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[Peptidases in the kidney of male rats following castration and testosterone substitution].

The localization of aminopeptidase M (APM), dipeptidyl peptidase I (DAP I), II (DAP II) and IV (DAP IV) in the renal section was investigated histochemically, and their activities were determined fluorometrically in renal homogenate of normal, castrated and testosteron treated male rats.--After castration the activities of the lysosomal DAP II (pars convoluta of the proximal tubule), DAP I (distal and proximal tubule) and of the mainly membrane-bound DAP IV (glomeruli, brush border of the proximal tubule) increase in comparison to normal males, whereas the activities of the brush border-bound APM decrease. After testosteron treatment of castrated animals (0.1, 0.5 and 1.0 mg testosterone proprionate/100 g BW and day; 5-day treatment) the activities of DAP I, II and IV decrease again, so that after treatment with 0.1 mg testosterone proprionate, the activities of DAP I and II approach those in normal males.--The additionally determined urinary protein excretion shows that there is a significant decrease in proteinuria after castration, whereas testosterone treatment of castrated animals is accompanied by an increase of proteinuria.--Our results would suggest that the protein catabolism in the proximal tubule and the proteinuria are interrelated, and that testosterone influences (decreases) the protein catabolism in the proximal tubule. This means that high activities of lysosomal proteinases in the proximal tubule (castrates) are accompanied by a low proteinuria, and low activities of those proteinases (testosterone treated castrated or normal males) by a high proteinuria.

Aminopeptidases↗

Effects of conjugated estrogens on ripening of uterine cervix in nonpregnant castrated and pregnant rats.

The stimulating effects of conjugated estrogens (CE, Premarin) on ripening of the uterine cervix were investigated by measuring the wet weight of the cervices, as well as by both light and electron microscopic examinations on non-pregnant castrated (hereinafter called castrated) and pregnant rats. Increase in the wet weight of the cervix was observed, in comparison with lactose control group, 4 and 2 hours after administration of CE in castrated and late pregnant rats, respectively. The maximum increase in the wet weight of the cervix was evident during the period of 4 to 10 hours after administration of CE. Scanning electron microscopic investigation was carried out on the cervices using the previously defined "ripening score". The scores of castrated rats cervices taken 4 hours after administration of different amounts of CE were 24.8 +/- 1.0 (n=5, 100 microgram CE/rat) and 24.8 +/- 2.0 (n=5, 100 microgram CE/rat), showing marked increases in score, as compared with those of control. The light and transmission electron microscopic figures of the cervices of castrated rats treated with CE resembled strikingly to those of pregnant rats, and the resemblance was also striking as compared with those of castrated rats treated with free estrogens. The onset of the action of CE on the cervical capillaries was apparently faster than that on cell components of the connective tissue. There was no essential difference in ultrastructure between the cervices of lactose treated pregnant rats and CE treated pregnant ones. CE exhibited more prompt effects in increasing the wet weight of the cervix than did free estrogens in castrated rats (as observed in earlier experiments). Judging from the close resemblance between the electron microscopic figures of the CE group and those of the free estrogens group, it is postulated that the effect of CE might be due mainly to the action of free type estrogens converted from CE, and additionally, due to some unknown factors involved in the drug.

Animals↗

Incorporation and release of tritiated leucine in rat prostate during castration induced involution.

Rates of 3H-leucine incorporation into and release from the ventral prostate during castration induced involution were studied in adult male rats. We measured the rate of 3H-leucine incorporation by incubating the prostatic tissue in medium 199 containing 3H-leucine at 37 C for 1 hour. The rate of radioactivity incorporated into the protein fraction was expressed as cpm mg of protein. This rate reduced linearly from Day 0 to Day 6 post castration. Subcutaneous implantation of a silastic capsule containing crystalline testosterone to castrated rats restored the rate of incorporation to that of sham operated rats. To study the rate of 3H-leucine release, 3H-leucine prepared in 0.9 per cent Na C1 solution was injected intravenously into rats 1 day before castration. The amount of radioactivity remaining in the protein fraction of the prostate, expressed as cpm per prostate, was measured at different intervals after castration or after sham operation. Radioactivity disappeared at a significantly faster rate in the prostate of castrated rats than in sham operated controls. Testosterone replacement to castrated rats delayed the rate of loss of radioactivity to a degree similar to that of sham operated rats. These findings indicate that the rapid rate of protein loss in the regressing prostate is the result of a combined action of an accelerated rate of protein degradation and a rate of protein synthesis. Testosterone administration reversed these patterns of protein metabolism.

