The basic amino acids lysine and arginine coupled with microwave irradiation at 2450 MHz were found to promote a sterilizing effect on Escherichia coli, which was shown to be related to the destruction of the cell membrane and the leakage of electrolytes. In the 2.5% amino acid concentration range, the bactericidal effect was proportional to the amino acid concentration, and with the same concentration and the same microwave treatment, the effect of arginine was significantly greater than that of lysine. When the microwave processing condition was controlled at 3 W/g for 105 s, the residual colony count (log) without amino acid after sterilization was 7.66, but those in the groups to which 2.5% lysine and arginine were added were 4.36 and 2.65, respectively. After extending the heating time of a lysine-bacteria suspension at a concentration of 2.5%–120 s, no residual bacteria was detected. However, to achieve the same level of sterilization, the required concentration of arginine was only 1.5%. Another basic amino acid, histidine, had no promotion effect on microwave sterilization. Meanwhile, a comparison of traditional sterilization (water and oil bath) and microwave sterilization showed the high efficiency and targeting characteristics of microwave sterilization.
Furan is a heterocyclic organic compound formed during heat treatment for processing and preservation of various types of food. Rodent studies have previously shown that furan is a hepatocarcinogen. Those studies were conducted over a high dose range, which induced tumors at nearly 100% incidence at all doses. This ninety-day gavage study in mice was conducted to extend the dose to a lower range (0.0, 0.03, 0.12, 0.5, 2.0, and 8.0 mg/kg body weight [bw] per day) to identify a no-observed adverse effect level for hepatotoxicity and to characterize non-neoplastic effects, including those affecting clinical biochemistry, hematology, tissue morphology, and histopathology. The liver was the primary target organ with dose-dependent toxicity. Liver weights were increased at the 8.0 mg/kg bw dose in females only. Levels of the serum enzyme alanine transaminase, representative of liver damage, were increased three-fold at the highest dose. Histological changes in the liver were observed at 2.0 and 8.0 mg/kg bw in both sexes. Although clinical parameters were also altered for the kidney, these differences were not accompanied by histological changes. Based on these clinical biochemical and histological changes, a no-observed adverse effect level of 0.12 mg/kg bw per day of furan in mice is suggested.
Rodent studies have shown that furan is a hepatocarcinogen. Previous studies conducted with high doses showed tumors at nearly 100% incidence at all doses. In this paper, a ninety-day gavage experiment conducted with lower doses (0.0, 0.03, 0.12, 0.5, 2.0, and 8.0 mg/kg bw) to identify a no-observed adverse effect level for hepatotoxicity and to characterize non-neoplastic effects including gross changes and histopathology, clinical biochemistry, hematology, and immunotoxicology is reported. As indicated by changes in serum biomarkers, increased liver weights and gross and histological lesions, the liver is the major target organ affected by furan. There were no changes in body weights, food consumption, or histology in other organs. Some of the serum electrolyte markers, including phosphorus, were altered. There was a significant increase in serum thyroxine and triidothyronine in males. This increase was not accompanied by histological thyroid changes. Immunophenotypic analysis showed that thymic lymphocyte maturation was altered in male rats. Although altered clinical biochemistry and hematological parameters were observed at a dose of > 0.5 mg/kg bw, mild histological lesions in the liver were observed at > 0.12 mg/kg bw. Based on this finding, a furan dose of 0.03 mg/kg bw was proposed as the no-observed adverse effect level for hepatic toxicity.
This study was undertaken to characterize the toxicokinetics of p-tert-octylphenol (OP), a weak estrogenic compound, in male and female rats. Male and female Sprague-Dawley rats were given a single dose of OP either by oral gavage (50, 125 or 250 mg/kg), by intravenous (iv) injection (2, 4, or 8 mg/kg), or by subcutaneous (sc) injection (125 mg/kg). In a repeated dosing experiment, rats were given OP (oral) daily (25, 50, or 125 mg/kg) for 35 d (female) or 60 d (male). Blood and tissue samples were collected and analyzed for OP content using gas chromatography with detection by mass spectrometry. Blood OP concentrations were generally higher in female than male rats following a single oral or sc administration but were similar following a single iv injection. Tissue OP concentrations were also higher in female than male rats following oral exposure, consistent with the faster metabolism of OP observed in male rat liver microsomes. After subchronic administration, blood OP concentrations were higher at the end of exposure for female (33 d) (2.26-fold, not significant) and male (57 d) (3.47-fold) rats than single dosing but there was no change in the tissue OP concentrations. Gender differences in tissue OP concentrations may contribute, in part, to gender differences in the toxicity of OP in rats. The fact that OP was found in all reproductive tissues confirms its potential for direct endocrine-like effects.
