Today,our product portfolio SPMM is very large in terms of size,surface and ferrite content. Our SPMM provide powerful tools that help our customers in their success. Our Magnetic Microspheres have the appearance of a dark brown liquid.
The Magnetic Microspheres are, in fact, superparamagnetic materials. The magnetization of the microspheres increases with the applied magnetic field and falls back to zero when the field is removed. Neither hysteresis nor residual magnetization is observed and that has for the user two very pratical advantages:
When the filed is removed, the microspheres demagnetize and redisperse easily. This property allows efficient washing steps, low background and good reproducibility.
The behaviour of the microspheres is always the same whatever he magnetization cycles may be. Such behaviour is a key point or automated ent.
Regular SuperParamagnetic Microspheres
This kind of microspheres, also called "Classical", are super-paramagnetic material, colloidally stable in the absence of amagnetic field. Exposed to a magnetic field, a total separation of the microspheres is achieved rapidly and completely. The iron oxide material is uniformly distributed in the polystyrene matrix. Our magnetic microspheres are currently used in various immunoassays including those running on automated immuno-analysers. They are also widely used in many biotechnological applications such as cell separation, nucleic acid purification or bacterial capture. Covalent coupling on the carboxyl or amino groups as well as passive adsorption can be carried out easily.
The main applications for Magnetic Microspheres are the following:
Cell Separation, Protein Purification, Immuno- Precipitation, Bacteria Detection,
Immuno-chromatographic Assays,
BioSensors and BioChips
The main benefits of our Classical "M" microspheres are:
High Binding Capacity,
Fast magnetic response time,
Good colloidal stability
Fast recovery of dispersion after attraction.
Small SuperParamagnetic Microspheres
The Small COOH-Modified SPMM represent powerful solid phase for either automated or manual detection systems. Due to their small size, Microspheres from 300 to 500nm offer a very large specific surface area. This is a key point for developing an ultra-sensitive Immuno-Assay or for improving cell separation.
Our Small COOH-Modified SPMM have shown exceptional properties in cell separation (cell-Microspheres complexes are directly analyzed on a Scan Cytometer, with no release of the Microspheres), in Immuno-Assays and in Qualitative and Quantitative Lateral Flow Assays.
Standard Carboxyl-Modified ParaMagnetic Microspheres (-COOH)
Code
Product
Diameter (µm)
Ferrite %
Polymer
MM-001
M1-130/12
0,700-1,300
10-15
Polystyrene
MM-002
M1-180/12
0,900-1,300
10-15
Polystyrene
MM-003
M1-180/20
0,800-1,200
16-25
Divinylbenzene§
MM-004
M1-050/20
0,500-0,700
16-25
Polystyrene
MM-005
M1-070/40
0,700-1,300
35-45
Polystyrene
MM-006
M1-070/60
0,700-1,300
55-65
Polystyrene
*Cross-linked styrene-divinylbenzene copolymer microspheres are easily redispersible in an organic solvent such as toluene, xylene, chlorobenzene, dichloroethane, methylene chloride and alcohols.
Standard Amino-Modified ParaMagnetic Microspheres (-NH 2 )
Code
Product
Diameter (µm)
Ferrite %
Polymer
MM-007
M2-070/40
1,0-2,0
35-45
Polystyrene
MM-008
M2-070/60
1,0-2,0
55-65
Polystyrene
Small Carboxyl-Modified Paramagnetic Microspheres (-COOH)
Code
Product
Diameter (µm)
Ferrite %
Polymer
MM-009
M1-030/40
0,300-0,500
30-60
Polystyrene
Large Monosized Carboxyl-Modified ParaMagnetic Microspheres (-COOH)