223 results on '"Yang, Li V."'
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2. Activation of the proton-sensing GPCR, GPR65 on fibroblast-like synoviocytes contributes to inflammatory joint pain.
3. GPR65 (TDAG8) inhibits intestinal inflammation and colitis-associated colorectal cancer development in experimental mouse models
4. The Roles of Proton-Sensing G-Protein-Coupled Receptors in Inflammation and Cancer.
5. Activation of the proton-sensing GPCR, GPR65 on fibroblast-like synoviocytes contributes to inflammatory joint pain.
6. The Proton-Sensing GPR4 Receptor Regulates Paracellular Gap Formation and Permeability of Vascular Endothelial Cells
7. Pharmacological inhibition of GPR4 remediates intestinal inflammation in a mouse colitis model
8. Activation of GPR4 by acidosis increases endothelial cell adhesion through the cAMP/Epac pathway.
9. T Cell Chemotaxis to Lysophosphatidylcholine through the G2A Receptor
10. GPR4 Knockout Attenuates Intestinal Inflammation and Forestalls the Development of Colitis-Associated Colorectal Cancer in Murine Models
11. Increased interleukin-6/C-reactive protein levels are associated with the upregulation of the adenosine pathway and serve as potential markers of therapeutic resistance to immune checkpoint inhibitor-based therapies in non-small cell lung cancer
12. GPR4 deficiency alleviates intestinal inflammation in a mouse model of acute experimental colitis
13. Effects of mutations in Wnt/β-catenin, hedgehog, Notch and PI3K pathways on GSK-3 activity—Diverse effects on cell growth, metabolism and cancer
14. Isolated neutropenia as a rare but serious adverse event secondary to immune checkpoint inhibition
15. Supplementary Figure 2 from Synthesis and Evaluation of the Novel Prostamide, 15-Deoxy, Δ12,14-Prostamide J2, as a Selective Antitumor Therapeutic
16. Supplementary figure legends from Synthesis and Evaluation of the Novel Prostamide, 15-Deoxy, Δ12,14-Prostamide J2, as a Selective Antitumor Therapeutic
17. Single-Cell Genomics Unveils Critical Regulators of Th17 Cell Pathogenicity
18. GPR4 decreases B16F10 melanoma cell spreading and regulates focal adhesion dynamics through the G13/Rho signaling pathway
19. Function and Signaling of the pH-Sensing G Protein-Coupled Receptors in Physiology and Diseases
20. Case Report: Peripheral blood T cells and inflammatory molecules in lung cancer patients with immune checkpoint inhibitor-induced thyroid dysfunction: Case studies and literature review
21. The TMEFF2 tumor suppressor modulates integrin expression, RhoA activation and migration of prostate cancer cells
22. Effects of TP53 Mutations and miRs on Immune Responses in the Tumor Microenvironment Important in Pancreatic Cancer Progression
23. Abstract 6139: GPR4 promotes the development of colitis-associated colorectal cancer in an experimental mouse model
24. Complex Role of Microbiome in Pancreatic Tumorigenesis: Potential Therapeutic Implications
25. Peripheral blood t cell responses to immunotherapy related adverse events in metastatic non-small cell lung cancer.
26. Inhibition of tumor cell migration and metastasis by the proton-sensing GPR4 receptor
27. Migration to Apoptotic “Find-me” Signals Is Mediated via the Phagocyte Receptor G2A
28. Peripheral blood interleukin 6, interleukin 10, and T lymphocyte levels are associated with checkpoint inhibitor induced pneumonitis: a case report
29. Peripheral blood interleukin 6, interleukin 10, and T lymphocyte levels are associated with checkpoint inhibitor induced pneumonitis: a case report
30. Can GPR4 Be a Potential Therapeutic Target for COVID-19?
31. Deletion of the pH Sensor GPR4 Decreases Renal Acid Excretion
32. Gi-independent macrophage chemotaxis to lysophosphatidylcholine via the immunoregulatory GPCR G2A
33. Abstract 1206: Inhibition of GPR4 attenuates intestinal inflammation in a mouse colitis model
34. Tumor mutational burden (TMB) profile of K-RAS/TP-53 co-mutation in metastatic non-small cell lung cancer (m-NSCLC).
35. The proton-sensing GPR4 receptor regulates paracellular gap formation and permeability of vascular endothelial cells
36. Pharmacological inhibition of GPR4 remediates intestinal inflammation in a mouse colitis model
37. TDAG8 (GPR65) Inhibits Intestinal Inflammation in the DSS-Induced Experimental Colitis Mouse Model
38. Introduction of WT-TP53 into pancreatic cancer cells alters sensitivity to chemotherapeutic drugs, targeted therapeutics and nutraceuticals
39. Abstract 1691: Clinical characteristics influencing survival in stage-IV non-small cell lung cancer treated with nivolumab: A single-institutional experience
40. Evaluating the utility of pretreatment C-reactive protein (CRP) in survival stratification of advanced non-small cell lung cancer (NSCLC) treated with immune checkpoint blockade (ICB): A prospective cohort study.
41. GPR4 deficiency alleviates intestinal inflammation in a mouse model of acute experimental colitis
42. Survival stratification using a baseline inflammatory physiology based scoring system in advanced non-small cell lung cancer (NSCLC) treated with anti-programmed cell death-1 (anti-PD-1) therapy.
43. Co-relation of overall survival with peripheral blood-based inflammatory biomarkers in advanced stage non-small cell lung cancer treated with anti-programmed cell death-1 therapy: results from a single institutional database
44. Interleukin-6 as one of the potential mediators of immune-related adverse events in non-small cell lung cancer patients treated with immune checkpoint blockade: evidence from a case report
45. Contextual tumor suppressor function of T cell death-associated gene 8 (TDAG8) in hematological malignancies
46. Quantitative analysis and comparison of 3D morphology between viable and apoptotic MCF-7 breast cancer cells and characterization of nuclear fragmentation
47. Abstract 5916: Proton-sensor GPR4 potentiates intestinal inflammation in the DSS-induced colitis mouse model
48. Abstract 1993: Acidic tumor microenvironment stimulation of GPR4 alters cytoskeletal dynamics and migration of vascular endothelial cells
49. Abstract 3217: Novel prostamide, 15-deoxy-delta12,14prostamide J2, displays activity against melanomain vitroandin vivo: potential role of endoplasmic reticulum stress
50. Effects of resveratrol, curcumin, berberine and other nutraceuticals on aging, cancer development, cancer stem cells and microRNAs
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