Animals↗

Effects of aging and castration on plasminogen activator and metalloprotease activities in the rat prostate complex.

Pathology of the prostate gland in rats and humans is associated with aging. Our objective was to examine the effects of aging on the activities of plasminogen activators and metalloproteases in the prostatic complex of rats. Plasminogen activator activities (very low in the anterior, lateral, and dorsal lobes, in contrast to higher activities in the ventral lobe of 4-month-old adult rats) increased with aging in the dorsal and anterior prostate lobes of 31-month-old rats; these activities also increased in the dorsal and lateral lobes upon castration of 18-month-old rats. The plasminogen activator activities in the ventral lobe did not increase with aging to 18 months but did increase 3-5-fold after castration of either young or old rats. Metalloprotease activities of 70 and 76 kDa were observed in the anterior and lateral lobes of 4 month untreated adult rats, whereas the dorsal lobe showed MP of 70 and 92 kDa. Castration of young adult rats increased activities of all three molecular forms of metalloprotease in these three lobes. Increased expression of metalloprotease activities was also found with aging to 31 months in the anterior, lateral, and dorsal lobes. However, changes in metalloprotease activities associated with age were most striking in the lateral lobe and included activities of 52, 55, 81, 93, 113, and 117 kDa at 18 months of age. Castration for 30 days at this age resulted in a decline in the 52, 55, 113, and 117 kDa activities and an increase in activities of the 70, 81, and 93 kDa forms. These latter metalloprotease activities were also increased in the dorsal lobe after castration. Our results suggest that some metalloprotease activities increased in the dorsal lobe after castration. Our results suggest that some metalloprotease activities increased in the lateral lobe with age possibly result from an increased accumulation of secretory proteins (i.e., 52, 55, 113, and 117 kDa), whereas the 70, 81, and 93 kDa metalloprotease activities may be related to possible prostatitis and/or involved in changes in tissue organization. The increased expression of metalloprotease activities in the lateral and dorsal prostate lobes with aging, and castration upon aging, may be indicative of altered hormonal regulation of these proteases in these lobes.

Aging↗

Quantitative study of the effects of denervation and castration on the levator ani muscle of the rat.

The levator ani muscle (LA) of the rat is highly androgen-sensitive and, like all skeletal muscles, deteriorates structurally and functionally when denervated. In order to elucidate the interplay of neural and endocrine influences, the separate and combined effects of denervation and castration on myofiber cross-sectional area and nuclear populations were quantitatively studied. In one group of 4-month-old male rats (A), the LA was denervated. Another group (B) was surgically castrated and a third group (C) was both denervated and castrated. The control rats (D) remained both gonad- and nerve-intact. After two months, the LA was obtained for myofiber and nuclear enumeration, cross-sectional area and satellite cell frequency determination. In the denervated muscle of gonad-intact rats (Group A), myofiber cross-sectional area was markedly diminished (265.84+/-11.38 microm2; compared with controls [Group D]: 1519.98+/-79.41 microm2; P < 0.05). Satellite cell nuclei, as a percentage of total sublaminar nuclei (i.e., satellite cell ratio), increased significantly (4.26%, from a control value of 1.91%). Castration alone (Group B) resulted in pronounced myofiber atrophy (mean cross-sectional area: 754.03+/-89.63 microm2) but had no significant effect on satellite cell ratio (2.36%). The combination of castration and denervation (Group C) elicited the same degree of myofiber atrophy as denervation alone (Group A) but had no significant impact on satellite cell ratio. Instead, the nuclear count per myofiber declined to about a third of the control level (300.5+/-38.49 compared with 861.7+/-24.8; P < 0.05). The results indicate that the atrophic effects of denervation and castration on the LA are non-synergistic and mechanistically similar. They also show that the inability of satellite cells to respond mitotically to the withdrawal of neural input under disandrogenized conditions is a factor in the myonuclear depletion of the denervated muscle of castrated rats.

