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2. Discovery of Potent Tetrazole Free Fatty Acid Receptor 2 Antagonists

3. Targeted Delivery of Alcohol-Containing Payloads with Antibody-Drug Conjugates

7. New Approaches to Moderate CRISPR-Cas9 Activity:Addressing Issues of Cellular Uptake and Endosomal Escape

8. All-in-one disulfide bridging enables the generation of antibody conjugates with modular cargo loading

11. Structure‐Activity Relationship Explorations and Discovery of a Potent Antagonist for the Free Fatty Acid Receptor 2

12. Structure-Activity Relationship Explorations and Discovery of a Potent Antagonist for the Free Fatty Acid Receptor 2

13. Enhanced target cell specificity and uptake of lipid nanoparticles using RNA aptamers and peptides

16. Structure-Activity Relationship Studies of Tetrahydroquinolone Free Fatty Acid Receptor 3 Modulators

17. Compositions comprising enzyme cleavable linker platforms and conjugates thereof

18. Production of allergen-specific immunotherapeutic agents for the treatment of food allergy

19. Production of allergen-specific immunotherapeutic agents for the treatment of food allergy

20. Structure–Activity Relationship Studies of Tetrahydroquinolone Free Fatty Acid Receptor 3 Modulators

21. A single extracellular amino acid in Free Fatty Acid Receptor 2 defines antagonist species selectivity and G protein selection bias

23. Discovery of a Potent Thiazolidine Free Fatty Acid Receptor 2 Agonist with Favorable Pharmacokinetic Properties

26. Non-equivalence of key positively charged residues of the free fatty acid 2 receptor in the recognition and function of agonist versus antagonist ligands

29. The Neutrophil Response Induced by an Agonist for Free Fatty Acid Receptor 2 (GPR43) Is Primed by Tumor Necrosis Factor Alpha and by Receptor Uncoupling from the Cytoskeleton but Attenuated by Tissue Recruitment.

32. A single extracellular amino acid in Free Fatty Acid Receptor 2 defines antagonist species selectivity and G protein selection bias.

33. Non-equivalence of Key Positively Charged Residues of the Free Fatty Acid 2 Receptor in the Recognition and Function of Agonist Versus Antagonist Ligands.

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