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Biowaiver monographs for immediate release solid oral dosage forms: isoniazid.

Literature data relevant to the decision to allow a waiver of in vivo bioequivalence (BE) testing for the approval of immediate release (IR) solid oral dosage forms containing isoniazid as the only active pharmaceutical ingredient (API) are reviewed. Isoniazid's solubility and permeability characteristics according to the Biopharmaceutics Classification System (BCS), as well as its therapeutic use and therapeutic index, its pharmacokinetic properties, data related to the possibility of excipient interactions and reported BE/bioavailability (BA) problems were taken into consideration. Isoniazid is "highly soluble" but data on its oral absorption and permeability are inconclusive, suggesting this API to be on the borderline of BCS Class I and III. For a number of excipients, an interaction with the permeability is extreme unlikely, but lactose and other deoxidizing saccharides can form condensation products with isoniazid, which may be less permeable than the free API. A biowaiver is recommended for IR solid oral drug products containing isoniazid as the sole API, provided that the test product meets the WHO requirements for "very rapidly dissolving" and contains only the excipients commonly used in isoniazid products, as listed in this article. Lactose and/or other deoxidizing saccharides containing formulations should be subjected to an in vivo BE study.

Biological Availability↗

Determination of atropine in pharmaceutical dosage forms containing vegetal preparations, by high-performance liquid chromatography with U.V. and electrochemical detection.

A method to test the uniformity of Belladonna powder in multicomponent pharmaceutical dosage forms, by the determination of atropine, is described. The procedure involves a liquid-liquid extraction, followed by liquid chromatographic separation of atropine, apoatropine and scopolamine and quantification of atropine with either ultraviolet or electrochemical detection. The method is shown to be selective, sensitive and offers good reproducibility. A detailed study of the electrochemical properties of atropine also is undertaken.

Journal Article↗

ION-pair liquid chromatography technique for the estimation of metformin in its multicomponent dosage forms.

A simple, precise and accurate high performance liquid chromatography (HPLC) method was developed for the simultaneous estimation of metformin with gliclazide and glipizide present in multicomponent dosage forms. The method was carried out on Inertsil C(18) column. A mobile phase composed of acetonitrile-water containing camphor sulphonic acid (adjusted to pH 7 using 0.1 N sodium hydroxide; 75 mM) at a flow rate of 1 ml min(-1) was used for the separation. Detection was carried out at 225 nm. Tolbutamide was used as internal standard. Validation of the developed HPLC method was carried out.

Chemistry, Pharmaceutical↗

Quantitation of indomethacin, naproxen, and ibuprofen in pharmaceutical dosage forms by first and second derivative ultraviolet spectrometry.

First and second derivative ultraviolet spectrometric methods are described for the estimation of indomethacin, naproxen, and ibuprofen in pharmaceutical dosage forms. The proposed methods permit the rapid, precise, and accurate determination of indomethacin capsules BP, naproxen capsules, and ibuprofen tablets BP. Matrix interference is successfully corrected. The results obtained by first and second derivative techniques are in accord with those obtained by the official assay method.

Capsules↗

Development and validation of a capillary zone electrophoretic method for the determination of atenolol in presence of its related substances in bulk and tablet dosage form.

The development of a capillary zone electrophoresis method for determination of the drug atenolol in the presence of its related substances in bulk and in a tablet dosage form is described. The method was fully validated in terms of repeatability (RSDs for migration time and peak area of atenolol at 0.05 mg ml-1 were 0.25% and 0.52%, n = 10, respectively), reproducibility (RSD of peak area 0.84%, n = 5), linearity at two ranges of atenolol concentration, limits of detection and quantitation, ruggedness and robustness. The method was applied to the determination of the drug in a commercial tablet preparation (recovery 99.4%, m/m). The method proved to be fast and reliable for the quantitative analysis of atenolol in the presence of its related substances in bulk and pharmaceutical forms.

Adrenergic beta-Antagonists↗

Comparative dissolution testing of paracetamol commercial tablet dosage forms.

