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Biomedical subjects

J W Laskey

Publications and source records attributed to J W Laskey.

At least 19 recordsLinked to original sources

Therapy methodology. Riding the bus: teaching an adult with a brain injury to use a transit system to travel independently to and from work.

A man, 8 years post-injury, who was still experiencing poor impulse control and poor directional orientation, was taught to follow directions and to take city buses to and from his vocational placement. This was a new skill for the subject as he was from a rural area and thus had no premorbid experience using a transit system. In-vivo functional training was conducted, similar to the method used by Sowers et al. [1] to train a severely retarded adult to ride buses to and from work. In-vivo training was supplemented by daily planning sessions in which the subject would review the route and instructions prior to each ride. The subject was able to learn the bus route from the treatment centre to the job site in 1 week. Upon discharge to a transitional living centre in the same city the subject was able, again in 1 week, to learn new bus routes, and to take the buses back and forth between his new residence and his vocational placement.

Activities of Daily Living

Biomarkers of heavy metal reproductive effects and interaction with essential elements in experimental studies on female rats.

Experimental studies in laboratories in Croatia and U.S.A. were conducted on female rats exposed to lead or cadmium to evaluate effects on the female reproductive integrity. The health condition of the offspring and relationship with essential elements were also evaluated. By using simple biomarkers of reproductive effects it was found that subchronic oral exposure to lead (1500-5500 ppm) or cadmium (50 ppm) during pregnancy and lactation decreased pup body weight, and that lead also decreased pup viability. Acute exposure to cadmium (3 or 5 mg/kg body weight s.c.) in vivo suppressed serum concentrations of progesterone and estradiol depending on the reproductive stage. Organ accumulations of lead or cadmium were accompanied by changes in the concentrations of iron and zinc in both mother and pups. Future research should focus on the effects of metals on endocrine disruption in the ovary and placenta, and on concomitant interaction of toxic and essential metals in mother and offspring.

Animals

Distribution of [14C]ethane dimethanesulfonate in immature and adult male rats following an acute exposure.

In the adult rat, ethane dimethanesulfonate (EDS) reduces testosterone (T) production by killing Leydig cells. Studies have also shown that acute EDS administration produces transient infertility and epididymal effects. Although these later effects were believed to be indirect results of the reduced Leydig cell T production, it was recently found that the epididymal effects were partially a direct result of in vivo EDS treatment. In contrast to the Leydig cells of the adult rat, immature Leydig cells are affected by EDS only at doses four- to sixfold higher than those that affect mature Leydig cells. In fact, the Leydig cells of the adult rat seem to be uniquely susceptible to the cytotoxic effects of EDS. Steroidogenesis in other organs, like the adrenal and ovary, are unaffected in vivo at doses that eliminate T production in males. In addition, studies have shown that doses of EDS that kill Leydig cells in vitro, isolated from the testes of adult rats, have no effect on similarly exposed hepatocytes. Hence, it was the objective of this study to describe the distribution and temporal fate of EDS in target (testes and epididymides) and nontarget tissues in immature and adult male rats and to determine if this information would explain either the age- or tissue-related susceptibility to EDS. We have concluded from this study that tissue distribution, integrated in vivo EDS dose, and differences in EDS metabolism are not the only factors contributing to the difference in sensitivity.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging

Effects of ethane dimethanesulfonate (EDS) on adult and immature rabbit Leydig cells: comparison with EDS-treated rat Leydig cells.

Ethane-dimethanesulfonate (EDS) has been shown to selectively kill Leydig cells and depress testosterone production in adult rats. A recent study has shown that immature rat Leydig cells are less sensitive to EDS exposure. There is evidence that the rabbit metabolizes EDS to methane sulfonic acid more rapidly than does the rat, reducing exposure to the parent compound. In the study reported here, we examined the effects of EDS on the Leydig cells in both adult and immature rabbits and compared the effects found with those previously reported in the rat. In vivo, EDS exposure demonstrated that Leydig cells from adult rabbits were affected, with both serum and interstitial testosterone production depressed. EDS effects in adult rabbits and rats were compared by exposing explants of testicular parenchyma to EDS in vitro and evaluating testosterone production. With this procedure, the rabbit testis was less sensitive to EDS treatment than the rat, with a 50% reduction rate (EC50) achieved with 2026 microM EDS for the rabbit and with 336 microM EDS for the rat. Perfusion of adult and immature rabbit testis with 430 microM EDS demonstrated the insensitivity of the immature testis to EDS exposure: adult testosterone production was reduced 50% in 3.5 h, whereas no diminution was found in the immature rabbit. EDS exposure of interstitial cell preparations further demonstrated the insensitivity of immature rabbit Leydig cells, with an EC50 of 4397 microM compared to an EC50 of 1137 microM EDS in adult preparations.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging

Chloroethylmethanesulfonate-induced effects on the epididymis seem unrelated to altered Leydig cell function.

