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Title:  Bioactive glass treatment of inflammation in skin conditions

United States Patent:  6,423,343

Inventors:  Lee; Sean (Gainesville, FL); Meyers; James L. (Gainesville, FL)

Assignee:  USBiomaterials Corporation (Alachua, FL)

Appl. No.:  012272

Filed:  January 23, 1998

Abstract

This invention relates to a method for treating inflammatory symptoms such as burning, redness, itching, swelling and pain which accompany skin disorders other than wounds of the skin. The method comprising topical application of a topical medicinal composition comprising a non-interlinked, particulate bioactive glass mixed with a topical medicinal carrier to the site of the skin disorder.

DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

As used herein the terms "bioactive glass" or "biologically active glass" mean an inorganic, glass material having an oxide of silicon as a major component and capable of bonding with growing tissue when reacted with physiological fluids. The term "skin disorder" means abnormalities, other than wounds, of the skin which have induced a state of inflammation. Such disorders include, but are not limited to warts acne, dermatitis, hives, psoriasis, rashes, contact allergic reactions, and reactions to insect stings, and bites.

The term "wound," as used herein, means an injury wherein the integrity of a patient's skin has been breached, as in the case of a cut or puncture, or where the skin has been destroyed by a chemical or thermal burn. "Normal" is used in the sense it is usually used in the medical arts. "Medical practitioner" means one of ordinary skill in the art of treating skin disorders. Typically this person is a physician, although in some cases, it may also be a nurse or physician's associate. The term "topical medicinal carrier" includes but is not limited to creams, ointments, gels, transdermal patches and lotions into which are blended therapeutic agents for topical application.,

Particulate bioactive glasses in accordance with the present invention typically have the following composition by weight percentage:

              Compound            percent range
                SiO2                 40-86
                CaO                  10-46
                Na2 O                 0-35
                P2 O5                 2-15
                CaF2                  0-25
                B2 O3                 0-10
                K2 O                  0-8
                MgO                        0-5
    wherein the total composition is 100%


The preferred composition of the bioactive glass for the present invention by weight percentage is:

                  Compound              Percent
                  SiO2                  45
                  CaO                   24.5
                  Na2 O                 24.5
                  P2 O5                  6


Bioactive glasses and methods of their preparation are well known in the art and several are commercially available.

Particulate, non-linked bioactive glass is preferred in the present invention. That is, the glass is in the form of small, discrete particles, rather than a fused matrix of particles or a fabric (woven or non-woven) of glass fibers. Note that under some conditions the discrete particles of the present invention may tend to cling together because of electrostatic or other forces but are still considered be

The preferred particle size range for the bioactive glass is small and not greater than 90 microns. Particle sizes less than 20 microns as well as less than 2 microns can also be used. Particles of such a small size range generally provide for the advantages of the present invention but do not illicit any undesirable immune response.

There are many topical carriers know to those skilled in the art which may be used in the present invention, and the preferred carrier generally depends upon the specific disorder. The skilled artisans will appreciate that other therapeutic agents such as healing promotion agents, anti-inflammatory agents, antiseptic agents, and topical anesthetic agents may also be added to the composition of the present invention. Example of such agents include but are not limited to corticosteroids, benzocaine and lidocaine.

The bioactive glass and topical treatment can be combined in any pharmaceutically acceptable carrier to facilitate application to the skin. It is also within the scope of the present invention to combine the bioactive glass and topical ointment of the present invention with other treatments such as dressings, etc.

While not being bound to any particular theory or mechanism, the bioactive glass may also act as an absorbent of several inflammatory cytokines and thus act to shunt the overall inflammatory response in the area. Evidence indicates that reactivity of the bioactive glass releases ions into the extracellular environment which increases the extracellular osmotic pressure. This may reduce epithelial cell swelling and thus help prevent cell necrosis in the area,

Most preferably, particulate bioactive glass and the carrier are mixed just before application to the skin. If the two ingredients are mixed several days prior to application, e.g. one week, the ability of the composition to mitigate the inflammation may be compromised. This problem is particularly acute, if the carrier causes bioactive glass to pre-react in a way that reduces the bioactivity of the glass.

While the ratio of bioactive glass to carrier is not critical, preferably the blend of bioactive glass, other therapeutic agents, and carrier contains about 20% to about 80% bioactive glass. The preferred particle size range for the bioactive glass is not greater about 90 microns is recommended. Particle sizes less than about 10 microns as well as less than about 2 microns can also be used. Particles of such a small size range generally provide for the advantages of the present invention but do not illicit any undesirable immune response. The proportion of other therapeutic agents varies according to the agent and the nature of the application. However, the preferred proportions are such that the amount of the agent administered to the area is in the dosage range approved by the accepted medical practice. The method of the present invention may be used on mammals, such as humans, and therefore is useful in both veterinary and well as human medicine.

The present invention is administered to a patient in a manner similar to that use for the administration of topical antiinflammatory compositions now in clinical use. While the exact treatment regimen is at the discretion of the attending medical practitioner, typical treatment comprises liberally applying a film of the bioactive glass containing composition to the inflamed area, optionally with gentle massage to work the composition into the skin. After application of the composition, the injured area is treated according to accepted medical practice, e.g., after applying the composition, the injured area may be covered with a sterile bandage. Of course, in nonhuman mammals treatment would be in accordance with accepted veterinary practice, but would typically be analogous to human treatment.

Treatment frequency is not critical but is typically two to four time daily although supplemental applications may be needed if the patient is active and prone to a high rate of perspiration. Treatment is continued until the attending medical practitioner determines the symptoms of the inflammation are no longer present. A patient being treated according to the method of the present invention may be concurrently treated with supplemental or adjuvant agents, such as oral or injected antiinflammatory or antibiotic agents.

Claim 1 of 7 Claims

What is claimed is:

1. A method of treating inflammatory symptoms related to skin disorders, other than wounds and burns, in a mammal, comprising topically applying to the site of the inflammatory skin disorder an inflammation treating amount of non-interlinked, particulate bioactive glass having a particle size range less than about 90 microns, the bioactive glass having the following compositional weight percentages:

                    SiO2                40-86
                    CaO                 10-46
                    Na2 O                0-35
                    P2 O5                2-15
                    CaF2                 0-25
                    B2 O3                0-10
                    K2 O                 0-8
                    MgO                 0-5.


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If you want to learn more about this patent, please go directly to the U.S. Patent and Trademark Office Web site to access the full patent.

 

 

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