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Biomedical subjects

R L Bronaugh

Publications and source records attributed to R L Bronaugh.

At least 37 records · Page 2Linked to original sources

In vivo percutaneous absorption of fragrance ingredients in rhesus monkeys and humans.

The percutaneous absorption of the fragrance diethyl maleate was measured in vivo in human and monkey studies. With the application sites occluded, 54% of the applied dose of the volatile fragrance penetrated human skin in 24 hr compared with 69% absorption in the monkey skin. It was concluded that the monkey is a good model for human skin with regard to the penetration of this fragrance material since no significant difference in the absorption of diethyl maleate was observed. The percutaneous absorption of the fragrances benzyl acetate and five other benzyl derivatives (benzyl alcohol, benzyl benzoate, benzamide, benzoin and benzophenone) was determined in vivo in monkeys. Absorption through occluded skin was high for all compounds (approximately 70% of the applied dose in 24 hr) and no significant differences between the values for the different compounds were observed. No correlations were seen between skin penetration of these compounds and their octanol-water partition coefficients. Under unoccluded conditions skin penetration of the fragrances was reduced and there was great variability between compounds, presumably because of variations in the rates of evaporation from the site of application. The data suggest that humans may have significant systemic exposure to these fragrance materials.

Administration, Topical↗

In vitro skin absorption and metabolism of benzoic acid, p-aminobenzoic acid, and benzocaine in the hairless guinea pig.

The percutaneous absorption and metabolism of three structurally related compounds, benzoic acid, p-aminobenzoic acid (PABA), and ethyl aminobenzoate (benzocaine), were determined in vitro through hairless guinea pig skin. Benzocaine was also studied in human skin. Absorption of benzocaine was rapid and similar through both viable and nonviable skin. The absorption of the two acidic compounds, benzoic acid and PABA, was greater through nonviable skin. A small portion (6.9%) of absorbed benzoic acid was conjugated with glycine to form hippuric acid. Although N-acetyl-benzocaine had not been observed as a metabolite of benzocaine when studied by other routes of administration, both PABA and benzocaine were extensively N-acetylated during percutaneous absorption. Thus, the metabolism of these compounds should be considered in an accurate assessment of absorption after topical application.

4-Aminobenzoic Acid↗

Maintenance of skin viability during in vitro percutaneous absorption/metabolism studies.

The assessment of cutaneous metabolism during in vitro percutaneous absorption studies requires maintenance of the viability of the skin section. With the use of flowthrough diffusion cells, Eagle's minimal essential medium (MEM), Hepes-buffered Hanks' balanced salt solution (HHBSS), or Dulbecco modified phosphate-buffered saline (DMPBS), acting as receptor fluids, were able to sustain aerobic and anaerobic glucose utilization, testosterone and estradiol metabolism, and histopathological appearance of perfused rat skin sections for 24 hr. Fetal bovine serum supplements were not required for survival and appeared to inhibit the extraction of the metabolite estrone from the receptor fluid fractions in estradiol absorption/metabolism experiments. The use of phosphate-buffered saline (PBS) resulted in elimination of aerobic and anaerobic glucose utilization in 12 hr and declining appearance of steroid metabolites in receptor fluid fractions during the 24-hr percutaneous absorption/metabolism studies. Histopathological examination of skin sections perfused with PBS for 24 hr showed autolysis of the viable epidermis and dermis. The results demonstrate that an appropriate receptor fluid, such as MEM, HHBSS, or DMPBS, is required for percutaneous absorption studies in which cutaneous metabolism of the penetrating compound is to be considered.

Analysis of Variance↗

Extent of cutaneous metabolism during percutaneous absorption of xenobiotics.