Decades ago it was reported that when male rats were exposed to chloroethylmethanesulfonate (CEMS) for 5 days prior to weekly matings with untreated females, the second mating resulted in reduced litter size. Since fertility was not assessed at earlier time points, it was not possible to determine whether CEMS exerted any effects on sperm in the epididymis. In this study, we used a 4-day exposure and assessed multiple reproductive endpoints on Day 5 to characterize effects of CEMS exposure (6.25-25 mg/kg) on Leydig cells and the epididymis. Exposure to CEMS caused a dose-related decline in serum testosterone (T) levels. This occurred at a dose lower than that required to decrease T production in vitro by testicular parenchyma. The in vitro decline was not attributed to a decrease in maximal hCG-stimulated T production, but to a decrease in unstimulated T production. CEMS was 5-fold less sensitive than ethane dimethanesulfonate (EDS) in reducing maximal hCG-stimulated T production. To control for alterations in the epididymis resulting from decreased serum T alone, T was implanted in CEMS-treated animals to maintain serum T at a concentration similar to that found in normal rats. This exogenous T failed to prevent the CEMS-induced decrease in the weight of the caput/corpus epididymidis but did prevent the CEMS-induced decrease in seminal vesicle weight. Implantation of T failed to prevent the CEMS-induced reduction in sperm reserves in the cauda epididymidis, and it failed to prevent the CEMS-induced alterations in the histology of both the corpus and proximal cauda epididymidis. The height of the epithelium in both of these regions was increased, and clear cells disappeared from the proximal cauda epididymidis. These results demonstrate that CEMS might alter the ability of the Leydig cell to respond to LH stimulation in vivo, and that alterations in the structure and function of the epididymis occur even when the serum concentration of T is maintained.

Alkanesulfonates

Steroidogenic assessment using ovary culture in cycling rats: effects of bis(2-diethylhexyl)phthalate on ovarian steroid production.

In vitro ovary culture in rats was used to characterize ovarian steroidogenesis and to evaluate changes produced by in vivo exposure to bis(2-diethylhexyl)phthalate (DEHP). Steroid profiles [progesterone (P4), estradiol (E2), and testosterone (T)] from cultures of minced ovary were obtained in untreated immature and mature rats, and from mature rats treated with DEHP. A 1-h incubation without human chorionic gonadotropin (hCG) was used to produce an initial steroidogenic profile. Three 1-h incubations with hCG were used to produce a stimulated steroid profile. A combination of initial and stimulated ovarian steroid profiles was shown to correctly identify the stage of the cycle in all untreated rats, using multivariate statistical analysis. Separately, initial or stimulated ovarian steroid profiles correctly identified the stage of the cycle in more than 90% of the rats. The statistical analysis using a combination of variables (multivariate) indicated that DEHP-treated rats were significantly different (P < 0.001) from sham-treated rats. In fact, the alteration caused by DEHP in the in vitro ovarian steroidogenic profile was most apparent in rats during diestrus and estrus. In DEHP-treated rats in diestrus, ovarian steroidogenesis appeared to shift to the production of more T and more E2 than in untreated rats in diestrus. The change seen in steroid profiles in DEHP-treated rats in estrus is to decreased E2 production. The steroid profile from ovary culture in conjunction with vaginal cytology was very useful in correctly identifying in vivo DEHP-treated rats, and will be a useful in vitro technique in the evaluation of ovarian toxicants in cycling females.

Analysis of Variance

Use of the fungicide carbendazim as a model compound to determine the impact of acute chemical exposure during oocyte maturation and fertilization on pregnancy outcome in the hamster.

