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Isonipecotic acid (CAS NO : 498-94-2)

Isonipecotic Acid or Hexahydroisonicotinic acid is a saturated heterocyclic compound featuring a piperidine ring with a carboxylic acid substituent at the 4-position. Isonipecotic Acid is also called as 4-Piperidinecarboxylic acid as it functions as a partial agonist at GABAA receptors, making it valuable in neurological research. Additionally, Isonipecotic Acid (CAS: 498-94-2) is High-purity piperidine derivative used as a pharmaceutical intermediate and in the synthesis such as HDAC inhibitors and piperidine-based derivatives. Available in various grades for research and synthesis, Isonipecotic Acid is generally employed as an intermediate in the synthesis of pharmaceuticals targeting neurological pathways. Isonipecotic Acid is significant in research focused on inhibitory neurotransmission.

Isonipecotic acid

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Isonipecotic Acid or Hexahydroisonicotinic acid is a saturated heterocyclic compound featuring a piperidine ring with a carboxylic acid substituent at the 4-position. Isonipecotic Acid is also called as 4-Piperidinecarboxylic acid as it functions as a partial agonist at GABAA receptors, making it valuable in neurological research. Additionally, Isonipecotic Acid (CAS: 498-94-2) is High-purity piperidine derivative used as a pharmaceutical intermediate and in the synthesis such as HDAC inhibitors and piperidine-based derivatives. Available in various grades for research and synthesis, Isonipecotic Acid is generally employed as an intermediate in the synthesis of pharmaceuticals targeting neur...

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Chemical Properties & Specifications

Applications of Isonipecotic acid

Pharmaceutical Intermediates

Building block for synthesis of HDAC inhibitors and other piperidine derivatives.

Neuroscience Research

Utilized as a GABA<sub>A</sub> receptor partial agonist in studies of neurological function.

Chemical Synthesis

Precursor in the production of various heterocyclic compounds (heterocyclic building block)

Additional Feature

*High Purity: Available in purities ≥99%, suitable for research and pharmaceutical synthesis. *Versatility: Applicable in multiple synthetic pathways due to its functional groups.

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