Sunifiram

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Description

Overview of Sunifiram 

Sunifiram is an Ampakine drug (acts via AMPA receptors). It is a synthetic derivative of Piracetam and has a somewhat similar chemical structure. Still, despite having comparable anti-amnesic effects, Sunifiram demonstrates significantly higher potency than piracetam in preclinical models.

Sunifiram was originally developed to treat the symptoms of cognitive decline in Alzheimer's disease patients. However, due to the lack of funding, no human trials were conducted to investigate its effects. All the evidence about its effects comes from animal studies.

Furthermore, it has been reported that Sunifiram attenuates experimentally induced memory deficits in research models. It alleviates cognitive deficits and possesses potent anti-amnesic activity in preclinical models. Preclinical research has also demonstrated that Sunifiram may have mild effects on nociceptive responses in research models.

Note: PureRawz sells Sunifiram for laboratory and research purposes only.

Chemical Properties of Sunifiram

Property Information
CAS Number 314728-85-3
IUPAC Name 1-(4-benzoylpiperazin-1-yl)propan-1-one
Chemical Formula C14H18N2O2
Molecular Weight 246.31 g/mol
Synonyms SUNIFIRAM, DM-235, DM235, DTXSID10400996, Sunifiram DM235
Storage -20°C (-4°F)

Working Mechanism of Sunifiram?

The exact working mechanism of Sunifiram remains unknown, but it has been shown to:

Stimulate the release of acetylcholine

In one animal study, Sunifiram reportedly increased acetylcholine release. Another preclinical study showed it blocked the effects of scopolamine, a drug that blocks acetylcholine release.

Activate AMPA receptors

Study reports suggest that unifiram appears to modulate glutamatergic signaling involving NMDA and AMPA receptor pathways. Plus, it may block AMPA receptor activation by drugs that suppress the activity of AMPA receptors.

Regulate glucose uptake

A cell-based study reports that Sunifiram may increase glucose uptake at a lower dose and increase it at a mega dose.

Activate NDMA glutamate receptors.

Another cell-based study suggests how Sunifiram may activate NDMA glutamate receptors. That is, by promoting the release of the neurotransmitter glutamate, which is proven to bind to glutamate receptors. 

Research findings on Sunifiram

The following is a summary of the existing research on Sunifiram. The information given in this section is for educational purposes only and doesn't constitute medical advice.

Experimental studies have investigated Sunifiram for its effects on memory-related processes. Some preclinical research models reported that Sunifiram partially reversed induced memory impairments and influenced Long-Term Potentiation (LTP). LPT is a mechanism involved in synaptic plasticity and memory formation.

Research has also examined Sunifiram in behavioral learning tasks. In research models, exposure to Sunifiram was linked with improved performance in tasks that measure learning and recognition, including passive avoidance and social recognition tests. These findings suggest possible interactions with neural pathways related to learning processes.

A few studies have reported additional neurological effects of Sunifiram. Some experimental findings report mild effects on heat-related pain responses and changes in sleep-related behavior in research models. These observations remain preliminary and require further investigation in laboratory studies.

Where to Buy Sunifiram?

PureRawz is the best place to buy the highest-quality Sunifiram online.

In order to be the best supplier of research chemicals, we provide reference materials with every product we sell. All of our products come with an independent, third-party-issued Certificate of Analysis for identification, purity, and concentration.

We sell Sunifiram powder and tablet formulations for laboratory and research purposes only.

Disclaimer

This information is for educational purposes only and not medical advice. Products are for research use only. Research must follow IRB or IACUC guidelines. Verify information independently before purchasing. By ordering, you agree to our Terms and Conditions. If you are not 100% satisfied with the product you received, please contact us at support@staging.purerawz.co

ATTENTION: All our products are for LABORATORY AND RESEARCH PURPOSES ONLY, not for veterinary or human use.

Reference Links

Moriguchi, S., Tanaka, T., Tagashira, H., Narahashi, T., & Fukunaga, K. (2013). Novel nootropic drug sunifiram improves cognitive deficits via CaM kinase II and protein kinase C activation in olfactory bulbectomized mice. Behavioural Brain Research, 242, 150-157. https://doi.org/10.1016/j.bbr.2012.12.054

Martini, E., Norcini, M., Ghelardini, C., Manetti, D., Dei, S., Guandalini, L., Melchiorre, M., Pagella, S., Scapecchi, S., Teodori, E., & Romanelli, M. N. (2008). Design, synthesis, and preliminary pharmacological evaluation of new analogues of DM232 (unifiram) and DM235 (sunifiram) as cognition modulators. Bioorganic & Medicinal Chemistry, 16(23), 10034-10042. https://doi.org/10.1016/j.bmc.2008.10.017

Manetti, D., Ghelardini, C., Bartolini, A., Dei, S., Galeotti, N., Gualtieri, F., Romanelli, M. N., & Elisabetta Teodori. (2000). Molecular Simplification of 1,4-Diazabicyclo[4.3.0]nonan-9-ones Gives Piperazine Derivatives That Maintain High Nootropic Activity. Journal of Medicinal Chemistry, 43(23), 4499-4507. https://doi.org/10.1021/jm000972h

Dr. Helma Wennemers

Dr. Helma Wennemers is a globally recognized chemist shaping modern peptide science and molecular design through highly original research in applied biosciences.

Her work explores how precise molecular architecture can be engineered to create new functional systems in chemistry and life sciences. Her contributions continue to redefine contemporary chemical research through creativity, depth, and structural innovation.

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