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R Dahiya

Publications and source records attributed to R Dahiya.

At least 19 recordsLinked to original sources

Downregulation of androgen, estrogen and progesterone receptor genes and protein is involved in aging-related erectile dysfunction.

We hypothesize that downregulation of sex hormone receptors (androgen, estrogen and progesterone receptors) is involved in aging-related erectile dysfunction. To test this hypothesis, we investigated the expression of sex hormone receptors in penile crura of aging rats. A total of 40 rats were divided into four groups based on age (6, 12, 18 and 24 months), and the erectile function was analyzed by the measurement of intracavernous pressure. Gene and protein expressions of sex hormone receptors were analyzed by RT-PCR and immunostaining, respectively. The mean intracavernous pressures of 6-, 12-, 18- and 24-month-old rats were 110.1, 89.6, 73.5 and 42.7 cm H(2)O, respectively. Gene and protein expressions for androgen receptor, estrogen receptor-beta and progesterone receptor were present in similar levels in 6-, 12- and 18-month-old rat crura, but significantly lower or absent in 24-month-old crura. This is the first study to demonstrate that downregulation of sex hormone receptors in aging rat crura is associated with erectile dysfunction.

Aging↗

Tunica albuginea acellular matrix graft for penile reconstruction in the rabbit: a model for treating Peyronie's disease.

OBJECTIVE: To evaluate the use of an acellular matrix graft of the tunica albuginea for functional penile reconstruction in severe cases of Peyronie's disease. MATERIALS AND METHODS: In 18 rabbits, an acellular matrix graft of the tunica albuginea was used to cover a 4 x 8 mm tunical defect, and six animals each were killed 1, 3 and 6 months later; four unoperated animals served as histological controls. Before death an erection was induced by papaverine, with the quality classified on a scale of 0-5, and cavernosography performed. After death the penis was prepared for histological study, and the cell number, collagen and elastic fibre content evaluated in the regenerated matrix, and in control specimens and four unimplanted matrices. RESULTS: Of 18 experimental animals, 11 had normal erections before death, four had slight penile deviation and three developed no erection. Failure was caused by severe postoperative haematoma, resulting in scar tissue. There was no graft rejection. Histologically there was no difference between natural and regenerated tunica. The collagen content and cell number were not significantly different in regenerated and control samples. There were significantly fewer elastic fibres in the unimplanted grafts and the 1-month group, but in later samples this difference was no longer evident. CONCLUSION: The homologous acellular matrix graft of the tunica albuginea warrants further evaluation as an alternative treatment in Peyronie's disease, despite some postoperative failures. The advantage of this orthotopic biomaterial is its rapid integration, with no rejection.

Animals↗

CpG hypermethylation of the promoter region inactivates the estrogen receptor-beta gene in patients with prostate carcinoma.

BACKGROUND: The down-regulation of the estrogen receptor-beta (ERbeta) gene is associated with several malignancies, including prostate carcinoma. The purpose of the current study was to investigate the mechanisms of ERbeta inactivation through the analysis of CpG methylation of the promoter region of ERbeta gene. METHODS: ERbeta protein expression was examined by immunohistochemistry in 23 cases of human prostate carcinoma and 40 cases of benign prostatic hyperplasia (BPH). DNA was extracted from these tissues and processed for sodium bisulfite genomic sequencing. The percentage of methylation of CpG sites in the promoter region of ERbeta (-376 to -117), which contains 19 CpG sites, was determined from genomic sequencing data. The prostate carcinoma cell lines DU145 and ND1 were treated with the demethylating agent 5-AZAC and ERbeta mRNA expression was analyzed by reverse transcriptase-polymerase chain reaction. RESULTS: In BPH tissues, ERbeta protein expression was found mainly in epithelial cells. ERbeta protein expression was lacking in 83% of prostate carcinoma samples (19 of 23 samples) whereas all cases of BPH (40 of 40) demonstrated expression of ERbeta protein. The mechanism of inactivation of the ERbeta gene in prostate carcinoma was CpG methylation because the degree of methylation at all CpG sites within the promoter region between -376 and -117 was higher in prostate carcinoma samples compared with BPH tissues. Nine of 19 CpG sites within the promoter region of ERbeta displayed significant differences in methylation between prostate carcinoma and BPH samples. The prostate carcinoma cell lines appeared to lack ERbeta expression. However, 5-AZAC treatment restored ERbeta expression in those cell lines, suggesting that methylation inactivates the ERbeta gene in prostate carcinoma. CONCLUSIONS: The results of the current study demonstrate, for what we believe to be the first time, that the inactivation of the ERbeta gene in prostate carcinoma occurs through CpG methylation of the promoter region of this gene.

