The present invention relates to oral medications, and more particularly to an ingestible carrier for medication and a method for forming the carrier for the medications that allows the medications to more easily be ingested.
With the developments in the field of pharmaceuticals, there are an increasing number of medications available for oral administration for a wide variety of conditions. These medications come in various forms that can be ingested orally, with the majority being of a size capable of being relatively easily swallowed by an individual.
However, due to the necessary dosage amounts for certain medications, or the particular form of the medication, the medications often times are not able to be readily swallowed by an individual due to the overlarge size of these medications. In addition, certain individuals are not capable, for various reasons, of easily swallowing medications that are required for the health of the individual.
In order to increase the ease of orally administering medications to individuals, a number of different dosage forms of the medications have been developed. The majority of these dosage forms include various coatings on the exterior of the medications, which enable the medications to be more easily swallowed by an individual. Nevertheless, on many occasions, these improved dosage forms of the medications still present certain difficulties to people taking the oral medication dosages.
Therefore, it is desirable to develop a carrier to assist in the ingestion of various oral medications and a structure and method of forming the carrier, which allows for oral medications to be taken in a quick and easy manner by individuals previously unable to do so.
According to a primary aspect of the present invention, an ingestible carrier is provided which is created by a moldable and ingestible material that includes a recess formed within the material and in which the medication can be positioned. The recess enables the medication dose or dosages to be positioned completely within the carrier such that the medication can easily be ingested along with the carrier. The recess formed within the carrier is dimensioned to enable the medication or medications to be securely held within the recess, such that the medication cannot easily become dislodged from within the recess once positioned therein. This ensures that the medication is ingested along with the carrier without becoming separated from the carrier.
According to another aspect of the present invention, a mold structure is provided which allows for the formation of the carrier complete with the recess within the carrier in a simple manner. The mold can be configured to form any number of carriers at a single time, such that a number of different medications can be taken by different individuals at the same time. The mold has a very simple construction that allows it to be easily utilized to form the carrier by placing the ingestible material into the mold, and can be easily cleaned after use for additional uses to form ingestible carriers for oral medications.
Numerous other aspects, features and advantages of the present invention will be made apparent from the following detailed description taken together with the drawing figures.
The drawings illustrate the best mode currently contemplated as practicing the present invention.
In the drawings:
With reference now to the drawing figures in which like reference numerals designate like parts throughout the disclosure, an ingestible carrier constructed according to the present invention is illustrated generally at 10 in
The narrow end 16 defines an interior recess or cavity 18 within which medication 21, such as a liquid medication, pill, tablet or capsule, can be positioned. The size of the cavity 18 is preferably slightly smaller in diameter than a conventional pill, table or capsule. As a result, when a medication in form of a pill, tablet or capsule is positioned within the cavity 18, the medication 21 is engaged by the sides of the cavity 18 such that the medication 21 is frictionally held within the cavity 18 once positioned therein, as best shown in
Additionally, the overall size of the carrier 10 can be selected to be any easily ingestible size that also can define a cavity 18 therein that is capable of receiving the medication 21 either entirely or at least partially therein. Preferably, the size of the overall carrier 10 is selected based on the size or age of the individual who will be ingesting the carrier 10, while the size of the cavity 18 remains the same diameter to accommodate and frictionally engage the medication 21.
Referring now to
The panel 24 also includes a number of apertures 30 spaced about the panel 24. Each aperture 30 is surrounded on the lower surface 31 of the panel 24 by a downwardly extending form 32 in the desired shape of the carrier 10. At the lower end 34 of the form 32 opposite the lower surface 31 of the panel 24, the form 32 includes an upwardly extending cylinder 36. When the material utilized to form the carrier 10 is poured into the form 32, the cylinder 36 operates to prevent the material from occupying the space taken by the cylinder 36 and to form the cavity 18 within the carrier 10. Also, as stated previously, while the preferred shape of the cavity 18 is cylindrical, the cylinder 36 in the form 32 can be altered to have any desired shape that results in the desired shape for the cavity 18.
Looking now at
In addition, as stated previously the carrier 10 formed by the mold 22 can have any desired size depending upon the particular individual who is to ingest the carrier 10 and the medication 21 contained therein. To facilitate the formation of carriers 10 have different sizes, the forms 32 and apertures 30 positioned on a panel 24 can be formed to have different sizes in order to form different size carriers 10 to be utilized by different types of individuals. Additionally, the number and size of the apertures 30 and forms 32 can vary as necessary to maximize the number of carriers 10 and the respective sizes of the carriers 10 to be formed by each mold 22. In order to further maximize the number of carriers 10 that can be formed by a given mold 22, the shape of the central panel 24 and accompanying peripheral rim 26 can be varied from the hexagonal shape shown in the preferred embodiments in
Referring now to
Various alternatives are contemplated as being within the scope of the following claims particularly pointing out and distinctly claiming the subject matter regarded as the invention.