Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “CASTRATION”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 793 records · Page 44Linked to original sources

A castrated mouse model of erectile dysfunction.

To establish a mouse model for the study of venoocclusive erectile dysfunction, we investigated erectile function in wild-type (WT), castrated (CAST), and castrated mice receiving immediate testosterone replacement (TEST). Adult C57BL6 mice ( approximately 30 g) underwent electrical stimulation of the cavernous nerve in vivo (parameters: 16 Hz frequency, 5 ms duration, 4V stimulatory voltage) with intracavernosal pressure (ICP) monitoring. A total of 55 mice (5 WT, 25 CAST, and 25 TEST) were evaluated. CAST and TEST (5.0 mg/pellet, 60-day release) mice were divided into groups of 5 and evaluated at 24 hours, 72 hours, 1 week, 2 weeks, and 4 weeks. Penile tissue was immunohistochemically stained for alpha-actin (marker for smooth muscle cells) and CD-31 (marker for endothelial cells). Stained slides were analyzed using Image Pro-plus software. In secondary studies, a Doppler flow meter was employed to evaluate penile blood flow. ICP measurements (mm Hg) were significantly decreased in CAST mice at 24 hour-, 72 hour-, 1 week-, 2 week-, and 4-week time points compared with WT mice (41.9 +/- 14.9, 19.1 +/- 4.2, 17.5 +/- 8.2, 14.2 +/- 4.4, and 10.0 +/- 3.8, respectively, vs 50.2 +/- 2.8), but TEST animals maintained or had an increase in ICP in comparison with WT mice (48.0 +/- 1.4, 52.3 +/- 1.3, 60.8 +/- 7.6, 80.5 +/- 2.1, and 81.5 +/- 1.2, respectively). Mean systemic arterial pressure remained approximately 80 mm Hg irrespective of treatment. CAST mouse penis specimens revealed decreased alpha-actin and CD-31 immunoreactivity only at the 4-week interval, compared with WT and TEST specimens. Doppler ultrasound flow rates (centimeter per second), taken before, during, and immediately after cavernous nerve stimulation, were WT 45.4 +/- 7.3, 30.6 +/- 5.2, 55.3 +/- 8.2 vs CAST (2 weeks) 22.2 +/- 2.5, 25.0 +/- 1.5, 23.1 +/- 2.0 vs TEST (2 weeks) 30.5 +/- 6.5, 25.7 +/- 2.0, 45.2 +/- 4.5. This prominently showed that intrapenile flow was not reduced normally during erectile stimulation in CAST mice. This is the first described mouse model of castration-induced veno-occlusive erectile dysfunction. Erectile response abnormalities as measured by ICP and Doppler ultrasound studies in CAST mice may be attributed to hypogonadal effects on erectile tissue function. Morphologic changes in the cavernosal tissue of CAST mice coincide with these abnormalities to some extent. This study defines an androgen-dependent mechanism of veno-occlusive erectile function in the mouse. The castrated mouse model can be applied in future studies of veno-occlusive erectile dysfunction.

Actins↗

Hormonal regulation of adult sympathetic neurons: the effects of castration on neuropeptide Y, norepinephrine, and tyrosine hydroxylase activity.

Previous studies utilizing the hypogastric ganglia (HG) have indicated that gonadal steroids exert organizational and activational effects on noradrenergic biochemistry. Bilateral castration of male rodents at birth prevents the normal maturation of tyrosine hydroxylase (T-OH) activity in the HG; castration during adulthood results in a progressive decline in T-OH activity. Testosterone replacement corrects both the ontogenetic and adult functional alterations in the neurotransmitter-synthesizing enzyme. The present studies in adult male rats extend these previous observations and asked the question whether gonadal steroids regulate the neurotransmitters neuropeptide Y (NPY) and norepinephrine (NE) in the HG. Adult rodents were castrated and ganglia T-OH, NPY, and NE were examined at various time points after surgery. All three indices of sympathetic neuron biochemistry declined following castration, but they exhibited different profiles. It appears that hormones may affect enzyme activity and neurotransmitter pools differently within neurons. Testosterone replacement therapy fully restored T-OH activity, and NPY and NE levels in the HG. These studies extend the activational role of testosterone in regulating sympathetic neuron neurotransmitter and neuropeptide levels as well as neurotransmitter-synthesizing enzymes.

Animals↗

Melatonin and prostate cancer cell proliferation: interplay with castration, epidermal growth factor, and androgen sensitivity.

