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1. Diverse Roles of TRPV4 in Macrophages: A Need for Unbiased Profiling

2. Mu and Delta Opioid Receptors Are Coexpressed and Functionally Interact in the Enteric Nervous System of the Mouse ColonSummary

3. Internalized GPCRs as Potential Therapeutic Targets for the Management of Pain

4. Therapeutic antagonism of the neurokinin 1 receptor in endosomes provides sustained pain relief

5. Targeting endosomal receptors, a new direction for polymers in nanomedicine

6. Selective G protein signaling driven by substance P–neurokinin receptor dynamics

7. Serotonin-induced vascular permeability is mediated by transient receptor potential vanilloid 4 in the airways and upper gastrointestinal tract of mice

8. Mice expressing fluorescent PAR 2 reveal that endocytosis mediates colonic inflammation and pain

9. Mice expressing fluorescent PAR

10. Sustained endosomal release of a neurokinin-1 receptor antagonist from nanostars provides long-lasting relief of chronic pain

11. Positive allosteric modulation of endogenous delta opioid receptor signaling in the enteric nervous system is a potential treatment for gastrointestinal motility disorders

12. CGRP Signals from Endosomes of Schwann Cells to Elicit Migraine Pain

13. Mu and Delta Opioid Receptors Are Coexpressed and Functionally Interact in the Enteric Nervous System of the Mouse Colon

14. G protein-coupled receptor trafficking and signaling: new insights into the enteric nervous system

15. Rapid Assessment of Nanoparticle Extravasation in a Microfluidic Tumor Model

16. Agonist-dependent development of delta opioid receptor tolerance in the colon

17. Selective G protein signaling driven by Substance P-Neurokinin Receptor structural dynamics

18. A lipid-anchored neurokinin 1 receptor antagonist prolongs pain relief by a three-pronged mechanism of action targeting the receptor at the plasma membrane and in endosomes

19. Endosomal signaling of delta opioid receptors is an endogenous mechanism and therapeutic target for relief from inflammatory pain

20. Cellular Interactions of Liposomes and PISA Nanoparticles during Human Blood Flow in a Microvascular Network

21. The transient receptor potential vanilloid 4 (TRPV4) ion channel mediates protease activated receptor 1 (PAR1)-induced vascular hyperpermeability

22. Linker chemistry dictates the delivery of a phototoxic organometallic rhenium(i) complex to human cervical cancer cells from core crosslinked star polymer nanoparticles

23. Mini-review: Dissecting receptor-mediated stimulation of TRPV4 in nociceptive and inflammatory pathways

24. A pH-responsive nanoparticle targets the neurokinin 1 receptor in endosomes to prevent chronic pain

25. Clathrin and GRK2/3 inhibitors block δ-opioid receptor internalization in myenteric neurons and inhibit neuromuscular transmission in the mouse colon

26. Polymers with acyl-protected perthiol chain termini as convenient building blocks for doubly responsive H2S-donating nanoparticles

27. Cellular Interactions: Cellular Interactions of Liposomes and PISA Nanoparticles during Human Blood Flow in a Microvascular Network (Small 33/2020)

28. G-Protein-Coupled Receptors Are Dynamic Regulators of Digestion and Targets for Digestive Diseases

29. Protease-activated receptor-2 in endosomes signals persistent pain of irritable bowel syndrome

30. Inflammation-associated changes in DOR expression and function in the mouse colon

31. P2Y1 Receptor Activation of the TRPV4 Ion Channel Enhances Purinergic Signaling in Satellite Glial Cells

32. Endosomal signaling of the receptor for calcitonin gene-related peptide mediates pain transmission

33. A Novel Ultra-Stable, Monomeric Green Fluorescent Protein For Direct Volumetric Imaging of Whole Organs Using CLARITY

34. Cathepsin S Causes Inflammatory Pain via Biased Agonism of PAR2 and TRPV4

35. The tyrosine kinase inhibitor bafetinib inhibits PAR2-induced activation of TRPV4 channelsin vitroand painin vivo

36. Protease-activated Receptor 2 (PAR2) Protein and Transient Receptor Potential Vanilloid 4 (TRPV4) Protein Coupling Is Required for Sustained Inflammatory Signaling*

37. Neurokinin 1 receptor signaling in endosomes mediates sustained nociception and is a viable therapeutic target for prolonged pain relief

38. Role of Nonneuronal TRPV4 Signaling in Inflammatory Processes

39. In silico modeling of the Menkes copper-translocating P-type ATPase 3rd metal binding domain predicts that phosphorylation regulates copper-binding

40. Inflammation-induced abnormalities in the subcellular localization and trafficking of the neurokinin 1 receptor in the enteric nervous system

41. Demonstration of elevated levels of active cathepsin S in dextran sulfate sodium colitis using a new activatable probe

42. Contributors

43. Quantification and Potential Functions of Endogenous Agonists of Transient Receptor Potential Channels in Patients With Irritable Bowel Syndrome

44. Targeting of Transient Receptor Potential Channels in Digestive Disease

45. Transient receptor potential vanilloid 4 inhibits mouse colonic motility by activating NO-dependent enteric neurotransmission

46. The G protein-coupled receptor-transient receptor potential channel axis: molecular insights for targeting disorders of sensation and inflammation

47. Localisation and activation of the neurokinin 1 receptor in the enteric nervous system of the mouse distal colon

48. N-glycosylation determines ionic permeability and desensitization of the TRPV1 capsaicin receptor

49. Cysteine-rich secretory protein 4 is an inhibitor of transient receptor potential M8 with a role in establishing sperm function

50. Conservation of copper-transporting P(IB)-type ATPase function

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