Early pregnancy loss due to acute chemical exposure is difficult to detect and essentially impossible to characterize in humans. Here we use a hamster animal model to identify early pregnancy loss due to an acute chemical exposure to the female during the perifertilization interval. The fungicide carbendazim (methyl 1H-benzimidazole-2-carbamate), a microtubule poison with antimitotic activity, was selected as a model compound because it would be expected to perturb microtubule-dependent events occurring in the oocyte during meiotic maturation and fertilization. Such effects would likely lead to aneuploidy in the zygote with subsequent early pregnancy loss. Female hamsters were given a single oral dose of carbendazim during meiosis I (the afternoon of proestrus) prior to breeding, or during meiosis II (the morning of estrus) following overnight breeding. Pregnancy outcome was assessed on Day 15 (the afternoon before parturition). When given during during meiosis I, carbendazim treatment (750 or 1000 mg/kg body weight) significantly reduced the percentage of pregnant hamsters. In those animals that became pregnant, the average number of live pups was significantly lower at all dosages of carbendazim used (250, 500, 750, and 1000 mg/kg), an effect attributable to both preimplantation and early postimplantation losses. When given early on the morning of estrus, shortly before and during fertilization (0500 or 0600 hr), carbendazim treatment (1000 mg/kg) produced a similar decrease in litter size. This effect disappeared when carbendazim was administered at a slightly later time (0800 or 0900 hr), after the microtubule-dependent events of fertilization have occurred. These results demonstrate that a single exposure to a microtubule poison such as carbendazim at critical times, coincident with microtubule-dependent meiotic events, can result in very early pregnancy loss. Such loss was readily measurable in this animal model and serves as the basis for further mechanistic studies which would be impossible to conduct in humans.

Abortion, Veterinary

In vitro/in vivo effects of ethane dimethanesulfonate on Leydig cells of adult rats.

Although ethane dimethanesulfonate (EDS) is well recognized as a Leydig cell toxicant, the dose responsiveness of Leydig cells to EDS, both in vitro and in vivo, is not well established. In addition, the cellular site of action of EDS during Leydig cell toxicity and the status of Leydig cell viability during the affected period remain controversial. We determined the in vitro EC50 (370 microM) and in vivo ED50 (60 mg/kg) for human chorionic gonadotropin (hCG)-stimulated testosterone (T) production using both highly purified (98%) and interstitial (14%) Leydig cell preparations, respectively. Leydig cells were recovered in approximately equal numbers following all in vivo and in vitro EDS exposures. The Leydig cells in these preparations were viable and steroidogenically active (3 beta-HSD positive) subsequent to all exposures, both before and after incubations to stimulate T biosynthesis. When hCG-stimulated T production was decreased 50% following in vivo or in vitro exposures, the morphological integrity of the Leydig cells appeared normal, with no discernible lesion at either the light or the electron microscope level. We used stimulants of various reactions in the pathway of T biosynthesis (20 alpha-hydroxycholesterol and pregnenolone) to determine the site of action impaired when T biosynthesis was decreased. Our results indicate that when Leydig cells are exposed to EDS either in vitro or in vivo, the biosynthesis of T is compromised between the cyclic adenosine monophosphate activation of protein kinase and the cholesterol side chain cleavage enzyme.

Animals

Immunotoxicity of 2-methoxyethanol following oral administration in Fischer 344 rats.

The immunotoxicity of the glycol ether 2-methoxyethanol (ME) was evaluated in adult Fischer 344 rats using a variety of in vitro and in vivo immune function assays. In the first phase of this study, male rats were dosed by oral gavage with ME in water, at dosages ranging from 50 to 200 mg/kg/day, for 10 consecutive days. Decreases in thymus weights were observed at dosages of 50-200 mg/kg/day in the absence of decreased body weights. Lymphoproliferative (LP) responses to concanavalin A and phytohemagglutinin were reduced at 50-200 mg/kg/day while pokeweed mitogen and Salmonella typhimurium mitogen responses were reduced at 200 mg/kg/day. No alterations were observed in natural killer cell activity, mixed lymphocyte reaction, or cytotoxic T lymphocyte responses. The frequency of W3/25-positive splenocytes was reduced in rats dosed at 200 mg/kg/day. Interleukin-2 production was reduced in splenocytes from rats exposed to all dosages of ME. The plaque-forming cell (PFC) response to sheep red blood cells was enhanced in rats dosed at 50 mg/kg/day. However, the PFC response to trinitrophenyl-lipopolysaccharide (TNP-LPS) was suppressed at all dosages. Similarly, the PFC response to TNP-LPS was suppressed in adult female rats dosed with ME. A reduction in the expulsion of adult worms was observed in rats dosed at 200 mg/kg/day that were infected with Trichinella spiralis. A number of male reproductive parameters were also evaluated in rats dosed with ME over 10 days. A significant reduction in testicular weight was observed in rats dosed at 200 mg/kg/day. In the second phase of this study, the PFC response to TNP-LPS was employed to assess the role that metabolism of ME to 2-methoxyacetic acid (MAA) plays in the immunotoxicity of this glycol ether. Ten-day oral dosing with MAA resulted in the inhibition of the PFC response to TNP-LPS at dosages of 50-200 mg/kg/day. Concomitant exposure of rats to ME and the alcohol dehydrogenase inhibitor 4-methylpyrazole blocked ME-induced suppression of this PFC response. Attempts to ameliorate ME-induced suppression of the PFC response with serine, which has been shown to reverse ME-induced developmental and reproductive toxicity, were unsuccessful. These results suggest that the immune system may be more sensitive than the reproductive system to the toxic effects of ME. Furthermore, it appears that MAA is the proximate toxicant for ME-induced alterations in the immune system, as has been demonstrated for ME-induced reproductive and developmental toxicity.

