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Evaluation of hydroperoxides in common pharmaceutical excipients.

While the physical properties of pharmaceutical excipients have been well characterized, impurities that may influence the chemical stability of formulated drug product have not been well studied. In this work, the hydroperoxide (HPO) impurity levels of common pharmaceutical excipients are measured and presented for both soluble and insoluble excipients. Povidone, polysorbate 80 (PS80), polyethylene glycol (PEG) 400, and hydroxypropyl cellulose (HPC) were found to contain substantial concentrations of HPOs with significant lot-to-lot and manufacturer-to-manufacturer variation. Much lower HPO levels were found in the common fillers, like microcrystalline cellulose and lactose, and in high molecular weight PEG, medium chain glyceride (MCG), and poloxamer. The findings are discussed within the context of HPO-mediated oxidation and formulating drug substance sensitive to oxidation. Of the four excipients with substantial HPO levels, povidone, PEG 400, and HPC contain a mixture of hydrogen peroxide and organic HPOs while PS80 contains predominantly organic HPOs. The implications of these findings are discussed with respect to the known manufacturing processes and chemistry of HPO reactivity and degradation kinetics. Defining critical HPO limits for excipients should be driven by the chemistry of a specific drug substance or product and can only be defined within this context.

Cellulose↗

Evaluation of a dynamic permeation technique for studying drug-macromolecule interactions.

The applicability of a permeation rate technique to the determination of drug-macromolecule interactions was tested by measuring the extent of interaction of methylparaben with polyvinylpyrrolidone and polysorbate 80. Results were in agreement with literature data obtained by other techniques. The present method, although restricted to permeant molecules that diffuse readily through nonporous nylon membranes, is of potential value for investigations of drug binding by macromolecules not retained by porous dialysis membranes.

Binding, Competitive↗

Drug permeation through membranes V: interaction of diazepam with common excipients.

The effects of common tablet excipients on the permeation of diazepam through polydimethylsiloxane membranes and on the turnover time of goldfish were studied. The permeability coefficient decreased and the turnover time increased in the presence of talc, polysorbate 80, and, possibly, fumed silicon dioxide, but these parameters were unaffected by lactose, microcrystalline cellulose, and starch.

Animals↗

Micellar distribution equilibria: ultracentrifugal study of apparent partition coefficients.

Ultracentrifugation was used for the partial isolation of polysorbate 80 micelles in aqueous media to determine the apparent partition coefficients of various drug species between water and the micellar pseudophase. The ratio of solute concentration in the micelles to that in water was measured for procaine, salicylic acid, sulfapyridine, sulfisoxazole, and sodium 2-naphthalensulfonate over ranges of pH, surfactant concentration, drug concentration, and micelle sedimentation. Apparent partition coefficients for the systems investigated were independent of both drug concentration and surfactant concentration, indicating that the mode(s) of surfactant-drug interaction are essentially invariant over the ranges of systematic variables studied. The method provides a relatively simple and rapid means of quantitatively evaluating drug-surfactant interactions above the CMC, when surfactant and solute can be assayed in mixtures without interference.

Chemical Phenomena↗

Extreme vertexes design in formulation development: solubility of butoconazole nitrate in a multicomponent system.

The extreme vertexes design was shown to be an efficient method for the study of mixture problems, for generating points in the factor space that define a region for response surface analysis. By using this method, the solubility of butoconazole nitrate, an imidazole antifungal agent, was studied as a function of four components, polyethylene glycol 400, glycerin, polysorbate 60, and water, whose levels were subject to given constraints. A fifth component, poloxamer 407, was held constant. The design was used to generate 14 points in the region defined by the constraints. The G efficiency of the design, with the assumption of a quadratic model for the response surface, was 79%. By using the solubilities determined at the 14 points and regression analysis, an equation was generated to characterize the response surface. Contour plots of the response surface illustrate the relationship of the solubility as a function of the components, and solubilities calculated at other points (in the region) agree well with the observed data.

Antifungal Agents↗

Theoretical and experimental studies of transport of micelle-solubilized solutes.

A physical model describing the simultaneous diffusion of free solute and micelle-solubilized solute across the aqueous boundary layer, coupled with partitioning and diffusion of free solute through a lipoidal membrane, is derived. In vitro experiments utilizing progesterone and polysorbate 80 showed excellent agreement between theoretical predictions based on independently determined parameters and experimental results. The physical model predicts that micelles can assist the transport of solubilized solute across the aqueous diffusion layer, resulting in a higher solute concentration at the membrane surface than would be predicted if micelle diffusion is neglected. At high surfactant concentrations, the aqueous diffusion layer resistance can be eliminated and the activity of the solute at the membrane can approach the bulk solute activity. This mechanism could explain observed enhanced absorption rates in vivo when both micelle solubilization occurs and the aqueous diffusion layer is an important transport barrier. The importance of determining and defining the thermodynamic activity of the diffusing solute is emphasized.

