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Starch, Pregelatinized

Heating of starch suspensions, followed by drying, provides products that are swellable in cold water and form pastes or gels on heating. These products are used in instant foods, e. g., pudding, and as baking aids (cf. Table 4.26). [Pg.326]


Nonfood Uses. Native com starch is principally used in nonfood appHcations in mining, adhesives, and paper industries. Pregelatinized starch is chemically unmodified, but it is physically modified. Pregelatinized starches are used to decrease water losses in oil-weU drilling muds, in cold water-dispersable wallpaper pastes, and in papermaking as an internal fiber adhesive. [Pg.345]

Starch monophosphates are quite useful in foods because of their superior freeze—thaw stabiUty. As thickeners in frozen gravy and frozen cream pie preparations, they are preferred to other starches. A pregelatinized starch phosphate has been developed (131) which is dispersible in cold water, for use in instant dessert powders and icings and nonfood uses such as core binders for metal molds, in papermaking to improve fold strength and surface characteristics, as a textile size, in aluminum refining, and as a detergent builder. [Pg.346]

A slurry of the starch is cooked in the presence of a heat-stable bacterial endo-a-amylase. The enzyme hydrolyzes the a-l,4-glycosidic bonds in pregelatinized starch, the viscosity of the gel rapidly decreases, and maltodextrins are produced. The process may be terrninated at this point. The solution is purified and dried, and the maltodextrins are utilized as blandtasting functional ingredients in dry soup mixes, infant foods, sauces and gravy mixes, etc. [Pg.296]

Pregelatinized starch Hydroxypropyl cellulose Calcium phosphate... [Pg.54]

Polydrill is a sulfonated polymer for filtration control in water-based drilling fluids [1775]. Tests demonstrated the product s thermal stability up to 200° C and its outstanding electrolyte tolerance. Polydrill can be used in NaCl-saturated drilling fluids as well as in muds containing 75,000 ppm of calcium or 100,000 ppm of magnesium. A combination of starch with Poly drill was used successfully in drilling several wells. The deepest hole was drilled with 11 to 22 kg/m of pregelatinized starch and 2.5 to 5.5 kg/m of Polydrill to a depth of 4800 m. Field experience with the calcium-tolerant starch/Polydrill system useful up to 145° C has been discussed in detail [1774]. [Pg.38]

Starch is often cited as a filler, but it is more commonly used in its dry state as a disintegrating agent. However, modified starches such as StaRx 1500 and National 1551 (partially hydrolyzed, or pregelatinized starch) are marketed for direct compression and appear to offer the advantage of substantial mechanical strength and rapid drug release. [Pg.299]

Fig. 17 Effect of powder bed height, piston height, and compression force on plug ejection force in an instrumented Zanasi LZ-64 automatic capsule-filling machine (pregelatinized starch lubricated with 0.005% magnesium stearate). Note that the first point of each curve is precompression. Piston height (mm) , 15 -jlf, 14 , 13 , 12. Powder bed height (mm) heavy line, 30 light line, 50. (From Ref. 51.)... Fig. 17 Effect of powder bed height, piston height, and compression force on plug ejection force in an instrumented Zanasi LZ-64 automatic capsule-filling machine (pregelatinized starch lubricated with 0.005% magnesium stearate). Note that the first point of each curve is precompression. Piston height (mm) , 15 -jlf, 14 , 13 , 12. Powder bed height (mm) heavy line, 30 light line, 50. (From Ref. 51.)...
Prefiring, of ferrites, 22 72 Prefixes, 27 398, 399 Preformed silver halide grains, as photocatalysts, 29 345-346 Pregelatinized starches, 4 722 p-region, 23 36-37... [Pg.756]

A. water. They include cellulose ethers, pregelatinized starches, polyethylene oxides, alginates, carrageenans, polyacrylamide, carboxyvinyl polymers and polyvinyl alcohol. [Pg.319]