Aromatase (cyp19) and the 5α- and 5β-reductases (srd5alpha and srd5beta) are important enzymes for vertebrate sexual development. We investigated the effects of inhibition of cyp19 by fadrozole (FAD), and srd5alpha and srd5beta by finasteride (FIN) during anuran larval development. Chronic exposures of Silurana (Xenopus) tropicalis from Nieuwkoop-Faber stage 12 until stage 60 were performed using either 2 µM FAD or 25 µM FIN. Histological analysis of exposed metamorphic frogs revealed that both treatments induced intersex individuals (presence of testicular oocytes). FAD treatment resulted in 55% male, 30% female and 15% intersex, while FIN treatment produced 27% male, 53% female and 20% intersex. Real-time RT-PCR analysis of hepatic sex steroid- and thyroid hormone-related gene expression demonstrated that FAD-induced intersex animals had higher srd5alpha1, srd5alpha2 and eralpha mRNA levels than control and FAD males. In contrast, FIN-induced intersex had low srd5alpha1, srd5alpha2, srd5beta and dio3 and high dio2 mRNA levels. FIN-treated males exhibited high trbeta, dio2 and a lower dio3 mRNA levels. We conclude that chemically induced intersex animals display different gene expression profiles than non-exposed animals and that, although morphologically similar, intersex animals produced by different chemicals have different endocrine pathophysiologies.
A sensitive and reproducible procedure using gas chromatography coupled with mass spectrometry is described for the determination of p-tert-octylphenol (OP), a persistent degradation product of alkylphenol ethoxylates that binds to the estrogen receptor in blood and tissues. The first step involved the extraction of blood (200 microL) or tissue homogenate (400 microL) with methyl tert-butyl ether, including p-tert-butylphenol (BP) as internal standard. After extraction, the sample was evaporated to dryness with a gentle stream of nitrogen at 45 degrees C, and OP and BP were derivatized with an acetylation reaction involving acetic anhydride and catalyzed by pyridine. Samples were then analyzed by a gas chromatograph equipped with a mass spectrometer (single ion monitoring) with a Varian VF-5ms capillary column. The limit of detection and the limit of quantification of the method in blood were 4.6 and 15.5 ng/mL, respectively. The linearity and reproducibility of the method were acceptable, with coefficients of variation of approximately 10% for blood and ranging between 9% and 27% for tissues. This method was applied to the determination of unchanged OP in blood and tissues obtained from Sprague-Dawley rats after oral and IV OP administration.
The epididymis is the site of sperm maturation and storage. 5alpha-Reductases (types 1 and 2) are key enzymes in this tissue because they convert testosterone to dihydrotestosterone (DHT), the main androgen regulating epididymal functions. Examining the consequences of inhibiting DHT formation is likely to provide important information regarding the regulation of epididymal functions, yet few inhibitor studies have focused on this tissue. To understand better DHT-mediated regulation of epididymal gene expression, we employed a dual 5alpha-reductase inhibitor and cDNA microarrays to examine the effects of 5alpha-reductase inhibition on gene expression in the initial segment, caput, corpus, and cauda epididymidis. Inhibition of epididymal 5alpha-reductase activity by PNU157706 was confirmed by in vitro enzyme assays. Rats were treated with 0, 0.1, 1.0 or 10 mg/kg per day PNU157706 for 28 days. The weights of DHT-dependent tissues, including the epididymis, were decreased following treatment. The effect of treatment on gene expression was dose-dependent and highly segment-specific. The initial segment responded uniquely in that a similar number of genes increased and decreased in expression compared with the other segments where the majority of affected genes decreased in expression. Some of the more dramatically affected genes were involved in signal transduction as well as fatty acid and lipid metabolism, regulation of ion and fluid transport, luminal acidification, oxidative defense and protein processing and degradation. These are essential processes contributing to the formation of an optimal luminal microenvironment required for proper sperm maturation. These results provide a novel insight into the DHT-dependent mechanisms that control epididymal functions.
