Claims
- 1. A dental adhesive composition comprising from about 5 to about 80 percent by weight of an adhesive component and from about 20 to about 95 percent by weight of an activator component; said adhesive component comprising at least about 35 percent by weight of a solvent component, at least about 5 percent by weight of one or more polymerizable (meth)acrylate compounds, an effective amount of a polymerization initiator and optionally a filler component.
- 2. A composition as in claim 1, wherein said polymerizable (meth)acrylate compound is substantially soluble in said solvent component.
- 3. A composition as in claim 1, wherein said solvent component is selected from the group consisting of ethanol, methanol, isopropanol, dimethyl ketone, ethylmethyl ketone, water, and mixtures thereof.
- 4. A composition as in claim 1, wherein said more polymerizable (meth)acrylate compounds are selected from the group consisting of monomers having a solubility in water of less than about 5%.
- 5. A composition as in claim 1, wherein said more polymerizable (meth)acrylate compounds are selected from the group consisting of multifunctional polymerizable compounds having at least three (meth)acrylate moieties and a phosphate moiety.
- 6. A composition as in claim 1, wherein said more polymerizable (meth)acrylate compounds are selected from the group consisting of surface active monomers having acid functional groups and containing (meth)acrylates.
- 7. A composition as in claim 6, wherein said acid functional group is selected from the group consisting of maleic acid, phosphonic acid, carboxylic acid, sulfonic acid, and mixtures thereof.
- 8. A composition as in claim 1, wherein said more polymerizable (meth)acrylate compounds are selected from the group consisting of diethylene glycol dimethacrylate; triethylene glycol dimethacrylate; tetraethyleneglycol dimethacrylate; glycerol-1,2-dimethacrylate; glycerol-1,3-dimethacrylate; the reaction product of butanediol diglycidyl ester and methacrylic acid; tetrahydrofurfural methacrylate; methacryloxyethyl maleic ester; methacryloxyethyl succinate; urethane dimethacrylate; Bis-GMA; trimethylolpropane tri(meth)acrylate; ethoxylated bisphenol-A dimethacrylate; bisphenol-A dimethacrylate; and, mixtures thereof.
- 9. A composition as in claim 1, wherein said polymerizable (meth)acrylate compound is urethane diemthacrylate resin.
- 10. A composition as in claim 1, wherein said filler is selected from the group consisting of silanated inorganic silica; a sol-gel inorganic/organic nano-scale composite.; and, a prepolymerized organic filler.
- 11. A composition as in claim 1, further comprising a fluoride release agent.
- 12. A composition as in claim 1, further comprising a cure additive selected from the group consisting of self-cure and light cure additives and mixtures thereof, such that said additive promotes cure interactions between the composition and a restorative material.
- 13. A composition as in claim 1, wherein said activator component comprises from about 0.1 to about 10 percent by weight of an aromatic sulfinate salt and from about 90 to about 99.9 percent by weight of an activator component solvent.
- 14. A composition as in claim 13, wherein said activator component solvents is selected from the group consisting of acetone, ethanol, water, dimethyl sulfoxide (DMSO), methylene chloride, chloroform, and mixtures thereof.
- 15. A composition as in claim 13, wherein said aromatic sulfinate salt has the structure
- 16. A composition as in claim 15, wherein said aromatic sulfinate salt has a hydrogen or a methyl group in the para-position.
- 17. A composition as in claim 15, wherein M is selected from the group consisting of sodium, calcium, potassium, ammonium and lithium.
- 18. A composition as in claim 15, wherein said aromatic sulfinate salt is para-toluene sodium sulfinate, para-toluene lithium sulfinate, benzene sodium sulfinate, benzene lithium sulfinate or mixtures thereof.
- 19. A composition as in claim 1, wherein said initiator is a photoinitiator.
- 20. A composition as in claim 19, wherein said photoinitiator is selected from the group consisting of camphorquinone, diaryliodium metal complex salts, chromophore-substituted halomethyl-s-triazines, phosphine oxide, halomethyl oxadiazoles, and mixtures thereof.
- 21. A dental adhesive composition comprising a substantially homogeneous mixture of one or more polymerizable (meth)acrylate compounds and an effective amount of a photoinitiator and optionally one or more fillers.
- 22. A method according to the invention, for adhering a non-amalgam dental restorative to a dental surface, comprises the steps of:
(a) preparing the dental surface for restoration; (b) optionally etching the surface with an acid; (c) applying an adhesive component and an activator component to the prepared surface, thereby forming a coated dental surface; and, (d) applying a non-amalgam dental restorative to the coated dental surface.
