Tablets having discontinuous coated regions
A dosage form comprising a tablet core and one or more discontinuous coated regions in various configurations on the surface of the dosage form is disclosed. A method for making the dosage form is also disclosed.
1. A method of making a dosage form suitable for ingestion by a human, comprising:
(a) preparing a tablet- or caplet-shaped substrate; and
(b) positioning at least two discontinuous coated regions on a surface of the tablet- or caplet-shaped substrate, wherein the at least two discontinuous coated regions contain at least one flavoring or sensate, and wherein each of the at least two discontinuous coated regions contain a separate flavoring or sensate.
2. The method of claim 1 , wherein the at least two discontinuous coated regions are extrusion coated on the tablet- or caplet-shaped substrate.
3. The method of claim 1 , wherein the at least two discontinuous coated regions are screen coated on the tablet- or caplet-shaped substrate.
4. The method of claim 1 , wherein the at least two discontinuous coated regions are printed on the tablet- or caplet-shaped substrate.
5. The method of claim 1 , wherein the at least two discontinuous coated regions are brush coated on the tablet- or caplet-shaped substrate.
6. The method of claim 1 , wherein the at least two discontinuous coated regions are sprayed on the tablet- or caplet-shaped substrate.
7. The method of claim 1 , wherein the at least two discontinuous coated regions are painted on the tablet- or caplet-shaped substrate.
8. The method of claim 1 , wherein the at least two discontinuous coated regions are 3D printed on the tablet- or caplet-shaped substrate.
9. The method of claim 1 , wherein the at least two discontinuous coated regions comprise a material selected from the group consisting of polymers, meltable carbohydrates, fats, fatty acid esters, phospholipids, waxes, and gelling material,
wherein the fats are selected from the group consisting of hydrogenated vegetable oils selected from cocoa butter, hydrogenated palm kernel oil, hydrogenated cottonseed oil, hydrogenated sunflower oil, and hydrogenated soybean oil; and free fatty acids and their salts,
wherein the fatty acid esters are selected from the group consisting of sucrose fatty acid esters, mono, di, and triglycerides, glyceryl behenate, glyceryl palmitostearate, glyceryl monostearate, glyceryl tristearate, glyceryl trilaurylate, glyceryl myristate, glycowax, lauroyl macrogol-32 glycerides, and stearoyl macrogol-32 glycerides,
wherein the phospholipids are selected from the group consisting of phosphotidyl choline, phosphotidyl serine, phosphotidyl enositol, and phosphotidic acid,
wherein the waxes are selected from the group consisting of carnauba wax, spermaceti wax, beeswax, candelilla wax, shellac wax, microcrystalline wax, and paraffin wax,
wherein the polymers are selected from the group consisting of polyethylene oxide, polyvinyl acetate and polycapralactone; and water soluble film forming polymers selected from hydroxypropyl cellulose, hypromellose, methylcellulose, pullulan, modified starches, and hydroxyethylcellulose,
wherein the carbohydrate is selected from the group consisting of polysaccharides selected from polyfructose, polydextrose, inulin, hydrogen starch hydrolysate; isomalt; and sugar alcohols selected from as xylitol, sorbitol erythritol and mixtures thereof, and
wherein the gelling material is selected from the group consisting of gelatin, pectin, gellan gum, carrageenan, and xanthan gum.