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Table of contents

Typical proteins are animal proteins, vegetable proteins such as soy protein, milk protein such as skimmed milk protein, whey protein and casein, and amino acids or salts thereof such as isoleucine, phenylalanine, leucine, lysine, methionine, threonine, tryptophan, arginine, glutamine, taurine, valine. Preferred protein sources are whey protein, sodium caseinate or calcium caseinate, which is optionally mixed with amino acids.

For some applications, a preferred source of protein is hydrolyzed protein protein hydrolyzate , optionally with amino acids added. The protein hydrolyzate may be any suitable protein hydrolyzate used in a nutrient such as soy protein hydrolyzate, casein hydrolyzate, whey protein hydrolyzate, other animal and vegetable protein hydrolysates, and mixtures thereof.

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The protein hydrolyzate of the composition of the invention is preferably a soy protein, whey protein or casein protein hydrolyzate comprising short peptides and amino acids and optionally added with additional amino acids. The hydrolyzed protein of the composition of the invention is also preferably added to various free amino acids to provide a nutritionally balanced amino acid content provide.

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Examples of such free amino acids include L-tryptophan, L-methionine, L-cystine, L-tyrosine and L-arginine. The nutrients according to the invention optionally also contain vitamins and minerals. It will be understood by those skilled in the art that minimal requirements have been established for certain vitamins and minerals necessary for normal physiological function. One skilled in the art will also appreciate that appropriate additional amounts of vitamin and mineral components must be added to the nutrients to compensate for certain losses in the processing and storage of such compositions.

The inventive composition optionally contains nutritionally significant amounts of vitamins and minerals. Examples of minerals, vitamins and other nutrients which are optionally present in the composition according to the invention include vitamin A, vitamin B 6 , vitamin B 12 , vitamin E, vitamin K, vitamin C, vitamin D, inositol, taurine, folic acid, thiamine , Riboflavin, niacin, biotin, pantothenic acid, choline, calcium, phosphorus, iodine, iron, magnesium, copper, zinc, manganese, chloride, potassium, sodium, beta-carotene, nucleotides, selenium, chromium, molybdenum and l-carnitine.

Minerals are usually added in salt form. The composition of the invention optionally contains one or more natural or artificial flavor carriers to improve palatability. One can use any flavor carrier used in the sector, such as strawberry, cherry, chocolate, orange, coconut, vanilla; Spices such as nutmeg and cinnamon; or citric acid. In some cases, where natural flavor carriers, such as coconut pieces, are used, the ingredient contributes to the overall nutritional profile of the composition, i. Such ingredients include peanuts, raisins, cheese powder, vinegar, salt, sodium bicarbonate. In bars, the composition is usually provided with a chocolate or a flavored coating eg, chocolate, vanilla, strawberry, etc.

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Optionally, the composition of the invention also contains natural or artificial colors to enhance the aesthetic appeal. The compositions of the invention may be in several physical forms, e. As liquid enteral nutrients or adult or child drinks, in a semi-solid form such as pudding, cream, mousse, or a solid form such as a nutrient bar or biscuit.

The composition according to the invention can be prepared by known standard methods of food technology, for example by analogous methods to those described in the following publications: U. Patents 4,, ; 4,, ; 4,, ; 5,, ; 5,, ; and 5,, ; Chocolate, Cocoa and Confectionery: Science and Technology; 3rd Edition, Bernard W. For food bars and biscuits, it is usually desirable to bake the composition after physical formation.

If desired, the composition of the invention may be sterilized by known methods, for example, by heat treatment such as autoclaving or sterilizing or irradiation, or manufactured and packaged by sterile methods. The composition of the invention may be packaged in any type of container or package known to be suitable for storing food, such as paper, glass, coated cardboard, plastic or coated metal cans.

The composition of the invention may be nutritionally balanced. The term "nutritionally balanced" is understood to mean that the composition contains adequate nutrients to maintain a healthy human life over extended periods of time. Textile products, equipped with active ingredients according to the invention. The finishing of textiles with active ingredients according to the invention is of interest in many respects.

Thus, the equipment of textiles with cooling-acting compounds finds particular use where garments can come into direct contact with the skin, so that the active substance by transdermal transfer its effects, eg. Recently, textiles have been reported which are equipped with so-called wellness additives, ie substances which promote well-being R. An insecticidal equipment in turn is in terms of material protection, for. As equipment of the textile against moth feeding, etc. The fundamental problem in the finishing of textiles with active ingredients is the binding of the active ingredient to the textile carrier, which on the one hand must ensure the permanence of the equipment and on the other hand must be chosen so that the active ingredient does not lose its effect.

For this purpose, various approaches are proposed in the prior art. Cyclodextrins are cyclic oligosaccharides formed by enzymatic degradation of starch. A characteristic feature of the cyclodextrin molecules is their ring structure with largely invariable dimensions. Due to their structure, cyclodextrins are able to trap guest molecules, in particular hydrophobic guest molecules, in varying amounts up to saturation. Due to the amylose content of the amylose-containing substance, the active substance is bound to the textile and released in a controlled manner, so that the effect is retained over a long period of time.