Tributyltin, an organotin, is ubiquitous in the environment. The consumption of contaminated marine species leads to human dietary exposure to this compound. Tributyltin is an endocrine disruptor in many wildlife species and inhibits aromatase in mammalian placental and granulosa-like tumor cell lines. We investigated the effects of tributyltin chloride exposure on pregnancy outcome in the Sprague-Dawley rat. Timed pregnant rats were gavaged either with vehicle (olive oil) or tributyltin chloride (0.25, 2.5, 10, or 20 mg/kg) from days 0-19 or 8-19 of gestation. On gestational day 20, dams were sacrificed, and pregnancy outcome was determined. Tributyltin and its metabolites (dibutyltin, monobutyltin) were measured in maternal blood by gas chromatography. Both tributyltin and dibutyltin were present in maternal blood at approximately equal concentrations, whereas monobutyltin contributed minimally to total organotins. Organotin concentrations increased in a dose-dependent pattern in dams, independent of the window of exposure. Tributyltin chloride administration significantly reduced maternal weight gain only at the highest dose (20 mg/kg); a significant increase in post-implantation loss and decreased litter sizes, in addition to decreased fetal weights, was observed in this group. Tributyltin chloride exposure did not result in external malformations, nor was there a change in sex ratios. However, exposure to 0.25, 2.5, or 10 mg/kg tributyltin chloride from gestation days (GD) 0-19 resulted in a significant increase in normalized anogenital distances in male fetuses; exposure from days 8-19 had no effect. There was a dramatic increase in the incidence of low weight (< or =0.75 of the mean) fetuses after exposure to 20 mg/kg tributyltin chloride. Delayed ossification of the fetal skeleton was observed after in utero exposure to either 10 mg/kg or 20 mg/kg tributyltin chloride. Serum thyroxine and triiodothyronine levels were reduced significantly in dams exposed to 10 and 20 mg/kg tributyltin chloride throughout gestation; in dams treated with tributyltin from GD 8-19, serum thyroxine concentrations, but not triiodothyronine, were significantly decreased at both the 2.5 and 10 mg/kg exposures. Thus, maternal thyroid hormone homeostasis may be important in mediating the developmental toxicity of organotins.
Dietary exposure of Inuit people to a mixture of pesticides and polychlorinated biphenyls, or persistent organic pollutants (POPs), during pregnancy is a public health concern. We examined the consequences of administering the mixture of 28 POPs found in the Inuit diet (at doses representing 10-1000 times dietary levels) by gavage to pregnant Sprague-Dawley rats either during gestation days 0-19 or 8-19. The levels of individual components of the POPs mixture in the maternal liver were measured by high-resolution mass spectrometry. On gestation day 20, dams were sacrificed and pregnancy outcome determined. RNA isolated from maternal and fetal livers was 32P-labeled for gene expression profiling. The concentrations of individual POPs were increased in maternal livers of dams gavaged with the 1000x POPs mixture by 10- to 500-fold. While exposure to POPs had no significant effects on pregnancy outcome, dramatic changes were observed in the gene expression profiles of both the maternal and fetal livers. The gene expression profiles of maternal and fetal female and male liver were distinct with respect to the numbers of transcripts detected, the genes expressed exclusively in control or POPs-exposed livers, and those for which expression was up- or downregulated. While different genes were affected in each group, the overall consequence of POPs exposure on hepatic gene expression profiles was to decrease both the numbers of genes expressed and the relative intensity of expression. Thus, in utero exposure to POPs alters hepatic gene expression in the dam and the fetus; these changes may have functional implications.
