65 results on '"Patil, Renukadevi"'
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2. Bisbenzimidazoles: Anticancer Vacuolar (H+)-ATPase Inhibitors
3. Supplementary Figure 3 from Autotaxin and LPA1 and LPA5 Receptors Exert Disparate Functions in Tumor Cells versus the Host Tissue Microenvironment in Melanoma Invasion and Metastasis
4. Supplementary Figure 5 from Autotaxin and LPA1 and LPA5 Receptors Exert Disparate Functions in Tumor Cells versus the Host Tissue Microenvironment in Melanoma Invasion and Metastasis
5. Supplementary Figure 4 from Autotaxin and LPA1 and LPA5 Receptors Exert Disparate Functions in Tumor Cells versus the Host Tissue Microenvironment in Melanoma Invasion and Metastasis
6. Supplementary Figure 1 from Autotaxin and LPA1 and LPA5 Receptors Exert Disparate Functions in Tumor Cells versus the Host Tissue Microenvironment in Melanoma Invasion and Metastasis
7. Data from Autotaxin and LPA1 and LPA5 Receptors Exert Disparate Functions in Tumor Cells versus the Host Tissue Microenvironment in Melanoma Invasion and Metastasis
8. Supplementary Figure 4 from Autotaxin and LPA1 and LPA5 Receptors Exert Disparate Functions in Tumor Cells versus the Host Tissue Microenvironment in Melanoma Invasion and Metastasis
9. Supplementary Figure 2 from Autotaxin and LPA1 and LPA5 Receptors Exert Disparate Functions in Tumor Cells versus the Host Tissue Microenvironment in Melanoma Invasion and Metastasis
10. Supplementary Figure 2 from Autotaxin and LPA1 and LPA5 Receptors Exert Disparate Functions in Tumor Cells versus the Host Tissue Microenvironment in Melanoma Invasion and Metastasis
11. Supplementary Table 1 from Autotaxin and LPA1 and LPA5 Receptors Exert Disparate Functions in Tumor Cells versus the Host Tissue Microenvironment in Melanoma Invasion and Metastasis
12. Supplementary Figure 5 from Autotaxin and LPA1 and LPA5 Receptors Exert Disparate Functions in Tumor Cells versus the Host Tissue Microenvironment in Melanoma Invasion and Metastasis
13. Supplemental Figure Legends from Autotaxin and LPA1 and LPA5 Receptors Exert Disparate Functions in Tumor Cells versus the Host Tissue Microenvironment in Melanoma Invasion and Metastasis
14. Supplemental Figure Legends from Autotaxin and LPA1 and LPA5 Receptors Exert Disparate Functions in Tumor Cells versus the Host Tissue Microenvironment in Melanoma Invasion and Metastasis
15. Exploration of (hetero)aryl Derived Thienylchalcones for Antiviral and Anticancer Activities
16. Understanding the structure and reactivity of the C–S linkage in biologically active 5-arylthio-5H-chromenopyridines
17. Identification of Novel 5,6-Dimethoxyindan-1-one Derivatives as Antiviral Agents
18. Identification of Novel Bisbenzimidazole Derivatives as Anticancer Vacuolar (H+)-ATPase Inhibitors
19. Recent developments in biological activities of indanones
20. Microtubule inhibitor, SP-6-27 inhibits angiogenesis and induces apoptosis in ovarian cancer cells
21. Medicinal applications of (benz)imidazole- and indole-based macrocycles
22. Novel 5-arylthio-5H-chromenopyridines as a new class of anti-fibrotic agents
23. Abstract 1231: Novel chromene analogs as small-molecule microtubule destabilizers for the treatment of chemo-resistant ovarian cancer
24. Indole molecules as inhibitors of tubulin polymerization: potential new anticancer agents, an update (2013–2015)
25. Magnetic Nanoparticles Supported Carbene and Amine Based Metal Complexes in Catalysis
26. Novel Inhibitory Effect of a Lysophosphatidic Acid 2 Agonist on Allergen-Driven Airway Inflammation
27. Imidazoquinolines: Recent Developments in Anticancer Activity
28. ChemInform Abstract: Microwave-Assisted Synthesis of Chromenes: Biological and Chemical Importance
29. N -Heterocyclic Carbene Metal Complexes as Bio-Organometallic Antimicrobial and Anticancer Drugs
30. Microwave-assisted synthesis of chromenes: biological and chemical importance
31. Combined Mitigation of the Gastrointestinal and Hematopoietic Acute Radiation Syndromes by an LPA 2 Receptor-Specific Nonlipid Agonist
32. Abstract B28: Autotaxin, LPA1 and LPA5 receptors in the tumor microenvironment determine melanoma invasion and metastasis
33. Autotaxin and LPA1 and LPA5 Receptors Exert Disparate Functions in Tumor Cells versus the Host Tissue Microenvironment in Melanoma Invasion and Metastasis
34. Interaction of platelet-derived autotaxin with tumor integrin αVβ3 controls metastasis of breast cancer cells to bone
35. Design and Synthesis of Sulfamoyl Benzoic Acid Analogues with Subnanomolar Agonist Activity Specific to the LPA2 Receptor
36. LHRH-Conjugated Micelles for Targeted Delivery of Antiandrogen to Treat Advanced Prostate Cancer
37. Specific nonlipid agonists of the lysophosphatidic acid type 2 GPCR with subnanomolar potency mitigate radiation injury (998.2)
38. Synthesis and In Vitro Evaluation of Novel 1,2,3,4-Tetrahydroisoquinoline Derivatives as Potent Antiglioma Agents
39. Targeting the hydrophobic pocket of autotaxin with virtual screening of inhibitors identifies a common aromatic sulfonamide structural motif
40. Lysophosphatidic acid induces vasodilation mediated by LPA 1 receptors, phospholipase C, and endothelial nitric oxide synthase
41. Chromenes: Potential New Chemotherapeutic Agents for Cancer
42. Hits of a High-Throughput Screen Identify the Hydrophobic Pocket of Autotaxin/Lysophospholipase D As an Inhibitory Surface
43. Novel approaches to glioma drug design and drug screening
44. Abstract 3884: Targeting ATX and LPA receptors melanoma invasion and metastasis.
45. Indole molecules as inhibitors of tubulin polymerization: potential new anticancer agents
46. New substituted 4H-chromenes as anticancer agents
47. EDL-291, a novel isoquinoline, presents antiglioblastoma effects in vitro and in vivo
48. Combination Therapy of Antiandrogen and XIAP Inhibitor for Treating Advanced Prostate Cancer
49. Controlling cancer through the autotaxin–lysophosphatidic acid receptor axis
50. Benzyl and Naphthalene Methylphosphonic Acid Inhibitors of Autotaxin with Anti-invasive and Anti-metastatic Activity
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