Neuroscience Research

Neuroscience is the study of the nervous system - one of the major mammalian systems responsible for sustaining life. The central nervous system (CNS) and peripheral nervous system (PNS) work in concert to coordinate basic functions such as moving and breathing, as well as 'higher order' functions including thought, speech and emotion.

Neuroscience Research Products Areas

Products for Neuroscience Research - Page 70

  1. Cat.No. Product Name Information/Activity
  2. BCC5108 CORM-3 CORM-3, a water-soluble carbon monoxide-releasing molecule, attenuates NF-κB p65 nuclear translocation, reduces ROS generation and enhances intracellular glutathione and superoxide dismutase levels. CORM-3 reduces NLRP3 inflammasome activation. CORM-3 chemical structure
  3. BCC5670 SIN-1 chloride 16142-27-1 SIN-1 chloride chemical structure
  4. BCC6712 SNAP 79032-48-7 SNAP chemical structure
  5. BCC6714 SNOG 57564-91-7 SNOG chemical structure
  6. BCC6950 Spermine NONOate Slow NO releasing agent Spermine NONOate chemical structure
  7. BCC3737 Bexarotene Bexarotene (LGD1069) is a selective retinoid X receptors (RXR) agonist for the treatment of cutaneous T-cell lymphoma. Bexarotene chemical structure
  8. BCC7637 CD 3254 CD3254 a potent and selective retinoid-X-receptor (RXR) agonist. CD 3254 chemical structure
  9. BCC6110 Fluorobexarotene Fluorobexarotene (compound 20) is a potent retinoid-X-receptor (RXR) agonist, with a Ki value of 12 nM and an EC50 value of 43 nM for RXRα receptor. Fluorobexarotene possesses an apparent RXR binding affinity that is 75% greater than Bexarotene. Fluorobexarotene chemical structure
  10. BCC2284 Isotretinoin Isotretinoin(13-cis-Retinoic acid) is a medication used for the treatment of severe acne. Isotretinoin chemical structure
  11. BCN2185 Retinoic acid Retinoic acid is a metabolite of vitamin A that plays important roles in cell growth, differentiation, and organogenesis. Retinoic acid is a natural agonist of RAR nuclear receptors, with IC50s of 14 nM for RARα/β/γ. Retinoic acid bind to PPARβ/δ with Kd of 17 nM. Retinoic acid chemical structure

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