The regulation of LH-dependent and -independent increases in testosterone secretion by key proteins in the testes of adult rams was investigated. Serial blood samples were collected from groups of four control and passively immunized (oestradiol antiserum for 3 weeks) rams and the animals were gonadectomized in either the non-breeding season (April) or the breeding season (September). LH pulse frequency and basal (interpulse) concentrations were several times greater (P < 0.01) in the breeding season than in the non-breeding season. Neither of these parameters nor LH pulse amplitude were affected by oestradiol immunization. Parameters of testosterone episodic secretion and response to an injection (i.v.) of 15 micrograms NIH-LH-S25 were also greater (P < 0.05) in the breeding season and, with the exception of pulse frequency, in immunized rams versus controls. Substrate utilization established that testosterone biosynthesis was predominantly via the 5-ene pathway. Increases in blood testosterone concentration in the breeding season were associated with a fivefold higher (P < 0.01) activity of cytochrome P450 17alpha-hydroxylase/C-17,20 lyase (P450(17alpha)) and a 65% higher (P < 0.05) relative amount of mRNA for cytochrome P450 cholesterol side-chain cleavage enzyme complex (P450scc) in the testis. Of the steroidogenic enzyme activities examined, only that for 17beta-hydroxysteroid dehydrogenase (17beta-HSD) tended to be increased by oestradiol immunization. Blood concentrations of cholesterol lipoproteins and expression of the testicular low density lipoprotein receptor were not affected by season or immunization. The amount of steroidogenic acute regulatory protein (StAR) mRNA was 65% higher (P < 0.01) in the breeding season and 20% higher (P < 0.01) in immunized rams versus controls. These results indicate that greater LH stimulation may increase testosterone biosynthesis in the breeding season by increasing StAR mRNA (and presumably delivery of cholesterol to P450scc) and the activity of P450(17alpha), and possibly that of P450scc (activity not measured). More moderate increases in StAR mRNA and 17beta-HSD activity may explain, in part, the increases in testosterone secretion with oestradiol immunization.
Nichol et al (1992, Journal of Reproduction and Fertility, 96, 699–707) identified a pre- to post-ovulatory decrease (approx 1mM) in the amount of glucose in pig oviduct fluid. The present studies investigated whether the decrease was due to metabolism by embroyos and/or oviduct tissues, and also whether there was a local influence of the ovary on the oviduct fluid content of energy substrates. Unilaterally ovariectomised pigs were used, in which, through compensation, oviducts that contained twice the normal number of embryos could be compared with oviducts which contained no embryos. Following unilateral ovariectomy and after two oestrous cycles of normal duration, surgery was performed 88 hours after the beginning of standing heat to obtain oviduct fluid samples, just before embryonic entry into the uterus. Luminal fluid samples from the ampulla and ampullary-isthmic junction from oviducts with and without an adjacent ovary were assayed for glucose, pyruvate and lactate concentrations. No significant differences were found between the glucose, pyruvate and lactate concentrations in fluids from the ampulla or ampullaryisthmic junction from oviducts containing embryos compared with absence of embryos (P > 0·05). Therefore, the post-ovulatory decrease was not due to the presence of embryos or to a local effect of the ipsilateral ovary. Consequently, pig oviduct fluid concentrations of glucose, lactate and pyruvate are seemingly regulated by systemic mechanisms.
The pH of the oviduct lumen was measured at different stages of the estrous cycle in the ampulla and ampullary-isthmic junction (AIJ) of intact and unilaterally ovariectomized mated or nonmated pigs. The pH profile consisted of high frequency small peaks superimposed on low frequency large amplitude peaks. One animal examined at midcycle exhibited fluctuations in pH (peak to nadir; delta pH) of 0.3 and 0.7 units in the ampulla and AIJ, respectively, and the frequencies of the large peaks in these regions were 2.6 and 1.6 peaks.min-1, respectively. In six preovulatory unmated pigs, the delta pH (mean +/- SE) was 0.50 +/- 0.04 units in both regions and the large peak frequencies were 0.6 +/- 0.06 peaks.min-1. In one animal that was assessed during ovulation, the pH showed deviations of up to 0.4 pH units, which were probably due to the alkalinity of follicular fluid accompanying the ovulated eggs. In the ampullae of five unilaterally ovariectomized postovulatory-mated pigs, the delta pH in oviducts with and without an ipsilateral ovary was significantly lower than preovulatory (p < 0.05), but the large and the small peak frequencies were not significantly different. By contrast, the delta pH in the AIJ with an ipsilateral ovary (0.11 +/- 0.02 units) was significantly lower than before ovulation (0.54 +/- 0.04 units) and also when compared with the contralateral AIJ (0.36 +/- 0.06 units) (p < 0.05). The ovary also influenced the small peak frequency, which was significantly higher if the ipsilateral ovary was absent (10.7 +/- 1.5 vs. 14.9 +/- 1.6 peaks.min-1, respectively). Thus, oviduct fluid pH is controlled by both systemic and local mechanisms, and the ipsilateral ovary and (or) embryonic factors influence the pH profile of the oviduct.