Biological Transport↗

Development of a water-soluble preparation of emamectin benzoate and its preventative effect against the wilting of pot-grown pine trees inoculated with the pine wood nematode, Bursaphelenchus xylophilus.

Water-soluble preparations have been investigated to develop a trunk injection agent based on the poorly water-soluble anti-nematode emamectin benzoate. Following tests on the phytotoxicity of some solvents and solubilizers and demonstration of the ability of some solubilizers to dissolve emamectin benzoate in water, acetone + methanol was selected as the solvent and Polysorbate 80 as the solubilizer. This water-soluble preparation of emamectin benzoate prevented the wilting of pot-grown 4-year-old trees of the Japanese black pine, Pinus thunbergii, artificially inoculated with the pine wood nematode, Bursaphelenchus xylophilus, at a dose of 20 g emamectin benzoate per cubic metre of pine tree.

Animals↗

Post-column infusion study of the 'dosing vehicle effect' in the liquid chromatography/tandem mass spectrometric analysis of discovery pharmacokinetic samples.

It has become increasingly popular in drug development to conduct discovery pharmacokinetic (PK) studies in order to evaluate important PK parameters of new chemical entities (NCEs) early in the discovery process. In these studies, dosing vehicles are typically employed in high concentrations to dissolve the test compounds in dose formulations. This can pose significant problems for the liquid chromatography/tandem mass spectrometric (LC/MS/MS) analysis of incurred samples due to potential signal suppression of the analytes caused by the vehicles. In this paper, model test compounds in rat plasma were analyzed using a generic fast gradient LC/MS/MS method. Commonly used dosing vehicles, including poly(ethylene glycol) 400 (PEG 400), polysorbate 80 (Tween 80), hydroxypropyl beta-cyclodextrin, and N,N-dimethylacetamide, were fortified into rat plasma at 5 mg/mL before extraction. Their effects on the sample analysis results were evaluated by the method of post-column infusion. Results thus obtained indicated that polymeric vehicles such as PEG 400 and Tween 80 caused significant suppression (> 50%, compared with results obtained from plasma samples free from vehicles) to certain analytes, when minimum sample cleanup was used and the analytes happened to co-elute with the vehicles. Effective means to minimize this 'dosing vehicle effect' included better chromatographic separations, better sample cleanup, and alternative ionization methods. Finally, a real-world example is given to illustrate the suppression problem posed by high levels of PEG 400 in sample analysis, and to discuss steps taken in overcoming the problem. A simple but effective means of identifying a 'dosing vehicle effect' is also proposed.

2-Hydroxypropyl-beta-cyclodextrin↗

Comparable virus inactivation by bovine or vegetable derived Tween 80 during solvent/detergent treatment.

A mixture of Tri-n-butyl phosphate (TNBP) and Polysorbate 80 (Tween 80) is often used for virus inactivation during the manufacture of medicinal products derived from human plasma. This procedure, known as solvent/detergent treatment, is of high effectiveness for inactivation of enveloped viruses. Tween 80 can be manufactured from bovine tallow or from vegetable material. As the bovine-derived Tween 80 is normally used for the solvent/detergent treatment, the question has been raised whether vegetable-derived Tween 80 can be applied as an alternative substance for the solvent/detergent treatment. Comparable inactivation studies were therefore performed using Vesicular Stomatitis Virus (VSV), Pseudorabiesvirus (PRV), Semliki Forest Virus (SFV) and Bovine Diarrhoea Virus (BVDV). In principle, no differences were observed in the effectiveness of the solvent/detergent treatment when bovine or vegetable-derived Tween 80 was used. The comparability in the efficiency of both detergents for virus inactivation was shown to be independent of solvent/detergent concentration, of temperature (16 degrees C and 6 degrees C vs. 27 degrees C and 25 degrees C) and protein concentration (10% and 5% human albumin). In summary, vegetable-derived Tween 80 is of the same effectiveness as bovine-derived Tween 80, when used for virus inactivation by the solvent/detergent treatment.

Animals↗

Clinical study on the antifungal activity of griseofulvin in the presence of surfactants.

Scales were taken from 128 human volunteers suffering from ringworm infections and grown on Sabourand's media to determine the type of organisms causing the disease. Groups of 32 patients each were treated for sixty days with griseofulvin tablets containing dioctyl sodium sulfosuccinate, cetyl pyridinium chloride and polysorbate 80 respectively, while another group of 32 was given tablets containing griseofulvin only for the same period. The subjects treated with griseofulvin tablets containing surfactants showed a higher rate of cure than those treated with griseofulvin alone.

Adult↗

Butyl-p-aminobenzoate. Preparation, characterization and quality control of a suspension injection for epidural analgesia.