BACKGROUND: Potential modulatory effects of melatonin on the proliferation of androgen-sensitive LNCaP and androgen-insensitive PC-3 and DU 145 prostate cancer cells were reported recently. In this study, we investigated the effects of combined melatonin and castration on LNCaP tumor growth in vivo, the interactions between melatonin and epidermal growth factor (EGF) on LNCaP cell proliferation, and melatonin actions on the proliferation of PC-3 and DU 145 cells. METHODS: Tumor development and growth in castrated nude mice inoculated with LNCaP cells or in intact animals inoculated with DU 145 cells, with or without daily melatonin treatment, were monitored by observation and caliper measurement. MT(1) receptor expression in native or transfected prostate cancer cell lines was examined by immunocytochemistry or 2-[(125)I]iodomelatonin binding. Cyclin D1 expression in LNCaP cells was assessed by Western blotting, and cell proliferation was measured by thymidine incorporation and/or cell count. RESULTS: Melatonin treatment was associated with further decreases in LNCaP tumor incidence and growth rate in castrated nude mice. Melatonin and 2-iodomelatonin (a melatonin receptor agonist) attenuated EGF-stimulated increases in LNCaP cell proliferation and cyclin D1 levels. Melatonin had no effect on the proliferation or growth of MT(1) receptor-expressing DU 145 cells, and of PC-3 cells in which MT(1) receptor protein was undetectable. The proliferation of transfected PC-3 cells expressing MT(1) receptor was unaffected by 2-iodomelatonin. CONCLUSION: Together with previous data, the present results indicate synergistic action of melatonin and castration in inhibiting the growth of androgen-sensitive LNCaP tumor. Androgen-sensitive prostate cancer cell proliferation may be modulated by opposite changes in cyclin D1 levels induced by activated MT(1) and EGF receptors. In androgen-insensitive prostate cancer cells, MT(1) receptor-mediated signal transduction may become defective not only through changes in membrane receptor protein expression and/or functions, but also by means of alterations in downstream postreceptor signaling events.

Androgens↗

Quantitation of apoptotic activity following castration in human prostatic tissue in vivo.

BACKGROUND: Androgen deprivation induces apoptosis in the prostate. Representative data, quantitating apoptotic activity in human prostatic epithelium following androgen ablation, are lacking. METHODS: Human prostatic tissue was grafted beneath the renal capsule of intact male athymic mice and allowed to become established. The mice were castrated and specimens were harvested on post-castration day 0, 1, 2, 3, 4, 5, 7, 8, 9, 10, 14, 17, 18, and 21. Tissue was immediately fixed and apoptotic epithelial nuclei were identified. RESULTS: The percentage of terminal deoxynucleotidyl-transferase-mediated dUTP nick end-labeling (TUNEL) positive epithelial cells increased from a baseline of 0.026%, peaked on post-castration day 3 (1.54%), and returned to baseline by day 21. Mathematical analysis predicted that the observed apoptotic activity account for the loss of 87% of prostatic epithelial cells in 3 weeks. CONCLUSIONS: Post-castration apoptosis in human prostatic epithelium was low but was sufficient to account for the loss of nearly 90% of epithelial cells.

Androgens↗

Apoptosis levels increase after castration in the CWR22 human prostate cancer xenograft.

BACKGROUND: The role of apoptosis in the regression of human prostate cancer after androgen deprivation therapy remains controversial. Detection of caspase-3, an ubiquitous effector of apoptosis, is a highly specific technique for in vivo evaluation of apoptosis. METHODS: Apoptotic rates were evaluated in the androgen-dependent CWR22 human prostate cancer xenograft in tumors that represented time points throughout the progression from androgen-stimulated to recurrent prostate cancer. Caspase-3 levels in formalin-fixed, paraffin-embedded specimens were quantified using immunohistochemical detection and video image analysis. Western blot analysis was used to confirm the results of immunodetection. RESULTS: Expression of caspase-3 reached a maximum on day 2 after castration, decreased on day 6, and remained low until tumor recurrence. The percentage of tumor area expressing caspase-3 increased from 2.51 +/- 0.44% in tumors from intact mice to 20.84 +/- 1.75% on day 2 after castration. Among immunopositive cells, the intensity of caspase-3 expression measured using the mean optical density (MOD) increased 45% (0.3762 +/- 0.003 to 0.5461 +/- 0.001) on day 2 after castration compared to levels detected in tumors from intact mice. CONCLUSIONS: Apoptosis contributes to tumor regression after castration in the CWR22 human prostate cancer xenograft model.

