nanomicronspheres

Introduction to Streptavidin Magnetic Beads

Streptavidin magnetic beads (SA beads for short) refer to magnetic microspheres with specific bioactive substances (streptavidin) modified on their surface.Streptavidin magnetic beads are a type of biological nanomagnetic beads with a surface functional group of streptavidin. They can specifically bind to biotin or biotin labeled molecules, thereby separating biotinylated molecules. The strong binding and multi-level amplification effect […]

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PMMA Microspheres (Polymethyl Methacrylate Microspheres)

PMMA microspheres, also known as methyl methacrylate microspheres, are white powder particles formed by suspension polymerization of MMA (Methyl Methacrylate) monomers. The structural formula shown in Figure 1 is one of the most important and commonly used materials in acrylic esters, and it is also the most excellent and relatively inexpensive material in the synthesis

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Fluorescent Microspheres in Biomedicine

Fluorescent microspheres refer to particles with diameters ranging from nanometers to micrometers (0 Solid particles loaded with fluorescent substances within the range of 01-10 μ m, which can be excited to emit fluorescence by external energy stimulation. Lateral flow assay (LFA) has developed rapidly in recent years, with advantages such as simplicity, speed, independence from large

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Magnetic Microspheres-Magnetic Beads

At present, the application of magnetic microspheres in biomedicine is represented by immunomagnetic microspheres, which have developed rapidly and have already been launched with many successful applications. Magnetic nanomaterials are an important component of magnetic microspheres, therefore the application of magnetic nanoparticles should also be considered. Preparation and Properties of Magnetic Nanomaterials The commonly used magnetic materials

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Polystyrene Microspheres (PS Microspheres)

Latex microspheres, also known as polystyrene microspheres, PS microspheres, etc. Polystyrene microspheres are a general term for polymer microspheres formed by self polymerization of styrene or copolymerization of styrene with other monomers with specific functional groups. The surface of polystyrene microspheres has strong hydrophobicity and can undergo physical adsorption with proteins or antibodies. In addition,

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Latex Microspheres

Latex microspheres are spherical particles in the colloidal size range, formed by amorphous polymers such as polystyrene. The particle size of latex microspheres is usually between 1 micron and 100 microns, but can also be customized as needed. The surface of latex microspheres can be chemically modified to change its surface properties, such as surface

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Silica Microspheres-Microspheres Supplier in China

Silica microspheres are an important material, which is a hydrophilic milky white suspension. The silicon hydroxyl groups on the surface can covalently bond with other groups. It has stable physical and chemical properties, can withstand high temperatures up to 1000℃, and remains stable in organic solvents, but can dissolve in strong alkaline or HF solutions

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Microspheres Overview

Microspheres, as the name suggests, are small spherical particles in the micrometer range (1-1000 microns). They have various applications in medicine and life sciences, such as drug delivery, tissue engineering, biosensors, medical imaging, etc. 01Classification It can be classified according to their composition, structure, and function. Some common types include: Polymer Microspheres: They are made

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The Application of Chemiluminescent Magnetic Beads

Chemiluminescent magnetic beads are a type of sandwich structure magnetic beads that contain a porous polymer core, which is coated with special polymer materials to obtain specific surface properties. Magnetic materials are filled in the gaps between the two, which can enable the microspheres to achieve greater buoyancy and uniform particle size; At the same

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Magnetic Microspheres for Nucleic Acid Extraction

Specially designed for nucleic acid extraction and purification, with surface modification of a large number of silanol groups (silanol groups), it can undergo specific binding with nucleic acids in solution under high salt and low pH conditions through hydrophobic, hydrogen bonding, and electrostatic interactions, without binding with other impurities (such as proteins), quickly separating nucleic

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