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UniHAM-50S, 1L Ion Exchange Resins (CAT#: STEM-C-3309-ZJF)

Highlights

Designed for Ion Exchange Purification: Specifically developed for the purification of small proteins, peptides, oligonucleotides, and small molecule APIs such as antibiotics.
High Crosslinking and Uniform Particle Size: Supports are made of highly crosslinked polymethacrylate beads with uniform particle size for efficient separation.
Enhanced Hydrophilicity and Low Non-Specific Adsorption: Polyhydroxyl surface modification enables excellent hydrophilicity and reduces non-specific adsorption.

Cat Number: STEM-C-3309-ZJF

Application: For separation, purification, and analysis of biomolecules, peptides, proteins, and other compounds in research and biomanufacturing.

Model: UniHAM-50S 1L

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Description

UniHAM-50S and UniHCM-50S are part of a specialized ion exchange resin series designed for the purification of small proteins, peptides, oligonucleotides, and small molecule APIs such as antibiotics. These resins feature highly crosslinked polymethacrylate beads with uniform particle sizes. Advanced polyhydroxyl surface modification chemistry imparts excellent hydrophilicity and minimizes non-specific adsorption. With smaller pore sizes, these resins are ideally suited for ion exchange purification of small biomolecules, including insulins, peptides, and oligonucleotides, ensuring efficient and high-performance separation.

Specification

Matrix: PMMA
Particle Size: 60 μm
Maximum Pressure: 0.5 MPa
Clean In Place: 0.5 M NaOH
Recommended Flow Velocity: 150-750 cm/h
pH Stability: 2-12
Chemical Stability: Stable in commonly used buffers, 1 M HAc, 1 M NaOH, 1 M HCl, 70% ethanol, 30% isopropyl alcohol, 30% acetonitrile, 1% SDS, 6 M guanidine hydrochloride, 8 M urea, etc. Avoid long-term exposure to strong oxidant.
Operational Temperature: 4-30 ℃
Storage: 20% Ethanol, 4-25 ℃

Features

Designed for Ion Exchange Purification: Specifically developed for the purification of small proteins, peptides, oligonucleotides, and small molecule APIs such as antibiotics.
High Crosslinking and Uniform Particle Size: Supports are made of highly crosslinked polymethacrylate beads with uniform particle size for efficient separation.
Enhanced Hydrophilicity and Low Non-Specific Adsorption: Polyhydroxyl surface modification enables excellent hydrophilicity and reduces non-specific adsorption.
Optimized for Small Biomolecules: Smaller pore size makes it ideal for the IEX purification of small biomolecules like insulins, peptides, and oligonucleotides.

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