Hydrosalpinges were created to collect adequate volumes of fluid during pre-, peri- and postovulatory intervals from the ampulla, ampullary-isthmic junction and the isthmic-utero-tubal junction of the oviducts from Large White gilts that had exhibited at least two natural oestrous cycles. The accumulated fluids, follicular fluid and Butschwiler's medium were compared for their effects on various parameters of boar sperm motility using the CellSoft, computer-assisted, digital image analysis system. Sperm velocity (micron s-1 +/- SEM) was significantly higher (P < 0.05) in follicular fluid (84 +/- 3; n = 5) than in fluids from the ampulla during peri- and early postovulatory intervals, and from the isthmic-utero-tubal junction during pre- and early postovulatory intervals. It was also higher (P < 0.05) than in the fluid from the ampullary-isthmic junction during pre- and early postovulatory intervals; however, sperm velocity in follicular fluid was not significantly different from that in the periovulatory fluid from the ampullary-isthmic junction. The mean lateral head displacement (ALHmean) of spermatozoa was significantly greater in follicular fluid (3.9 +/- 0.3 microns; n = 5) than in fluid from the ampulla during peri- and early postovulatory intervals and from the isthmic-utero-tubal junction during pre- and early postovulatory intervals, and was also higher (P < 0.05) than in fluid from the ampullary-isthmic junction during the preovulatory period, but was not different from the peri- and postovulatory ampullary-isthmic junction fluids. The proportion of spermatozoa exhibiting circular motion was significantly higher (P < 0.05) in the periovulatory fluid from the ampullary-isthmic junction (24 +/- 3%) compared with fluids obtained during preovulatory and early postovulatory periods. Follicular fluid had no effect on the proportion of spermatozoa exhibiting circular motion. The average radius of sperm movement in circular trajectories was higher in follicular fluid than in the periovulatory fluids from the ampulla and ampullary-isthmic junction (P < 0.05). In hydrosalpingeal fluids collected 2-5 days after ovulation, the average radius of movement was greater in the ampulla fluid and ampullary-isthmic junction fluid than in fluid from the isthmic-utero-tubal junction (P < 0.05). These results demonstrate that follicular fluid and oviductal fluids have considerable influences on boar sperm motility. Furthermore, the immediate effect of periovulatory ampullary-isthmic junction fluid in increasing the percentage of spermatozoa swimming in circles (hyperactivated) is relevant, since it is at this time and within this region that fertilization occurs.
The aim of this study was to compare the development and metabolic activity of cultured murine and bovine embryos in 2 standard media (HAM F-10 and RPMI) in the presence or absence of bovine uterine flushings. Murine morulae (n = 653) and day 7 bovine embryos (n = 273) were cultured for 18 h or 36 h in either HAM F-10 or RPMI in the presence or absence of bovine uterine flushings. After culture, the development, quality, and metabolic activity (glucose utilization or methionine uptake and incorporation) of embryos was assessed. It was found that HAM F-10 (without uterine flushings) was a more suitable medium than RPMI for optimal development and metabolism of murine and bovine embryos. Poor quality and development, as well as decreased metabolism, were evident after culture of murine embryos in RPMI; in contrast, this medium had no adverse effects on bovine embryos in culture. Supplementation of HAM F-10 with bovine uterine flushings improved the growth of murine embryos and the protein synthesis (as measured by an increased methionine incorporation) for both murine and bovine embryos. However, supplementation with bovine uterine flushings could not overcome deficiencies of an inappropriate medium (RPMI) for murine embryos. Supplementation of a well-defined culture medium with uterine flushings increased metabolism of embryos in culture, and thus might help to increase pregnancy rates after transfer of such embryos to recipient cows.
During the luteal phase in the cow, a first-wave dominant follicle grows to reach ovulatory size, but then ceases to grow, becomes no longer dominant and enters a phase of slow regression. During this growth transition, the concentration of oestradiol has been shown to decrease in follicular fluid. The objective of this study was to determine if follicular fluid oestradiol concentrations are regulated by the activity of three major steroidogenic enzymes, namely P450-aromatase (P450-arom), 3 beta-hydroxysteroid dehydrogenase/delta 5-delta 4 isomerase (3 beta-HSD) and 17 alpha-hydroxylase C-17,20 lyase cytochrome P450 enzyme (P450-17 alpha) measured in granulosa and theca cells isolated from individual first-wave dominant follicles. Follicle growth and state of dominance was assessed by ultrasonography and follicles were classified as growing-dominant (GD, n = 6), non-growing-dominant (NGD, n = 8) or non-growing-non-dominant (NGD, n = 6). Mean follicular fluid concentrations of oestradiol were higher in GD than in NGD or NGND follicles (511 +/- 98 versus 136 +/- 16 and 20 +/- 11 nmol/l respectively). Oestradiol was not correlated with P450-arom in any of the three groups. In GD follicles, oestradiol was positively correlated with pregnenolone concentration but neither was correlated with granulosa or theca 3 beta-HSD activity or with theca P450-17 alpha activity. In NGD follicles, oestradiol was negatively correlated with theca 3 beta-HSD activity and pregnenolone was negatively correlated with granulosa 3 beta-HSD activity. In NGND follicles, oestradiol was positively correlated, and pregnenolone was negatively correlated with theca 3 beta-HSD and P450-17 alpha activities. These studies demonstrated that pregnenolone supply is the principal regulating factor of oestradiol output during follicle dominance and during the loss of dominance but that the levels of P450-17 alpha and 3 beta-HSD activity become rate-limiting when the follicle is no longer dominant.