Modification of physicochemical property of the existing excipient has been the most successful strategy in the development of new excipients in the past three decades (24). This model has been successfully adopted for the introduction of excipients with better performance grades, such as pregelatinized starch, croscarmellose sodium, and crospovidone (25). However, the quantum of functionality improvement is limited due to a restricted range of possible modifications. [Pg.113]

Pregelatinized Starches. Suspensions of starches and starch derivatives can be gelatinized/cooked and dried to yield a variety of products that can be dispersed in cold water to yield pastes comparable to those obtained by cooking granular starch products. These products are made for convenience of use. [Pg.485]

Carrageenin Suspending agent Pregelatinized starch Tablet disintegrant... [Pg.406]

LOTRONEX Alosetron HC1 0.5, 1 mg Tablet For women with severe diarrhea-predominant irritable bowl syndrome A potent and selective 5-HT3 antagonist Lactose anhydrous, magnesium stearate, MCC, pregelatinized starch GSK... [Pg.15]

Propecia Finasteride 1 mg Tablet Male pattern hair loss A specific inhibitor of steroid type II 5 a-reductase Lactose monohydrate, MCC, pregelatinized starch, sodium starch glycolate, docusate sodium, magnesium stearate, Hypromellose 2910 Merck Co. [Pg.16]

Ethylcellulose, hypromellose, lactose monohydrate, magnesium stearate, PEG, polysorbate 80, pregelatinized starch, titanium dioxide, triethyl citrate... [Pg.19]

There are many commercially available direct compression filler-binders. The most commonly used filler-binders include spray-dried lactose, mannitol, microcrystalline cellulose, pregelatinized starch, and dibasic calcium phosphate. Many factors affect the selection of a filler-binder for a direct compression tablet formulation. The most important requirements for a directly compressible filler-binder used in a low-dose formulation are listed below ... [Pg.171]

HPLC method development for the fixed combination tablet formulation became more challenging in the presence of the excipients used in the tablet formulations. HPMC and pregelatinized starch in the sustained release portion of the bilayer tablet caused extraction difficulties and interferences in the HPLC chromatogram. [Pg.252]

Figure 10.4 Representative HPLC chromatograms (a) excipient placebo for the high dose active IR portion of the bilayer tablet (b) excipient placebo for the low-dose active sustained release portion of the bilayer tablet (c) Amicon Ultra-4 filtered fixed combination tablet sample. Annotation 1 = low-dose active ingredient 2 = high-dose active ingredient = pregelatinized starch-related peak = HPMC-related peak = filter-related peaks. Figure 10.4 Representative HPLC chromatograms (a) excipient placebo for the high dose active IR portion of the bilayer tablet (b) excipient placebo for the low-dose active sustained release portion of the bilayer tablet (c) Amicon Ultra-4 filtered fixed combination tablet sample. Annotation 1 = low-dose active ingredient 2 = high-dose active ingredient = pregelatinized starch-related peak = HPMC-related peak = filter-related peaks.

See other pages where Starch, Pregelatinized is mentioned: [Pg.809]    [Pg.346]    [Pg.446]    [Pg.681]    [Pg.685]    [Pg.37]    [Pg.312]    [Pg.358]    [Pg.364]    [Pg.371]    [Pg.412]    [Pg.413]    [Pg.425]    [Pg.429]    [Pg.131]    [Pg.584]    [Pg.343]    [Pg.364]    [Pg.15]    [Pg.809]    [Pg.343]    [Pg.364]    [Pg.76]    [Pg.297]    [Pg.132]    [Pg.176]    [Pg.177]    [Pg.251]    [Pg.253]    [Pg.253]   
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See also in sourсe #XX -- [ Pg.92 , Pg.703 , Pg.729 , Pg.731 ]

See also in sourсe #XX -- [ Pg.326 ]

See also in sourсe #XX -- [ Pg.159 ]




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