Animals↗

Water imbibition in the rat prostate during castration-induced regression.

The present study was conducted to examine changes in water concentration in the ventral prostate of adult rats at different intervals following castration. The prostatic dry weight was obtained by drying the fresh prostate at 70 degrees C for at least 110 hr and the prostatic water content was calculated from its wet and dry weight. Under normal conditions, the prostatic water concentration ranges from 81.9 to 82.7% in uncastrated rats. The prostatic water concentration started to increase at 8 hr postcastration (83.1%) but this increase was not statistically significant. By 16 hr postcastration, the prostatic water concentration (83.8%) became significantly higher than that of the uncastrated animals. In rats of day 1 to day 10 postcastration, the prostate contained significantly more water (84.4%-84.7%) than those in uncastrated animals. By day 21 postcastration, the prostatic water concentration (81.5%) was not significantly different from that of uncastrated rats. Unlike the prostate, the skeletal muscle did not significantly change the water concentration following castration. The 51Cr-EDTA space in the prostate was not significantly different in rats before and after castration. These results indicate that water imbibition in the rat prostate is associated with an active period of prostatic regression and that the change in the 51Cr-EDTA space during prostatic regression is not the major cause of water imbibition in the tissue. Therefore, the present findings suggest that castration-induced water imbibition in the rat prostate is caused by an increase in the intracellular water space.

Adrenalectomy↗

Cell proliferation studies in the rat prostate: II. The effects of castration and androgen-induced regeneration upon basal and secretory cell proliferation.

The changes over short and prolonged periods (up to three months) after castration on the proliferative activity of basal and secretory epithelial cells in the rat prostate were studied. Although castration induced widespread apoptosis of the secretory cells, no compensatory hyperplasia of the basal cells in response to this was noted. Instead, observations of the cell kinetics and ultrastructure suggested that both the basal and secretory cells entered a quiescent state as a result of castration. The proliferative potential of secretory cells was not diminished up to three months after castration. During androgen-induced regeneration of the prostate the pattern of basal and secretory cell proliferation was found to be similar to that observed during normal growth, although it was more rapid and of shorter duration.

Animals↗

Effects of castration and androgens upon prostatic proteoglycans in rats.

In studies performed on male Wistar rats, castration induced atrophy of the prostate with a marked increase in the uronic acid content. The administration of testosterone propionate to castrated rats produced opposite effects. Fractionation of the glycosaminoglycans on cellulose microcolumns showed that the changes in uronic acid content in the dorsolateral lobes were due to variations in hyaluronic acid, chondroitin-4-sulfate, and dermatan sulfate, but in the ventral lobes, there were changes in all the chromatographic fractions. There were also changes in the physical properties of proteoglycans. In the ventral lobes, castration induced a wider distribution of molecular weight, increased density, and predominance of lateral chains of greater size. In the dorsolateral lobes, there was a decrease in molecular weight and density of proteoglycans and in the length of lateral chains. Opposite results were obtained when testosterone propionate was given to castrated rats. It is postulated that the effects of androgens upon prostatic growth would depend on an interrelationship between epithelium and stroma mediated by the proteoglycans.

Animals↗

Morphometric and stereological study of the glandular epithelium of the lateral prostate of the intact and castrated guinea pig.

The glandular epithelium of the lateral prostate of the guinea pig was described within the framework of a morphometric model in terms of relative densities and absolute dimensions. A combination of direct measurement and point and intersection counting techniques was used. The quantitative data generated in the intact animals were compared with those of castrated controls. Castration was accompanied by a significant decrease in height of the glandular epithelium and in sizes of secretory and basal cells and their corresponding nuclei. On a per cell basis, significant decreases in total volume and surface area of granular endoplasmic reticulum were detected after castration. This was accompanied by a significant reduction in the total volume of Golgi cisternae. The total volume, surface area, and number of highly electron-dense and clear granules decreased significantly compared with the intact control animals. However, no significant changes in these parameters of low electron-dense granules were found. Significant reductions in the total volume and surface area of condensing granules, lysosomes, and mitochondria, but not their number, were detected. The average sizes of condensing granules, secretory granules, lysosomes, and mitochondria were decreased significantly after castration. The present study showed that the alterations in the secretory function of the secretory cells of the lateral prostate was reflected by the quantitative changes in granular endoplasmic reticulum, Golgi complexes, and secretory granules on a per cell basis. The data generated in the present study will serve as a baseline for further studies of the lateral prostate of the guinea pig.

