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Optimizing SEC Column Selection for Accurate Biologic Characterization
Accurate size-exclusion chromatography (SEC) relies on selecting the appropriate pore size to ensure precise molecular weight characterization across diverse biomolecules. This flyer highlights comparative data generated using Biozen dSEC columns with 90 Å, 200 Å, and 700 Å pore sizes, demonstrating broad molecular weight coverage from proteins to long DNA and RNA fragments. Results illustrate how optimized pore architectures enable consistent, high-resolution separations while maintaining excellent recovery and minimal secondary interactions. Together, the Biozen dSEC chemistries provide a unified, flexible platform for reliable characterization of biologics and nucleic acids across low- to high-molecular-weight ranges.

Optimizing SEC Column Selection for Accurate Biologic Characterization

Accurate size-exclusion chromatography (SEC) relies on selecting the appropriate pore size to ensure precise molecular weight characterization across diverse biomolecules. This flyer highlights comparative data generated using Biozen dSEC columns with 90 Å, 200 Å, and 700 Å pore sizes, demonstrating broad molecular weight coverage from proteins to long DNA and RNA fragments. Results illustrate how optimized pore architectures enable consistent, high-resolution separations while maintaining excellent recovery and minimal secondary interactions. Together, the Biozen dSEC chemistries provide a unified, flexible platform for reliable characterization of biologics and nucleic acids across low- to high-molecular-weight ranges.
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Document Type:
Poster
Target Industries:
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Separation Modes:
Size Exclusion

Optimizing SEC Column Selection for Accurate Biologic Characterization

Accurate size-exclusion chromatography (SEC) relies on selecting the appropriate pore size to ensure precise molecular weight characterization across diverse biomolecules. This flyer highlights comparative data generated using Biozen dSEC columns with 90 Å, 200 Å, and 700 Å pore sizes, demonstrating broad molecular weight coverage from proteins to long DNA and RNA fragments. Results illustrate how optimized pore architectures enable consistent, high-resolution separations while maintaining excellent recovery and minimal secondary interactions. Together, the Biozen dSEC chemistries provide a unified, flexible platform for reliable characterization of biologics and nucleic acids across low- to high-molecular-weight ranges.

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