expression in Wilms' Tumor Cells by Sphingosine-1-Phosphate Receptor 2
14. Data from Obesity Is Associated with Inflammation and Elevated Aromatase Expression in the Mouse Mammary Gland
15. Supplementary Data from Obesity Is Associated with Inflammation and Elevated Aromatase Expression in the Mouse Mammary Gland
16. Supplementary Figures S1-S5 from Induction of Antiproliferative Connective Tissue Growth Factor Expression in Wilms' Tumor Cells by Sphingosine-1-Phosphate Receptor 2
17. Supplementary Figure S2 from The G Protein–Coupled Receptor S1P2 Regulates Rho/Rho Kinase Pathway to Inhibit Tumor Cell Migration
18. Data Supplement from Intestinal Epithelial HuR Modulates Distinct Pathways of Proliferation and Apoptosis and Attenuates Small Intestinal and Colonic Tumor Development
19. Data from Intestinal Epithelial HuR Modulates Distinct Pathways of Proliferation and Apoptosis and Attenuates Small Intestinal and Colonic Tumor Development
20. Supplementary Figure S1 from The G Protein–Coupled Receptor S1P2 Regulates Rho/Rho Kinase Pathway to Inhibit Tumor Cell Migration
21. Data Supplement from Intestinal Epithelial HuR Modulates Distinct Pathways of Proliferation and Apoptosis and Attenuates Small Intestinal and Colonic Tumor Development
22. Supplementary Figure S3 from The G Protein–Coupled Receptor S1P2 Regulates Rho/Rho Kinase Pathway to Inhibit Tumor Cell Migration
23. Data Supplement from Intestinal Epithelial HuR Modulates Distinct Pathways of Proliferation and Apoptosis and Attenuates Small Intestinal and Colonic Tumor Development
24. Data from Intestinal Epithelial HuR Modulates Distinct Pathways of Proliferation and Apoptosis and Attenuates Small Intestinal and Colonic Tumor Development
25. Data Supplement from Intestinal Epithelial HuR Modulates Distinct Pathways of Proliferation and Apoptosis and Attenuates Small Intestinal and Colonic Tumor Development
26. Data Supplement from Intestinal Epithelial HuR Modulates Distinct Pathways of Proliferation and Apoptosis and Attenuates Small Intestinal and Colonic Tumor Development
27. Legends to Supplementary Figures from The G Protein–Coupled Receptor S1P2 Regulates Rho/Rho Kinase Pathway to Inhibit Tumor Cell Migration
28. Legends to Supplementary Figures from The G Protein–Coupled Receptor S1P2 Regulates Rho/Rho Kinase Pathway to Inhibit Tumor Cell Migration
29. Supplementary Figure S2 from The G Protein–Coupled Receptor S1P2 Regulates Rho/Rho Kinase Pathway to Inhibit Tumor Cell Migration
30. Data Supplement from Intestinal Epithelial HuR Modulates Distinct Pathways of Proliferation and Apoptosis and Attenuates Small Intestinal and Colonic Tumor Development
31. Data Supplement from Intestinal Epithelial HuR Modulates Distinct Pathways of Proliferation and Apoptosis and Attenuates Small Intestinal and Colonic Tumor Development
32. Supplementary Figure S1 from The G Protein–Coupled Receptor S1P2 Regulates Rho/Rho Kinase Pathway to Inhibit Tumor Cell Migration
33. Supplementary Figure S3 from The G Protein–Coupled Receptor S1P2 Regulates Rho/Rho Kinase Pathway to Inhibit Tumor Cell Migration
34. Therapeutic activation of endothelial sphingosine‐1‐phosphate receptor 1 by chaperone‐bound S1P suppresses proliferative retinal neovascularization
35. 1206 Sphingosine 1-phosphate (S1P) regulation of vascular and immune systems: Mechanisms and therapeutic approaches
36. Murine endothelial serine palmitoyltransferase 1 (SPTLC1) is required for vascular development and systemic sphingolipid homeostasis
37. Author response: Murine endothelial serine palmitoyltransferase 1 (SPTLC1) is required for vascular development and systemic sphingolipid homeostasis
38. Corrigendum to “Sphingosine 1-phosphate receptor 1 regulates cell-surface localization of membrane proteins in endothelial cells” [Biochim Biophys Acta Gen Subj. volume 1863 (6) (2019) 1079-1087]
39. DOCK4 Regulation of Rho GTPases Mediates Pulmonary Vascular Barrier Function
40. Therapeutic activation of endothelial sphingosine 1-phosphate receptor-1 by chaperone-bound S1P suppresses proliferative retinal vasculopathy
41. Signal Transduction and Gene Regulation in the Endothelium
42. Retraction: Obesity Is Associated With Inflammation and Elevated Aromatase Expression in the Mouse Mammary Gland
43. Sphingosine 1-phosphate receptor-targeted therapeutics in rheumatic diseases
44. Endothelial-derived sphingolipids are required for vascular development and systemic lipid homeostasis
45. Plasma components to protect the endothelial barrier after shock: A role for sphingosine 1-phosphate
46. Engineered high-density lipoprotein particles that chaperone bioactive lipid mediators to combat endothelial dysfunction and thromboinflammation
47. Lysophospholipid Mediators in Health and Disease
48. Endothelial-Specific Loss of Sphingosine-1-Phosphate Receptor 1 Increases Vascular Permeability and Exacerbates Bleomycin-induced Pulmonary Fibrosis
49. Endothelial Spns2 and ApoM Regulation of Vascular Tone and Hypertension Via Sphingosine‐1‐Phosphate
50. S1P Control of Endothelial Integrity
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