Azacitidine↗

Alterations of beta- and gamma-catenin in N-butyl-N-(-4-hydroxybutyl)nitrosamine-induced murine bladder cancer.

Abnormal degradation of beta-catenin caused by alteration of the glycogen synthase kinase-3beta (GSK-3beta) consensus motif is an important step for carcinogenesis. We hypothesize that beta- and gamma-catenin may play an important role in the pathogenesis of bladder cancer. We tested this hypothesis through analysis of beta- and gamma-catenin in both murine and human bladder cancers. A murine bladder cancer model was prepared by use of N-butyl-N-(-4-hydroxybutyl)nitrosamine (BBN) in 6-week-old male B6D2F1 mice. After 4, 8, 12, 16, 20, 24, and 28 weeks of BBN treatment, bladder specimens were harvested and analyzed for both protein and gene expression for beta- and gamma-catenin. Mutational analysis of the NH(2)-terminal regulatory domains of beta- and gamma-catenin was performed in each specimen by PCR-single-strand conformational polymorphism (SSCP) analysis. Mutations were further confirmed by direct DNA sequencing with a dye terminator method. Human bladder cancer specimens with normal tissues, dysplasia, carcinoma in situ, and carcinoma of grades, 1, 2, and 3 were also analyzed for beta- and gamma-catenin expression. beta- and gamma-catenin were analyzed for mutations by SSCP and direct DNA sequencing. Intracellular accumulation of beta- and gamma-catenin was observed in 6 of 20 invasive carcinoma specimens. There was no intracellular accumulation of beta- and gamma-catenin in mucosal dysplasia, papillary or nodular dysplasia, and carcinoma in situ specimens. On an SSCP analysis for beta-catenin, abnormal bandshifts were detected in two invasive carcinomas with intracellular beta-catenin accumulation. Further sequencing revealed two mutations [AGT(S) to ATT(I) and TCT(S) to CCT(P)] within the consensus motif for GSK-3beta phosphorylation. On the other hand, SSCP analysis for gamma-catenin followed by sequencing revealed three mutations in two invasive carcinomas with intracellular accumulation of gamma-catenin. These three alterations affected the 3' downstream region outside the GSK-3beta phosphorylation site [ACC(T) to GCC(A), CTC(L) to ATC(I), and CTC(L) to ATG(M)]. In human bladder cancer, beta- and gamma-catenin expression was significantly weaker than in normal bladder. On SSCP analysis one abnormal bandshift was observed in high-grade human bladder cancer with intracellular beta-catenin accumulation. DNA sequencing revealed mutation TCT(S) to TGT(C). In summary, alterations in beta- and gamma-catenin are late events favoring tumor progression in mouse BBN-induced bladder cancer. Changes affecting the GSK-3beta phosphorylation site appear to be associated with activation of beta-catenin, but not with activation of gamma-catenin. In human blabber cancer, beta- and gamma-catenin expression is similar to the expression in the mouse model. The present study demonstrates that beta- and gamma-catenin may play an important role in bladder cancer progression.

Aged↗

Histone deacetylase and DNA methyltransferase in human prostate cancer.

CpG island hypermethylation and chromatin remodeling play important roles in repression of various genes during malignant transformation. We hypothesized that histone deacetylases (HDACs) and DNA methyltransferases (DNMTase) are associated with prostate cancer and we examined the enzyme activity, gene, and protein expression of HDAC1 and DNMT1 in cell lines and tissues. We found that DNMTase and HDACs activities were two- to threefold higher in cell lines compared to benign prostatic hyperplasia (BPH-1) cell line. Treatment of cells with 5-aza-2'-deoxycytidine decreased the activity of HDAC and DNMTase. The mRNA expression of these genes in BPH-1 cells and BPH tissues was lower than that in prostate cancer cells and tissues. HDAC1 and DNMT1 protein expression was higher in prostate cancer compared to BPH. This is the first report to demonstrate that DNMT1 and HDAC1 levels are up-regulated in prostate cancer compared to BPH, suggesting their roles in inactivation of various genes, by DNA-methylation-induced chromatin-remodeling, in prostate cancer.