Anal Canal↗

Alterations in mRNA levels for growth-related genes after transplantation into castrated hosts in oncogene-induced clonal mouse prostate carcinoma.

A clonal mouse prostate carcinoma was established by the introduction of the ras and myc oncogenes via the recombinant retrovirus Zipras/myc 9 using a mouse prostate reconstitution model system. A single-cell suspension derived from an early passage ras+myc-induced carcinoma was inoculated into the flanks of intact or castrated adult male C57BL/6 mice, and tumors were harvested 3 wk postinoculation for northern and Southern blotting. Tumor volume analysis showed that this carcinoma was not dependent on testicular androgens for growth. Southern blot analysis of virus-cell DNA junction fragments revealed that tumor cell populations recovered from both intact and castrated mice were progeny of the same virus-infected cell. Northern blotting showed that mRNA levels for the four growth-related genes transforming growth factor-beta 1 (TGF-beta 1), transforming growth factor-beta 3 (TGF-beta 3), tissue-type plasminogen activator (tPA), and c-myc were significantly elevated in clonal mouse prostate carcinomas grown in castrated hosts. In contrast, androgen receptor mRNA levels were significantly reduced under the same conditions. The response of TGF-beta 1, tPA, and c-myc mRNA levels in the carcinomas grown in castrated hosts was similar to that shown previously in normal rat ventral prostate. However, unlike normal rat ventral prostate after castration, increased numbers of apoptotic cells were not seen in the castrated group relative to the intact group at the time of analysis, indicating that the altered gene expression was not associated with cell death. In addition, testosterone-repressed prostate mRNA number 2 levels, shown previously to be elevated after castration in normal rat ventral prostate, were not increased in the androgen-deprived clonal mouse prostate carcinomas. Therefore, this early passage clonal ras+myc-induced prostate carcinoma demonstrates unique patterns of expression for a set of growth-related genes in an androgen-deprived environment.

Androgens↗

Structural and functional analysis of murine skeletal muscle after castration.

A previous histochemical and morphometric study demonstrated that castration caused a significant decrease in myofiber and muscle size in the extensor digitorum longus (EDL) muscles of male ReJ 129 mice. The objective of the present study was to examine the effects of castration on the morphology and physiology of the EDL. Muscle wet weight was significantly decreased in the castrated group. The morphological survey demonstrated a significant degree of degeneration in the EDL muscles from castrated animals, consisting of disruption of normal myofilament arrangement and necrosis, invasion of active macrophages, and atrophic myofibers. These findings were significantly correlated with the decrease in peak tension observed in the castrated groups. No significant difference was detected in the time to peak tension and half-relaxation time in the castrated groups compared with the control. Thus, alterations of the morphological integrity and myofiber size of skeletal muscle affect muscle strength in castrated animals.

Animals↗

Androgen-insensitive prostate cancer cells transiently respond to castration treatment when growing in an androgen-dependent prostate environment.

BACKGROUND: Castration-induced involution of the normal prostate is caused by primary effects in the prostate stroma and vasculature, but if this is the case also in tumors is unknown. METHODS: Androgen-independent AT-1 prostate tumor cells were therefore injected into the ventral prostate (VP) in Copenhagen rats. Seven days later when the growing tumor was surrounded by normal VP tissue the rats were castrated and the effect examined 3 and 7 days later. RESULTS: Castration reduced vascular density in the surrounding VP tissue and this was accompanied by tumor cell hypoxia, apoptosis, and temporarily retarded tumor growth. Castration-induced VP tissue regression occurred more rapidly in the contra-lateral than in the tumor-bearing lobe. CONCLUSIONS: Androgen-independent tumor cell respond to castration when growing in an androgen-dependent environment. The presence of a tumor influences the castration response in the surrounding normal tissue. The microenvironment determines how prostate epithelial cells respond to castration.

