CEM Rink Amide ProTide Resin features an optimized PEG and polystyrene core with Cl-TCP(Cl) and Cl-MPA universal linkers, creating an ideal environment for the synthesis of difficult peptides with excellent swelling properties. This resin enables fast, efficient loading of any C-terminal amino acid in just 10 minutes using automated microwave-assisted methods, eliminating the need for multiple pre-loaded resins.
Product Features
- Optimized PEG resin core with Cl-TCP(Cl) and Cl-MPA universal linkers
- Enables synthesis of difficult peptides with excellent swelling properties
- Automated, high-temperature loading procedure completed in 10 min (room temperature loading takes up to 24 hours)
- Avoids coupling reagents, minimizing epimerization and dipeptide formation during loading
- Eliminates the need to buy/store > 20 different pre-loaded acid-linked resins
- Exhibits strong stability towards hydrolysis during storage and handling
- TCP(Cl) is hyperacid sensitive, producing protected peptides with 1% TFA/DCM and further minimizing diketopiperazine and 3-(1-piperidinyl)alanine formation
- Compatible with Liberty Blue microwave peptide synthesizer and pre-programmed software methods
- Recommended for synthesis of peptides with amide linkages < 30 amino acids
- Loading capacity: 0.6 – 0.8 mmol/g
Key Advantages
- Fast, automated amino acid loading in 10 minutes
- Reduces chemical waste and avoids common side reactions
- Stable and reliable for storage and handling
- Supports high-efficiency peptide synthesis with minimal complications
Benefits
- Accelerates peptide synthesis workflow with rapid loading
- Minimizes errors and side reactions for higher yield and purity
- Reduces need for multiple pre-loaded resins, saving time and storage space
- Highly stable and versatile for various peptide synthesis protocols
Why Choose CEM Rink Amide ProTide Resin, 100g?
This resin provides a highly efficient, versatile solution for peptide synthesis, offering exceptional swelling properties, rapid automated loading, and reliable stability for laboratory and research applications.
