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MaXtar MMC Multimodal Chromatography Resins, MaXtar MMC, 5 L, 1061-1825 (CAT#: STEM-C-2047-ZJF)

Highlights

High Dynamic Binding Capacity: Multimodal chromatography maintains high dynamic binding capacity even in high conductivity environments, eliminating the need to replace buffers and ensuring higher yields with reduced costs.
Excellent Rigidity: The improved MaXtar® matrix provides superior structural integrity, allowing for higher process flow rates under low back pressure and improving process efficiency.
Enhanced Binding Capacity: Improved ligand conjugation method increases the dynamic binding capacity of the chromatography resin.

Cat Number: STEM-C-2047-ZJF

Application: Facilitates the separation and purification of samples after high-salt elution or high-salt pretreatment

Model: 1061-1825

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Description

MaXtar® MMC/MMC HR is a series of multimodal chromatography resins based on an improved agarose matrix. Unlike traditional ion exchange chromatography resins, MaXtar® MMC is composed of multiple groups with different properties: carboxyl groups, hydrogen bonds, and hydrophobic groups. These resins can bind to positively charged biomolecules in high conductivity environments, making them ideal for the separation and purification of samples after high-salt elution or high-salt pretreatment. MaXtar® MMC HR offers higher resolution than MaXtar® MMC.

Specification

Product: MaXtar® MMC
Feature: Under high-salt conditions: Strong binding force, High binding capacity
Mean particle size: 75 μm
Max. back pressure: 0.5 MPa
Max. flow velocity: 600 cm/h
Quantity: 5 L

Features

High Dynamic Binding Capacity: Multimodal chromatography maintains high dynamic binding capacity even in high conductivity environments, eliminating the need to replace buffers and ensuring higher yields with reduced costs.
Excellent Rigidity: The improved MaXtar® matrix provides superior structural integrity, allowing for higher process flow rates under low back pressure and improving process efficiency.
Enhanced Binding Capacity: Improved ligand conjugation method increases the dynamic binding capacity of the chromatography resin.

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