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Biomedical subjects

J Swarbrick

Publications and source records attributed to J Swarbrick.

At least 19 recordsLinked to original sources

Assessment of value and applications of in vitro testing of topical dermatological drug products.

The FDA recently issued a guidance covering practices of scaleup and post approval changes with semisolids (SUPAC-SS). This guidance outlines the steps that must be taken by a company to maintain certification of its semisolid dermatological products after quantitative changes have been made in their compositions and/or after changes have been made in the sourcing of their key ingredients, in their processing, in their batch sizes, and/or after their site of manufacture has been relocated. A key element within the guidance is a release test to be used to determine if the diffusional release of a drug found in a formulation is the same after changes have been made to the formulation as it was prior to implementing the changes. The AAPS-FDA sponsored workshop was set up to explore this qualifying test. The stated aims of the workshop were: a) to illustrate the methodology and techniques of in vitro release testing, b) to show the sensitivity of in vitro release with respect to manufacturing variables and to variations in components and composition (of specific formulations), c) to recognize in vitro release testing as a useful procedure for SUPAC documentation, d) to highlight and evaluate other applications of in vitro release testing, e) to explore the degree to which in vitro release testing and bioavailability may be related, and f) to evaluate the role of in vitro release testing of topical dosage forms as a tool to improve product quality.

Administration, Topical↗

Absorption of sulindac from a novel (Pro-SorbTM) liquid formulation.

The absorption of sulindac from two different 200 mg oral dosage forms, Pro-SorbTM liquid and Clinoril tablets, was compared following administration to eight healthy human volunteers. Subjects received both formulations according to a randomized crossover design and blood samples were collected at selected times during 24 h. Concentrations of both sulindac and its active sulphide metabolite were determined by HPLC and individual serum concentration versus time profiles were constructed. Maximal serum concentrations (Cmax) and area under the curve values (AUClast and AUC0-infinity) were compared for both sulindac and sulindac sulphide. The results indicate that the rate and extent of absorption of sulindac from Pro-SorbTM liquid are significantly greater than those from Clinoril tablets, a finding consistent with the observation that the liquid form produces less gastric irritation following oral administration.

Absorption↗

Drug transport across nylon 610 films: influence of synthesis variables.

Nylon 610 is a hydrophilic polymer with considerable potential as a membrane for drug microencapsulation. To better understand drug transport through such membrane, the influence of the solvents and monomers used in the synthesis of nylon films were examined using a full factorial study. Nylon 610 films were synthesized by an interfacial polycondensation reaction using hexamethylenediamine (HD) in the water phase and sebacoyl chloride (SC) in the organic phase, which was a solvent blend of chloroform and trichlorotrifluoroethane at ratios of 1:1, 1:4, and 4:1. Monomer concentrations studied were 0.2, 0.4, and 0.6 M with respect to their appropriate phase, while the monomer ratios were 1:1, 3:1, and 1:3. The molecular weight, porosity, thickness, and crystallinity of the films were characterized. The transport of potassium chloride, hydrocortisone, and m-cresol was studied at 25 degrees C as a function of the synthesis variables. Potassium chloride was selected to measure the porosity of the membrane. Hydrocortisone and m-cresol, a known solvent for nylon 610, were used to study pore and solution-diffusion transport, respectively. The molecular weight of the films was proportional to the chloroform concentration. As the molecular weight increased, film thickness, porosity, and hydrocortisone permeability increased. As the molecular weight decreased, film thickness and porosity decreased, while m-cresol permeability increased. These results can be explained on the basis of HD ability to readily partition into a good solvent such as chloroform permitting high molecular weight polymer to form before precipitation.

Cresols↗

Albumin microspheres as a drug delivery system: relation among turbidity ratio, degree of cross-linking, and drug release.