In vitro percutaneous absorption studies generally do not determine whether biotransformation occurs during passage of a substance through the skin. Since it has recently been demonstrated that several chemicals are metabolized during skin permeation, we investigated the metabolism of five additional compounds (14C-labeled) after application to fuzzy rat skin: caffeine, p,p'-DDT, butylated hydroxytoluene (BHT), salicylic acid, and acetyl ethyl tetramethyltetralin (AETT). The viability of skin was maintained with a tissue culture medium. Radioactivity of each substrate and any metabolites in skin and receptor fluid was measured so that the absorption and metabolism of water-insoluble compounds would be accurately determined. Percutaneous absorption ranged from a low of 13% of the applied dose for BHT to a high of 49% for DDT. BHT was metabolized in skin to 4-hydroxy-BHT and an unknown metabolite. Of the absorbed radioisotope, 6.6% was isolated in biotransformed products found mainly in the receptor fluid. AETT was also metabolized during absorption, with 1.9% of the absorbed radioisotope found in two unknown peaks. Caffeine, DDT, and salicylic acid were not metabolized during skin permeation. Skin and liver microsomal metabolism was measured for all compounds except DDT. Metabolism in skin was observed only for the compounds also biotransformed in the diffusion cell; BHT and AETT were metabolized at 113 and 2.5 pmol/min/mg protein, respectively. In this study, as in others, skin metabolism was substantially less than the corresponding metabolism in liver. Therefore, a low rate of liver metabolism such as that found for caffeine, salicylic acid, and DDT might often be predictive of the absence of measurable metabolism during skin permeation. It seems likely that for many compounds, the biotransformations in skin will be small in terms of the percentage of absorbed material that is metabolized. Nevertheless, with potent compounds, even small quantities of a metabolite can be important and for pharmacokinetic studies, viability of skin must be maintained.

Animals↗

Methods for in vitro percutaneous absorption studies. VI: Preparation of the barrier layer.

The skin membrane for in vitro percutaneous absorption studies was prepared so that it was similar in thickness to the in vivo barrier layer. A dermatome section from the skin surface produced a layer of skin that included the epidermis and papillary dermis (location of capillary loops) but without most of the dermal tissue. Improved absorption measurements were then obtained with hydrophobic compounds with the use of a polyethylene glycol 20 oleyl ether (PEG-20 oleyl ether) receptor fluid. With the haired rat, preparing a skin section 300-micron thick (and pretesting for damage to the barrier with H3-water) resulted in a membrane that gave values in good agreement with in vivo results for 3-phenyl-2-propenyl 2-aminobenzoate (cinnamyl anthranilate) (1) and benzo(a)pyrene absorption. When sparsely haired fuzzy rat skin was used, a section of skin 200-micron thick could be prepared without the need for pretesting for damage. Good agreement was obtained between in vivo and in vitro values for 1-(3-ethyl-5,6,7,8-tetrahydro-5,5,8,8-tetramethyl-2-naphthalenyl)etha none (acetyl ethyl tetramethyl tetralin) (2) and DDT with 0.5% PEG-20 oleyl ether in water as the receptor fluid. The skin of the fuzzy rat seemed more similar in permeability to human skin than did the skin of the hairless mouse when the absorption of six compounds was compared.

Animals↗

Methods for in vitro percutaneous absorption studies. VII: Use of excised human skin.

Water permeability constants (Kp) were determined with skin from human cadavers. No difference was seen in Kp values from unfrozen skin or from skin frozen for a few days. Human skin could usually be stored at -20 degrees C for up to a year with no change in water permeability, but in some cases apparent deterioration of the barrier was observed. A rapid procedure was developed for checking barrier integrity of skin in diffusion cells before a penetration study. The percent of the water dose absorbed after 20-min contact with skin correlated with water Kp values. Changes in water permeation through human skin agreed with changes in the absorption of seven test compounds of varying solubility properties (acetylsalicylic acid, benzo(a)pyrene, cortisone, DDT, nicotinic acid, propylene glycol, and testosterone). Water permeation is therefore considered to be a good indicator of potential changes in the barrier integrity of human skin. No correlation was observed in Kp values and other characteristics of the donor skin samples such as age, sex, race, and length of time before skin harvest.