Androgens↗

Decrement of blood flow precedes the involution of the ventral prostate in the rat after castration.

Blood flow to the rat ventral prostate (VP), dorsolateral prostate (DP), and Dunning R3327 prostatic tumors was measured at different times up to 7 days after castration, using the microsphere method. In the VP organ weight was decreased from day 3 onwards. Blood flow was, however, already significantly decreased from day 1. The reduced blood flow in VP in 1-3 and 7-day castrated animals could be reversed by testosterone treatment. Organ weight was slightly decreased but blood flow was unaffected by castration in DP. Castration left Dunning tumor volume and blood flow unaffected. Using immunohistochemistry, androgen receptors were observed in epithelial and stromal cells in VP, DP and Dunning tumors, but not in blood vessels. Castration is known to induce apoptosis in the VP, but not in the DP or in Dunning tumors. This suggests that a reduction in blood flow might be an important component for the castration-induced involution and apoptosis in prostatic tissue. The reason why castration reduces blood flow only in the VP, and not in the DP or Dunning tumor is unknown.

Animals↗

The effect of castration on endothelins, their receptors and endothelin converting enzyme in rat prostate.

We previously have shown that experimental diabetes in rats causes prostatic involution, reduces serum testosterone levels, and causes an upregulation in prostatic endothelin (ET) receptors. Furthermore, insulin treatment normalizes these changes (Saito et al., Mol Cell Biochem 210:1-12, 2000). Since experimental diabetes-induced reduction in serum testosterone may be a factor in the alteration of the ET receptors and of prostatic growth, we investigated the effect of castration, another means of involuting the prostate and decreasing serum testosterone levels, on the expression of ET receptors in ventral and dorsolateral regions of the rat prostate.Three-month-old Sprague-Dawley rats were surgically castrated or sham operated, and then killed on the 7th post-operative day. Biochemical and pharmacological properties, and localization of ET receptors in the rat prostate, were determined by performing a series of binding experiments with [(125)I]ET-1 and by light microscopy autoradiography, respectively. The expression levels of ET-1, ET-3, ET receptor subtypes and endothelin converting enzyme-1 (ECE-1) mRNAs were assessed by relative multiplex reverse transcription polymerase chain reaction (RT-PCR). The total density of ET receptors increases 3.7-fold in the ventral and 2.1-fold in the dorsolateral regions of the castrated rat prostate compared to sham operated animals. Castration causes a 2.4-fold increase in the density of alpha(1)-adrenoceptors (alpha(1)-ARs) in the ventral region of the prostate, but no change in the density of alpha(1)-ARs in the dorsolateral region of the rat prostate. The predominant ET receptor subtype in the rat prostate is the ETA subtype, which is mainly located in the prostatic stroma. In addition, RT-PCR data show an upregulation in the expression of ETB receptor subtype, ET-1 and ECE-1 mRNA in both regions, and a downregulation in the expression of ETA receptor subtype mRNA in the dorsolateral region of the castrated rat prostate. There is no change in the expression of ET-3 mRNA in either region. Castration does not cause significant changes in the pharmacological properties of prostatic ET receptors, i.e., the predominance of ETA receptors in either region of the prostate, or the expression of ETA receptor subtype mRNA in the ventral region of the castrated rat prostate. These results suggest the existence of a region/lobe-specific regulatory role for testosterone in the expression of the ET receptor system in the rat prostate.

Animals↗

Influence of androgens on plasma concentrations of growth hormone in growing castrated and intact chickens.