- 23. A method as in claim 22, wherein said mixture comprises from about 5 to about 80 percent by weight of an adhesive component and from about 20 to about 95 percent by weight of an activator component; said adhesive component comprising at least about 35 percent by weight of a solvent component, at least about 5 percent by weight of one or more polymerizable (meth)acrylate compounds, an effective amount of a polymerization initiator, and optionally a filler component.
- 24. A method as in claim 22, wherein said mixture a substantially homogeneous mixture of one or more polymerizable (meth)acrylate compounds and an effective amount of a photoinitiator and optionally one or more fillers.
- 25. A method as in claim 22, wherein said polymerizable (meth)acrylate compound is substantially soluble or substantially homogeneously dispersed in said solvent component.
- 26. A method as in claim 22, wherein said solvent component is selected from the group consisting of ethanol, methanol, isopropanol, dimethyl ketone, ethylmethyl ketone, water, and mixtures thereof.
- 27. A method as in claim 22, wherein said more polymerizable (meth)acrylate compounds are selected from the group consisting of monomers having a solubility in water of less than about 5%.
- 28. A method as in claim 22, wherein said more polymerizable (meth)acrylate compounds are selected from the group consisting of multifunctional polymerizable compounds having at least three (meth)acrylate moieties and a phosphate moiety.
- 29. A method as in claim 22, wherein said more polymerizable (meth)acrylate compounds are selected from the group consisting of surface active monomers having acid functional groups and containing (meth)acrylates.
- 30. A method as in claim 22, wherein said more polymerizable (meth)acrylate compounds are selected from the group consisting of diethylene glycol dimethacrylate; triethylene glycol dimethacrylate; tetraethyleneglycol dimethacrylate; glycerol-1,2-dimethacrylate; glycerol-1,3-dimethacrylate; the reaction product of butanediol diglycidyl ester and methacrylic acid; tetrahydrofurfural methacrylate; methacryloxyethyl maleic ester; methacryloxyethyl succinate; urethane dimethacrylate; Bis-GMA; trimethylolpropane tri(meth)acrylate; ethoxylated bisphenol-A dimethacrylate; bisphenol-A dimethacrylate; and, mixtures thereof.
- 31. A method as in claim 22, wherein said activator component comprises from about 0.1 to about 10 percent by weight of an aromatic sulfinate salt and from about 90 to about 99.9 percent by weight of an activator component solvent.
- 32. A method as in claim 31, wherein said activator component solvent is selected from the group consisting of acetone, ethanol, water, dimethyl sulfoxide (DMSO), methylene chloride, chloroform, and mixtures thereof.
- 33. A method as in claim 31, wherein said aromatic sulfinate salt has the structure
- 34. A method as in claim 33, wherein said aromatic sulfinate salt has a hydrogen or a methyl group in the para-position.
- 35. A method as in claim 33, wherein M is selected from the group consisting of sodium, calcium, ammonium, potassium and lithium.
- 36. A method as in claim 33, wherein said aromatic sulfinate salt is para-toluene sodium sulfinate, para-toluene lithium sulfinate, benzene sodium sulfinate, benzene lithium sulfinate or mixtures thereof.
- 37. A method as in claim 22, wherein said initiator is a photoinitiator.
- 38. A method as in claim 37, wherein said photoinitiator is selected from the group consisting of camphorquinone, diaryliodium metal complex salts, chromophore-substituted halomethyl-s-triazines, α-carbonyl phophineoxide, halomethyl oxadiazoles, and mixtures thereof.
- 39. A method as in claim 22, wherein said step (c) includes applying a mixture of said adhesive component and said activator component.
- 40. A method as in claim 22, wherein said step (c) includes sequentially applying said adhesive component and then applying said activator component.
- 41. A method according to the invention for adhering an amalgam dental restorative to a dental surface, comprises the steps of:
(a) preparing the surface for restoration; (b) optionally etching the surface with an acid; (c) applying a mixture of an adhesive component and an activator component to the prepared surface, thereby forming a coated dental surface; (d) optionally applying a chemically curable dental adhesive to said coated dental surface, wherein the chemically curable adhesive includes an oxidizing agent and a reducing agent; and, (e) applying an amalgam dental restorative to the coated dental surface.
RELATED APPLICATION
[0001] This application is a continuation-in-part of pending U.S. Ser. No. 09/107,913.
Continuations (1)
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Number |
Date |
Country |
Parent |
09632065 |
Aug 2000 |
US |
Child |
10117252 |
Apr 2002 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09107913 |
Jun 1998 |
US |
Child |
09632065 |
Aug 2000 |
US |