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Determination of lisinopril in dosage forms and spiked human plasma through derivatization with 7-chloro-4-nitrobenzo-2-oxa-1,3-diazole (NBD-Cl) followed by spectrophotometry or HPLC with fluorimetric detection.

Two sensitive, simple and specific methods based on spectrophotometry and reversed-phase HPLC with fluorimetric detection are described for the determination of lisinopril in dosage forms as well as in spiked human plasma using solid phase extraction (SPE) procedures. Both methods are based on the derivatization of lisinopril with 7-chloro-4-nitrobenzo-2-oxa-1,3-diazole (NBD-Cl) in borate buffer of pH 9 to yield a yellow, fluorescent product. The spectrophotometric method depends on measuring the formed yellow color at 470 nm after optimization of the reaction conditions. The HPLC method is based on measurement of the derivatized product using fluorescence detection at 540 nm (excitation at 470 nm). The separation of the derivatized drug, the excess reagent and the internal standard (bumetanide) was performed on a reversed-phase ODS column using isocratic elution with methanol-0.02 M sodium dihydrogen phosphate, pH 3.0 (55:45, v/v) at a flow rate of 1.0 ml/min. The calibration graphs were linear over the concentration ranges 2-20 or 0.02-3.2 microg/ml of lisinopril with minimum detectability of 0.3 and 0.008 microg/ml (6.1 x 10(-7) and 1.7 x 10(-8)M) for the spectrophotometric and the HPLC methods, respectively. The proposed methods were applied without any interference from the tablet excipients for the determination of lisinopril in dosage forms, either alone or co-formulated with hydrochlorothiazide. Furthermore, the use of the HPLC method was extended to the in vitro determination of the drug in spiked human plasma. Interference from endogenous amino acids has been overcomed by using the solid phase extraction technique, the percentage recovery (n=6) was 101.6+/-3.35.

4-Chloro-7-nitrobenzofurazan↗

Determination of temafloxacin, sarafloxacin, and difloxacin in bulk drug and dosage forms by high-performance liquid chromatography.

The fluoroquinolones, temafloxacin, sarafloxacin, and difloxacin, are determined in the bulk drug substances and in a variety of dosage form using high-performance liquid chromatography (HPLC). The HPLC system used is also applicable for ciprofloxacin and norfloxacin. The procedure uses UV detection at 280 nm, which provides a linear response of the subject compounds to at least 20 micrograms/ml. Assay precision (RSD) values were +/- 1.2% or better for the bulk drugs and ranged from +/- 0.42 to +/- 2.3% for suspension, capsule, and tablet formulations. Drug recoveries were quantitative from the dosage forms tested. Sensitivity of the subject compounds is approximately 50 ng/ml (2.5 ng on column).

Anti-Infective Agents↗

Gamma scintigraphy in the evaluation of pharmaceutical dosage forms.

Gamma-scintigraphy is applied extensively in the development and evaluation of pharmaceutical drug delivery systems. It is used particularly for monitoring formulations in the gastrointestinal and respiratory tracts. The radiolabelling is generally achieved by the incorporation of an appropriate technetium-99m or indium-111 labelled radiopharmaceutical into the formulation. In the case of complex dosage forms, such as enteric-coated tablets, labelling is best undertaken by the addition of a non-radioactive tracer such as samarium-152 oxide or erbium-170 oxide followed by neutron activation of the final product. Systems investigated include tablets and multiparticulates for oral administration, enemas and suppositories, metered dose inhalers and nebulisers, and nasal sprays and drops. Gamma-scintigraphy provides information on the deposition, dispersion and movement of the formulation. The combination of such studies with the assay of drug levels in blood or urine specimens, pharmacoscintigraphy, provides information concerning the sites of drug release and absorption. Data acquired from the scintigraphic evaluation of pharmaceutical dosage forms are now being used increasingly at all stages of product development, from the assessment of prototype delivery systems to supporting the product licence application.

Diltiazem↗

Nonlinear mixed effects modeling of single dose and multiple dose data for an immediate release (IR) and a controlled release (CR) dosage form of alprazolam.

