Pain and Inflammation Research

Although separate conditions, pain and inflammation are nearly always associated with each other. Pain is defined by the International Association for the Study of Pain (IASP) as 'an unpleasant sensory and emotional experience associated with actual or potential tissue damage, or described in terms of such damage'. Inflammation is the tissue's immunologic response to injury, characterized by mobilization of white blood cells and antibodies, swelling, and fluid accumulation.

Pain and Inflammation Research Products Areas

Products for Pain and Inflammation Research - Page 70

  1. Cat.No. Product Name Information/Activity
  2. BCC6746 L-Canavanine sulfate L-Canavanine sulfate is a selective inhibitor of inducible NO synthase. L-Canavanine sulfate chemical structure
  3. BCC2865 L-NAME hydrochloride L-NAME hydrochloride inhibits NOS with an IC50 of 70 μM. L-NAME is a precursor to NOS inhibitor L-NOARG which has an IC50 value of 1.4 μM. L-NAME hydrochloride chemical structure
  4. BCC5674 7-NINA 161467-34-1 7-NINA chemical structure
  5. BCC6713 7-Nitroindazole 2942-42-9 7-Nitroindazole chemical structure
  6. BCC6788 L-NMMA acetate L-NMMA acetate is a nitric oxide synthase inhibitor of all NOS isoforms including NOS1, NOS2, and NOS3. The Ki values for nNOS (rat), eNOS (human), and iNOS (mouse) are approximately 0.18, 0.4, and 6 µM, respectively. L-NMMA acetate chemical structure
  7. BCC2864 H-Arg(NO2)-OH 2149-70-4 H-Arg(NO2)-OH chemical structure
  8. BCC6847 TRIM 25371-96-4 TRIM chemical structure
  9. BCC6566 cis-ACPD 477331-06-9 cis-ACPD chemical structure
  10. BCC2894 H-D-Asp-OH (-)-Aspartic acid is an endogenous NMDA receptor agonist. H-D-Asp-OH chemical structure
  11. BCC2881 H-Asp-OH L-Aspartic acid is is an amino acid, shown to be a suitable prodrug for colon-specific drug deliverly. H-Asp-OH chemical structure

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