The degree of cross-linking of albumin microspheres, with and without drug, was assessed using turbidity measurements carried out in the presence of water and the protein denaturant guanidine hydrochloride (GuHCl) at a concentration that disrupted noncovalent bonds while having no effect on covalent bonds. The measurements allowed calculation of a turbidity ratio (TG/TW), expressed as the ratio of the turbidity of albumin microspheres in 6 M GuHCl (TG) divided by that in water (TW). A linear relation existed between TG/TW and the (i) temperature at which the microspheres were prepared, (ii) concentration of the cross-linking agent glutaraldehyde, and (iii) time of exposure to a second cross-linking agent, formaldehyde vapor, three conditions that increase the degree of cross-linking. The turbidity ratio also increased as the concentration of the albumin solution used to prepare the microspheres increased from 25 to 50%. Drug release from the microspheres consisted of an initial, rapid, burst followed by a second, slower, phase. The rates in both release phases were inversely related to the turbidity ratio, suggesting that this parameter has utility as an indicator of the degree of cross-linking in albumin microspheres.

Albumins↗

The influence of liquid crystalline phases on drug percutaneous absorption. II. Permeation studies through excised human skin.

The influence of liquid crystalline (LC) phases on the percutaneous absorption of a model compound (ploxicromil; PXC) was studied with the use of the phase diagram for the surfactant, oil, and water comprising the vehicles. Two separate sets of vehicles, representing two different tie lines lying in the L1 + LC phase region, were prepared in which the concentration of LC was varied over the range 0 to 100% along each tie line. In vitro permeation studies of PXC from these systems were conducted using excised human skin and the flux values determined as a function of the percentage LC present in the vehicles. In virtually all cases, the flux reached a peak at 5-10% LC and then decreased significantly as the fraction of LC present increased further. The pattern of behavior observed is discussed in terms of current theories describing membrane-controlled and vehicle-controlled diffusion, none of which adequately model the results obtained.

Administration, Cutaneous↗

The influence of liquid crystalline phases on drug percutaneous absorption. I. Development of a vehicle.

A phase diagram approach has been used to formulate topically applied vehicles containing liquid crystalline phases. The current paper describes the construction of a major portion of the polyoxyethylene(20)cetyl ether:dodecanol:water phase diagram. Known mixtures of the three components were equilibrated and centrifuged to separate the resultant conjugate phases. These were identified and analyzed quantitatively to determine phase boundaries in relevant portions of the phase diagram. Two isotropic liquid phases, several two- and three-phase regions, a solid surfactant phase, and at least three distinct liquid crystalline phases were identified. The determination of tie lines was undertaken in a two-phase region containing an aqueous isotropic micellar solution and a liquid crystalline gel. This information will be used to prepare a number of vehicles of known phase composition and concentration for a systematic evaluation of the effect of liquid crystalline phases on transdermal drug delivery.

Chemical Phenomena↗

Effects of ionization on the percutaneous absorption of drugs: partitioning of nicotine into organic liquids and hydrated stratum corneum.

To gain further insight into the disposition of ionizable drugs in the stratum corneum, the partitioning of nicotine as a function of pH was studied in excised, hydrated, human stratum corneum (SC) and the organic liquids n-butanol, n-octanol, isopropyl myristate, and Miglyol 812. Partitioning in n-octanol, isopropyl myristate, and Miglyol 812 was consistent with the pH-partition hypothesis, while partitioning in n-butanol agreed with agreed with a model for the partitioning of the free base and an ion pair which dissociates in the organic phase. The results in SC also suggested the partitioning of ion pairs. Binding studies indicated that neither the un-ionized nor the ionized species is bound significantly in the stratum corneum. Trichloroacetate (TCA) anion increased partitioning of ionized nicotine in n-butanol, but had no effect in stratum corneum. Delipidization of the stratum corneum decreased the partition coefficient for the free base, but had no effect on the ionized species. Thermodynamic parameters determined from van't Hoff plots were consistent with the entry of un-ionized nicotine into ordered lipids. These results suggest that the un-ionized form is found within the lipid regions of the stratum corneum, while the ionized form is located in aqueous regions.

Chemical Phenomena↗

Sustained-release delivery systems, I: Phase diagram studies of dapsone and selected derivatives.