PURPOSE: NONMEM was applied to single dose and multiple dose bioavailability data for an immediate release (IR) and a controlled release (CR) dosage form of alprazolam to acquire additional information from the data which are not easily obtainable by traditional means. METHODS: The objective function value (OBJ) and diagnostic plots were used as measures of goodness of fit of the model to the data. A change in the OBJ value of 7.9 was necessary to show statistical significance (p < 0.005) between two models when the two models differed by 1 parameter. RESULTS: A two-compartment linear model with first-order absorption and elimination best describes the data. Including a lag time, two different rates of absorption (KAIR and KACR), and bioavailability for the CR relative to the IR dosage form significantly improved the fit of the model to the data. Cigarette smoking was associated with a 100% increase in clearance of alprazolam as compared to non-smokers. The higher residual variability observed in this study, where interoccasion variability (IOV) was not initially modeled, could be explained to a large extent by the presence of significant interoccasion variability (IOV). CONCLUSIONS: Since alprazolam has been suggested to be mainly metabolized by the CYP3A4 isozyme in humans, it appears that tobacco could be an inducer of CYP3A4 and/or alprazolam may be metabolized by other isozyme(s) (specifically, CYP1A1/1A2) that are induced by cigarette smoke. The population pharmacokinetic model approach combined with exploratory graphical data analysis is capable of identifying important covariates from well-controlled "data rich" Phase I studies early in drug development.

Adult↗

Systemic peptide delivery via the stomach: in vivo evaluation of an oral dosage form for salmon calcitonin.

It was the aim of this study to investigate the potential of stomach targeted delivery systems for systemic peptide administration using salmon calcitonin as a model drug. Chitosan was modified by the immobilization of thiol groups utilizing 2-iminothiolane in order to obtain a chitosan-4-thiobutylamidine conjugate (chitosan-TBA). Furthermore, a chitosan-pepstatin A conjugate was synthesized by a carbodiimide mediated linkage of the pepsin inhibitor to the polymer. The protective effect of this novel conjugate for calcitonin towards pepsin was evaluated in vitro. Minitablets (5 mg) were generated by direct compression of calcitonin, chitosan, chitosan-TBA, chitosan-pepstatin A conjugate and glutathione (GSH), respectively (A, 1:0:69:20:10; B, 1:79:0:20:0; C, 1:99:0:0:0). The drug release was investigated in an artificial gastric fluid. Biofeedback studies were performed in rats by determining the decrease in plasma calcium level after oral administration. The novel chitosan-pepstatin A conjugate displayed 291+/-58 nmol inhibitor per gram polymer (mean+/-S.D., n = 5). The chitosan-inhibitor conjugate showed a very strong protective effect for salmon calcitonin towards pepsinic degradation. A controlled drug release was provided by all tested dosage forms-A, B and C. Dosage form B led only to a slight reduction of the plasma calcium level, displaying a pharmacological efficacy versus i.v. injection of 0.41%, while dosage form C did not lead to any significant effect. In contrast, dosage form A led to a decrease in the plasma calcium level of 10% for at least 12 h. The pharmacological efficacy of this formulation was determined to be 1.35%. The study suggests that stomach targeted oral delivery might be a promising novel approach for noninvasive systemic peptide administration.

Administration, Oral↗

A rapid colorimetric method for the determination of Losartan potassium in bulk and in synthetic mixture for solid dosage form.

Two new rapid reproducible and economical spectrophotometric methods are described for the determination of Losartan potassium in bulk and in synthetic mixture for solid dosage forms. Both methods are based on the formation of an orange-red and orange ion-pair complex due to the action of Calmagite (CT) and Orange-II (O-II) on Losartan potassium in acidic medium (pH 1.2). Under optimised conditions, they show an absorption maxima at 491 nm (CT) and 486 nm (O-II), with molar absorptivities of 1.74 x 10(3) and 1.75 x 10(3) l mol(-1) cm(-1) and Sandell's sensitivities of 0.2649 and 0.2637 per 0.001 absorbance unit for CT and O-II, respectively. The colour is stable for 5 min after extraction. In both cases Beer's law is obeyed between 10 and 100 microg ml(-1). The proposed method was successfully extended to synthetic mixture for solid dosage forms.