Animals↗

Morphometric and stereological analysis of the effects of 17 beta-estradiol on the glandular epithelium of the castrated guinea pig lateral prostate.

Upon administration of pharmacological doses of estradiol to castrated guinea pigs, the secretory cells of the lateral prostate underwent hypertrophy which resulted from significant increases in nuclear and cytoplasmic volume. There were quantitative increases in the small highly electron-dense granules and multivesicular bodies when compared with the castrated control. The dramatic increase in the number of highly electron-dense granules probably occurred at the expense of the low electron-dense granules. The average size of the condensing granules and mitochondria decreased significantly after estradiol administration. However, significant increase in the number of mitochondria was detected when compared with the castrated control. Ultrastructural data revealed no significant changes in the absolute dimensions of granular endoplasmic reticulum or of the Golgi complex, suggesting that estradiol exerted no significant stimulatory effects on these organelles. Pharmacological doses of estrogen appear to regulate the expression of secretory granules and multivesicular bodies in the lateral prostate of castrated guinea pigs.

Animals↗

Induction of proliferative lesions of ventral prostate, seminal vesicle, and other accessory sex glands in rats by N-methyl-N-nitrosourea: effect of castration, pretreatment with cyproterone acetate and testosterone propionate and rat strain.

Wistar (Cpb:WU), F344 or Sprague-Dawley rats were sequentially treated with cyproterone acetate (CA) for 21 days, testosterone propionate (TP) for 3 days, followed by a single i.v. injection of N-methyl-N-nitrosourea (MNU). One group of Wistar rats was castrated 4 weeks after MNU injection, and another group 58 weeks after MNU, when the first prostatic carcinoma was detected. Control groups received only CA + TP, CA, MNU, or they remained untreated. Early or late castration inhibited the development of atypical hyperplasia of the ventral prostate in Wistar rats. This lesion was induced by the CA + TP + MNU treatment in F344 rats, but not Sprague-Dawley rats; in Wistar rats, it was induced by CA + TP treatment, irrespective of whether MNU was given. Hypertrophic-hyperplastic lesions of the seminal vesicle were induced by MNU, irrespective of pretreatment, and their development was prevented by early castration and inhibited by late orchiectomy. Dorsolateral prostate carcinomas and preneoplasia occurred only in low incidence in Wistar and Sprague-Dawley rats. These lesions were absent in F344 rats that had received treatment with CA + TP + MNU. No dorsolateral prostate (pre)neoplasia was found in Wistar rats subjected to early orchiectomy, but rats castrated at 58 weeks had an incidence similar to that for the intact group treated with CA + TP + MNU. This finding supports the contention that androgens are required for the development of MNU-induced prostatic cancer in rats but that advanced carcinomas are androgen insensitive. Differences in incidence and localization of prostatic proliferative lesions between F344 and Wistar rats and between dorsolateral and ventral prostate could not be explained by differences in epithelial cell proliferative responses to CA + TP treatment at the time of MNU injection, since they were similar in ventral and dorsolateral prostate and were more prominent in F344 rats than in Wistar rats. DNA damage as estimated by MNU-induced unscheduled DNA synthesis also did not differ between dorsolateral and ventral prostate.

Androgens↗

Castration rapidly results in a major reduction in epithelial cell numbers in the rat prostate, but not in the highly differentiated Dunning R3327 prostatic adenocarcinoma.

Rats with implanted highly differentiated Dunning R3327PAP prostatic tumors were castrated, and at 3, 7, and 14 days thereafter, the effects on tumor volume, epithelial cell numbers, and sizes were quantified using morphometrical methods. The castration response on these parameters was also examined in the normal prostate of the same rats. Castration resulted in a rapid decrease in organ volume, epithelial cell number, and size in the normal prostate, and morphological signs of epithelial cell death (apoptosis) were observed. Tumor growth and mitotic index were reduced, but there were no signs of increased apoptosis, and cell numbers remained fairly constant in the Dunning tumors during the study period. It is concluded that the castration-induced inhibition of tumor growth is caused by factors other than tumor cell death.

