Dihydropicrotoxinin

In today's world, Dihydropicrotoxinin has become a topic of great importance and interest to a wide range of people. Whether due to its impact on society, the economy, culture or any other aspect of daily life, Dihydropicrotoxinin plays a fundamental role in our reality. In this article, we will thoroughly explore the various facets of Dihydropicrotoxinin and its influence in different areas. From its evolution over the years to its relevance today, through its relationship with other relevant topics, we will delve into a detailed analysis that will allow us to better understand the importance of Dihydropicrotoxinin in today's world. Regardless of our background or particular interests, Dihydropicrotoxinin is a topic that concerns us all and that deserves our attention and reflection.

Dihydropicrotoxinin
Identifiers
3D model (JSmol)
ChemSpider
  • InChI=1S/C15H18O6/c1-5(2)7-8-11(16)19-9(7)10-13(3)14(8,18)4-6-15(13,21-6)12(17)20-10/h5-10,18H,4H2,1-3H3/t6?,7?,8-,9?,10-,13-,14-,15?/m1/s1
    Key: SJSFJVFGSPJGET-KJINDDCRSA-N
  • CC(C)C12C(=O)OC134(2(CC5C4(O5)C(=O)O3)O)C
Properties
C15H18O6
Molar mass 294.303 g·mol−1
Except where otherwise noted, data are given for materials in their standard state (at 25 °C , 100 kPa).

Dihydropicrotoxinin is the saturated derivative of picrotoxinin. Its radiolabeled derivative, dihydropicrotoxinin, is used in scientific research to study the GABA receptors.

See also

References

  1. ^ Olsen, R. W (2006). "Picrotoxin-like channel blockers of GABAA receptors". Proceedings of the National Academy of Sciences of the United States of America. 103 (16): 6081–2. Bibcode:2006PNAS..103.6081O. doi:10.1073/pnas.0601121103. PMC 1458832. PMID 16606858.