Azacitidine↗

A human prostatic epithelial model of hormonal carcinogenesis.

The effects of stromal and hormonal environment on the immortalized but nontumorigenic human prostatic epithelial cell line BPH-1 were investigated in an in vivo model. BPH-1 cells were recombined with rat urogenital sinus mesenchyme (UGM), and the tissue recombinants were grafted to the renal capsule of adult male athymic mouse hosts. BPH-1 + UGM recombinants formed solid branching epithelial cords with a well-defined basement membrane. The cords canalized to form ductal structures. The mesenchymal cells formed thick sheets of well-differentiated smooth muscle surrounding the epithelium, reinforcing the idea that the epithelium dictates the patterning of prostatic stromal cells. When hosts carrying BPH-1 + UGM tissue recombinants were exposed to testosterone propionate and 17-beta-estradiol (T + E2), the tissue recombinants responded by forming invasive carcinomas, demonstrating mixed, predominantly squamous as well as adenocarcinomatous (small acinar and mucinous) differentiation. When either untreated or T + E2-treated hosts were castrated, epithelial apoptosis was observed in the grafts. When tumors were removed and regrafted to fresh hosts they grew rapidly. Tumors were serially regrafted through six generations. Histologically these tumors consisted largely of focally keratinizing squamous cell carcinoma with high-grade malignant cytological features. BPH-1 cells grown in the absence of UGM survived at the graft site but did not form tumors or organized structures. This behavior was not influenced by the presence or absence of T + E2 stimulation. These data show that an immortalized, nontumorigenic human prostatic epithelial cell line can undergo hormonal carcinogenesis in response to T + E2 stimulation. In addition, the data demonstrate that the stromal environment plays an important role in mediating hormonal carcinogenesis.

Animals↗

DNA mismatch repair enzyme activity and gene expression in prostate cancer.

Microsatellite instability (MSI) of short repetitive sequences in human chromosomal DNA can result from defective DNA mismatch repair function in tumor cells. We hypothesize that DNA mismatch repair (MMR) activity is down-regulated during prostatic carcinogenesis. To test this hypothesis, MMR activities and mismatch repair-related genes were analyzed in five different prostate cancer cell lines. Our results demonstrate that MMR activities were decreased as compared to MMR proficient HeLa cells. Interestingly, LNCaP, PC-3 and DU145 had much lower MMR activities as compared to DUPro and TSUPr1. The MMR-related genes (hMLH1, hPMS1, hPMS2, hMSH2, hMSH3, hMSH6) showed mRNA transcripts in all prostate cancer cell lines. However, Western blotting showed decreased or absent hMLH1 protein expression in PC-3, DU145, DUPro and TSUPr1 cells. Similarly, the hMSH2 protein expression was low or absent in DU145 and LNCaP cells. This is the first report that demonstrates decreased MMR activities is associated with low expression of hMLH1, hMSH2 and other MMR-related proteins in prostate cancer.

Adaptor Proteins, Signal Transducing↗

Cytosine-phosphoguanine methylation of estrogen receptors in endometrial cancer.

We hypothesize that estrogen receptors (ERs) are differentially expressed in endometrial cancer. To test this hypothesis, we investigated the expression profile of ERalpha (ERalpha-A, ERalpha-B, ERalpha-C) and ERbeta genes and CpG methylation status in endometrial cancer cell lines and tissues using reverse transcription-PCR and methylation-specific PCR and direct DNA sequencing. The results demonstrated that ERalpha-A, ERalpha-B, and ERbeta were normally expressed whereas ERalpha-C gene was inactivated in all endometrial cancer cell lines. We further investigated the mechanisms of ERalpha-C gene inactivation through CpG methylation pathways. The treatment with demethylating agent (5'-aza-2'-deoxycytidine) restored ERalpha-C gene expression in all endometrial cancer cell lines. We further confirmed these findings with methylation-specific PCR and direct DNA sequencing and found that only ERalpha-C was methylated on all five different CpG sites in all cell lines. We further analyzed 88 cancerous and 46 normal endometrial tissues. The results demonstrated that only ERalpha-C was inactivated and methylated in 94% of cancer tissues. In 32 pairs of cancerous and normal endometrial tissues from the same patient, ERalpha-C was methylated in 29 of 32 cancer tissues but unmethylated in all normal endometrial tissues. This is the first report that demonstrates selective ERalpha-C gene inactivation through CpG methylation pathway in uterine endometrial cancer.