Adenocarcinoma↗

Quantitative in situ hybridization of three gonadotropin-releasing hormone-encoding mRNAs in castrated and progesterone-treated male tilapia.

We investigated the effects of castration and progesterone administration on the three gonadotropin-releasing hormone (GnRH)-encoding mRNAs in sexually mature male tilapia Oreochromis niloticus. In situ hybridization histochemistry was performed using 35S-labeled antisense oligonucleotide probes complementary to salmon-, seabream-, and chicken II-GnRH cDNAs to quantify cellular GnRH mRNA expression in the terminal nerve ganglia (nucleus olfactoretinalis), preoptic area, and midbrain tegmentum of animals castrated for 2 weeks and injected intraperitoneally with sesame oil or progesterone. Castration significantly elevated salmon-GnRH mRNA but not seabream- or chicken II-GnRH mRNA levels. Progesterone treatment had no effect on salmon-, seabream-, or chicken II-GnRH mRNA levels. Comparisons between intact, castrated, and progesterone-treated animals showed no change in the total volume of nucleus olfactoretinalis, cell sizes, and total numbers of cells expressing GnRH mRNA within the midbrain and preoptic area. These results demonstrate that salmon-GnRH but not seabream- or chicken II-GnRH-synthesizing neurons are under a gonadal steroid negative feedback control and that progesterone might not be the main hormone regulating the three GnRH-encoding mRNAs in the male tilapia.

Animals↗

Heterosexual housing increases the retention of courtship behavior following castration and elevates metabolic capacity in limbic brain nuclei in male whiptail lizards, Cnemidophorus inornatus.

In male vertebrates the display of courtship behavior depends on the presence of testicular androgens. However, social experiences in adulthood can alter the hormonal dependence of courtship behavior in a variety of species, and we have previously proposed that these behavioral changes are linked to changes in neural metabolic capacity (cytochrome oxidase activity). Here we investigated the effects of prior social experience (housing with females vs housing in isolation) on the retention of courtship behavior following gonadectomy and on cytochrome oxidase (CO) activity in male little striped whiptail lizards, Cnemidophorus inornatus. In Experiment 1, we found that males that were previously housed with females (HWF males) continued to display courtship behavior longer after castration than males previously housed in isolation (ISOLATE males). This is similar to the behavioral plasticity found in rodents and cats. On the other hand, courtship behavior while gonadally intact was indistinguishable between HWF and ISOLATE males. Because all males were housed individually following castration, the difference is due to different social experiences prior to castration. In Experiment 2, we found that gonadally intact HWF males had significantly elevated CO activity in the preoptic area, amygdala, and anterior and ventromedial hypothalamic areas relative to intact ISOLATE males. No significant differences in metabolism were found in the lateral septum, lateral hypothalamus, and habenula or in hindlimb muscle, suggesting that the increase in metabolism is specific to brain nuclei involved in courtship behavior. Altogether, this demonstrates that elevations in metabolic capacity correlate with experience-dependent increases in robustness to castration.

Anesthesia↗

Replacement of surgical castration by GnRH-inhibition or Leydig cell ablation in the male rat Hershberger antiandrogen assay.

An obstacle to the widespread adoption of the Hershberger antiandrogen assay is the surgical castration procedure required to produce androgen deficiency in the test animals. Here we describe two chemical treatments that produce similar effects to surgical castration. The first is use of ethane dimethane sulphonate (EDS), a specific toxin to the testosterone-producing Leydig cells of the mature testes. The second class of compound is the decapeptide inhibitors of the gonadotrophin-releasing hormone (GnRH), compounds such as Antarelix and Antide. Administration of either EDS or the GnRH inhibitors results in loss of weight of the testes, epididymides, and sex-associated tissues. Co-administration of testosterone to these animals leads to reversal of the induced effects. The basic test protocol for both of these assay modifications is described. Flutamide was used as a representative potent antiandrogen, and DDE as an example of a weakly active antiandrogen. The 5alpha-reductase inhibitor finasteride was used to inhibit the transformation of testosterone to dihydrotestosterone. It is shown that the EDS assay is sensitive to the antiandrogen flutamide, but that it fails to detect the weaker antiandrogen DDE. In contrast, the Antarelix assay performs as well as does the classical castration assay, leading to the detection as antiandrogens of flutamide, DDE, and finasteride. It is concluded that the GnRH inhibition Hershberger assay is more convenient to conduct than the original surgical castration assay, and it involves less stress to the test animals.

