NittoPhase™ SL

NittoPhase™ SL

Now available, the NittoPhase™ SL has arrived to usher in the next generation of solid support for short-mer and ligation workflows. With higher loading and higher yield than ever before, NittoPhase™ SL allows for 650 umol/g linker loading density and produces higher yields than previous entries in the NittoPhase™ product family.

Highly optimized for short-mer synthesis and built to scale, NittoPhase™ SL has shown itself to be conducive towards reduction in total cost of API manufacturing via Ligation. Contact us today to get more information about this exciting new product.

Higher Loading, Higher Yield

Scalable across increased packing densities, and applicable for short-mer and enzymatic ligation technology.
Up to 650 umol/g linker loading density
Up to 2x higher yields over current NittoPhase™ HL
Highly optimized for short-mer synthesis and enzymatic ligation
Demonstrated scalability across increased column packing densities

NPHL vs. NPSL

Yield and Crude Purity Across Loading and Column Packing Density

Conditions: Inclisiran Antisense 10-mer | ÄKTA OligoPilot™ 100 | 25.1 mL Column*

Bar labels
  • (A) NPHL 354 µmol/g 0.109 g/mL (Control)
  • (B) NPSL 547 µmol/g 0.109 g/mL
  • (C) NPSL 561 µmol/g 0.109 g/mL
  • (D) NPSL 547 µmol/g 0.120 g/mL
  • (E) NPSL 620 µmol/g 0.120 g/mL
  • (F) NPSL 600 µmol/g 0.130 g/mL
Condition 2^OMeA(bz) Loading Density (µmol/g) Column Packing Density (g/mL) Crude Purity (%) OD260 Yield (Total / FLP) Yield vs NPHL (Total / FLP)
NPHL (Control) 354 0.109 93.2 89,523 / 83,431 1.00x / 1.00x
NPSL 547 0.109 91.9 138,964 / 127,666 1.55x / 1.53x
561 0.109 92.5 141,535 / 130,920 1.58x / 1.57x
547 0.12 93.2 153,132 / 142,701 1.71x / 1.71x
620 0.12 92.8 173,254 / 160,844 1.94x / 1.93x
600 0.13 91.9 186,265 / 171,214 2.08x / 2.05x

*Yield benchmark is based on Inclisiran Antisense 10-mer synthesis using 2^OMeA(bz) loaded supports and is relative to NPHL loaded at 350 umol/g under comparable synthesis and analytical conditions. Actual yield performance may vary by application and depends on ligand loading clarity, ligand molecular weight and proper conditions.

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