Body Water↗

Differential rates of percutaneous absorption through the eczematous and normal skin of a monkey.

A monkey (Macaca fascicularis), diagnosed as having eczematous dermatitis on the basis of histopathology of a skin biopsy, was used to study the percutaneous absorption of 2 anti-inflammatory steroids. Absorption was measured through involved and uninvolved skin by using in vitro diffusion cell techniques. Hydrocortisone (0.5%) and triamcinolone acetonide (0.1%) were applied to the skin in a petrolatum vehicle. After application for 24 h, the permeation of hydrocortisone was approximately doubled (from 2.6 to 5.5% of the applied dose) when diseased skin was used. The absorption of triamcinolone acetonide was enhanced through the eczematous skin during the initial 12 h. At 24 h, however, no significant difference in total absorption was obtained.

Absorption↗

Vehicle effects on percutaneous absorption: in vivo and in vitro comparisons with human skin.

The percutaneous absorption of benzoic acid, caffeine and testosterone through human skin was measured by using in vivo and in vitro techniques. The compounds were applied to the skin in solution in three vehicles: petrolatum, ethylene glycol gel and water gel. Because benzoic acid was ionized at the neutral pH of the gels, these data were difficult to interpret and are not reported. The stratum corneum/vehicle partition coefficients (Km) and percent saturation of the vehicles with substrate were determined to aid in the interpretation of the absorption results. In the in vitro studies, the permeability constants determined for the compounds in each vehicle correlated with either the Km value or the percent saturation of the vehicle. Caffeine penetrated most readily from a petrolatum vehicle, and the greatest testosterone absorption was from a water gel. Permeation was also expressed in terms of the percentage of the applied dose absorbed. Reasonable agreement was obtained between the in vivo and in vitro values. Although no significant differences occurred between most values compared, there was a trend toward lower penetration in the in vitro system.

Adult↗

Methods for in vitro percutaneous absorption studies IV: The flow-through diffusion cell.

A flow-through diffusion cell system for percutaneous absorption studies has been developed. The results of initial studies with a limited number of compounds are reported. The cells were constructed from Teflon and contained a glass window in the bottom for viewing the receptor contents. A flow rate of at least 5 mL/h is required through the receptor (volume, 0.4 mL) for accurate results. The skin permeation of water, cortisone, and benzoic acid was determined in the flow-through cell and a standard static-diffusion cell. The absorption profiles and quantitative values obtained were similar for the two types of cells. The permeation of cortisone and benzoic acid applied in a petrolatum vehicle was determined in vivo in rats and with rat skin in the flow-through and static-diffusion cells. Good agreement was obtained between the results of the in vivo and in vitro procedures. The percutaneous absorption of a hydrophobic compound [3-phenyl-2-propenyl 2-aminobenzoate (cinnamyl anthranilate)] was enhanced with normal saline receptor solution in the flow-through cell when compared with results in the static cell. Maximum in vitro absorption was obtained with either cell using a 6% solution in water of the nonionic surfactant polyethylene glycol 20 oleyl ether (PEG-20 oleyl ether).

Animals↗

Methods for in vitro percutaneous absorption studies V: Permeation through damaged skin.

The permeation of compounds through skin damaged by different methods was compared because agents that are absorbed through skin are sometimes applied to a damaged barrier. The removal of the stratum corneum by stripping the skin with cellophane tape was the most effective method for enhancing absorption. A minimal increase in water permeation was obtained when one abrasion line was made with a hypodermic needle, but the absorption increased substantially when three to six lines were made across the site of application. Similar values were obtained with in vivo and in vitro techniques for penetration of cortisone and nicotinic acid through normal and abraded rat skin. Sever damage by UV irradiation to rats in vivo resulted in nicotinic acid absorption similar to that obtained in vitro through abraded or tape-stripped skin. Damage from mild irradiation could not be accurately duplicated by in vitro methods. The magnitude of the increase in absorption of seven chemicals through abraded human and rat skin was related to the extent to which the molecules were absorbed by the skin. The greatest increases in penetration were obtained with the compounds that were most poorly absorbed.

