DENTAL MATERIAL COMPOSITION FOR FORMING MINERAL APATITE BONDS AND CARIES PREVENTION
The present invention provides compositions of bioactive dental materials that form a mineral apatite bond between the dental material and tooth structure for increasing bond strength and longevity. Also disclosed are methods for using said compositions in treating teeth.
1 . A bioactive dental material comprising:
a plurality of polymerizable organic compounds;
a source of biologically active ions;
a photoinitiator; and
a co-initiator,
wherein:
the source of biologically active ions is configured to release an ion selected from calcium, phosphate, fluoride, and combinations thereof upon contacting water;
the dental material is configured to form a mineral apatite layer between the dental material and a tooth structure, wherein the mineral apatite layer comprises the ion released from the source of biologically active ions; and
the dental material comprises less than about 5% water.
2 . (canceled)
3 . The dental material of claim 1 , wherein the dental material is a single-bottle universal dental adhesive.
4 - 6 . (canceled)
7 . The dental material of claim 1 , wherein the dental material is a single-bottle universal dental adhesive, and wherein the bioactive glass comprises calcium sodium phosphosilicate.
8 . (canceled)
9 . The dental material of claim 1 , wherein the source of biologically active ions further comprises one or more additional sources selected from calcium hydroxide, calcium carbonate, calcium citrate, monocalcium phosphate, dicalcium phosphate, tricalcium phosphate, hydroxyapatite, a calcium barium aluminum fluorosilicate glass, a calcium fluorosilicate glass, a calcium silicate, sodium fluoride, sodium monofluorophosphate, ytterbium(III) fluoride, a sulfonate-containing monomer reacted with calcium, a phosphate-containing monomer reacted with calcium, a carboxylate-containing monomer reacted with calcium, a polymerizable monomer having a carboxylate, a sulfonate, or a phosphonate functional group reacted with calcium, and combinations thereof.
10 - 11 . (canceled)
12 . The dental material of any claim 1 , wherein the source of biologically active ions is selected from the group consisting of calcium sodium phosphosilicate, calcium hydroxide, calcium carbonate, calcium citrate, monocalcium phosphate, dicalcium phosphate, tricalcium phosphate, hydroxyapatite, a calcium barium aluminum fluorosilicate glass, a calcium fluorosilicate glass, a calcium silicate, sodium monofluorophosphate, ytterbium(III) fluoride, sodium fluoride, a sulfonate-containing monomer reacted with calcium, a phosphate-containing monomer reacted with calcium, a carboxylate-containing monomer reacted with calcium, a polymerizable monomer having a carboxylate, a sulfonate, or a phosphonate functional group reacted with calcium, and combinations thereof.
13 - 15 . (canceled)
16 . The dental material of claim 1 , wherein the dental material produces a shear bond strength of greater than about 40 MPa when bonded to dentin.
17 . The dental material of claim 1 , wherein the dental material produces a shear bond strength of greater than about 30 MPa when bonded to dentin.
18 . The dental material of claim 1 , wherein the source of biologically active ions releases greater than about 2 ppm calcium, greater than about 100 ppm phosphate, and greater than about 100 ppm fluoride after being in contact with deionized water at about 37° C. for a period of about seven days.
19 . The dental material of claim 1 , wherein the dental material provides an anticaries effect.
20 . (canceled)
21 . A bioactive dental material comprising:
a plurality of polymerizable organic compounds;
a bioactive glass comprising calcium sodium phosphosilicate;
a secondary source of biologically active ions;
a photoinitiator; and
a co-initiator,
wherein:
the bioactive glass is configured to release an ion selected from calcium, phosphate, fluoride, and combinations thereof upon contacting water; and
the dental material is configured to form a mineral apatite layer between the dental material and a tooth structure, wherein the mineral apatite layer comprises the ion released from the bioactive glass.
22 . (canceled)
23 . The dental material of claim 21 , wherein the dental material is a single-bottle universal dental adhesive.
24 - 25 . (canceled)
26 . The dental material of claim 21 , wherein the dental material is a single-bottle universal dental adhesive, and wherein the bioactive glass is Bioglass 45S5.
27 . The dental material of claim 21 , wherein the secondary source of biologically active ions is selected from the group consisting of calcium hydroxide, calcium carbonate, calcium citrate, monocalcium phosphate, dicalcium phosphate, tricalcium phosphate, hydroxyapatite, a calcium barium aluminum fluorosilicate glass, a calcium fluorosilicate glass, a calcium silicate, sodium monofluorophosphate, ytterbium(III) fluoride, sodium fluoride, a sulfonate-containing monomer reacted with calcium, a phosphate-containing monomer reacted with calcium, a carboxylate-containing monomer reacted with calcium, a polymerizable monomer having a carboxylate, a sulfonate, or a phosphonate functional group reacted with calcium, and combinations thereof.
28 . The dental material of claim 21 , wherein the secondary source of biologically active ions comprises sodium monofluorophosphate.
29 . The dental material of claim 21 , further comprising a solvent, wherein the solvent is selected from acetone, ethanol, water, and mixtures thereof.
30 - 31 . (canceled)
32 . The dental material of claim 21 , wherein the dental material comprises less than about 5% water.
33 . (canceled)
34 . The dental material of claim 21 , wherein the dental material forms the mineral apatite layer within a period of about three days following an application of the dental material to the tooth structure.
35 . A method of treating a tooth comprising:
applying an etching composition comprising an etchant to the tooth to produce an etched dentin surface;
applying an adhesive composition comprising a resin-based adhesive to the etched dentin surface to produce an etched adhesive surface; and
applying a restorative composite material comprising a resin-based composite to the etched adhesive surface;
wherein:
the adhesive composition or the restorative composite material comprises a source of biologically active ions configured to release a biologically active ion selected from calcium, phosphate, fluoride, and combinations thereof upon contacting water; and
the biologically active ion forms a mineral apatite layer between the adhesive composition or the restorative composite material and a tooth structure.
36 . The method of claim 35 , wherein the etching composition and adhesive composition are applied simultaneously as a single-bottle universal adhesive composition.
37 - 40 . (canceled)
41 . The method of claim 35 , wherein the source of biologically active ions comprises a reaction product between a functionally active monomer and calcium.
42 - 43 . (canceled)