Castrated chicks implanted with testosterone or 5 alpha-dihydrotestosterone (5 alpha-DHT) had circulating concentrations of the respective androgen similar to or less than in sham-operated chicks. In castrated chicks, 5 alpha-DHT or 19-nortestosterone (19-NorT) inhibited growth as indicated by body weight, while testosterone and 5 beta-dihydrotestosterone (5 beta-DHT) were without effect. In intact male or female chicks, growth was inhibited by either testosterone or 5 alpha-DHT but was unaffected by 5 beta-DHT or estradiol-17 beta. Plasma concentrations of luteinizing hormone (LH) were reduced in castrated chicks receiving implants of either testosterone or 19-NorT. Only the highest dose of 5 alpha-DHT depressed the circulating concentration of LH; lower doses of 5 alpha-DHT being without effect. During the first 6 weeks of growth, plasma concentrations of GH were unaffected by most steroid treatments (5 alpha-DHT, 5 beta-DHT, low doses of testosterone, estradiol-17 beta) in castrated or in intact male or in female chicks. Similarly, 19-NorT did not affect plasma concentrations of GH in castrated chicks. The high dose of testosterone, however, depressed plasma concentrations of GH in castrated chicks between 2 and 6 weeks of age. Between 8 and 12 weeks of age, all steroids tested, except 5 alpha-DHT, were without effect on plasma concentrations of GH. Plasma concentrations of GH were increased in 5 alpha-DHT-treated chickens. This effect was observed irrespective of dose of 5 alpha-DHT or whether the androgen was administered to castrated or to intact male or to female chicks.

Androgens↗

Castration levels of plasma testosterone have potent stimulatory effects on androgen-sensitive parameters in the rat prostate.

In order to assess the biological significance of low serum androgens comparable to those which remain after castration in men treated for prostate cancer. Silastic depots continuously releasing predetermined doses of testosterone (T) have been implanted into castrated adult male rats in the absence or presence of simultaneous treatment with the pure antiandrogen Flutamide. Quite remarkably, a 3- to 5-fold increase in prostate weight (P less than or equal to 0.001) was observed at plasma T concentrations comparable to those found in the serum of castrated men. Although of lower magnitude, castration levels of plasma T also caused a significant stimulation of seminal vesicle weight (P less than 0.01). This dramatic stimulatory influence of "castration" levels of plasma T on ventral prostate and seminal vesicle weight can be explained by the 13- to 15-fold higher intraprostatic level of the active androgen dihydrotestosterone (DHT) compared to the plasma T concentration. In fact, a near-maximal intraprostatic concentration of DHT is reached at concentrations of plasma T of 0.2-0.5 ng/ml and a positive correlation was found between prostatic DHT concentration and ventral prostate weight. Prostatic growth and DHT concentrations were also positively correlated with ornithine decarboxylase (ODC) activity, an enzyme highly sensitive to androgens in the rat ventral prostate. In fact, a dramatic (30-fold) increase in ODC activity was observed at plasma T values corresponding to those found in castrated men. The level of prostatic beta 2-adrenergic receptors fell within 10 days of castration and an increase in beta 2-adrenergic receptor concentration was observed with low doses of T, thus indicating that beta 2-adrenoreceptor levels are also a sensitive parameter of androgenic activity in the rat prostate.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effect of castration on eicosanoid and catecholamine-induced luteinizing hormone-releasing hormone release in vitro.

The castration of adult rats four weeks before experimentation did not alter either the basal production of prostaglandin (PG) E2 (intact rats 1157 +/- 160 pg/mg protein, castrated rats 1093 +/- 90 pg/mg protein) or the A 23187-induced production of PGE2 (1591 +/- 209 or 1701 +/- 286 pg/mg protein respectively) or that of leucotriene (LT) C4 (474 +/- 33, 389 +/- 39 pg/mg protein). Castration significantly reduced the absolute amounts of luteinizing hormone-releasing hormone (LHRH) released under basal conditions (594 +/- 56 pg/mg protein to 34% of intact controls) and after A 23187 stimulation (to 28% of controls). The LHRH released by the median eminence (ME) of castrated rats in the presence of PGE2 (10(-6) M), LTC4 (10(-8) M), norepinephrine (NE) (10(-5) M) or dopamine (DA) (10(-5) M and 10(-4) M) was significantly lower than the LHRH released by intact animals in the presence of these factors. However the relative values for LHRH release (e.g. as % of controls) indicated that the degree of stimulation was identical in intact and castrated rats (2-3 times). These data suggest that the absence of gonadal steroids resulting from long-term castration does not block the stimulatory action of eicosanoids or catecholamines on the release of LHRH by the ME of adult male rats in vitro. Furthermore, castration does not interfere with the biosynthesis of PGE2 and LTC4.