Antihypertensive Agents↗

Determination of conjugated and esterified estrogens in pharmaceutical tablet dosage forms by high-pressure, normal-phase partition chromatography.

A high-pressure, normal-phase partition chromatographic method for the identification and determination of conjugated and esterified estrogens in pharmaceutical tablet dosage forms is described. The method is based on the separation of the estrogen sulfate esters on a conventional diatomaceous earth-H20 column, followed by HCI-methanol hydrolysis, and finally a chromatographic separation on a chemically bonded ether (ETH-Permaphase) column and measurement. Mobile phases found useful were combinations of 2-propanol and n-heptane. Equillin and -dehydroestrone, a structurally related isomer, not separately determined in the proposed method, are determined as a sum by performing a chromatographic study of their corresponding 2, 4-dinitrophenylhydrazine derivatives. Studies have indicated several estrogen derivatives can be rapidly formed and then separated on the same column, providing a useful qualitative analysis scheme. Commercial tablet dosage forms were analyzed for conjugated and esterified estrogens and the results are presented.

Chromatography, High Pressure Liquid↗

Development and validation of spectrophotometric methods for determination of fluoxetine, sertraline, and paroxetine in pharmaceutical dosage forms.

Three simple and sensitive spectrophotometric methods were developed and validated for determination of the hydrochloride salts of fluoxetine, sertraline, and paroxetine in their pharmaceutical dosage forms. These methods were based on the reaction of the N-alkylvinylamine formed from the interaction of the free secondary amino group in the investigated drugs and acetaldehyde with each of 3 haloquinones, i.e., chloranil, bromanil, and 2,3-dichloronaphthoquinone, to give colored vinylamino-substituted quinones. The colored products obtained with chloranil, bromanil, and 2,3-dichloronaphthoquinone exhibit absorption maxima at 665, 655, and 580 nm, respectively. The factors affecting the reactions were studied and optimized. Under the optimum reaction conditions, linear relationships with good correlation coefficients (0.9986-0.9999) were found between the absorbances and the concentrations of the investigated drugs in the range of 4-120 microg/mL. The limits of detection for the assays ranged from 1.19 to 2.98 microg/mL. The precision values of the methods were satisfactory; the relative standard deviations were 0.56-1.24%. The proposed methods were successfully applied to the determination of the 3 drugs in pure and pharmaceutical dosage forms with good accuracy; the recoveries ranged from 99.1 to 101.3% with standard deviations of 1.15-1.92%. The results compared favorably with those of reported methods.

Acetaldehyde↗

Sustained-release dosage form of oxolamine citrate: preparation and release kinetics.

One of the principal uses of microencapsulation for pharmaceuticals has been the preparation of sustained-release dosage forms which have been usually presented in the form of a suspension or gel. However, a non-disintegrating tablet would be a better formulation to obtain sustained-release effect. Microencapsulation has been employed to provide protection of the core material against atmospheric effects, to cover the unpleasant taste and to enhance the stability. A number of drugs have also been encapsulated to reduce gastric and other GI tract irritations, to alter release properties and to change availability. Oxolamine citrate is one of the synthetic derivatives of 3,5-disubstituted 1,2,4-oxodiazole, used particularly for its antitussive activity. The usual dose of the drug is 200 mg given four times a day. Its use was limited by side-effects of nausea and vomiting. In order to prevent the disadvantages caused by taking the drug four times daily, and to reduce the side-effects, a sustained-release dosage form of oxolamine citrate was prepared by the microencapsulation technique and microcapsules thus formed were pressed into tablets. Dissolution tests were done with microcapsules and tablets formed by microcapsules by using the USPXXI paddle method and dissolution kinetics were studied and evaluated.

Antitussive Agents↗

High-performance liquid chromatographic analysis of verapamil and its application to determination in tablet dosage forms and to drug dissolution studies.