5-alpha Reductase Inhibitors↗

Ultrastructural and cytochemical studies of the effects of prolactin on the lateral prostate and the seminal vesicle of the castrated guinea pig.

Administration of ovine prolactin to castrated guinea pigs for 2 weeks induced hypertrophy of secretory cells in the lateral prostate when compared with the castrated controls. This was accompanied by an apparent increase in the number of profiles of granular endoplasmic reticulum and well developed Golgi complexes with dilated cisternae. An increase in the number of low-contrast electron-dense secretory granules was observed 4 weeks after prolactin treatment. In the seminal vesicle, dilatation and degranulation of granular endoplasmic reticulum and an apparent decrease in the number of secretory granules were observed 4 weeks after prolactin administration. Following castration and 2 weeks after prolactin treatment, thiamine pyrophosphatase (TPPase)-reaction product was mainly confined to 1-2 trans cisternae of the Golgi complexes in secretory cells of the lateral prostate and the seminal vesicle. In both glands, a reduction of TPPase activity was observed 2 weeks following prolactin administration, and the reaction product was totally absent after prolonged treatment for 4 weeks. The present study has provided morphological evidence that prolactin is capable of stimulating the secretory function of the lateral prostate while exerting some inhibitory effects on the seminal vesicle of the castrated guinea pig. In both glands, TPPase activity, and hence the process of glycosylation was inhibited after prolactin administration. The results from radioimmunoassay indicated that the action of prolactin on these glands could be a direct effect and not mediated through testosterone.

Animals↗

Reabsorption of fluorescein-isothiocyanate-labelled-ovalbumin in the kidney of normal and castrated male and female rats.

The reabsorption of ovalbumin double labelled with fluorescein isothiocyanate (FITC) in the kidneys of normal and castrated male and female rats was investigated using fluorometry and fluorescence microscopy. The animals received an intravenous injection of either 2 or 7 mg fluorescein-thiocarbamyl (FTC)-ovalbumin per kilogram bodyweight (bw) and were killed 4 or 8 min post-injection. Animals injected with unlabelled ovalbumin (7.0 mg/kg bw) served as controls. Fluorescence microscopy revealed that FTC-ovalbumin was reabsorbed exclusively in the renal proximal tubule, the highest level of reabsorption being observed in its first part. Four and eight minutes after the injection, FTC-ovalbumin was only observed in apical reabsorption vacuoles, with lysosomes exhibiting no specific fluorescence. Fluorometric determinations for the renal homogenate supernatant showed that the renal reabsorption of FTC-ovalbumin was up to 24% higher in normal females than in normal males. Castration resulted in a significant increase in renal reabsorption in male rats (up to 38%; significant), whereas a minor decrease was observed in castrated females. The renal uptake differences in normal and castrated animals are discussed in the light of the sex-hormone-dependent catabolism of lysosomal proteins in the renal proximal tubule of rats.

Animals↗

Expression of transforming growth factor-beta receptor type I and type II in rat ventral prostate and Dunning R3327 PAP adenocarcinoma in response to castration and oestrogen treatment.

In the normal prostate, transforming growth factor-beta 1 (TGF-beta 1) inhibits epithelial cell growth and is associated with apoptosis. The role of TGF-beta 1 in prostate cancer remains, however, unclear. In this work, the expression of TGF-beta receptor type I and II (TGF beta-RI and TGF beta-RII) in the Dunning R3327 PAP adenocarcinoma was studied, after castration and oestrogen treatment. Since castration induces apoptosis in the rat ventral prostate (VP) [21], but not in the Dunning R3327 PAP tumour [46], the TGF-beta receptor levels in the tumour were compared to the receptor levels in the VP. Methods used were competitive reverse transcription-polymerase chain reaction (RT-PCR) and immunohistochemistry. In the VP, TGF beta-RI and TGF beta-RII expressions were increased after castration, indicating a negative regulation of TGF beta receptors by androgens. In the Dunning tumour, TGF beta-RI and TGF beta-RII levels were elevated and only TGF beta-RI showed a clear-cut increase after castration. The receptors were located in epithelial and smooth muscle cells in the VP and mainly in epithelial cells in the Dunning tumour. In conclusion, the elevated TGF beta receptor levels and the diminished androgen regulation of TGF beta-RII in the tumour distinguish the Dunning R3327 PAP tumour from the normal prostate and need to be further elucidated.

Activin Receptors, Type I↗