Animals↗

Effects of cranial cervical ganglionectomy and castration of male lambs. II. 24 hour plasma profiles of luteinizing hormone, testosterone and prolactin.

Male lambs were utilized in an experiment designed to evaluate the effects of cranial cervical ganglionectomy (GX), castration and age on hormone secretion profiles. Blood plasma samples were collected at hourly intervals for 24 hours from 24 lambs aged 101 days and 20 lambs aged 277 days, then assayed for concentrations of luteinizing hormone (LH), testosterone and prolactin. At both ages pulsatile secretion of LH and testosterone was confirmed, but no circadian rhythm of LH testosterone or prolactin secretion was detected. Castration elevated LH levels significantly at both ages. GX and its interaction with castration had no effect on LH secretion at 101 days, but at 277 days these factors were significant, largely due to elevated levels being recorded from GX castrates. GX did not affect testosterone levels in entire animals at either age, while plasma from castrates contained no detectable testosterone. GX reduced prolactin concentrations at 101 days of age (summer) but elevated them at 277 days of age (winter). Castration and the interaction of castration with GX had no significant influence on plasma prolactin levels at either age. This study confirmed that the pineal gland of sheep is involved in the regulation of prolactin secretion, and probably influences LH secretion as well.

Journal Article↗

Biochemical and morphological effects of castration on the postorganizational development of the hypogastric ganglion.

The biochemical and morphological development of the sympathetic hypogastric ganglion (HG) was examined subsequent to postnatal castration at 10-11 days of age. Previous studies suggested that tyrosine hydroxylase (T-OH) activity, an index of noradrenergic maturation, and choline acetyltransferase (ChAT) activity, a marker for preganglionic terminal formation, were dependent on gonadal hormones during normal ontogeny. In the present studies, morphometric analyses of the HG revealed that the cross-sectional area of the cell soma and nucleus were significantly reduced following postnatal castration at day 10. Conversely, castration produced no change in the number of HG neurons. In addition, postnatal castration prevents the development of postsynaptic T-OH activity to a greater extent than ganglionic protein resulting in a significant loss of T-OH specific activity. In contrast, presynaptic ChAT activity was reduced in parallel with ganglionic protein, thus ChAT specific activity was unchanged. Testosterone replacement therapy, even in groups where treatment was delayed for up to 2 weeks after castration, completely reversed deficits in both T-OH and ChAT activities. These studies suggest that altered development of ganglion protein subsequent to postnatal castration is related to decreases in the size of neurons and not to the loss of neurons. The lack of cell loss also suggest that decreased levels of postsynaptic T-OH activity results from a loss of enzyme activity per cell and the decreased levels of ChAT activity probably represent fewer presynaptic terminals per neuron. In addition, delayed testosterone replacement subsequent to castration was effective in restoring enzyme activities suggesting an 'activational' not 'organizational' role for testosterone after postnatal day 10.

Animals↗

HLDF-6 peptide affects behavioral reactions and organism functions dependent on androgen hormones in normal and castrated male mice.

The hexapeptide Thr-Gly-Glu-Asn-His-Arg (HLDF-6), which was first identified as an active fragment of the human leukemia differentiation factor (HLDF) molecule, displays differentiation-inducing, neuroprotective and anti-drug abuse activities. Most of its in vivo effects were revealed only on male animals. We have studied HLDF-6 effects on a variety of organism functions and behavioral reactions, which are known to be dependent on androgen steroid hormones, both on castrated and normal (sham-operated) animals. Male NMRI mice were castrated or sham-operated at the age of 55 days (after puberty). After that, HLDF-6 peptide was injected daily during 3 weeks, followed by behavioral, morphological and biochemical testing. HLDF-6 increased testosterone level (1.5- to 2-fold) both in sham-operated and castrated animals. Sexual activity and pain sensitivity, which are strongly reduced in castrates, were completely or partially recovered by HLDF-6. At the same time, the peptide caused some effects similar to castration in sham-operated animals: aggression and locomotor activity were decreased; oral grooming was prolonged. Morphological studies of accessory sex glands showed that HLDF-6 partially normalizes the morphology and functional activity of seminal vesicles in castrates, but it does not prevent castration-induced apoptosis of prostate epithelial cells. Based on these observations, we can assume that HLDF-6 peptide displays at least two effects on androgen hormones metabolism in males: it stimulates testosterone biosynthesis by both testes and adrenals and simultaneously inhibits its conversion to dihydrotestosterone (DHT), most probably by diminution of 5alpha-reductase isoform 1 mRNA expression.

