Poresyn Solutions - Reverse Co-Polymer Coated CPG Supplier

3-6x loading capacity than conventional CPG and high purity performance to lown down your downstream purity cost. 

Engineered for Long-Chain Oligonucleotide Synthesis

Our new architecture co-polymer coated cpg is designed for oligonucleotide synthesis, especially for ASO or SIRNA, this hybrid CPG solid support inherit the long-chain synthesis capability for oligonucleotide that it enables us to efficiently synthesis bases length ranging from tens to hundreds to even thousands.

Outstanding Loading Capacity

This thin layer of PS makes it easy to increase the load capacity of our hybird solid support, doubling it without compromising the ability to synthesize long-chain bases. This is made possible by the high load characteristics of polystyrene.

Advantages of Our Hybird CPG Solid Support

Poresyn Solutions’  new architecture co-polymer coated CPG is combining polystyrene resin and traditional controlled pore glass solid support, by applying the thin resin coating onto surface of CPG, we get excellent performance with loading capacity and purity and long-chain oligonucleotide synthesis capability. 

 

Main advantages of our hybrid CPG solid support:

  1. High load capacity: 3-6x loading capacity than traditional CPG solid support. 
  2. Anti-corrosion: iner to chemical reagents and solvents during synthesis and subsequents treatments. 
  3. Non-swelling properties: preventing the swelling of resin during chemical reaction. 
  4. Long-chain bases synthesis: supporting medium to extra long chain bases synthesis. 

Our Reverse Modified Co-Polymer Coated CPG Solid Support

Following are the main types of reverse co-polymer coated CPG we supply:

3'dmt dt cpg co-polymer

3'DMT dt Co-Polymer Coated CPG

3'dmt da(bz) cpg co-polymer

3'DMT dA(Bz) Co-Polymer Coated CPG

3'dmt dc(bz) cpg co-polymer

3'DMT dc(bz)Co-Polymer Coated CPG

Higher oligonucleotide product output purity

The polystyrene-coated CPG makes our solid support resistant to chemical reagents and solvents that would normally melt impurities like glass particles into the nucleotide molecule, improving the quality of the oligo products and significantly lowering the downstream purity cost. 

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