A high-performance liquid chromatographic procedure with two detectors is presented for the determination of verapamil in pharmaceutical dosage forms. The procedure is based on the use of reversed-phase high-performance liquid chromatography with UV and fluorimetric detectors. Each analysis required no longer than 6 min for both detection procedures. Quantification was achieved by measurement of the ratio of the peak area of the drug to the internal standard (fluoxetine) and the detection limit was 10 ng/ml for the UV detector and 750 pg/ml for the fluorimetric detector. There was no significant difference between inter- and intra-day studies for verapamil determined for two different concentrations (0.05 and 1.00 microgram/ml). This process could be used to determine verapamil concentrations in the range 0.025-50 and 0.0008-20 micrograms/ml for UV and fluorimetric detection, respectively. These methods were applied, without any interference from the excipients, for the determination of the drug in tablets and in drug dissolution studies. It is suggested that the proposed HPLC procedures could be used for routine quality control and dosage form assay of verapamil hydrochloride.

Calcium Channel Blockers↗

Solid dosage forms: 1975-1983.

The changes in the types and drug content of solid dosage forms as analyzed in the ballistics program at the Drug Enforcement Administration (DEA) Special Testing and Research Laboratory from 1975 to 1983 are discussed. Trends and patterns in stimulants, depressants, and hallucinogenic drugs are explained.

Antidepressive Agents↗

Spectrophotometric estimation of rifampin-isoniazid mixture in dosage form.

A spectrophotometric method for the simultaneous determination of rifampin and isoniazid in dosage form is described. By using a mixture of methanol and water (2 + 3) as solvent, the absorbance of the mixtures of rifampin and isoniazid is measured at 264 nm and 335 nm. The concentration of each can then be calculated by solving 2 simultaneous equations. The procedure was successfully applied to a number of commercial samples; the results agreed well with those for compendial method.

Dosage Forms↗

Review of global regulations concerning biowaivers for immediate release solid oral dosage forms.

The regulations with respect to biowaivers for immediate release (IR) solid oral dosage forms in the USA, the EU, Japan and from the World Health Organization (WHO) are summarized and compared. Two case studies are presented, one from our own files and one from the open literature, showing the similarities and the differences among the qualification requirements of the four systems. The regulatory experience gained up to now is reviewed and expected future trends are discussed.

Administration, Oral↗

Development of a sustained release dosage form for alpha-lipoic acid. I. Design and in vitro evaluation.

The purpose of this study was the design and evaluation of a sustained release dosage form for the oral administration of alpha-lipoic acid. The cationic polymer chitosan was used in order to provide a controlled drug release based on ionic interactions with the anionic drug. The effect of such ionic interactions on the release of alpha-lipoic acid could be verified by diffusion studies. In vitro release studies with tablets (diameter: 10.0 mm; thickness: approximately 4 mm) containing 80% alpha-lipoic acid and 20% chitosan acetate showed a controlled drug release over a time period of 24 h. Raising the ratio of chitosan acetate in such delivery systems led to an even stronger retardation of drug release. In addition, permeation studies carried out in Ussing-type chambers with freshly excised intestinal mucosa from guinea pigs demonstrated no significant (p < 0.05) influence of the degree of drug ionization on its absorption behavior. The apparent permeability coefficient (Papp) for alpha-lipoic acid was determined to be 1.39 +/- 0.28 x 10(-5) cm/sec at pH 6.4 (means +/- SD). The use of a sustained delivery system for alpha-lipoic acid, which is based on ionic interactions, should therefore have no influence on the absorption behavior of the drug. The sustained release dosage forms described here might provide a constant plasma level of the drug being highly beneficial for various therapeutic reasons.

Algorithms↗

Application of capillary zone electrophoresis with indirect UV detection to the determination of a model drug, vigabatrin, in dosage forms.