Administration, Oral

Effect of cadmium and other metal cations on in vitro Leydig cell testosterone production.

In vivo assessment of toxicant action on Leydig cell function is subject to homeostatic mechanisms which make it difficult to determine whether any changes seen in serum testosterone (T) concentration are due to extragonadal endocrine alterations or to a direct effect on the Leydig cell. For example, metal cations administered in vivo have been shown to depress serum T concentration and alter serum concentrations of pituitary hormones in laboratory animals. The studies reported here use a testicular cell culture technique to evaluate Leydig cell testosterone biosynthesis in the presence of several metal cations. To determine the site of toxic action, the Leydig cells were stimulated to produce testosterone by using human chorionic gonadotrophin (hCG), dibutyl cyclic adenosine monophosphate (db-cAMP), or several substrates required for the biosynthesis of testosterone. hCG was chosen because resultant T production requires an intact membrane receptor and db-cAMP was used to test for post LH receptor defects caused by the metals. The other substrates were chosen to isolate the effect of metals on enzymatic pathways. Collagenase dispersed testicular cells (15% Leydig cells) were incubated with metal cations (1 to 5000 microM) for 3 hr in the absence and presence of maximally stimulating concentrations of hCG, db-cAMP, 20 alpha-hydroxycholesterol (HCHOL), or pregnenolone (PREG), and T concentration was determined by radioimmunoassay. In one separate experiment we also tested the effect of the substrates progesterone, 17 alpha-hydroxy-progesterone, and androstenedione on Cd2(+)-treated Leydig cells. The results show no change in Leydig cell viability with any metal cation treatment during the 3-hr incubation. Ca2+, Cr3+, Fe3+, Mg2+, Na+, or Pb2+ had no effect on stimulated testosterone. Dose-response depression in both hCG- and db-cAMP-stimulated T production were seen with Cd2+, Co2+, Cu2+, Hg2+, Ni2+, and Zn2+ treatment. Surprisingly, Cd2+, Co2+, Ni2+, and Zn2+, which caused a depression in hCG- and db-cAMP-stimulated T production, caused significant increases in HCHOL- and PREG-stimulated T production over untreated and similarly stimulated cultures. This indicates that these cations may act at multiple sites within the Leydig cell.

17-alpha-Hydroxyprogesterone

Multiple effects of ethane dimethanesulfonate on the epididymis of adult rats.

Ethane dimethanesulfonate (EDS), a Leydig cell toxicant which results in transient infertility, was used in a 4 day postexposure experimental protocol designed to identify any effects this compound might exert on the epididymis. The techniques of efferent duct ligation and testosterone (T) implantation were used to negate the role of testicular effects on the epididymal parameters. Numerous evaluations were performed including light and electron microscopy, computer assisted sperm motion analyses, and electrophoresis of sperm membrane proteins. EDS was shown to affect the epididymis in a dose-dependent fashion. The action of EDS on the epididymis is in part due to Leydig cell cytotoxicity and the resulting decrease in circulating androgen since T implantation prevented some of the changes in sperm proteins and motility. However, neither efferent duct ligation nor T implantation prevented the formation of sperm granulomas in the caput epididymidis, the distinct morphological alterations of the corpus epididymidis, the modification of certain sperm membrane proteins, or the decrease in the progressive motility and velocity of sperm following EDS treatment. Although we cannot prove these effects of EDS are due to a direct action on the epididymis, it is now clear that EDS has a distinct action on the epididymis which is unrelated to circulating T or testicular fluid.