The conditions for the preparation of a 10% butyl-p-aminobenzoate suspension for epidural administration were investigated. Pharmaceutically acceptable suspensions are composed of butyl-p-aminobenzoate particles dispersed in a solvent consisting of the surfactant polysorbate 80 added to normal saline in a concentration of 0.25 mg/ml. pH Correction is not necessary. The suspensions are sterilized at 120 degrees C followed by special milling procedures to accomplish acceptable particle size. Butyl-p-aminobenzoate suspensions are stable at 4 degrees C during a period of at least four weeks.

Analgesics↗

Commonly used surfactant, Tween 80, improves absorption of P-glycoprotein substrate, digoxin, in rats.

Tween 80 (Polysorbate 80) is a hydrophilic nonionic surfactant commonly used as an ingredient in dosing vehicles for pre-clinical in vivo studies (e.g., pharmacokinetic studies, etc.). Tween 80 increased apical to basolateral permeability of digoxin in Caco-2 cells suggesting that Tween 80 is an in vitro inhibitor of P-gp. The overall objective of the present study was to investigate whether an inhibition of P-gp by Tween 80 can potentially influence in vivo absorption of P-gp substrates by evaluating the effect of Tween 80 on the disposition of digoxin (a model P-gp substrate with minimum metabolism) after oral administration in rats. Rats were dosed orally with digoxin (0.2 mg/kg) formulated in ethanol (40%, v/v) and saline mixture with and without Tween 80 (1 or 10%, v/v). Digoxin oral AUC increased 30 and 61% when dosed in 1% and 10% Tween 80, respectively, compared to control (P < 0.05). To further examine whether the increase in digoxin AUC after oral administration of Tween 80 is due, in part, to a systemic inhibition of digoxin excretion in addition to an inhibition of P-gp in the GI tract, a separate group of rats received digoxin intravenously (0.2 mg/kg) and Tween 80 (10% v/v) orally. No significant changes in digoxin IV AUC was noted when Tween 80 was administered orally. In conclusion, Tween 80 significantly increased digoxin AUC and Cmax after oral administration, and the increased AUC is likely to be due to an inhibition of P-gp in the gut (i.e., improved absorption). Therefore, Tween 80 is likely to improve systemic exposure of P-gp substrates after oral administration. Comparing AUC after oral administration with and without Tween 80 may be a viable strategy in evaluating whether oral absorption of P-gp substrates is potentially limited by P-gp in the gut.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Surfactant-induced alterations of permeability of rabbit oral mucosa in vitro.

The permeability of rabbit oral mucosa to eight nonelectrolytes was measured in vitro in the absence and in the presence of 0.025, 0.1, and 1.0% concentrations of anionic, cationic, and nonionic surfactants. The anionic surfactant sodium lauryl sulfate and the cationic surfactants cetyltrimethylammonium bromide and cetylpyridinium chloride caused greater increases in permeability than polysorbate 80, a nonionic surfactant. The increases in permeability brought about by the surfactants were concentration dependent.

Animals↗

Effects of surfactants on the permeability of canine oral mucosa in vitro.

The effect of 3 cationic, 1 anionic, and 1 non-ionic surfactant on the permeability of oral frenulum removed from anesthetized dogs was determined in vitro. Permeability to 12 organic compounds was measured in the presence and absence of surfactant. Cetylpyridinium chloride, cetyltrimethylammonium bromide, benzalkonium chloride and sodium lauryl sulfate, at concentrations from 0.025-1.0% caused dose-related increases in permeability to each of the solutes tested, whereas polysorbate 80 caused an increase in permeability to only 3 solutes, and this occurred only at the highest surfactant concentration employed.

Animals↗

Microbial sterility testing of oil-formulated bovine somatotropin using Tween 80 dispersion.

The Food and Drug Administration requires that sterile pharmaceutical products be free of viable microorganisms. Sterility testing of pharmaceutical products provides added assurance that the product is sterile. Sterility testing is typically done by inoculating the drug product into microbial growth media followed by visual inspection for growth during incubation for a specified time period. A lack of visual growth indicates that the drug product samples tested were sterile. Formulated Posilac bovine somatotropin consists of protein particles suspended in an oil-based excipient. The product formulation is immiscible in aqueous media due to the excipient's water insolubility and the insolubility of the protein particles at near neutral pH values. Because the formulation is packaged and sold as a sterile product, it is critical that a sensitive microbial sterility test method be used for this key quality test. A sterility test method was developed for Posilac that utilized Tween 80 (i.e. polysorbate 80) as a dispersant. Dispersion of the product using Tween 80 produced a homogeneous suspension of bovine somatotropin particles and oil droplets in the micron size range. The suspension did not appreciably settle out with time, attesting to the homogeneous nature of the mixture. This method was found to be compatible with survival, recovery, and growth from low numbers of the test organisms required by the U.S. Pharmacopeia XXIII as well as from two additional test cultures.