CpG Islands↗

Progesterone receptor B gene inactivation and CpG hypermethylation in human uterine endometrial cancer.

The expressions of two isoforms of human progesterone receptor (PR) are under the control of the two different promoters. Recent studies revealed differences between these isoforms, PRA and PRB, in their expression and function in endometrial cells. Aberrant methylation of normally unmethylated CpG islands has been associated with inactivation of several genes in human cancers. In this study, we investigated the methylation status and the expression of the two different PR isoforms, PRA and PRB, in uterine endometrial carcinoma (UEC) using methylation-specific PCR (MSP), reverse transcription-PCR (RT-PCR), the 5' rapid amplification of cDNA ends method (5'RACE), and immunohistochemical staining. The results of RT-PCR and 5'RACE suggest that only PRB is inactivated, although PRA is activated in all UEC cell lines. Treatment with a demethylating agent, 5-aza-2'-deoxycytidine, restored PRB expression in all cell lines, suggesting that inactivation of this gene is through methylation. By MSP and direct DNA sequencing, PRB was methylated, whereas PRA was unmethylated in all of the cell lines. To determine the methylation status of PRB in UEC patients, we investigated 83 cancerous and 33 normal samples. Sixty-two of 83 cancer samples had only methylated alleles of PRB, although all cancer samples had only unmethylated PRA alleles. Seventy-one of 83 cancer samples were negative for PRB expression. All 62 cancer samples that had only methylated PRB alleles were negative for PRB expression. No significant changes were observed in PRA methylation status or immunohistochemistry positivity in normal and cancer samples. To determine whether de novo methylation of PRB occurred in UEC patients, we studied 32 pairs of cancer and normal samples from the same patient. Twenty of 32 cancer samples had only methylated PRB alleles, although all 32 normal samples had only unmethylated PRB alleles. The loss of unmethylated alleles was well correlated with negativity in immunohistochemical staining for PRB. This is the first report of the selective methylation and the subsequent silencing of PRB in uterine endometrial cancer.

Alleles↗

Loss of mismatch repair activity in simian virus 40 large T antigen-immortalized BPH-1 human prostatic epithelial cell line.

Simian virus 40 large T antigen (SVLTAg) has been used to immortalize cells; however, the mechanism leading to immortalization is still unclear. We hypothesize that DNA mismatch repair (MMR) activity is important during SVLTAg-induced immortalization. To test this hypothesis, we used the SVLTAg-immortalized cell line BPH-1 derived from human benign prostate epithelial cells to analyze MMR activity and the expression of MMR genes (hMLH1, hPMS1, hPMS2, hMSH2, hMSH3, and hMSH6). The results demonstrated that BPH-1 cells were deficient in repairing G:T, A:C, and G:G mispairs in bacteriophage M13mp2. Reverse-transcription polymerase chain reaction experiments indicated MMR genes (hMSH3, hMSH6, and hPMS1) were expressed at a low level in BPH-1 cells. In contrast, all six MMR genes were expressed in human benign prostate hyperplasia tissues. Downregulation of hMSH3, hMSH6, and hPMS1 genes is not a result of the hypermethylation mechanism because demethylation with 5-aza-2'-deoxycytidine did not restore expression of these genes. Although the hMLH1 gene is expressed in BPH-1 cells, western blotting and exon analyses demonstrated that hMLH1 was mutated and/or deleted in BPH-1 cells.

Adaptor Proteins, Signal Transducing↗

CpG methylation of promoter region inactivates E-cadherin gene in renal cell carcinoma.

CpG methylation in the promoter region has been shown to be important in the regulation of genes implicated in malignant transformation. The present study was designed to test the hypothesis that CpG methylation of the promoter region of the E-cadherin gene may inactivate its expression in renal cell carcinoma. To test this hypothesis, five kidney cancer cell lines and 34 microdissected renal cell carcinoma samples were analyzed for gene and protein expression by reverse transcription-polymerase chain reaction and immunohistochemistry, respectively. CpG methylation in the promoter regions of the E-cadherin gene was analyzed by the sodium bisulfite genome sequencing technique. Our results show that all normal renal tissue expressed the E-cadherin gene and protein. Of the renal cancer tissues analyzed, 67% (23 of 34) lacked E-cadherin expression, with an associated increase in methylation, compared with normal tissue. E-cadherin gene promoter was methylated in all renal cancer cell lines and was accompanied by a loss of E-cadherin gene and protein expression. The treatment of renal cancer cell lines with the demethylating agent 5-aza-2'-deoxycytidine restored E-cadherin mRNA expression in all renal cancer cell lines. This is the first report that shows inactivation of the E-cadherin gene and protein in renal cell carcinoma through CpG hypermethylation in the promoter region of this gene. The results of these experiments may contribute to an understanding of the role of E-cadherin inactivation in renal cell carcinoma.

