Latex beads,carboxylate-modified polystyrene
diameter 3.0 - 3.9μm,5% w/v
Reagent
Code: #95327
Alias
Polystyrene Microspheres
CAS Number
9003-53-6
blur_circular Chemical Specifications
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Registry Numbers
MDL Number
MFCD00084450
thermostat
Physical Properties
Melting Point
212 °C
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Storage & Handling
Density
1.06 g/mL at 25 °C
Storage
2~8°C
description Product Description
Latex beads, carboxylate-modified polystyrene, are widely used in biomedical research and diagnostics due to their uniform size and surface functionality. They serve as excellent carriers for the immobilization of biomolecules such as antibodies, proteins, and nucleic acids, making them essential in immunoassays, flow cytometry, and cell separation techniques. Their carboxylate groups enable easy conjugation with targeting ligands, enhancing specificity in applications like targeted drug delivery and imaging. Additionally, these beads are utilized in calibration standards for particle size analyzers and as model systems in colloidal science studies. Their biocompatibility and customizable surface properties make them a versatile tool in both research and clinical settings.
format_list_bulleted Product Specification
Test Parameter | Specification |
---|---|
Diameter | 3-3.9 um |
Solid Content | 4.5-5.5% |
Appearance | White suspension |
shopping_cart Available Sizes & Pricing
Latex beads,carboxylate-modified polystyrene
Latex beads, carboxylate-modified polystyrene, are widely used in biomedical research and diagnostics due to their uniform size and surface functionality. They serve as excellent carriers for the immobilization of biomolecules such as antibodies, proteins, and nucleic acids, making them essential in immunoassays, flow cytometry, and cell separation techniques. Their carboxylate groups enable easy conjugation with targeting ligands, enhancing specificity in applications like targeted drug delivery and imaging. Additionally, these beads are utilized in calibration standards for particle size analyzers and as model systems in colloidal science studies. Their biocompatibility and customizable surface properties make them a versatile tool in both research and clinical settings.
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