Magnetically responsive fluorescent polymer particles

5395688
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Inventors

Wang, Chao-Huei J.
Shah, Dinesh Q.

Application #

114299

Filed

Aug-30-1993

Published

Mar-7-1995

Current US Class

252/301.35
252/62.51R
252/62.54
252/62.56
428/323
428/327
428/329
428/337
428/403
428/407
436/526
523/201
523/204
523/206
525/902

International Classes

B32B 005/16; G01N 033/553

Field of Search

428/323 428/327 428/329 428/337 428/403 428/407 436/526 523/201 523/204 523/206 252/62.54 252/62.56 252/62.51 252/301.25 525/902

Assignee

Baxter Diagnostics Inc. (Deerfield, IL)

Examiners

Nakarani; D. S.

Attorney, Agent or Firm

Barta; Kent, Tymeson; Cynthia

US Patent References

4177253   Magnetic particles...
4490436   Polymer filler parti...
4774265   Process for prepari...
4795698   Magnetic-polymer...
4948739   Compact polymer/...

Referenced by:

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Citation

Cite This Patent

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Abstract
This invention provides a novel process of producing magnetically responsive fluorescent polymer particles comprising polymeric core particles coated evenly with a layer of polymer containing magnetically responsive metal oxide. A wide variety of polymeric particles with sizes ranging from 1 to 100 microns can be used a core particles and transformed into magnetically responsive polymer particles. The surface of these magnetically responsive polymer particles can be coated further with another layer of functionalized polymer. These magnetically responsive fluorescent polymer particles can be used for passive or covalent coupling of biological material such as antigens, antibodies, enzymes or DNA/RNA hybridization and used as solid phase for various types of immunoassays, DNA/RNA hybridization probes assays, affinity purification, cell separation and other medical, diagnostic, and industrial applications.
 
Claims
What is claimed is:

1. Monodispersed fluorescent magnetic particles having an average diameter from about 1 micron to about 100 microns, a uniform size distribution and magnetic content, comprising an inner fluorescent core polymer particle able to adsorb a monomer, and a coating on said inner fluorescent core polymer particle wherein said coating evenly covers said inner fluorescent core polymer particle, said coating comprising magnetic metal oxide particles of about 1 micron or less in diameter and selected from the group consisting of supermagnetic, paramagnetic and ferromagnetic metal oxide particles and a polymer, wherein said polymer is prepared from monomers which are adsorbable by the inner fluorescent core polymer particle.



Description
FIELD OF THE INVENTION

This invention relates to magnetically responsive fluorescent polymer particles.

BACKGROUND OF THE INVENTION

Many biological techniques, such as immunoassays, affinity purification etc., require the separation of bound from free fractions. Magnetic particles have been used to facilitate the desired separation.

Magnetic particles have been formed from a variety of particulate and magnetic matter, using a variety of processes, having different characteristics. For example, Ikeda et al. U.S. Pat. No. 4,582,622, discloses a magnetic particle comprised of gelatin, water-soluble polysaccharide, sodium phosphate and ferromagnetic substances; U.S. Pat. Nos. 4,628,037 and 4,554,088 disclose magnetic particles comprised of a magnetic metal oxide core surrounded by a coat of polymeric silane; U.S. Pat. No. 4,452,773 discloses discrete colloidal sized particles having a core of ferromagnetic iron oxide (Fe.sub.3 O.sub.4) which is coated with a water-soluble polysaccharide or a derivative thereof having functional groups; and Mansfield U.S. Pat. No. 4,297,337 discloses magnetic glass- or crystal-containing material as a particulate carrier.