Azacitidine↗

Paracrine regulation of apoptosis by steroid hormones in the male and female reproductive system.

In males, androgens are essential in maintaining the integrity of the prostate. Androgen-ablation induces apoptosis of the prostatic epithelium. In females, ovariectomy induces apoptosis in uterine epithelium while progesterone inhibits this process. The objective of this study was to determine whether androgen and progesterone inhibit apoptosis, respectively, in mouse prostatic and uterine epithelia via steroid receptors in the epithelium or in the stroma. To address this question, prostatic tissue recombinants were prepared with rat urogenital sinus mesenchyme plus bladder epithelium from wild-type or testicular feminization mutant (Tfm) mice. Thus, prostatic tissue was generated having androgen receptor (AR) in both epithelium and stroma or in the stroma only. Castration of hosts induced apoptosis in the AR-negative Tfm prostatic epithelium with an epithelial apoptotic index virtually identical to prostatic tissue recombinants containing wild-type epithelium. Moreover, this castration-induced prostatic epithelial apoptosis was blocked by testosterone and dihydrotestosterone in both wild-type and Tfm prostatic tissue recombinants. Likewise, uterine tissue recombinants were prepared in which epithelium and/or stroma was devoid of progesterone receptor (PR) by using uterine epithelium and stroma of wild-type and PR knockout mice. Progesterone inhibited uterine epithelial apoptosis only in tissue recombinants prepared with PR-positive stroma. The PR status of the epithelium did not affect epithelial apoptotic index. Therefore, the apoptosis in prostatic and uterine epithelia is regulated by androgen and progesterone via stromal AR and PR, respectively. In both cases, epithelial AR or PR is not required for hormonal regulation of epithelial apoptosis in prostatic and uterine epithelium.

Androgens↗

Regulation of progesterone receptors and decidualization in uterine stroma of the estrogen receptor-alpha knockout mouse.

Regulation of progesterone receptor (PR) in uterine stroma (endometrial stroma plus myometrium) by estrogen was investigated in estrogen receptor-alpha (ERalpha) knockout (alphaERKO) mice. 17 beta-Estradiol (E(2)) increased PR levels in uterine stroma of ovariectomized alphaERKO mice, and ICI 182 780 (ICI) inhibited this E(2)-induced PR expression. Estrogen receptor-beta(ER beta) was detected in both uterine epithelium and stroma of wild-type and alphaERKO mice by immunohistochemistry. In organ cultures of alphaERKO uterus, both E(2) and diethylstilbestrol induced stromal PR, and ICI inhibited this induction. These findings suggest that estrogen induces stromal PR via ERbeta in alphaERKO uterus. However, this process is not mediated exclusively by ERbeta+, because in ERbeta knockout mice, which express ERalpha, PR was up-regulated by E(2) in uterine stroma. In both wild-type and alphaERKO mice, progesterone and mechanical traumatization were essential and sufficient to induce decidual cells, even though E(2) and ERalpha were also required for increase in uterine weight. Progesterone receptor was strongly expressed in decidual cells in alphaERKO mice, and ICI did not inhibit decidualization or PR expression. This study suggests that up-regulation of PR in endometrial stroma is mediated through at least three mechanisms: 1) classical estrogen signaling through ERalpha, 2) estrogen signaling through ERbeta, and 3) as a result of mechanical stimulation plus progesterone, which induces stromal cells to differentiate into decidual cells. Each of these pathways can function independently of the others.

Animals↗

Tumor necrosis factor-alpha gene mutations and genotype changes in renal cell carcinoma.