Animals

Serum chemistries of Coturnix coturnix japonica given dietary manganese oxide (Mn3O4).

1. Plasma creatinine and inorganic phosphorus were increased in manganese oxide (Mn3O4)-treated adult male Coturnix quail, but BUN, BUN/creatinine ratio, uric acid, and total calcium were decreased. 2. Serum enzymes (alkaline phosphatase, glutamic oxaloacetic transaminase, glutamic pyruvic transaminase, and lactic dehydrogenase) were elevated in Mn3O4-treated adult male Coturnix quail, but creatine phosphokinase was not affected. 3. Dietary Mn3O4 at 5000 ppm did not produce overt signs of toxicosis.

Alanine Transaminase

Comparison of age-related changes in in vivo and in vitro measures of testicular steroidogenesis after acute cadmium exposure in the Sprague-Dawley rat.

Previous reports have demonstrated that cadmium-(Cd-) induced testicular necrosis is an age-dependent process. However, little information exists on age-related intestitial cell (IC) damage in the rat after acute exposure to Cd. In this study in vitro and in vivo measures of testicular damage were utilized to compare the sensitivity of these measures and to further investigate age-related Cd-induced testicular damage. Testes, epididymides, and seminal vesicle weights, serum testosterone (sT), hCG-stimulated sT, and basal and stimulated IC testosterone (T) production were compared in rats 21 d following an injection of 2 mg Cd/kg at 9, 37, 67, and 97 d of age. The only Cd-related change noted for immature rats was an 84% reduction in sT. In rats injected when 37 d old, hCG-stimulated sT and epididymides and seminal vesicle weights, although depressed, were not significantly altered. However, all other measurements were significantly depressed. All measures of testicular damage were significantly depressed in rats injected at 67 and 97 d of age. Overall, in vitro measures were more sensitive indicators of Cd-induced testicular damage than in vivo measures. However, sT and hCG-stimulated sT appeared to be useful indicators of Cd effects on the pituitary-gonadal axis. ICs from immature rats (9 d old) were unaffected by Cd exposure, while stimulated T reproduction in ICs from 37-, 67-, and 97-d-old animals was reduced at least 50%. The severity of Cd-induced testicular damage increased with age for all variables measured.

Aging

The fungicide methyl 2-benzimidazole carbamate causes infertility in male Sprague-Dawley rats.

A serial breeding technique was used to evaluate the fertility of male Sprague-Dawley rats after exposure to the fungicide carbendazim (methyl 2-benzimidazole carbamate). Proven-fertile male rats (90 days old) received 10 daily doses of corn oil or carbendazim (400 mg/kg/day) peroral. Each male was bred with a new female each week; breeding began on the third day of treatment and continued for 32 wk after the last day of chemical exposure. Twelve days after each breeding period, the females were killed, their uteri were examined for resorptions, and the number of dead and viable fetuses was determined. All males were killed 35 wk post exposure, and testicular tissue was prepared for histopathological examination by vascular perfusion. Fertility (percent fertile as indicated by pregnant females) of males in the carbendazim-treated group was depressed the first post-exposure week; 10 of the 24 treated males failed to produce a pregnant female as compared with no failures in the control group. By the fifth post-exposure week, 16 of the 24 carbendazim-treated males were infertile. Of these 16 males, 4 recovered fertility after a failure to produce a pregnant female for 5-11 consecutive breeding periods. However, 12 of the males did not recover fertility during the remainder of the 32-wk post-exposure period. Histological examinations of testicular sections 245 days post exposure revealed that exposure to carbendazim caused severe seminiferous tubular atrophy (greater than 85% of tubules were atrophic) in those carbendazim-treated males that failed to recover fertility.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Age-related dose response of selected reproductive parameters to acute cadmium chloride exposure in the male Long-Evans rat.