Morphological evaluation of embryos is essential to the success of embryo transfer procedures and is presumed to reflect embryo metabolic activity. To investigate this assumption, correlations between morphological and metabolic parameters were determined for cultured murine morulae. After 18 h (n = 47) or 36 h (n = 48) of culture in M16, the developmental rate and quality (poor or good) of embryos were estimated, and, then, either their (14)C-glucose utilization or (35)s-methionine uptake and incorporation were measured. Retarded developing, or poor-quality embryos had lower mean glucose utilization, uptake and incorporation rates than normally developing or good-quality embryos (P < 0.05). After 18 h of culture, an association was found between developmental rate and metabolic activity, but this was not evident after 36 h of culture. Similarly, an association was found between embryo quality and metabolic activity. As expected, poor embryo quality was indicative of low metabolism throughout the culture period, but good quality did not necessarily indicate normal metabolic activity. Thus, morphological parameters do not always reflect metabolic competence, and some functional defects were not detectable by visual evaluation alone. Measuring metabolic parameters could complement visual evaluation for a better selection of embryos prior to transfer.
To determine if and when short-term ablation of androgen action compromises the development of the male reproductive tract in mice, the androgen receptor antagonist hydroxyflutamide was administered orally to pregnant FVB/N mice and the reproductive tracts of the male offspring were examined when adult. Hydroxyflutamide (30 mg per day) for 5 days from day 11 to day 15 of gestation caused hypospadias in all male progeny. However, testis weights, seminal vesicle weights, and serum testosterone levels were not affected (p > 0.05) but caput-corpus epididymal weights were 15% lower than controls (p < 0.02). Shorter periods of treatment that included day 14 or 15 caused hypospadias, but treatments that did not include days 14 and 15 did not (p < 0.002). Hydroxyflutamide (30 mg, once or twice daily for 2 consecutive days) between days 15 and 20 of gestation demonstrated that androgen ablation on days 15 & 16 caused hypospadias, absence of prostate, and scrotal location of the seminal vesicles with abdominal testes (p < 0.05). Males exposed later in pregnancy had prostates, but the weights were reduced (p < 0.001); testes were scrotal and seminal vesicles were abdominal; caput-corpus epididymal weights were 15-30% lower than controls (p < 0.05), but the tubule contained large numbers of spermatozoa. Furthermore, testis weights, serum testosterone, and the response of the testis to a human chorionic gonadotropin (hCG) challenge in vitro were not compromised by hydroxyflutamide, and seminiferous tubules exhibited normal spermatogenesis. When males that had been exposed to hydroxyflutamide on days 13 & 14, 15 & 16, 17 & 18 and 19 & 20 were housed with sexually mature females, pregnancies resulted only from the day 19 & 20 treatment group. Thus, there are long-term effects caused by short-term blockade of androgen action at critical times during pregnancy and such effects could result in the inability to impregnate, irrespective of any externally visible indications of developmental anomalies.
