EP0764047B2

Polymeric microbeads and method of preparation

Abstract

This record has no abstract on file.

EP0764047B2, drawing sheet 1
Sheet 1 of 14

Term

Term ended

Expired 6 June 2015, 11.3 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

48 claims: 23 independent, 25 dependent

  1. 1
    Porous crosslinked polymeric microbeads having cavities joined by interconnecting pores wherein at least some of the cavities at the interior of each microbead communicate with the surface of the microbead, wherein the microbeads have a void volume of at least 70%, and wherein at least 10% of the microbeads are substantially spherical or substantially ellipsoidal or a combination thereof, wherein the bulk density of the microbeads is less than 0.2 gm/ml.
  2. 4
    A process for producing porous, crosslinked polymeric microbeads comprising (a) combining (i) a continuous oil phase comprising (1) a substantially water-insoluble, monofunctional monomer;(2) a substantially water-Insoluble, polyfunctional crosslinking agent;and (3) an emulsifier that is suitable for forming a stable water-in-oil emulsion;and (ii) an aqueous discontinuous phase to form an emulsion, wherein the emulsion comprises at least 70% aqueous discontinuous phase;(b) adding the emulsion to an aqueous suspension medium to form an oil-in-water suspension of dispersed emulsion droplets;and (c) wherein (i) the aqueous suspension medium comprises a suspending agent and a water-soluble polymerization initiator, or wherein (ii) the oil phase comprises an oil-soluble polymerization initiator and a stabilizer, wherein the stabilizer is a film-forming compound to stabilize the interface between the aqueous discontinuous phase and the aqueous suspension medium, to polymerize the emulsion droplets, to produce porous crosslinked polymeric microbeads having cavities joined by interconnecting pores wherein at least some of the cavities at the interior of each microbead communicate with the surface of the microbead, wherein the microbeads have a void volume of at least 70%, and wherein at least 10% of the microbeads are substantially spherical or substantially ellipsoidal or a combination thereof.
  3. 12
    The process of any of Claims 3-10 wherein the oil phase comprises a styrene-based monomer.
  4. 13
    The process of any of Claims 3-10 wherein the monomer is present in the oil phase at a concentration In the range of 5 to 90 weight percent.
  5. 14
    The process of any of Claims 3-10 wherein the oil phase comprises a mixture of monofunctional monomers.
  6. 15
    The process of any of Claims 3-10 wherein the oil phase comprises a crosslinking agent selected from the group consisting of a divinylbenzenic compound, a di- or triacrylic compound, and a triallyl isocyanurate.
  7. 16
    The process of any of Claims 3-10 wherein the crosslinking agent is present in the oil phase at a concentration In the range of 1 to 90 weight percent.
  8. 18
    The process of any of Claims 3-10 wherein the oil phase comprises a mixture of polyfunctional crosslinking agents.
  9. 19
    The process of any of Claims 3-10 wherein the emulsifier comprises an agent selected from the group consisting of a sorbitan fatty acid ester, a polyglycerol fatty acid ester, and a polyoxyethylene fatty acid or ester.
  10. 20
    The process of any of Claims 3-10 wherein the emulsifier is present in the oil phase at a concentration in the range of 3 to 50 weight percent.
  11. 21
    The process of any of Claims 3-6 and 8-10 wherein the water-soluble polymerization initiator is a peroxide initiator.
  12. 22
    The process of any of Claims 3-6 and 8-10 wherein the water-soluble polymerization initiator is present at a concentration of up to 5 weight percent.
  13. 23
    The process of any of Claims 3-5, 7 and 10 wherein the oil-soluble polymerization initiator is selected from the group consisting of an azo initiator and a peroxide initiator.
  14. 25
    The process of any of Claims 3-5, 7 or 10 wherein the oil-soluble polymerization initiator Is present In the oil phase at a concentration of up to 5 weight percent of total polymerizable monomer.
  15. 26
    The process of any of Claims 5-10 wherein the porogen comprises a compound selected from the group consisting of dodecane, toluene, cyclohexanol, n-heptane, isooctane, and petroleum ether.
  16. 27
    The process of any of Claims 5-10 wherein the porogen Is present in the oil phase at a concentration in the range of 10 to 60 weight percent.
  17. 28
    The process of any of Claims 3-10 wherein the oil-in-water suspension comprises an amount of high internal phase emulsion suitable for generating a stable suspension.
  18. 29
    The process of any of Claims 3-6 and 8-10 wherein the suspending agent comprises an agent selected from the group consisting of a water-soluble polymer and a water-insoluble inorganic solid.
  19. 34
    The process of any of Claims 3-10 wherein the suspension is formed by adding the emulsion to the aqueous suspension medium while providing sufficient shear agitation to generate a stable suspension.
  20. 35
    The process of any of Claims 3-5 and 7 wherein the stabilizer comprises a natural or synthetic polymeric stabilizer.
  21. 38
    The process of any of Claims 3-5 and 7 wherein the polymeric stabilizer is present in the oil phase at a concentration in the range of 0.01 to 15 weight percent.
  22. 39
    The process of any of Claims 3.5 and 7 wherein the stabilizer is dissolved in an inert solvent before being added to the oil phase.
  23. 41
    The process of any of Claims 3-10 wherein the emulsion comprises 70% to 98% aqueous discontinuous phase.
Independent claims23