Groups of male Long-Evans rats 30, 50, or 70 d old were injected subcutaneously (sc) with a single dose of 0, 5.5, 11.5, or 24.6 mumol Cd/kg as cadmium chloride. All animals were killed 60 d after treatment. At 2 h prior to sacrifice, the rats were injected sc with 100 IU human chorionic gonadotrophin (hCG) to maximally stimulate serum testosterone concentrations. After sacrifice the testes, epididymides and seminal vesicles were removed and weighed. Cardiac blood was taken, and serum concentrations of testosterone (sT) and follicle-stimulating hormone (sFSH) were determined. Sperm concentration in luminal fluid collected from the vas deferens was determined. Significant (p less than 0.01) dose-dependent effects for all measured reproductive parameters were noted in the 70-d-old animals, while no effects were seen in the 30- or 50-d-old rats in either seminal vesicles weight or hCG-stimulated sT concentration. In the absence of significant (p greater than 0.05) changes in body weight gain, effects were seen in testes and epididymides weight, sperm concentration, and sFSH in the 70-d-old rats at Cd doses that were lower than those necessary to bring about similar changes in the 30- or 50-d-old animals. The sensitive indicators of Cd exposure in all age groups were testicular weight greater than epididymal weight greater than vas deferens sperm concentration greater than sFSH concentration. Seminal vesicle weight and sT concentration were found to be the least sensitive. Regression analyses indicated a significant interaction of age with dose; the 70-d-old rats required 30-61% less Cd/kg to cause a 50% change in a measured parameter than did the 30-d-old animals, while the 50-d-old rats required 15-47% less.

Age Factors

Hatch weight selection: effect on post-hatch growth in the Japanese quail (Coturnix coturnix japonica).

The post-hatch growth of Japanese quail, weight selected at hatch, was investigated. The quail were grouped according to hatch weight as follows: Group I, 5.5-6.2 g; Group II, 6.3-7.0 g; and Group III, 7.1-7.6 g. Group III quail were 25 and 12% heavier at hatching than Group I and II quails, respectively, and reached a mature body weight which was 38 and 12% heavier than Group I and II quails, respectively. Gompertz growth parameters were not different in any of the groups. Feed and water consumption (g/kg body weight) rates were not significantly different among the three groups.

Aging

Assessment of the male reproductive system in the preweanling rat following Mn3O4 exposure.

Long-Evans rat pups were dosed orally from birth to 21 d with particulate Mn3O4 to obtain a daily dose of 0, 71, or 214 micrograms Mn/body weight . d. Assessments of the hypothalamic, pituitary, or testicular functions were determined by measuring the endogenous or stimulated serum concentrations of follicle-stimulating hormone (FSH), luteinizing hormone (LH), and/or testosterone (T) at 21 or 28 d of age. Body, testes, and seminal vesicles weight and tissue concentrations of Mn were also evaluated. Only slight Mn treatment effects were seen in body and testes weights. No effects were seen either on unstimulated or stimulated FSH or LH serum concentrations. Although no Mn treatment effects were seen on endogenous or 2 h human chorionic gonadotropin (hCG) stimulate serum T concentrations, there was a reduction in the serum T following 7 d of hCG stimulation. The hypothalamic Mn concentrations in animals with these reproductive effects were three times those where alterations in the dopaminergic pathway have been reported. However, no indication of hypothalamic or pituitary malfunction was found. These results suggest that the site of Mn damage that causes depression of sustained serum T concentration is in the testicular Leydig cell.

Administration, Oral

Age-dependent changes in gastrointestinal transport and retention of particulate manganese oxide in the rat.

Translocation of inhaled particulates from the nasopharynx and upper tracheobronchial area to the gastrointestinal tract is a major route of exposure for particles with a mass median diameter of greater than 1 micron. Previous studies in this laboratory with particulate Mn3O4 have shown that preweanling rats have substantially higher tissue Mn concentrations than similarly treated adults, indicating possible differences in uptake or elimination or both. This study was conducted to evaluate changes in gastrointestinal movement and retention of particulate Mn3O4 in the preweanling and weaned rat. 85Sr-labeled microspheres were used to evaluate gastrointestinal transit rate (TR), while particulate Mn3O4 was used to evaluate particulate retention at selected ages. The results show that stomach retention time in the preweanling is at least twice that of the postweanling (90 min versus 42 min). In general, intestinal TR was not different in any of the ages evaluated, while transit time increased as intestinal length increased. Analysis of the Mn data demonstrated that the preweanling rat had a two-component retention curve with half-times of between 2 and 6 h for the short component and of between 24 and 26 h for the long component. In the postweanling rat, only one component was identified, with a half-time of between 2 and 5 h.

Age Factors