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Aniracetam

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Aniracetam, a popular nootropic compound, is renowned for its cognitive-enhancing properties and potential benefits for brain health. Derived from the racetam family, Aniracetam is celebrated for its ability to promote mental clarity, focus, and memory recall.  
Chemical Formula  C12H13NO3
Synonyms  Ampamet, Memodrin, Pergamid
IUPAC Name  1-[(4-Methoxybenzoyl)]-2-pyrrolidinone
Molar mass  219.240 g·mol−1
Elimination half-life  0.5 Hours
Melting Point  122°C
Purity  ≥98%
Storage  Store in a dry environment at Room Temperature
Terms  All products are for laboratory developmental research USE ONLY. Products are NOT for human consumption.
Disclaimer: Legal Status and Usage Advisory for Aniracetam   Aniracetam, a member of the racetam family, is legal in many countries and is often available as a dietary supplement. In the United States, Aniracetam is not regulated by the FDA, making it legal to purchase and possess for personal use. However, it is important to note that regulations may vary, and individuals should always check their local laws regarding the legality of Aniracetam.

What is Aniracetam?

Aniracetam is a nootropic compound belonging to the racetam family, known for its cognitive-enhancing properties. It is a synthetic derivative of Piracetam and is believed to modulate various neurotransmitter  systems in the brain, including acetylcholine and glutamate.[1].

What is the Chemistry of Aniracetam?

Aniracetam’s chemical structure is based on the pyrrolidone nucleus, a common feature in racetam compounds. Its molecular formula is C12H13NO3, with a molar mass of 219.24 g/mol. The compound is characterized by a pyrrolidone ring with an anisoyl (4-methoxybenzoyl) side chain at the 2-position. This distinctive structure is believed to contribute to Aniracetam’s interactions with neurotransmitter systems in the brain, influencing cognitive processes [2].

What is the Mechanism of Action of Aniracetam?

Aniracetam is thought to work in the brain by influencing certain chemicals called neurotransmitters. One way it does this is by interacting with AMPA receptors, which are involved in memory and learning. This interaction may enhance the brain’s ability to change and adapt, supporting memory processes.  Aniracetam also seems to affect the release of acetylcholine, another neurotransmitter related to memory and attention. By doing so, it could potentially improve cognitive functions like learning and memory. While researchers are still exploring the exact details of how Aniracetam works, these proposed mechanisms highlight its potential benefits for cognitive enhancement [3].

What are the Different Forms of Aniracetam?

Aniracetam is commonly available in different forms to suit various preferences. The most common forms include capsules, powder, and liquid solutions. The diverse forms cater to different preferences and research purposes [4]. 
  • Aniracetam Capsules 
  • Aniracetam Powder 
  • Liquid Aniracetam Solutions

What are the Advantages of Aniracetam Powder?

Aniracetam, a popular nootropic known for its cognitive-enhancing properties, comes in various forms,  with powdered form being a noteworthy option. Here are some advantages associated with choosing  Aniracetam in its powdered form: 

Precise Experimental Control

Aniracetam powder provides researchers with precise control over dosage, allowing for meticulous adjustments in experimental settings. This is crucial for maintaining accuracy in research outcomes. 

Cost-Effective Research Option

Aniracetam powder proves to be a cost-effective choice for research budgets. The affordability of the powder form enables researchers to conduct experiments with a consistent supply of the compound without compromising the study’s financial aspects. 

Customized Experimental Stacks

Researchers have the flexibility to create customized experimental stacks by combining Aniracetam powder with other research compounds. This adaptability allows for the exploration of potential synergies and interactions. 

Commonly Used in Laboratory Settings

Aniracetam powder is a prevalent choice in laboratory settings due to its ease of handling and solubility in various solutions. Researchers appreciate its utility in diverse experimental setups,  contributing to its popularity in preclinical studies.  Understanding the advantages of Aniracetam powder in laboratory research contexts is essential for researchers aiming to explore the compound’s effects without involving human subjects. It’s imperative to adhere to ethical guidelines and regulatory standards when conducting experiments involving nootropics. [5].

Aniracetam vs. Piracetam?