Dissolution can best be described as a tool that can provide valuable information about the availability of a drug product. In this study, nine different paracetamol tablet dosage forms available on the Turkish Drug Market have been investigated and physical controls were realized. Paddle and rotating basket apparatus methods were applied to all the formulations. In order to evaluate the dissolution rates, five different kinetics have been studied and the best fitting kinetics was found to be the Hixson-Crowell kinetics. It was found that all the preparations are in accordance with the Pharmacopeia standards.

Acetaminophen↗

A rapid, sensitive high performance liquid chromatographic method for the determination of meropenem in pharmaceutical dosage form, human serum and urine.

A new, simple, precise and rapid high performance liquid chromatographic method was developed for the determination of meropenem in human serum, urine and pharmaceutical dosage forms. Chromatography was carried out on an LC(18) column using a mixture of 15 mM KH(2)PO(4):acetonitrile:methanol (84:12:4; v/v/v), adjusted to pH 2.8 with H(3)PO(4). The proposed method was conducted using a reversed-phase technique, UV monitoring at 307.6 nm and cefepime as an internal standard. The retention times were 5.98 and 7.47 min for cefepime and meropenem, respectively. The detector response was linear over the concentration range of 50-10,000 ng/mL. The detection limit of the procedure was found to be 22 ng/mL. The detection limit for meropenem in human plasma was 108.4 ng/mL and the corresponding value in human urine was 179.3 ng/mL. No interference from endogenous substances in human serum, urine and pharmaceutical preparation was observed. The proposed method is sufficiently sensitive for determination of the concentrations of meropenem and may have clinical application for its monitoring in patients receiving the drug.

Carbapenems↗

Quantitative dexamethasone and dexamethasone sodium phosphate determinations in pharmaceutical dosage forms by high-pressure liquid chromatography.

A high-pressure liquid chromatographic procedure for quantitative dexamethasone and dexamethasone sodium phosphate determinations in all types of commercially available pharmaceutical dosage forms was developed. The method also separates dexamethasone from its phosphate salt and separates dexamethasone or its salt from a number of inactive ingredients such as benzoic acid, benzyl alcohol, some colors, creatinine, and parabens. Inactive ingredient concentrations may be estimated without additional cost. Part of the parabens present in the commercial injections may be adsorbed by the rubber closures.

Chromatography, High Pressure Liquid↗

Computer-aided dosage form design. III. Feasibility assessment for an oral prolonged-release phenytoin product.

Previous publications described computer-aided methodology for assessing the feasibility of designing prolonged release oral dosage forms containing linear-disposition drugs. Those methods determined all useful release rates and examined those rates to decide whether product development was warranted. The present study developed software to obtain similar information for phenytoin, which exhibits Michaelis-Menten disposition. The values for Vmax, Km, and Vd in 27 patients were employed to assess the ability of prolonged absorption to maintain steady-state plasma concentrations between 10 and 20 mg/liter following oral administration at 8-, 12-, and 24-hr intervals. Phenytoin steady-state plasma concentrations in this range were controlled by elimination and were not extended by prolonged absorption. Furthermore, single i.v. bolus doses resulting in an initial plasma level of 20 mg/liter provided concentrations above 10 mg/liter for approximately 1 to 3 days. When an oral multiple-dose regimen was found to maintain steady-state concentrations between 10 and 20 mg/liter, that dose and interval produced concentrations within that range regardless of the absorption rate. While absorption rate was not important, each patient's dose ranges were extremely narrow, emphasizing that dose size was the dominant factor in the control of phenytoin levels.

Absorption↗

Use of available dosage forms of cephalexin in clinical comparison with phenoxymethyl penicillin and benzathine penicillin in the treatment of streptococcal pharyngitis in children.

The effectiveness of cephalexin, an oral cephalosporin using a dosage equivalent to available capsular dosage forms, was studied in relation to the effectiveness of phenoxymethyl penicillin and benzathine penicillin in the treatment of 128 patients with beta-hemolytic streptococcal pharyngitis, all but six of whom had group A streptococci isolated from throat cultures. Approximately one-half, 66 patients, received cephalexin for 10 days; 34 patients received phenoxymethyl penicillin for 10 days; and 28 patients had a single injection of benzathine penicillin. There were four treatment failures determined bacteriologically post-therapy, two in the cephalexin treatment group and one each in the oral penicillin and intramuscular penicillin groups. Similar cure rates of 96.7, 97.1, and 96.4% were computed for the respective treatment regimens. Whereas intramuscular benzathine penicillin remains the regimen of choice in most instances, cephalexin appeared to be as effective as oral penicillin in the elimination of group A streptococci from the pharynx when oral treatment was desired for streptococcal pharyngitis.

