SPECIFIC EXAMPLES OF THE INVENTION
The present examples relate to the preparation of encapsulated artificial sweeteners, e.g., aspartame and saccharin formulation, which when incorporated into chewing gums, provides improved shelf stability and longer lasting sweetness perception.
It is known that commercially available chewing gum products, generally comprised of plasticizers, softeners, flavors and sweeteners, experience a quick release of the sweeteners, e.g., in about 4-5 minutes, so that sustained sweetness perception is lost. Furthermore, sugarless chewing gums exhibit a noticeably low initial sweetness perception and lack the present impact of sugar-containing gums. Artificial sweeteners such as saccharin and aspartame have been used to provide the strong initial sweetness impact, but due to rapid release of the sweeteners, the sweetness intensity decreases very rapidly. High concentrations of saccharin are not acceptable in that they lead to a bitter aftertaste of saccharin, whereas aspartame undergoes degradation during aging of the gum and also loses its sweetness. Thus, in one of the embodiments of the present invention, these problems can be avoided by the use of encapsulated saccharin and/or aspartame in anhydrous gum.
The encapsulated saccharin can be released at a controlled rate throughout the duration of chewing rather than in only the initial few minutes, thus, reducing and even concealing its bitter aftertaste even at high concentration. Furthermore, the encapsulated aspartame will not undergo degradation and lose its sweetness during aging in addition providing a sustained release during chewing. Thus, by use of the present encapsulating composition prepared and coated on the artificial sweetener which are included in anhydrous gum, sustained sweetness perception can be imparted to the chewing gum product while moisture deterioration problems experienced by aspartame are significantly reduced.
Examples have been prepared in accordance with the present invention to provide anhydrous chewing gum having longer-lasting sweetness impact, these examples having compositions including chewable gum base, flavor, sweetener in an amount sufficient to impart normal accepted sweetness to the gum, and an amount of encapsulated artificial sweetener including saccharin and L-aspartyl-L-phenylalanine methylester (APM) effective to produce longer-lasting sweetness in the gum. The chewing gum compositions can be either sugar-containing or sugarless with no extra water present in either case. The saccharin and APM have been encapsulated in a combination of high molecular weight polyvinyl acetate and glyceryl monostearate.
EXAMPLE 1
Encapsulated aspartame was prepared using 50 grams of polyvinyl acetate and 100 grams of glyceryl monostearate which were melted and mixed by mechanical stirring at a temperature of about 85.degree. C. for about five minutes. After removing the melt blend from the heat, 40 grams of finely ground aspartame was added and blended into the molten mass thoroughly for an additional five minutes. The resulting semi-solid mass was chilled to obtain a solid, e.g., to 0.degree. C., and ground sufficiently so that the resulting particulate passed through a 30 mesh sieve. The sample was subjected to APM analysis and found to contain 21% APM of the total weight, indicating negligible degradation or loss of APM during the preparation.
EXAMPLE 2
The process of Example 1 was repeated using 120 grams of polyvinyl acetate and 62 grams of glyceryl mono- stearate in preparing the coating mixture, to which 60 grams of saccharin were added in place of the aspartame shown in Example 1. Chemical analysis of the resulting particulate indicated a free saccharin content of 24.6%, thus also indicating negligible loss during preparation.
EXAMPLES 3 and 4
Following the procedure of Example 1 the following compositions of encapsulated aspartame and saccharin were also prepared.
EXAMPLES 5-9
Using the encapsulated artificial sweeteners made in Examples 1-4 chewing gum product samples were made as shown in Table I:
The above compositions were prepared by adding the sugar or sorbitol and encapsulated sweetener at approximately the same time under mechanical stirring and in the absence of added heat for five minutes. The molten gum base along with the softener, previously melted at approximately 95.degree. C., was transferred into the mixer and mixed for three minutes. The finished gum product was rolled and scored.
In order to evaluate the stability of encapsulated APM in chewing gums as in Examples 5, 7 and 9, a contro batch with free APM was also prepared. These batches were subjected to observation at room temperature over a period of at least 50 weeks or more. The results obtained have been set forth below in Table II:
The results reported above clearly indicate a significantly superior performance of the product made by use of the present invention.
The chewing gums prepared in accordance with the invention have been found to retain discernible sweetness perception for as long as 30 minutes of continuous chewing. Encapsulated APM, prepared in accordance with the present invention, when incorporated to the anhydrous chewing gum formulation has been found to exhibit an excellent stability. When stored at 20.degree. C. (room temperature) for 65 weeks, the gum products were found to retain over 69% of their initial APM.
Furthermore, the chewing gums prepared in accordance with the invention have been found to retain discernible sweetness perception for as long as 30 minutes of continuous chewing.
Thus while there have been described what are presently believed to be the preferred embodiments of the present invention, those skilled in the art will realize that other and further embodiments can be made within the true scope of the invention, and is intended to claim all such changes and modifications.