PURPOSE: Vigabatrin, an anti-epileptic drug with poor UV absorptivity, is used as a model drug to investigate parameters affecting quantitative determination of cationic drugs using capillary zone electrophoresis with indirect UV detection. METHODS: All experiments were performed on a HP 3D CE instrument equipped with an on-column diode array UV absorbance detector. Untreated fused silica capillaries with an inner diameter of 50 microm, an outer diameter of 365 microm, and a total length of 50 cm (41.5 cm to the detector) were used. Indirect UV detection was performed at 214 nm. Operational parameters such as buffer type and concentration, its pH, probe type and concentration, and the impact of co-ions on the efficiency of separation, were studied. Sabrilex sachets and Sabril tablets were subjected to analysis in this study. RESULTS: Optimal separation and quantification of vigabatrin was obtained using 5 mM sodium phosphate buffer containing 5 mM benzyl tri-ethyl ammonium hydroxide (BTEA) at pH 2.2, with 8-aminocaprylic acid as the internal standard. The method was linear over a range of 5-150 microg/ml (r = 0.9911) and a wider range of 100-600 microg/ml (r = 0.9937) concentration of the drug. The relative standard deviation (RSD) of migration time for 10 consecutive injections of a standard solution of vigabatrin was 0.19%. The limit of quantification (LOQ) was 5 microg/ml. CONCLUSIONS: The method was demonstrated for quantification of vigabatrin in both tablet and sachet dosage forms and proved to be a very specific and fast (8 min) means of routine analysis of the drug in dosage forms, in assay or dissolution testing.

Chemistry, Pharmaceutical↗

[Bioequivalence in vitro evaluation of some antibacterial generic dosage forms].

In this work, bioequivalence between generic and corresponding original brand-name dosage forms of some antibacterial drugs, frequently prescribed in developing countries, have been examined using in vitro dissolution testing. For this purpose, tablet or hard capsule formulations of five active substances (amoxycillin, ampicillin, co-trimoxazole (sulphamethoxazole/trimethoprim), metronidazole and penicillin V) have been retained. For each active substance, batch samples of three generic and one test formulations have been submitted to the pharmaceutical quality control and dissolution testing. Results obtained have shown that all samples examined met the specifications of quality edited by the pharmacopeias. On the other hand, interchangeability between generic and corresponding test formulations should be possible since their dissolution profiles are superposables enough.

Anti-Bacterial Agents↗

Current perspectives on the dissolution stability of solid oral dosage forms.

Dissolution stability (i.e., retention of the dissolution characteristics of a solid oral dosage form from the time of manufacture up to its expiration date) is a critical parameter from the standpoint of quality control, regulatory compliance, and impact on the bioavailability of the product. Significant changes in the in vitro release profiles of a drug product during storage may alter its bioavailability. Factors that affect the dissolution stability of a product during aging include formulation components (active drug, excipients, and coating materials), processing factors, storage conditions, and packaging. The role of each of these factors in promoting changes in dissolution in both immediate-release and modified-release products is dependent on the product and has to be evaluated on a case-by-case basis. Although data obtained under accelerated conditions of storage are not useful in predicting the dissolution shelf-life of the product under ambient conditions, they are of value in assessing the "ruggedness" of the product and its ability to withstand the varied climatic conditions during transport, shipping, and storage. The clinical significance of alterations in the in vitro dissolution profiles that may occur during aging and strategies to avert and counteract such changes are discussed in the article.

Administration, Oral↗

Comparative study to determine the optimal melatonin dosage form for the alleviation of jet lag.

To compare the impact of various dosage forms of melatonin and placebo on jet lag symptoms, 320 volunteers who had flights over 6 to 8 time zones were recruited for a double-blind, randomized, placebo-controlled study. The volunteers received either melatonin 0.5-mg fast-release (FR) formulation, melatonin 5-mg FR formulation, melatonin 2-mg controlled-release (CR) formulation, or placebo. The study medication was taken once daily at bedtime during 4 days after an eastward flight. The volunteers completed the Profile of Mood States (POMS), sleep log, and symptoms questionnaires once daily and the Karolinska Sleepiness Scale (KSS) three times daily prior to departure and during the 4 days of medication intake postflight. A total of 234 (73.1%) participants were compliant and completed the study. The FR melatonin formulations were more effective than the slow-release formulation. The 5-mg FR formulation significantly improved the self-rated sleep quality (p < .05), shortened sleep latency (p < .05), and reduced fatigue and daytime sleepiness (p < .05) after intercontinental flight. The lower physiological dose of 0.5 mg was almost as effective as the pharmacological dose of 5.0 mg. Only the hypnotic properties of melatonin, sleep quality and sleep latency, were significantly greater with the 5.0-mg dose.

Adult↗