Administration, Oral↗

Validation of a UV spectrophotometric method for the determination of melatonine in solid dosage forms.

The aim of the work described in this paper was to provide a fast, easy, inexpensive, precise, and accurate method for the determination of melatonine in solid pharmaceutical dosage forms. The developed method is based on a UV first-derivative spectrophotometric determination, which exhibits excellent linearity in aqueous solutions (r2 = 0.996) for analyte concentrations of 1.5-4.5 mg/dL within a pH range of 5-9. Neither excipients present in the formulation nor indole adulterants, such as tryptophan (up to 5%), interfere with the assay. A study of variation parameters showed that sonication temperature was the main factor for successful determination. At temperatures of <45 degrees C, the sample dissolved completely, and accurate spectrophotometric measurements were obtained. A study was conducted of all the parameters established by the United States Pharmacopeia, 23rd Rev., to validate an analytical method for a solid pharmaceutical form, i.e., linearity, range, accuracy, precision, and specificity. All the parameters were in accordance with the acceptance criteria of the Comité de Guías Oficiales de Validación de la Dirección General de Control de Insumos para la Salud de Méjico. In addition, robustness and content uniformity tests were performed to substantiate the usefulness of the method.

Antioxidants↗

Bioavailability of total and unbound disopyramide: implications for clinical use of the immediate and controlled-release dosage forms.

This study further characterized the impact of concentration-dependent protein binding on the bioavailability and clinical use of the immediate-release (IR) and controlled-release (CR) dosage forms of disopyramide after single doses and during steady-state conditions in ten healthy volunteers. Consistent with the clinical use of these products, steady state has incorporated an IR to CR conversion step. Side effects and electrocardiographic actions were quantitated using a visual analog scale and serial Holter monitor recordings, respectively. Significant decreases resulted in area under the curve for total disopyramide between single dose and steady state: IR, 47.8 +/- 13.6 versus 33.0 +/- 6.4 mg/Lxh (P < .05); and CR, 46.9 +/- 9.5 versus 31.7 +/- 5.9 mg/Lxh (P < .05). In contrast, there were no differences in area under the curve for unbound disopyramide between phases or products. During conversion, the mean IR peak significantly decreased (P < .05) to the nadir before the first CR dose for total (37%) and unbound (60%) concentrations. There were no major differences in change in QT interval or side effects detected between products or phases. These findings indicate that, because of concentration-dependent protein binding, unbound, not total, concentrations should be used to estimate the bioavailability of disopyramide. Also, although the previously recommended conversion method (first CR dose 6 hours after the last IR dose) should provide an adequate transition in most, an alternative method (combined first CR with last IR dose) is indicated in select patients.

Adolescent↗

Dissolution test development for complex veterinary dosage forms: oral boluses.

Fundamental aspects of electrolyte chemistry were used to design an appropriate dissolution medium with the capacity to maintain sink conditions throughout the test. Dissolution of various bolus dosage forms was studied using USP Apparatus II at various stirring speeds. Complete dissolution of each drug in the designed medium was achieved, and there is evidence that such a dissolution test could be discriminating. This review details the development of potentially discriminating in vitro dissolution tests for veterinary boluses using USP Apparatus II and examines the potential role of such testing during product quality assessments, in the evaluation of postapproval manufacturing changes and for the establishment of the generic equivalence of veterinary products.

Administration, Oral↗

Individual and simultaneous spectrophotometric determination of dapsone and metoclopramide HCl in pharmaceutical dosage forms and synthetic binary mixtures.

