Scalloped dental trays for use in treating teeth with sticky...

Dentistry – Apparatus – Having static product shaping surface

Reexamination Certificate

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C433S037000, C433S034000, C433S025000, C433S215000, C433S216000

Reexamination Certificate

active

06183251

ABSTRACT:

BACKGROUND
1. The Field of the Invention
The present invention relates to sustained release dental compositions and methods for treating teeth surfaces. More particularly, the present invention is directed to high viscosity sustained release dental compositions, such as tooth bleaching compositions, used in combination with a dental tray having reservoirs for holding the dental composition located adjacent the teeth surfaces to be treated.
2. The Relevant Technology
Virtually all people desire white or whiter teeth. To achieve this goal, people either have veneers placed over their teeth or have their teeth chemically bleached. In the past, patients who desired to have their teeth bleached had to submit to conventional in-office bleaching techniques. This usually involved carefully placing a hydrogen peroxide solution (typically 30% H
2
O
2
) on the teeth, protecting the sensitive soft tissues with a ligated rubber dam, and applying heat or light to the solution. Such treatments typically last 30 minutes to 1 hour with from 4 to 10 appointments being necessary for a significant change. Only the labial surface of the 6-8 front teeth is treated.
Since its introduction in early 1989, there has been a growing interest among the dental profession in home-use tooth bleaching products and methods. A current representative technique includes: (1) making an alginate impression of the patient's teeth; (2) making a stone cast of the impression; (3) vacuum forming a tray from the cast, usually from thin (0.020-0.030 inch) hard transparent material, and trimming to exclude gingival coverage; (4) instructing the patient to (a) place 2-3 drops of a bleaching solution into each area of each tooth to be bleached, (b) place the tray in the mouth, (c) expectorate any excess bleaching solution, (d) change the bleaching solution every 1 to 2.5 hours, and (e) remove the tray during meals. A few recommend wearing the tray during the night.
The most commonly used dental bleaching agent is 10% carbamide peroxide (CO(NH
2
)
2
H
2
O
2
), also called urea hydrogen peroxide, hydrogen peroxide carbamide, and perhydrol-urea. Carbamide peroxide has been used by dental clinicians since the 1960's as an oral antiseptic. Tooth bleaching was a side effect of extended contact time. Over the counter (“OTC”) compositions of 10% carbamide peroxide are available as “Gly-Oxide” by Marion Laboratories and “Proxigel” by Reed and Carnrick.
Positive results using the foregoing technique have been reported. The effectiveness depends upon such factors as type and intensity of stain, bleaching agent contact time on teeth, and amount of available active ingredient in the bleaching agent. Because the time commitment for the actual bleaching process takes place outside the dental office, the cost for the procedure is substantially less than conventional in-office bleaching techniques. Moreover, patient discomfort associated with home-use tooth bleaching techniques both during and after treatment is reportedly less than that associated with conventional in-office bleaching.
Notwithstanding the foregoing advantages, there remain some important disadvantages to home-use bleaching products and techniques. One important disadvantage is that the bleaching agent must be frequently replaced during the day. Clinical test results indicate that saliva dilution and swallowing of the bleaching agent caused the volume of agent in the tray to diminish rapidly over time, thereby decreasing the amount of active ingredient available for tooth bleaching. Test results show that after one hour, less than one-half the original volume of bleaching agent was present. Thus, existing bleaching agents should be replenished about every hour in order to be effective.
Many patient's daytime schedules do not permit them to constantly replenish the bleaching agent. In addition, even the suggestion of periodically replenishing the bleaching agent during the night would not be favorably received by most patients. Because of the inconvenience of constantly replacing the dental agent, patient compliance is difficult to maintain, and since patient compliance determines the ultimate success of the treatment, the need to constantly replace the dental bleaching agent is a major inconvenience which limits the success of the treatment.
Another disadvantage with current home-use bleaching compositions and techniques is that it often takes weeks to see an observable result. Although some have reported lightening of teeth in shorter periods of time, in most cases the home-use bleaching treatment lasts from 4 to 6 weeks. Under such circumstances, patients often lose their enthusiasm for the procedure and often stop complying with the treatment regimen.
From the foregoing, it will be appreciated that what is needed in the art are improved compositions and methods for treating tooth surfaces which facilitate patient compliance, so that the ultimate purpose of the treatment is realized.
Additionally, it would be a significant advancement in the art to provide sustained release dental compositions for treating tooth surfaces which do not need to be continuously replaced so that patient compliance is enhanced.
It would be another significant advancement in the art to provide sustained release dental compositions for treating tooth surfaces which provide a more constant level of dental agent in contact with the teeth surfaces rather than periodic high and low levels of the dental agent in contact with the patient's teeth.
It would be an additional advancement in the art to provide sustained release dental compositions and methods for bleaching a patient's teeth which provide noticeable lightening in a matter of days rather than weeks.
Such sustained release dental compositions and methods for treating tooth surfaces are disclosed and claimed herein.
BRIEF SUMMARY AND OBJECTS OF THE INVENTION
The present invention is directed to high viscosity sustained release dental compositions, such as tooth bleaching or fluoride compositions, for treating tooth surfaces. An improved dental tray having reservoirs for holding the dental composition adjacent the desired tooth surfaces is preferably used in combination with the sustained release dental composition.
One currently preferred sustained release dental composition includes a dental bleaching agent, such as carbamide peroxide. The concentration of dental bleaching agent may vary depending upon its reactivity. For carbamide peroxide, for example, the currently preferred concentration range is from about 3% to about 20%, with a range from about 4% to about 15% being most preferred.
The dental bleaching agent is preferably included in a high viscosity matrix material to form the sustained release dental composition. Suitable matrix materials are preferably safe for oral use, do not readily dissolve in saliva, and do not react with the dental bleaching agent. One currently preferred high viscosity matrix material is a supersaturated carboxypolymethylene composition. A quantity of base is preferably added to the carboxypolymethylene composition to adjust the pH to within about 5.0 to about 7.0.
The sustained release bleaching agents within the scope of the present invention have such a high viscosity that positive pressure is needed to dispense them; gravity is not sufficient. Unlike existing low-viscosity bleaching agents, the sustained release bleaching agents cannot be dispensed drop-wise from a bottle. A syringe, squeezable tube, or other similar positive pressure dispensing device must be used to dispense the bleaching compositions within the scope of the present invention.
An improved dental tray having reservoirs for holding the dental composition adjacent the desired tooth surfaces is preferably used in combination with the sustained release dental composition. The general process for preparing dental trays is known in the art. For example, an alginate impression which registers all teeth surfaces plus gingival margin is made and a stone cast is promptly made of the impression. The reservoirs are prepared b

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