In order to develop slowly dissolving particles containing the antileprotic drug dapsone (4,4'-sulfonylbisbenzamine, that would be suitable for a sustained-release intramuscular injection, the dilauryl and monolauryl derivatives of dapsone, N,N'-didodecanoyl-4,4'-sulfonylbisbenzamine and N-dodecanoyl-4,4'-sulfonylbisbenzamine, respectively, were studied for their ability to form solid dispersions with the parent compound. The 1:2 binary phase diagram showed these two compounds were partially miscible in the liquid state, leading to the coexistence of a monotectic and a eutectic system in the phase diagram. The 1:3 phase diagram showed that these compounds were completely miscible in the liquid state and formed discontinuous solid solutions in the solid state. At a cooling rate of 2.5 degrees C min-1, eutectic mixtures lying on the dapsone side of the eutectic point formed glass solutions. Taken as a whole, the results demonstrate that the molecular interactions between 1 and 3 are stronger than those between 1 and 2. Accordingly, 3 would appear to be the better carrier for reducing the rate of dissolution of dapsone from a solid dispersion.

Calorimetry, Differential Scanning↗

Sustained-release delivery systems, II: In vitro dissolution of 4,4'-sulfonylbisbenzamine (dapsone)--N-dodecanoyl-4,4'-sulfonylbisbenzamine comelts.

An approach under investigation in our laboratory is the development of slowly dissolving particles containing an active drug, mixed or coated with a less soluble derivative or derivatives, that may hydrolyze back to the active drug following solution. Such particles have potential for sustained release by a number of routes of administration, including intramuscular injection. In the present work, the in vitro dissolution of particles of 4,4'-sulfonylbisbenzamine (dapsone) (1) and various comelts of 4,4'-sulfonylbisbenzamine (dapsone) (1) and N-dodecanoyl-4,4'-sulfonylbisbenzamine (the monolauryl derivative of dapsone) (3) was studied using a continuous flow-through cell under laminar flow conditions. Dissolution of particles of dapsone showed a biphasic pattern when plotted according to the Hixson-Crowell cube root equation. Dissolution rates of dapsone (1) from the comelts were found to correlate with the physical state of 1 in the solid binary dispersion. Comelts of 1:3 with a content higher than 36.5% w/w 1 (the eutectic mixture) had initial rates of dissolution which appeared to be dependent on the porosity of the particles. However, once this initial phase passed, the total amount dissolved increased as the amount of noneutectic 1-rich solid solution in the comelt increased. This suggests that 1 in the eutectic mixture has a slower dissolution rate than when present in the noneutectic, or excess 1-rich solid solution form. The comelts with a content of dapsone at or below the eutectic mixture dissolved more slowly and their dissolution rates were less dependent on concentration of 1. The mechanism of release of 1 from 1:3 comelts appeared to be matrix diffusion-controlled.

Dapsone↗

Influence of ophthalmic formulations on sodium cromoglycate disposition in the albino rabbit eye.

The effect of different ophthalmic vehicles on the disposition of sodium cromoglycate in tears and ocular tissues of the rabbit eye has been studied over 6 h. The vehicles contained sodium cromoglycate, 2% in an aqueous solution, 2 and 4% in an oleaginous formulation of polyethylene and mineral oil (Plastibase 5W), and 4% in an absorption ointment base of 10% hypoallergenic acetylated lanolin (Modulan) in paraffins. The last formulation was superior to all others studied over 6 h in prolonging the retention of sodium cromoglycate in the precorneal area and the conjunctiva. The concentration of sodium cromoglycate in the tears, conjunctiva and cornea 6 h after administration of the acetylated lanolin base equalled or exceeded the concentrations obtained with the aqueous solution 1 h post-instillation.

Animals↗

Drug permeation through human skin II: Permeability of ionizable compounds.

The aim of this study was to establish whether ionized as well as un-ionized forms of certain 4-oxo-4H-1-benzopyran-2-carboxylic acids (chromone-2-carboxylic acids) with pKa values less than 2 permeated through excised human skin and, if so, to determine the permeability coefficients of the permeating species. The permeation properties of four carboxylic acids were studied as a function of concentration over the pH range 5-7 at 37 degrees C with plexiglass diffusion cells. Plots of J/CA- (the total flux due to un-ionized and ionized species obtained under steady-state conditions per unit concentration of ionized drug in the donor compartment) against CH3O+ resulted in straight-line relationships. The intercepts of these plots were shown to equal PA-, whereas the slopes multiplied by the Ka values of the compounds equalled PHA, the permeability coefficients of the ionized and un-ionized species, respectively. With all four compounds, both species were found to permeate skin, although the permeability coefficients of the un-ionized species were approximately 10(4) greater than those for the ionized species. It was demonstrated that the relative contributions of the ionized and un-ionized species to the total flux, as well as the total flux, vary significantly, depending on the pH of the drug solution in the donor cell. This may provide a means of controlling the flux of these and similar compounds through human skin.