A rapid, sensitive and selective spectrophotometric method has been developed for the quantitative determination of dapsone (DAP) and metoclopramide hydrochloride (MCP) in both pure and dosage forms. Individual and simultaneous methods are based on the diazo coupling reaction of these drugs with benzoylacetone (BAC) in alkaline medium. The resulting azo dyes exhibit maximum absorption at 437 and 411 nm with a molar absorptivity of 4.14x10(4) and 2.97x10(4) l mol-1 cm-1 for DAP and MCP, respectively. Simultaneous determination of DAP and MCP was developed utilizing first-order digital derivative spectrophotometry. All variables have been optimized. No interferences were observed from drug excipients and the validity of the methods was tested against reference methods.

Antiemetics↗

Liquid chromatographic determination of organic nitrogenous bases in dosage forms: a progress report.

A liquid chromatographic (LC) method has been developed as a general procedure for the assay of the salts of organic nitrogenous bases in a variety of dosage forms. The method uses a nitrile-bonded reverse phase column, a methanol-0.003M ammonium acetate (90 + 10) mobile phase, and photometric detection at 254 nm. The sample is dissolved in the mobile phase and an aliquot is injected through a 20 microL injection loop. Average recovery values for duplicate assays were chlorpheniramine maleate injection 97.8%, chlorpheniramine maleate tablets 99.1%, cyclizine hydrochloride tablets 100.0%, doxylamine succinate tablets 103.3%, mesoridazine besylate tablets 100.4%, pentazocine hydrochloride tablets 103.0%, promethazine hydrochloride injection 98.4%, protriptyline hydrochloride tablets 101.2%, pyrilamine maleate tablets 97.8%, pyrimethamine tablets 100.0%, tripelennamine citrate elixir 100.0%, and tripelennamine hydrochloride tablets 97.2%. Results by this method were in good agreement with those obtained by the USP XX method. This study, which is being continued, will be expanded to include additional drugs.

Chromatography, Liquid↗

[Oral disintegrating tablets. A new, modern, solid dosage form].

The pharmaceutical market shows lately an increasing interest in orally disintegrating tablets, due to their good acceptability among certain age categories (ex. elderly, children), and other patients with difficulties in swallowing classic solid dosage forms. Some of the methods of preparing such tablets have gained industrial applicability: molding, lyophilization, direct compression with highly soluble excipients, super disintegrants and/or effervescent systems. Some of the patients have had a good impact on the pharmaceutical market and more improvements are expected in the next few years, with new drugs to be formulated as fast dissolving dosage formulations.

Administration, Oral↗

Computerized automated system for determining dissolution rate profiles for solid dosage forms.

A unique automated system was developed for the measurement of dissolution rates of tablets and capsules. This system, which adheres to principles set forth in the compendia, can test six dosage forms simultaneously. It is modular in form and capable of maintaining sink conditions, and it can handle any type of chemistry amenable to an automatic analyzer. In addition to the usual dissolution apparatus, the system includes a 12-channel combination sampling and solvent addition pump, a sequence control module, pertinent automated analyzer components, a spectrophotometer or fluorometer, an optional recorder, a specially designed digitizing system, and a teletype equipped with a paper tape punch reader and acoustic coupler. Each dissolution flask is automatically sampled every 6 min. Standards may be run either before or after the samples. Since dissolution, sampling, chemistry, and readout are all accomplished simultaneously, the complete test time is essentially reduced to the dissolution time itself. At the completion of sample dissolution, raw dissolution profile data are on the punched paper tape ready for computer processing via a time-sharing system. Developed software provides for the printout of a complete test report in less than 15 min.

Capsules↗

Determination of sodium fusidate and fusidic acid in dosage forms by high-performance liquid chromatography and a microbiological method.

A new High-performance liquid chromatographic (HPLC) method for the assay of sodium fusidate (I) or fusidic acid in dosage forms was developed and compared to a microbiological assay. A linear relationship was obtained between absolute peak area and amount of I(r = 0.99+) in the 50-1000-microgram/ml range. In the microbiological assay, Staphylococcus aureus (NCTC 6571) was the test organism, using an agar diffusion technique. With five test levels of the standard, potencies were interpolated from standard curve using a log transformation straight-line method with least-squares fitting (r = 0.99+). Both methods were applied to assay I (or fusidic acid) in tablets, a suspension, and an ointment. Excellent agreement was observed between results of the two methods.

Biological Assay↗