Phenylpiracetam Hydrazide 100mg/ml, 30ml

$55.99

Phenylpiracetam Hydrazide – Advanced Nootropic Research Compound for Cognitive Studies

Phenylpiracetam Hydrazide is a structurally enhanced racetam analog with demonstrated cognitive-enhancing, neuroprotective, and adaptogenic properties. Ideal for investigating:

✔ AMPA receptor potentiation & synaptic plasticity
✔ Cognitive enhancement & memory formation
✔ Neuroprotection & oxidative stress resistance
✔ Adaptogenic responses & environmental stress resilience

Key Features:

Research-grade powder (≥98% purity)

HPLC & mass spectrometry verified

Highly soluble in aqueous solutions

Research use only (not for human/veterinary use)

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Disclaimer: This product is for laboratory research purposes only. Not for human or anima

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Description

Phenylpiracetam Hydrazide – Advanced Nootropic Research Compound for Cognitive Enhancement & Neuroprotection Studies

The Phenylpiracetam Hydrazide advanced nootropic research compound for cognitive studies is a structurally modified analog of the classic racetam nootropic. By featuring a hydrazide moiety, this compound effectively enhances bioavailability and neuroactive properties. Researchers primarily utilize this tool to investigate superior cognitive-enhancing effects and neuroprotective properties. Furthermore, it functions as a positive allosteric modulator of AMPA-type glutamate receptors, which makes it essential for studying neurological resilience.

Mechanism of Action: Multimodal Neuromodulation

The Phenylpiracetam Hydrazide advanced nootropic research compound for cognitive studies exerts its effects through several sophisticated pathways. Specifically, it actively influences the following biological systems:

  • AMPA Receptor Potentiation: It enhances glutamatergic transmission to facilitate synaptic plasticity.

  • Cholinergic Enhancement: The compound increases acetylcholine release in hippocampal regions. Consequently, this improves attention and memory formation models.

  • Mitochondrial Optimization: It actively boosts cerebral energy metabolism by improving ATP production.

  • Cellular Resilience: It reduces oxidative stress and protects neurons from various forms of chemical insult.

Key Research Applications & Evidence-Based Studies

When scientists apply the Phenylpiracetam Hydrazide advanced nootropic research compound for cognitive studies, they observe significant results across various behavioral models. Peer-reviewed data highlights the following efficacy:

  1. Spatial Learning and Memory: Rodent studies show a 35-60% improvement in spatial learning acquisition. This occurs because the compound enhances hippocampal receptor function.

  2. Ischemic Injury Models: Research indicates a 40-55% reduction in infarct volume following subcutaneous administration. Therefore, it serves as a potent candidate for stroke recovery research.

  3. Adaptogenic Effects: Emerging data suggests that the compound increases resistance to hypoxia and extreme temperatures. Moreover, it improves behavioral flexibility in changing environmental conditions.

Recommended Research Protocols

To ensure accuracy, researchers must follow precise administration guidelines for the Phenylpiracetam Hydrazide advanced nootropic research compound for cognitive studies. The table below outlines standard laboratory dosages:

Research Model Dosage Range Administration Key Parameters
In Vitro 10-500 μM Cell culture media Receptor function
Rodent Models 5-50 mg/kg Oral/IP Cognitive testing
Primate Models 3-20 mg/kg Oral Processing speed
Neuroprotection 10-25 mg/kg Subcutaneous Infarct volume

Quality Assurance & Handling

EliteBiogenix provides pharmaceutical-grade Phenylpiracetam Hydrazide advanced nootropic research compound for cognitive studies with $\ge$98% purity. Because this compound is highly water-soluble ($>50$ mg/mL), scientists can easily prepare solutions for immediate administration. To maintain potency, store the powder at room temperature ($15\text{°C}$ to $30\text{°C}$) and protect it from light. Furthermore, ensure you weigh the material precisely using an analytical balance to maintain batch-to-batch consistency.

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