MethoxphenidineMXP

$231.00

Description

Buy MethoxphenidineMXP Online

methoxphenidinemxp, commonly known as MXP, is a high-quality research chemical renowned for its unique properties and versatility in scientific studies. As a dissociative compound from the diarylethylamine class, MXP has gained significant attention in the research community for its potential applications and effects.

Methoxphenidine is an analog of diphenidine featuring a methoxy group at the two positions of a phenyl group. The physiological and toxicological properties of this blend are not known. 

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MXP acts as an antagonist of the NMDA receptor. NMDA receptors allow electrical alerts to pass between neurons in the brain and spinal column. For the signals to pass, the receiver must be open. Dissociatives shut down NMDA receptors by blocking them. This disconnection of neurons leads to loss of feeling, difficulty in moving, and ultimately an almost identical equivalent of the “k hole.”

Safety Information Of Methoxphenidine MXP

Methoxphenidine (MXP) is intended for research purposes only and is not for human consumption. Ensure all handling and usage comply with relevant safety guidelines and regulations.

Key Features:

  • High Purity: Our MXP boasts a purity level of 99% or higher, ensuring reliable and consistent results in all research applications.
  • Versatile Applications: It is ideal for a wide range of scientific studies, including pharmacological research, neuroscience investigations, and chemical analysis.
  • Stable Composition: Produced under stringent quality control standards, MXP maintains its integrity and effectiveness over time.

Applications:

Methoxphenidine is utilized in various research settings, including:

  • Pharmacological Research: Explore the pharmacodynamics and pharmacokinetics of MXP to understand its interaction with the central nervous system.
  • Neuroscience: Investigate the compound’s effects on brain function, neural pathways, and potential therapeutic applications.
  • Chemical Analysis: Analyze the structure-activity relationship (SAR) and synthesize analogs for advanced research purposes.

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