Animals↗

Study of the preparation of sustained-release microspheres containing zedoary turmeric oil by the emulsion-solvent-diffusion method and evaluation of the self-emulsification and bioavailability of the oil.

The purpose of this study was to design a sustained-release formulation of an oily drug. The sustained-release microspheres with self-emulsifying capability containing zedoary turmeric oil (ZTO) were prepared by the quasi-emulsion-solvent-diffusion method. The micromeritic properties, the efficiency of emulsification and the drug-release behavior of the resultant microspheres were investigated. The bioavailability of the microspheres was compared with conventional ZTO self-emulsifying formulations for oral administration using 12 healthy rabbits. An HPLC method was employed to determine the concentration of germacrone in plasma, which was used as an index of ZTO. Spherical and compacted microspheres with average diameters of 100-600 microm have been prepared, and their release behavior in distilled water containing 1.2% (w/v) of polysorbate-80 can be controlled by the ratio of polymer/Areosil200 in the microspheres. The resultant emulsions with mean droplet sizes of 200-500 nm are produced when the microspheres are immersed in phosphate buffer (pH 6.8) under gentle agitation. The stability and the droplet size of the resultant emulsions are also affected by the polymer/Areosil200 ratio in the formulation, while the amount of talc has a marked effect on the self-emulsifying rate. The plasma concentration-time profiles with improved sustained-release characteristics were achieved after oral administration of the microspheres with a bioavailability of 135.6% with respect to the conventional self-emulsifying formulation (a good strategy for improving the bioavailability of an oily drug). In conclusion, the sustained-release microspheres with self-emulsifying capability containing ZTO have an improved oral bioavailability. Our study offers an alternative method for designing sustained-release preparations of oily drugs.

Administration, Oral↗

Quantification of the leaching of triethyl citrate/polysorbate 80 mixtures from Eudragit RS films by differential scanning calorimetry.

The influence of triethyl citrate and polysorbate 80 (Tween 80) on the glass transition temperature (T(G)) of Eudragit RS membranes was investigated using differential scanning calorimetry (DSC). The T(G)-decreasing effect of TEC and Tween 80 displayed an almost identical performance in extent at a linear relationship between weight proportion and T(G) resulting in a specific T(G)-decrease (T(G,spec.)) of -1.98(K/%TEC) and -1.86(K/%Tween), respectively. Thus, the proportion of each adjuvant could be summarized as the plasticizer complex weight proportion (PC) with T(G,spec.)=1.96(K/%PC). Vice versa this linear relationship could be used to determine the proportion of plasticizer complex within the polymer membrane after swelling and diffusion processes, i.e. plasticizer leaching. For membranes containing 20% (w/w) TEC and 8% (w/w) Tween 80 as plasticizer complex a fast leaching resulted during the dissolution test reaching an equilibrium at 6.08% (+/-0.5) PC after 30 min in demineralised water. The DSC method proved to be a simple method to determine plasticizer leaching via T(G), however, without respect on the film forming properties of the two different excipients. Plasticizing with TEC or TEC/Tween 80 mixtures led to smooth and continuous films, while plasticizing with Tween 80 only resulted in mosaic like fissured films.

Algorithms↗

Controlled drug release from pellets containing water-insoluble drugs dissolved in a self-emulsifying system.

The aim of the study was to provide a controlled release system, which could be used for the oral administration of highly water-insoluble drugs. Pellets have been prepared by extrusion/spheronization containing two model drugs (methyl and propyl parabens) of low water solubility. One type of pellets contained the drugs mixed with lactose and microcrystalline cellulose (MCC) and the other types of pellets contained the model drugs dissolved in a self-emulsifying system (4.8%) consisting of equal parts of mono-diglycerides and polysorbate 80 and MCC. Pellets of all types in the same size fraction (1.4-2.0 mm) were coated to different levels of weight gain, with ethylcellulose, talc and glycerol. A sample of pellets containing methyl parabens in the self-emulsifying system was pre-coated with a film of hydroxypropylmethyl cellulose from an aqueous solution and then coated as above. Dissolution experiments established that the presence of the self-emulsifying system enhanced the drug release of both model drugs and that the film coating considerably reduced the drug release from pellets made with just water, lactose and MCC. The coating reduced the drug release from the pellets containing the self-emulsifying system to a lesser extent but in relation to the quantity of coat applied to the pellets. The application of a sub-coating of hydroxypropylmethyl cellulose was able to reduce the release rate of methyl parabens self-emulsifying system ethyl cellulose coated pellets. Thus, the formulation approach offers the possibility of formulating and controlling the in vitro release of water-insoluble drugs from solid oral dosage forms.

Capsules↗