Chemical Structure

  •  Aniracetam: It is a fat-soluble compound and a derivative of Piracetam. Aniracetam is known for its distinct ampakine structure.
  • Piracetam: Considered the first nootropic, Piracetam has a water-soluble structure and is the prototype for the racetam class of compounds. 

Mechanism of Action

  •  Aniracetam: Known for its anxiolytic (anxiety-reducing) effects, Aniracetam modulates AMPA  receptors in addition to the cholinergic system. It’s often associated with mood enhancement.
  • Piracetam: Primarily acts on the cholinergic system and enhances acetylcholine activity. Piracetam is recognized for its potential cognitive benefits. 

Low Risk in Animals

Aniracetam seems to be quite safe in animals. Even when given high doses, it didn’t cause significant harm or death. 

No Harm to Organs

In animals like mice, Aniracetam didn’t mess with important organs like the liver or kidneys. That’s a good sign, but we can’t assume the same for humans just yet. 

Sleep Changes

Some studies on animals hinted that Aniracetam might tweak how animals sleep. This could be good for their brains, but we should be aware that it might affect sleep patterns. 

Where to Buy Aniracetam Online?

For a reliable source of Aniracetam powder in your research pursuits, consider Evergreen Research. We are known for delivering top-notch research compounds, including Aniracetam powder, and maintaining high standards of quality through rigorous testing. With a commitment to transparency and purity, Evergreen  Research ensures that its products meet the highest benchmarks, minimizing the risk of contaminants for reliable research outcomes. Secure online transactions and responsive customer support further enhance the experience, making Evergreen Research a dependable choice for acquiring Aniracetam powder for your experiments. 

Conclusion

In conclusion, Aniracetam stands at the forefront of cognitive enhancement. Delving into its chemistry, mechanisms of action, and various forms, we’ve uncovered a nootropic that holds potential benefits for memory, focus, and mood enhancement.

References

Malykh AG, Sadaie MR (February 2010). “Piracetam and piracetam-like drugs: from basic science to novel clinical applications to CNS disorders”. Drugs. 70 (3): 287–312.
  1. Lee, C. R., & Benfield, P. (1994). Aniracetam: an overview of its pharmacodynamic and pharmacokinetic properties, and a review of its therapeutic potential in senile cognitive disorders. Drugs & aging, 4, 257-273. 
  2. Ito I, Tanabe S, Kohda A, Sugiyama H (May 1990). “Allosteric potentiation of quisqualate receptors by a nootropic drug aniracetam”. The Journal of Physiology. 424: 533–543. 
  3. Mayersohn, M., Roncari, G., & Wendt, G. (1993). Disposition pharmacokinetics and metabolism of aniracetam in animals. Drug Investigation, 5, 73-95. 
  4. Shao, D., Yang, Z., & Zhou, G. (2018). Aniracetam solubility in pure and binary solvents: effect of molecular interaction and analysis of crystallized products. Journal of Chemical & Engineering  Data, 63(8), 2681-2688. 
  5. Koliaki, C. C., Messini, C., & Tsolaki, M. (2012). Clinical efficacy of aniracetam, either as monotherapy or combined with cholinesterase inhibitors, in patients with cognitive impairment: a comparative open study. CNS neuroscience & therapeutics, 18(4), 302-312.
  6. MIZUKI, Y., YAMADA, M., KATO, I., TAKADA, Y., TSUJIMARU, S., INANAGA, K., & TANAKA, M. (1984).  Effects of Aniracetam, a Nootropic Drug, in Senile Dementia A Preliminary Report. The Kurume medical journal, 31(2), 135-143.
  7. Galeotti, N., Ghelardini, C., & Bartolini, A. (1996). Piracetam and aniracetam antagonism of centrally  active drug-induced antinociception. Pharmacology Biochemistry and Behavior, 53(4), 943-950. 9. Koliaki, C. C., Messini, C., & Tsolaki, M. (2012). Clinical efficacy of aniracetam, either as monotherapy  or combined with cholinesterase inhibitors, in patients with cognitive impairment: a comparative  open study. CNS neuroscience & therapeutics, 18(4), 302-312.

Disclaimer

The statements made within this website have not been evaluated by the U.S. Food and Drug Administration. These statements and the products of this company are not intended to diagnose, treat, cure, or prevent any disease. All products are for RESEARCH PURPOSES ONLY. All information contained on this website is for educational purposes.
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