PURPOSE: We tested the hypothesis that genotype changes in the promoter region of tumor necrosis factor-alpha and exon 1 are associated with renal cell carcinoma. MATERIALS AND METHODS: We analyzed genotypic changes at the 3 polymorphic loci of tumor necrosis factor-alpha -238, -308 and 488 using tumor and normal tissues from 81 Japanese patients with renal cell carcinoma. RESULTS: Of the 81 patients 14 (17%) had point mutations from G to A, including 8 (57%) with point mutations at multiple loci. Six of the 8 patients (75%) with point mutations at multiple loci were classified with stage 4 renal cell carcinoma. Of the 81 patients 14 were classified with stage 4 carcinoma, including 9 (64%) with point mutation from G to A. Normal tissue from cancer patients showed an increased frequency of the GA genotype at loci -238 and 488 compared to healthy controls (37% versus 9% and 30% versus 12%, respectively). The relative risk of renal cell carcinoma was 6.5-fold higher in patients with the GA genotype at locus -238 (p <0.001) and 2.9-fold higher in those with the GA genotype at locus 488 (0.01 < p <0.025) when comparing normal tissue from renal cell carcinoma patients with that of healthy controls. CONCLUSIONS: Point mutation from G to A, and the GA genotype at loci -238 and 488 of the TNF-alpha gene were common in patients with advanced renal cell carcinoma. The genotype change at loci -238 and 488 of the TNF-alpha gene are associated with renal cancer pathogenesis.

Adult↗

Heterologous acellular matrix graft for reconstruction of the rabbit urethra: histological and functional evaluation.

PURPOSE: In a rabbit model we evaluated urethral replacement by a free heterologous dog acellular matrix graft and compared these results with those of a homologous graft with the exclusion of antigenicity as a major goal. MATERIALS AND METHODS: In 14 male New Zealand rabbits a 0.8 to 1.1 cm. segment of urethra was resected and replaced with a tubular acellular 1.0 to 1.5 cm. (mean 1.3) urethral matrix graft placed on an 8Fr feeding tube. Seven animals received a rabbit graft, 7 received a canine graft and 3 untreated rabbits served as controls. All animals underwent urethral pressure profile determination and retrograde urethrography before 8 and 6 were sacrificed at 6 and 8 months, respectively. Grafted and normal specimens were evaluated by histological testing. RESULTS: In all animals the acellular matrix graft remained in its original position. Histological examination showed complete epithelialization and progressive vessel infiltration. At 6 months more than a third of the homologous grafts had smooth muscle bundles but the heterologous grafts had only poorly disseminated smooth muscle. Picrosirius red stain demonstrated a shift in the ratio of collagen types I-to-III with an increase in type III in the processed homologous and heterologous matrices that did not change significantly postoperatively. At 8 months the urethral pressure profile detected no difference in control and matrix grafted animals, and urethrography did not readily differentiate host from implant. CONCLUSIONS: In the heterologous matrix all tissue components were present after 6 months with no signs of rejection and even gradual improvement with time. However, regenerated smooth muscle did not equal that in normal rabbit urethra and it was not well oriented. Even after 8 months only a few disseminated smooth muscle cells were evident. Most alpha-actin positive cells were surrounding the vessels. Although function was normal, the alteration in the collagen ratio effected by matrix production indicated that the matrix collagen appeared not to have been replaced by host collagen. The increase in collagen type III may explain the lack of stricture in the grafted animals on normal retrourethrography.

Animals↗

Nitric oxide synthase gene and protein expression are upregulated by Bacille Calmette-Guérin in the rat bladder.

OBJECTIVE: We hypothesize that Bacille Calmette-Guérin (BCG) may act through the regulation of various isoforms of nitric oxide synthase (NOS) [inducible (iNOS), endothelial (eNOS), and neuronal (nNOS)] genes and protein expression in rat bladder. METHODS: Adult female Sprague-Dawley rats (200-250 g) were injected transurethrally with BCG (22 rats) and phosphate-buffered saline (22 control rats), and after 2, 4, 6, and 12 h, and 1, 2, 3, 5, 7, 10, and 14 days, the bladders were harvested. Normal and BCG-treated rat bladders were analyzed for mRNA expression for iNOS, eNOS, and nNOS by reverse-transcriptase polymerase chain reaction. Protein expression was determined by Western blotting and immunohistochemistry. RESULTS: mRNA expression for iNOS was induced after 2 h of BCG injection in the rat bladder. Gene expression for iNOS was highest at 6 h to 1 day followed by decreased expression, reaching its lowest level at 5 days. eNOS mRNA expression was detected in control bladders, but its level was higher in the BCG-treated animals. nNOS mRNA expression was present in all samples, but did not change after BCG treatment. Western blotting confirmed these findings. Immunohistochemistry analysis demonstrated that eNOS was present mainly in endothelium, while iNOS was detected in stroma and nNOS in epithelium and smooth muscle of the rat bladder. CONCLUSION: The present study demonstrates, for the first time, that BCG treatment up-regulates gene and protein expression of iNOS and eNOS in normal rat bladders, suggesting that BCG action may be mediated through NOS pathways.