Animals↗

Comparison of percutaneous absorption of fragrances by humans and monkeys.

The percutaneous absorption of two cosmetic fragrance materials, safrole and cinnamyl anthranilate, as well as of cinnamic alcohol and cinnamic acid, has been measured at occluded and non-occluded application sites. Absorption values were determined in the rhesus monkey in vivo. Absorption through human skin was measured by using excised skin in diffusion cells. Because of the insolubility in water of safrole and cinnamyl anthranilate, a nonionic surfactant solution (6% oleth 20) was used in the receptor chamber of the diffusion cell in order to facilitate the partitioning of the compounds from the skin into the receptor fluid. The relative volatility of the compounds was determined in order to aid in the interpretation of the absorption results. The greatest difference between in vivo and in vitro absorption values occurred with safrole, which was the least well absorbed and the most volatile compound. Cinnamic acid absorption through non-occluded human skin (17.8 +/- 4.9%, mean +/- SEM) was significantly lower than through monkey skin (38.6 +/- 8.3%). The values for absorption through human and monkey skin did not differ significantly for cinnamyl anthranilate (24.0 +/- 5.1% v. 26.1 +/- 2.3%) or cinnamic alcohol (33.9 +/- 7.3% v. 25.4 +/- 4.4%). Occlusion of the skin resulted in greater permeation of all of the compounds; a significant difference in permeability between the two types of skin occurred only with safrole. The fragrances were absorbed well, but their volatility must be considered in a toxicity evaluation. There was reasonable agreement between the values obtained from the studies of the human skin in vitro and the monkey skin in vivo.

Animals↗

Percutaneous absorption of nitroaromatic compounds: in vivo and in vitro studies in the human and monkey.

The percutaneous absorption of 2-nitro-p-phenylene-diamine, 4-amino-2-nitrophenol, nitrobenzene, p-nitroaniline, and 2,4-dinitrochlorobenzene was measured through human and monkey skin. Human studies were performed with excised skin in diffusion cells. Absorption through monkey skin was measured by in vivo and in vitro techniques. Results were compared with those from previously reported human in vivo studies on 2,4-dinitrochlorobenzene and nitrobenzene. Rapid penetration was observed with all compounds, with maximum absorption occurring the first few hours. No significant differences in absorption were found in values obtained by the different procedures except for the highly volatile (and therefore difficult to compare) compound nitrobenzene. A comparison of the human and monkey in vitro data showed a trend toward increased absorption through monkey skin, but the increase was not statistically significant. The monkey in vivo and in vitro results showed that absorption of all compounds except nitrobenzene was slightly less in the in vitro studies; however, the values were not significantly different. The relative volatility of these nitroaromatic compounds was measured by the loss of compound from epidermal discs at various time intervals. The greatest loss of applied material occurred with nitrobenzene; however, substantial amounts of the other compounds were lost, particularly during the first minute after application as the acetone vehicle evaporated. Monkey skin was found to be a good model for human skin for the determination of the percutaneous absorption of these compounds, and in vitro measurements of absorption agreed reasonably well with values obtained by in vivo techniques. A good correlation was not observed between the absorption of these compounds and their solubility properties.

Aniline Compounds↗

Methods for in vitro percutaneous absorption studies III: hydrophobic compounds.