Chromatography, High Pressure Liquid↗

The prolonged retention of sodium cromoglycate in the rabbit eye.

The retention of sodium cromoglycate in the rabbit eye over a 6 h period following its administration in two different vehicles is reported. When formulated as a dispersion in a hypo-allergenic acetylated lanolin/paraffins base, prolonged retention was observed. Thus, the concentration of sodium cromoglycate in the tears, conjunctiva and cornea 6 h after administration equalled or exceeded the concentration obtained with an aqueous solution 1 h post-instillation.

Animals↗

Disposition of topically applied sodium cromoglycate in the albino rabbit eye.

The influence of pH, tonicity, preservatives, polymers and instilled drop size on the disposition of sodium cromoglycate, an agent used in the prophylaxis of vernal keratoconjunctivitis, in the tear chamber of the albino rabbit eye has been examined. Radiotracer techniques were used throughout. The initial decline in concentration in the tear chamber was found to be unaffected by the presence of preservatives, pH, and tonicity over the ranges studied. However, significant increases in the residence time of sodium cromoglycate in the precorneal area were noted when a smaller instilled drop size was used and when 5% polyvinyl alcohol (PVA) was added to the aqueous vehicle. Tissue uptake was found to be greatest in the conjunctiva, followed by the cornea, the iris-ciliary body and the aqueous humor. In both the conjunctiva and the cornea, the addition of 5% PVA produced an elevation in the peak concentration of sodium cromoglycate and an increase in the time at which the peak concentration was achieved, indicating improved drug delivery to these sites.

Animals↗

Drug permeation through human skin: I. Effect of storage conditions of skin.

The purpose of this study was to establish conditions for the preparation and storage of excised human skin such that it most closely retained the permeation characteristics seen with skin samples studied immediately after having been removed from cadavers. Using skin taken from the inner thighs of cadavers within 48 hr post mortem, we have compared drug permeation through samples that were used immediately following removal with samples that had been stored in either the frozen or dried state. With the chromone acid under investigation, it was found that samples of stratum corneum attached to the underlying epidermis used without prior storage consistently showed less permeation than samples taken from the same individual that had been frozen at -17 degrees C upon removal and then thawed before permeation studies were started. However, drug permeation through samples of stratum corneum plus epidermis that had been allowed to dry under controlled humidity conditions at room temperature were found to be similar to those obtained with fresh skin. These results indicate that dried skin, when appropriately rehydrated before use, exhibits rates of drug permeation similar to those found with fresh skin. With the chromone acids under investigation, the use of frozen samples of excised skin should be avoided since the extent of permeation exceeds that obtained with fresh skin samples.

Adult↗

In vitro dissolution of dapsone.

Los normal samples of dapsone (DDS) were prepared in which the geometric mean diameter ranged from 20 to 50 micron while the geometric standard deviation was in the range 1.62 to 1.88. Using a simple in vitro flow-through dissolution cell at 37 degrees C, the data obtained were found to fit the Hixson-Crowell cube root dissolution law up to a critical time, Tc, where a distinct break occurred. Such a biphasic phenomenon has been predicted by other workers and is related to the time at which the smallest particles present have undergone dissolution. The initial slopes of the cube root dissolution plots were shown to be directly related to the reciprocal of the geometric mean diameter.

Dapsone↗

The percutaneous absorption of phenolic compounds: the mechanism of diffusion across the stratum corneum.

The effect of temperature on the permeation of phenolic compounds from aqueous solution through excised human skin has been examined. From a thermodynamic analysis of the data, a mechanism is postulated by which these solutes penetrate through human skin. For the more polar solutes it is suggested that the main resistance to penetration is the lipid barriers in the stratum corneum. Diffusion of these substances through the stratum corneum appears to depend on the breaking of hydrogen bonds in the desolvation of the solute during this penetration process and by the overall 'viscosity' of the stratum corneum. With non-polar solutes, the aqueous boundary layers appear to provide an additional barrier to the penetration of phenolic compounds.

Chemical Phenomena↗