Handbook of pharmaceutical excipients: 6th Revised edition

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Handbook of pharmaceutical excipients: 6th Revised edition

Handbook of pharmaceutical excipients: 6th Revised edition

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Acetyltributyl Citrate slightly irritating to the eyes and may be irritating to the respiratory system as a mist or at elevated temperatures. Gloves and eye protection are recommended for normal handling, and a respirator is recommended when using acetyltributyl citrate at elevated temperatures. 16

The PhEur 2005 provides monographs on acacia and spraydried acacia, while the USPNF 23 describes acacia in a single monograph that encompasses tears, flakes, granules, powder, and spray-dried powder. The JP 2001 also has monographs on acacia and powdered acacia. See Table II. Table II: Acetone reacts violently with oxidizing agents, chlorinated solvents, and alkali mixtures. It reacts vigorously with sulfur dichloride, potassium t-butoxide, and hexachloromelamine. Acetone should not be used as a solvent for iodine, as it forms a volatile compound that is extremely irritating to the eyes.(4) 13 Acidity/alkalinity: pH = 2.4 (1 M aqueous solution); pH = 2.9 (0.1 M aqueous solution); pH = 3.4 (0.01 M aqueous solution). Boiling point: 1188C Dissociation constant: pKa = 4.76 Flash point: 398C (closed cup); 578C (open cup). Melting point: 178C Refractive index: n20 D = 1.3718 Solubility: miscible with ethanol, ether, glycerin, water, and other fixed and volatile oils. Specific gravity: 1.045 11

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Acidity/alkalinity: pH = 4.5–5.0 (5% w/v aqueous solution) Acid value: 2.5 Hygroscopicity: at relative humidities of 25–65%, the equilibrium moisture content of powdered acacia at 258C is 8–13% w/w, but at relative humidities above about 70% it absorbs substantial amounts of water. Solubility: soluble 1 in 20 of glycerin, 1 in 20 of propylene glycol, 1 in 2.7 of water; practically insoluble in ethanol (95%). In water, acacia dissolves very slowly, although almost completely after two hours, in twice the mass of water leaving only a very small residue of powder. The solution is colorless or yellowish, viscous, adhesive, and translucent. Spray-dried acacia dissolves more rapidly, in about 20 minutes. Specific gravity: 1.35–1.49 Viscosity (dynamic): 100 mPa s (100 cP) for a 30% w/v aqueous solution at 208C. The viscosity of aqueous acacia solutions varies depending upon the source of the material, processing, The information below shows imperial to SI unit conversions for the units of measurement most commonly used in the Handbook. SI units are used throughout with, where appropriate, imperial units reported in parentheses. Area 1 square inch (in2) = 6.4516  10–4 square meter (m2) 1 square foot (ft2) = 9.29030  10–2 square meter (m2) 1 square yard (yd2) = 8.36127  10–1 square meter (m2) Density 1 pound per cubic foot (lb/ft3) = 16.0185 kilograms per cubic meter (kg/m3) Energy 1 kilocalorie (kcal) = 4.1840  103 joules (J)

Acetyltributyl citrate is used to plasticize polymers in formulated pharmaceutical coatings,(1–5) including capsules, tablets, beads, and granules for taste masking, immediate release, sustained-release and enteric formulations. Written by over 160 pharmaceutical scientists from around the world, expert in the manufacture, analysis or use of excipients. It is an essential reference for those involved in the development, production, control and regulation of pharmaceutical preparations. Agar solutions are most stable at pH 4–10. Agar should be stored in a cool, dry, place. Containers of this material may be hazardous when empty since they retain product residues (dust, solids). Section 16, Regulatory Status, describes the accepted uses in foods and licensed pharmaceuticals where known. However, the status of excipients varies from one nation to another, and appropriate regulatory bodies should be consulted for guidance.

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been more selective in including data relating to the physical properties of an excipient. However, comparative data that show differences between either source or batch of a specific excipient have been retained as this was considered relevant to the behavior of a material in practice. The Suppliers Directory (Appendix I) has also been completely updated with many more international suppliers included. In a systematic and uniform manner, the Handbook of Pharmaceutical Excipients collects essential data on the physical properties of excipients such as: boiling point, bulk and tap density, compression characteristics, hygroscopicity, flowability, melting point, moisture content, moisture-absorption isotherms, particle size distribution, rheology, specific surface area, and solubility. Scanning electron microphotographs (SEMs) are also included for many of the excipients. The Handbook contains information from various international sources and personal observation and comments from monograph authors, steering committee members, and the editors. All of the monographs in the Handbook are thoroughly cross-referenced and indexed so that excipients may be identified by either a chemical, a nonproprietary, or a trade name. Most monographs list related substances to help the formulator to develop a list of possible materials for use in a new dosage form or product. Related substances are not directly substitutable for each other but, in general, they are excipients that have been used for similar purposes in various dosage forms. The Handbook of Pharmaceutical Excipients is a comprehensive, uniform guide to the uses, properties, and safety of pharmaceutical excipients, and is an essential reference source for those involved in the development, production, control, or regulation of pharmaceutical preparations. Since many pharmaceutical excipients are also used in other applications, the Handbook of Pharmaceutical Excipients will also be of value to persons with an interest in the formulation or production of confectionery, cosmetics, and food products. Tim Wood GlaxoSmithKline Ware, Hertfordshire, UK Mukund Yelvigi Wyeth Research Pearl River, NY, USA



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