Androgens↗

Evaluation of the prophylactic effect and curative efficacy of fipronil 1% pour on (Topline) on post-castration scrotal myiasis caused by Cochliomyia hominivorax in cattle.

A field trial was carried out during a summer-fall period on a commercial beef cattle farm in Minas Gerais State, located in the Southeast of Brazil. In order to evaluate the prophylactic effect and the curative efficacy of fipronil in a 1% solution, 200 Zebu crossbred bulls, with ages varying from 20 to 30 months and weights from 233 to 362 kg, were selected. The bulls were assigned by ranked pair to an untreated control group (A) or to a treated group (B), resulting in 100 animals per group. All experimental animals were surgically castrated on day 0, following routine procedures. After castration all animals in the group B were treated with 10 mg/kg bw of a 1% fipronil solution, topically on the dorsal mid-line. The wounds were individually inspected on days: 2, 4, 7, 10, 14, 17, 21, 28 and 35. After castration the animals were naturally exposed to Cochliomyia hominivorax and remained in the same pasture throughout the trial. Among the animals in the control group, 83 were observed to harbor C. hominivorax eggs, with a total of 97 ovipositions, and among those 73 animals had active myiasis. In group B (fipronil 1%), 66 animals showed C. hominivorax eggs, with 92 ovipositions and five animals with active myiasis. Most ovipositions and active myiasis were detected until seven days post-castration for both groups. Wound parasite infestation evidenced bleeding, serous purulent exudation and presence of active C. hominivorax larvae. Treatment with fipronil 1% had a prophylactic effect on scrotal wounds against the development of C. hominivorax larvae in more than 95% of the treated animals for up to 17 days after castration. The treatment showed partial protection of 66% and 50% on days 21 and 28 post-treatment (pt), respectively. Three animals from the control group and one from the treated group showed active screwworms on day 21 pt, and one animal from the treated group and two from the control group also presented C. hominivorax larvae on scrotal wounds on day 28 pt. By the end of the observation period (day 35 pt), the castration wound had healed in all animals. All experimental animals presenting scrotal wounds infested with C. hominivorax larvae were treated with a 1% pour-on formulation of fipronil, on the same day that infestation was observed. Active C. hominivorax larvae were not seen during the monitoring period immediately after treatment. The curative efficacy of fipronil 1% against C. hominivorax larvae infestation in castration wounds was 100%.

Administration, Topical↗

Castration decreases extracellular, but increases intracellular, dopamine in medial preoptic area of male rats.

Dopamine (DA) is released in the medial preoptic area (MPOA) of male rats in the presence of a female, and it facilities male sexual behavior. Castration blocks the DA response to a female and the male's ability to copulate. The present experiments examined the effects of castration on (1) basal levels of extracellular DA in the MPOA, using the no net flux microdialysis technique, (2) the response of extracellular DA to amphetamine, and (3) tissue levels of DA. Castrated rats had lower basal levels of extracellular DA in the MPOA, compared with gonadally intact rats; in vivo recovery, a measure of uptake, was not different. This suggests that castration decreases DA release in basal conditions, as well as in response to a female. However, systemic amphetamine injections, which induce DA release, resulted in greater DA release in castrates. Finally, tissue levels of DA were higher in the MPOA, the caudate-putamen and the bed nucleus of stria terminalis of castrates. These data suggest that DA synthesis and storage in the MPOA are normal, or even enhanced, in castrates, and uptake is not altered. The deficit in extracellular levels appears to be related to release, perhaps due to decreased nitric oxide.

Amphetamine↗