Large White gilts, 9 to 18 months old, that had exhibited at least two natural oestrous cycles were divided into three groups (phases): unmated pre-ovulatory, unmated post-ovulatory and mated post-ovulatory (n = 16, 20 and 18). Oviductal luminal fluid samples were collected under anaesthesia by micropipette from the ampulla and ampullary-isthmic junction and analysed by an ultramicrofluorometric technique. Glucose concentrations (mmol 1(-1), means combining regions; mean +/- SEM) were significantly higher in blood plasma than in oviductal fluid (4.56 +/- 0.20 versus 0.59 +/- 0.16; P < 0.0001; n = 27), whereas lactate was higher in the oviduct (5.71 +/- 0.53 versus 2.48 +/- 0.24; P < 0.0001; n = 27). No significant differences were found between the ampulla and the ampullary-isthmic junction. However, the concentration of glucose was significantly higher (P < 0.05) in the ampulla of the pre-ovulatory group (0.97 +/- 0.20; n = 13) compared with the mated group (0.25 +/- 0.05; n = 14) and its concentration in the ampullary-isthmic junction in the pre-ovulatory group (1.65 +/- 0.63; n = 13) was significantly greater (P < 0.05) than in the post-ovulatory (0.43 +/- 0.11; n = 11) or mated groups (0.17 +/- 0.02; n = 14). Lactate in the ampulla of mated animals was higher than in the pre-ovulatory group (6.83 +/- 0.70 versus 3.86 +/- 0.38; P < 0.05; n = 15 and 13), but neither was significantly different from the post-ovulatory group. Furthermore, no change was seen at the ampullary-isthmic junction in lactate concentration with phase.(ABSTRACT TRUNCATED AT 250 WORDS)
Rat testicular 3 beta-hydroxysteroid dehydrogenase-isomerase (3 beta-HSD-Isomerase) converts pregnenolone to progesterone. The enzyme is localized to the microsomal membranes of testicular homogenates, and treatment of the microsomes with phospholipases causes a reduction in 3 beta-HSD-Isomerase activity. The relationship between the membrane microenvironment and 3 beta-HSD-Isomerase activity was investigated by adding phospholipids of known structure to microsomal incubations and determining the effects on the conversion of pregnenolone to progesterone. Phosphatidylcholines with saturated acyl chains of 8, 10, 12, and 14 carbon atoms, or unsaturated chains, were extremely inhibitory to 3 beta-HSD-Isomerase, causing reductions in specific activity to 10-40% of the control value. Furthermore, the inhibition appeared to be caused primarily by a reduction in the active enzyme concentration (Vmaxapp). Phosphatidylcholines with longer saturated acyl chains were without effect. Phosphatidylserine and phosphatidic acid were activators of 3 beta-HSD-Isomerase. These phospholipids decreased the Kmapp value (to 21% and 43% of control values, respectively), suggesting that the enhancement of 3 beta-HSD-Isomerase activity was through an active-site-oriented effect. Furthermore, for phosphatidic acid to activate 3 beta-HSD-Isomerase, saturated acyl chains of 16 carbon atoms were necessary, other configurations being slightly inhibitory. The remarkable specificity for certain phospholipid configurations and the different effects of these membrane components suggest that androgen biosynthesis may be regulated by changes in the phospholipid microenvironment of 3 beta-HSD-Isomerase.
The role of membrane phospholipids in testicular androgen biosynthesis was investigated by monitoring the effects of phospholipase treatments on the activities of the steroid transforming enzymes. Androgen biosynthesis in untreated rat testicular microsomes was examined by monitoring the temporal appearance of pregnenolone metabolites and was found to proceed through the 4-ene route. When phospholipase A2 was included, the 5-ene steroids 17-hydroxypregnenolone and dehydroepiandrosterone (DHEA) were formed in greater quantities, and the production of 4-ene steroids was reduced indicating that the conversion of 5-ene steroids to the 4-ene configuration was inhibited by phospholipase A2 treatment. Phospholipase C, in addition to inhibiting this step, also inhibited the conversion of C21 steroids to C19 steroids. When the enzymatic steps were measured individually, phospholipase A2 inhibited 3 beta-hydroxysteroid dehydrogenase-isomerase (3 beta-HSD-Isomerase) with an ED50 of 73 mU/ml but had no effect on the activities of 17-hydroxylase, C-17, 20 lyase, or 17 beta-hydroxysteroid dehydrogenase (17 beta-HSD). However, though phospholipase C treatment inhibited 3 beta-HSD-Isomerase, it caused less inhibition (the ED50 value was 149 mU/ml). Furthermore, 17-hydroxylase and C-17, 20 lyase activities were also inhibited by phospholipase C treatment (ED50 values were 410 and 343 mU/ml, respectively), but no effect on 17 beta-HSD was observed. The differences in the apparent phospholipid requirements of the steroidogenic enzymes provides the possibility that the metabolic fate of pregnenolone may be regulated by changes in the phospholipid composition of the microenvironment.