OEM Dodecyl Phosphocholine (DPC) Suppliers, Factory

Dodecyl Phosphocholine (DPC) is a synthetic zwitterionic detergent widely used in membrane protein research and structural biology, especially in NMR spectroscopy and crystallography.

Product Description

Dodecyl Phosphocholine (DPC) API Overview

Dodecyl Phosphocholine (DPC) is a synthetic zwitterionic detergent widely used in membrane protein research and structural biology, especially in NMR spectroscopy and crystallography.

Mechanism & Research

DPC mimics the natural phospholipid bilayer and helps:

  • Solubilize and stabilize membrane proteins
  • Maintain native protein conformation in aqueous solutions
  • Enable high-resolution NMR structure determination

It is essential for studying G-protein coupled receptors (GPCRs), ion channels, and other transmembrane proteins.

API Features

  • High purity (≥99%)
  • Low endotoxin, NMR-grade quality available
  • GMP-like manufacturing conditions

DPC API is a critical tool for biophysical studies, protein formulation, and drug discovery research.

Frequently Asked Questions (FAQ)

Q: What is Dodecyl Phosphocholine (DPC) API used for?

DPC API is a synthetic zwitterionic detergent widely utilized in membrane protein research, structural biology, NMR spectroscopy, and crystallography.

Q: How does DPC assist in membrane protein stabilization?

DPC mimics the natural phospholipid bilayer, allowing it to effectively solubilize and stabilize membrane proteins while maintaining their native conformation in aqueous solutions.

Q: What target proteins can be studied using DPC API?

DPC API is essential for studying complex transmembrane proteins, including G-protein coupled receptors (GPCRs) and ion channels.

Q: What are the key quality features of DPC API?

It offers high purity (≥99%), low endotoxin levels, NMR-grade quality options, and is produced under GMP-like manufacturing conditions.

Q: What research fields benefit most from DPC API?

It serves as a critical tool in biophysical studies, protein formulation research, high-resolution NMR structure determination, and drug discovery.

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