AdvanceBio Peptide Plus 2.1 x 50 mm, 2.7 µm. Reversed-phase HPLC column with superficially porous particle support functionalized with a charged surface C18 column chemistry designed and optimized for challenging peptide separations.
Specifications:
Brand: AdvanceBio Peptide Plus
Guard Column: No
Hardware: SS
Inner Diameter (ID): 2.1 mm
LC Platform: Stainless Steel
Length: 50 mm
Maximum Temperature: 90 °C
Molecular Weight Lower Limit: 0 Da
Molecular Weight Upper Limit: 3000 Da
Particle Size: 2.7 µm
Particle Type: Superficially Porous
Phase: Peptide Plus
Pore Size: 100 Å
Pressure Rating: 600 bar
Separation Mode: Reversed Phase
Shipping Solvent: Acetonitrile
Technique: LC
pH Range: 1-11
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The AdvanceBio Peptide Plus 2.1 x 50 mm, 2.7 µm column is designed for high-performance, reversed-phase peptide mapping and analysis in biopharmaceutical research. It utilizes advanced superficially porous particle technology to deliver exceptional resolution, sensitivity, and reproducibility for peptide separations. This column is ideal for detailed characterization of peptide therapeutics, monoclonal antibodies, and complex protein digests, supporting QC and discovery workflows.
Optimized for fast separations with low backpressure, the column enables efficient analysis even with challenging, hydrophilic, or hydrophobic peptides. Its robust chemistry ensures consistent peak shapes and retention, minimizing carryover for high-throughput laboratories. Common usage scenarios include peptide mapping, impurity profiling, and identification of post-translational modifications.
Compatible with Agilent LC systems, such as the 1290 Infinity II and 1260 Infinity II series, as well as other major UHPLC and HPLC platforms, the column seamlessly integrates into established biomolecule analysis setups. For comprehensive proteomic workflows, it can be paired with AdvanceBio Peptide Mapping and AdvanceBio MS Peptide columns. Quality manufacturing ensures batch-to-batch consistency, making it a reliable choice for regulated and research environments that demand precise peptide analysis.