Animals↗

Expression analysis of Y chromosome genes in human prostate cancer.

PURPOSE: We hypothesized that alterations in Y chromosome gene expression may be associated with prostate cancer. To test this hypothesis we analyzed the expression of 19 Y chromosome genes in benign and malignant prostate tissue. MATERIALS AND METHODS: To study the expression of Y chromosome genes RNA was extracted from prostate cancer and benign prostatic hyperplasia (BPH) tissue as well as from prostate cancer cell lines. RNA was reverse transcribed and polymerase chain reaction amplified using specific primers. These primers were designed for each gene sequence obtained from the gene data bank. We analyzed 19 Y chromosome genes using 6 cell lines, 7 BPH and 7 prostate cancer tissues. Normal testis RNA served as a positive control. RESULTS: Of the 19 genes analyzed in cell lines BPH-1 cells expressed the RPS4Y, USP9Y, TMSB4Y and DBY genes; DUPro expressed RPS4Y, USP9Y, TMSB4Y, DBY and UTY; DU145 expressed DAZ, RPS4Y, USP9Y, TMSB4Y, DBY, EIAFIY, PRKY and SMCY; LNCaP expressed TSPY, SRY, BPY1, PRY, DAZ, RBMIH, RPS4Y, DBY, EIAFIY, PRKY and SMCY; ND1 expressed DAZ, RPS4Y, USP9Y, TMSB4Y, DBY, EIAFIY, PRKY and SMCY; and PC3 expressed RPS4Y, USP9Y and DBY. BPH tissue expressed the SRY, PRY, DBY, PRKY, RPS4Y, TMSB4Y, USP9Y and ZFY genes. Prostate cancer tissue expressed the PRY, TSPY, USP9Y, UTY, DBY, SMCY, ZFY, EIAFIY, TMSB4Y and RPS4Y genes. CONCLUSIONS: The differential expression of Y chromosome genes in prostate cancer, BPH tissue and prostate cancer cell lines indicates that they may have a role in prostate cancer.

Adenocarcinoma↗

Time dependent smooth muscle regeneration and maturation in a bladder acellular matrix graft: histological studies and in vivo functional evaluation.

PURPOSE: We evaluated the time dependence of smooth muscle regeneration and restoration of in vivo functional properties in bladder augmented with a bladder acellular matrix graft. MATERIALS AND METHODS: A total of 45 Sprague-Dawley rats underwent augmentation cystoplasty with a bladder acellular matrix graft. Two rats each were sacrificed at various intervals within the first 21 days and 6 each were sacrificed at 4, 8 and 12 weeks. This second group underwent preoperative and postoperative assessment of bladder function, including cystometry, electrostimulation and stimulation with ice water, potassium and carbachol, as well as labeling of the bladder wall by the injection of fluorescent microspheres. After sacrifice slides of the bladders prepared for hematoxylin and eosin, trichrome, KI67, vimentin, desmin, smooth muscle specific alpha-actin and fluorescent microspheres were evaluated. RESULTS: Within 2 weeks the number of cells in the matrix as well as the proliferation index increased rapidly and then decreased gradually. Erythrocytes and inflammatory cells were found in the matrix within 2 to 4 days, followed by fibroblasts. A bladder host-to-matrix shift was evident by the appearance of microspheres in the matrix. Cell marker expression indicated the early appearance of vimentin and alpha-actin within the first 10 days. Distinct desmin expression was observed later, when the first smooth muscle cells were recognized. Functional evaluation revealed restored bladder function at 12 weeks. CONCLUSIONS: The time dependent increase of muscle cell markers during smooth muscle cell regeneration in a bladder acellular matrix graft is concordant with the progressive restoration of bladder function. These results may support the bladder acellular matrix graft concept for clinical application.

Actins↗