The absorption of two hydrophobic compounds through rat skin was measured by in vivo and in vitro techniques. The permeation of the fragrance ingredients 3-phenyl-2-propenyl 2-aminobenzoate (I) and 1-(3-ethyl-5,6,7,8-tetrahydro-5,5,8,8-tetramethyl-2-naphthalenyl)+ ethanone (II) was measured from a petrolatum and an acetone vehicle. Increases in permeation of 8-fold (I) and 95-fold (II) were observed when the compounds were tested in vivo under conditions similar to in vitro procedures. The apparent inability of the compounds to freely enter the diffusion cell receptor fluid was partially reversed by replacing normal saline with other fluids: rabbit serum, 3% bovine serum albumin, organic solvents, and dilutions of four nonionic surfactants. The effect of the receptor fluids on the integrity of the skin barrier was assessed by measuring the permeability of control compounds (cortisone, urea, and water). A 6% solution of polyethylene glycol 20 oleyl ether was the receptor fluid of choice. Without apparent damage to the skin, 61% (petrolatum vehicle) or 73% (acetone vehicle) of the in vivo absorption of I was obtained. With II, only 32% of the in vivo absorption was achieved (petrolatum vehicle). Even when the surfactant solution is used, significant differences may still remain between in vivo and in vitro results.

Animals↗

Percutaneous absorption of hair dyes: correlation with partition coefficients.

A homologous series of hair dyes was selected for percutaneous absorption studies with excised human skin. The permeability constants obtained for the dyes were compared with octanol/water and skin membrane/water partition coefficients. The compounds examined were: p-phenylenediamine, o-phenylenediamine, 2-nitro-p-phenylenediamine, 2-amino-4-nitrophenol, 4-chloro-m-phenylenediamine, and 4-amino-2-nitrophenol. Skin absorption of the dyes was observed when they were applied in an aqueous solution. With one exception, the octanol/water partition coefficients were in the same rank order as the permeability constants. The determination of the partitioning of the hair dyes between water and either stratum corneum or epidermis was more complex. Preliminary stratum corneum/water partition studies resulted in values that were in the reverse order of skin permeation. When binding of the compounds to components of the membrane was saturated, the partition values more closely duplicated the rank order of permeability of the dyes. Prediction of percutaneous absorption of substances based on their partition coefficients may be confounded if these compounds are capable of binding to skin.

Cell Membrane Permeability↗

The effect of cosmetic vehicles on the penetration of N-nitrosodiethanolamine through excised human skin.

Cosmetic products are frequently applied to the skin by a large number of people, but some contain compounds that are potentially toxic, if absorption through the skin is sufficient. The percutaneous absorption of N-nitrosodiethanolamine (NDELA), an impurity in many cosmetic products, has been evaluated in diffusion cells using excised human skin. The nitrosamine was applied to the skin in vehicles with different solubility properties. The permeability constants for water (5.5 X 10(-6) cm hr-1) and propylene glycol (3.2 X 10(-6) cm hr-1) were small and similar. In isopropyl myristate, the permeability constant increased approximately 250-fold to 1.1 X 10(-3) cm hr-1. The NDELA membrane:vehicle partition coefficients were determined using trypsin-treated stratum corneum as the membrane. These coefficients were 1.8 and 1.0, respectively, for water and propylene glycol and 230 for isopropyl myristate. The permeability of NDELA through skin is apparently increased greatly when applied from sufficiently lipoidal formulations; this is primarily due to the favorable partition coefficients for NDELA from such formulations. The amount of NDELA penetrating the skin from 3 types of cosmetic products was calculated based on their different conditions of use. Products applied over large areas of the body that remain on the skin for long periods of time (i.e., sun tanning lotion) will result in the greatest absorption of NDELA if all other factors are equal.

Abdomen↗

The evaluation of topical anti-inflammatory activity on rat ears subjected to thermal injury.

Topical anti-inflammatory activity of steroidal and non-steroidal agents was assessed on inflammation produced by heat. A burn was produced on the ears of rats and the inflammation was quantitated gravimetrically. Steroidal anti-inflammatory agents were ranked in order of decreasing activity: triamcinolone acetonide, dexamethasone, prednisolone and hydrocortisone acetate. The nonsteroidal agents phenylbutazone and indomethacin were also effective in inhibiting the inflammation. Cholesterol, a steroid devoid of anti-inflammatory activity, was inactive in this test. Hydrocortisone acetate, in particular, appears to be less effective in inhibiting this type of inflammation than inflammation produced by croton oil.

Administration, Topical↗