114 results on '"Ramanjulu, Joshi"'
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2. STING Orchestrates EV-D68 Replication and Immunometabolism within Viral-Induced Replication Organelles.
3. STING Agonist Induced Innate Immune Responses Drive Anti-Respiratory Virus Activity In Vitro with Limited Antiviral Efficacy In Vivo.
4. Design of amidobenzimidazole STING receptor agonists with systemic activity
5. Author Correction: Design of amidobenzimidazole STING receptor agonists with systemic activity
6. Discovery of GSK8612, a Highly Selective and Potent TBK1 Inhibitor
7. A diamidobenzimidazole STING agonist protects against SARS-CoV-2 infection
8. Overcoming the Pregnane X Receptor Liability: Rational Design to Eliminate PXR-Mediated CYP Induction
9. Overcoming the Pregnane X Receptor Liability: Rational Design to Eliminate PXR-Mediated CYP Induction
10. A diamidobenzimidazole STING agonist protects against SARS-CoV-2 infection
11. Synthesis of a reduced ring analog of didemnin b
12. Synthesis and structure activity relationship of guanidines as NPY Y5 antagonists
13. Synthesis of new didemnin B analogs for investigations of structure/biological activity relationships
14. Discovery of GSK8612, a Highly Selective and Potent TBK1 Inhibitor
15. Author Correction: Design of amidobenzimidazole STING receptor agonists with systemic activity
16. Abstract 5554: Preclinical characterization of GSK532, a novel STING agonist with potent anti-tumor activity
17. Synthesis and biological activities of [ N-MeLeu 5]- and [ N-MePhe 5]-didemnin B
18. Abstract 5554: Preclinical characterization of GSK532, a novel STING agonist with potent anti-tumor activity
19. Titanium(IV) Isopropoxide Mediated Synthesis of Pyrimidin-4-ones
20. ChemInform Abstract: Titanium(IV) Isopropoxide Mediated Synthesis of Pyrimidin-4-ones
21. MALT1 Protease Activity Is Required for Innate and Adaptive Immune Responses
22. MALT1 Protease Activity Is Required for Innate and Adaptive Immune Responses
23. MALT1 has both protease activity-dependent and -independent roles in innate and adaptive immunity (IRM10P.739)
24. ChemInform Abstract: Titanium(IV) Isopropoxide Mediated Synthesis of Pyrimidin‐4‐ones.
25. Synthetic and structural investigations of the novel biologically active cyclodepsipeptides: The didemnins
26. Synthetic Studies of a Didemnin B Analog Based on a 2,3‐Diamino Sugar Scaffolding
27. Inhibition of Protein Synthesis by Didemnins: Cell Potency and SAR
28. Total Synthesis of Vancomycin—Part 1: Design and Development of Methodology
29. Total Synthesis of Vancomycin—Part 2: Retrosynthetic Analysis, Synthesis of Amino Acid Building Blocks and Strategy Evaluations
30. ChemInform Abstract: Synthesis and Biological Activities of [N‐MeLeu5]‐ and [N‐MePhe5]‐Didemnin B
31. Synthesis and biological activities of [N-MeLeu5]- and [N-MePhe5]-didemnin B
32. Total Synthesis of Vancomycin Aglycon—Part 1: Synthesis of Amino Acids 4-7 and Construction of the AB-COD Ring Skeleton
33. Total Synthesis of Vancomycin Aglycon—Part 2: Synthesis of Amino Acids 1-3 and Construction of the AB-COD-DOE Ring Skeleton
34. Total Synthesis of Vancomycin Aglycon—Part 3: Final Stages
35. Totalsynthese des Vancomycin-Aglycons – Teil 1: Synthese der Aminosäuren 4–7 und Aufbau des AB-COD-Ringgerüsts
36. Totalsynthese des Vancomycin-Aglycons – Teil 2: Synthese der Aminosäuren 1–3 und Aufbau des AB-COD-DOE-Ringgerüsts
37. Totalsynthese des Vancomycin-Aglycons – Teil 3: letzte Schritte
38. Syntheses of Acyclic Analogs of Didemnin B
39. New Technology for the Synthesis of Vancomycin‐Type Biaryl Ring Systems
40. Eine neuartige Strategie zum Aufbau des Vancomycin-Biarylringsystems
41. A Suzuki coupling–macrolactamization approach to the AB-COD bicyclic system of vancomycin
42. Synthesis and biological activities of [N-MeLeu5] didemnin B
43. N-Alkylation of Amino Acid Esters Using Sodium Triacetoxyborohydride
44. A Facile Synthesis of Benzyl 2-Amino-3-azido-4-O-p-methoxybenzyl-6-O-benzyl-2,3-dideoxy-α-d-glucopyranoside: A Key Intermediate in the Formation Of A Didemnin B Analog
45. Analogs of the β-turn of the cyclodepsipeptide didemnin B
46. Total Synthesis of Vancomycin AglyconPart 1: Synthesis of Amino Acids 47 and Construction of the AB-COD Ring Skeleton
47. Totalsynthese des Vancomycin-Aglycons Teil 1: Synthese der Aminosäuren 47 und Aufbau des AB-COD-Ringgerüsts
48. Total Synthesis of Vancomycin AglyconPart 3: Final Stages
49. Total Synthesis of Vancomycin AglyconPart 2: Synthesis of Amino Acids 13 and Construction of the AB-COD-DOE Ring Skeleton
50. Totalsynthese des Vancomycin-Aglycons Teil 3: letzte Schritte
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