N-Methyl-4-(2-methylphenyl)-6-(4-methyl-1-piperazinyl)-3-pyridinamine Oxalic Acid CAS 290297-25-5

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Chemical Name: N-Methyl-4-(2-methylphenyl)-6-(4-methyl-1-piperazinyl)-3-pyridinamine Oxalic acid
CAS No.: 290297-25-5
Molecular Fomula: C18H24N4
Molecular weight: 296.41
Appearance: White solid
Assay:98 % min

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N-Methyl-4-(2-methylphenyl)-6-(4-methyl-1-piperazinyl)-3-pyridinamine Oxalic Acid (CAS 290297-25-5) Complete Guide

Table of Contents

Product Overview & Specifications

Basic Chemical Properties

Parameter Specification
CAS Number 290297-25-5
Molecular Formula C20H26N4O2·C2H2O4
Molecular Weight 458.51 g/mol
Appearance White to off-white crystalline powder
Purity ≥98% (HPLC)
Solubility Soluble in DMSO, Methanol

Key Applications & Industrial Uses

Pharmaceutical Intermediate

Primarily used in synthesis of tyrosine kinase inhibitors for oncology therapeutics. Demonstrates exceptional binding affinity to EGFR receptors.

Research Chemical

Essential component in:

  • Cancer cell proliferation studies
  • Apoptosis mechanism research
  • Signal transduction pathway analysis

Technical Parameter Comparison

Grade Research Grade GMP Grade
Residual Solvents <5000 ppm <100 ppm
Heavy Metals <10 ppm <2 ppm
Storage Conditions 2-8°C -20°C
Certification COA GMP, DMF

Usage Scenarios & Operational Guidelines

Recommended Workflow

  1. Reconstitution: Dissolve in anhydrous DMSO (10 mM concentration)
  2. In Vitro Testing: Use within 24 hours after preparation
  3. Cell Culture Application: Maintain concentration below 50 μM

Industry Case Studies

Oncology Drug Development

Used in Phase II clinical trial material synthesis for non-small cell lung cancer treatment (2023 data):

Parameter Result
Reaction Yield 82.4%
Impurity Profile <0.3%
Process Scalability Up to 50kg batch

Client Success Stories

Case 1: Biopharma Research Center (Germany)

Project Scope Outcome
EGFR Inhibitor Screening IC50 reduced by 38% compared to standard compounds
Quantity Used 1.2kg over 6 months
Client Feedback “Consistent quality across multiple batches”

Case 2: University Medical Laboratory (USA)

Application Result
Cell Migration Studies 83% inhibition at 10μM concentration
Publication Featured in Journal of Medicinal Chemistry (2024)

Expert Consultation & Quotation

Technical Support Services

Our chemistry team provides:

  • Custom synthesis protocols
  • Analytical method development
  • Regulatory documentation support

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