It is assumed that the active substance is reversibly bound in the cavities formed by the helical conformation of the amylose in the sense of an inclusion compound similar to cyclodextrins, which on the one hand fixation of the active ingredient on the surface of the textile support is achieved and on the other hand, a controlled release is possible ,. In addition to amylose, all substances, in particular amylose-containing starches, d. The strength may be native, e. Also suitable is pure amylose as such, for.

It is understood that here and below, all information in wt. Such substances are known and commercially available. To achieve the binding of the active ingredient s to the textile, the textile containing the amylose-containing substance can generally be present in an amount of at least 0. In general, the amylose-containing substance in an amount of not more than 25 wt. First, the textile material is equipped with the amylose-containing substance as such and then treated the textile thus treated with a suitable treatment of the active ingredient.

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As a result, the amylose-containing substance present on the textile material is loaded with the active substance. But you can also use the amylose-containing substance together with an active ingredient to equip the textile. In this case, the active substance and the amylose-containing substance can be used both as a mixture of separate components and in the already prefabricated form of the amylose-active substance complex.

In general, one will use the active ingredient in an amount that is sufficient for the desired effect. If desired, the active compound is usually added in an amount of 0. For textile finishing, it is also possible to use combinations of active compounds according to the invention with other active substances known per se and suitable for textile finishing. In principle, all other organic compounds and mixtures of organic compounds which are known as active ingredients and which induce a physiological action in living beings such as humans and animals, including microorganisms, are suitable as further active ingredients.

Mention may be made of those active substances which, as is known, can form inclusion compounds with cyclodextrins. The molecular weight of the drugs is typically below daltons, and often in the range of to daltons. Also suitable are inorganic compounds such as hydrogen peroxide, which are known to be bound in cyclodextrins see F. The other active ingredients include, in particular, pharmaceutical active ingredients and active ingredients which promote the well-being of living beings, in particular of humans and which are commonly referred to as "wellness additives".

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Unlike pharmaceutical ingredients, the wellness additives do not necessarily have a therapeutic effect. Rather, the well-being promoting effect can be based on a variety of factors such as nourishing, stimulating, cosmetic or other effects. Equally suitable are organic agents that act against parasitic organisms. As nematicides, molluscicides, insecticides, acaricides, rodenticides and repellent agents, as well as agents against grass weeds, d.

Herbicides, or perfumes. Preferred active pharmaceutical ingredients are those that are known to be absorbed through the skin.

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These include, for example, ibuprofen, flurbiprofen, acetylsalicylic acid, acetamidophen, apomorphine, butylated hydroxytoluene, chamulenes, gujaculas, chlorthalidone, cholecalciferol, dicumarol, digoxin, diphenylhydantoin, furosemide, hydroflumethiazide, indomethacin, ipronocidyl phosphate, nitroglycerin, nicotine, nicotinic acid amide, oubain, oxprenolol, Papaverine alkaloids such as papaverine, laudanosine, and etaverine Narcotin and berberine, Retionol, trans retinoic acid, pretinol, spironolactone, sulpiride, theophylline, theobromine, corticosteroids and derivatives such as testosterone, methyltestosterone, cortisone, corticosterone, dexamethasone, triamcinolone, methylprednisolone, fludrocortisone, fluocortolone, prednisone, prednisolone, progesterone , Estrogens and progestogens such as estradiol, estriol, ethinylestradiolmethyl ether, norethisterone and ethisterone, as well as phenethylamine and derivatives such as tyramine, adrenaline, norepinephrine and dopamine.

Examples of active ingredients which are suitable according to the invention and have an activity against parasitic organisms are those of www. Examples of bactericidal and fungicidal substances include:.


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Examples of repellent active ingredients are in particular anthraquinone, acridine bases, copper naphthenate, butopyronoxyl, dibutyl phthalate, dimethyl phthalate, dimethyl carbate, ethohexadiol, hexamides, methoquine-butyl, N-methyl neodecanamide, camphor, bergamot oil, pyrethrum, clove oil, geranium oil, thyme oil and in particular diethyl m-toluamide and 1-piperidinecarboxylic acid 2- 2-hydroxyethyl methylpropyl ester Picardin. Examples of wellness additives are in particular the substances listed below and mixtures of substances, eg.

To improve the washing permanence of the equipment according to the invention, it has proven useful to fix the amylose-containing substance with a binder on the textile. Suitable binders are on the one hand film-forming, water-insoluble polymers and, on the other hand, low molecular weight reactive substances which polymerize with heating. In general, the binder will be used in an amount such that the weight ratio of amylose-containing substance to water-insoluble polymer is in the range of 1: 1 to 1, preferably in the range of 1.