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At least 19 recordsLinked to original sources

Gene expression in bovine seminal vesicles.

Seminal vesicle secretion contributes significantly to the proteins of bovine seminal plasma. The following proteins from bull seminal vesicle were isolated and characterized: major protein (PDC 109), the basic proteins BUSI II, RNAse BS1, protein P6 and seminal antimicrobial protein (SAP). Using antibodies against the proteins BUSI II, RNAse BS1, SAP and major protein, the seminal vesicle epithelium was identified as the source of the respective antigens. The biosynthesis of bovine seminal vesicle secretory proteins was studied by cell free translation of poly (A)-RNA from seminal vesicles and the respective mRNAs were characterized by cDNA cloning. Recombinant clones (103) of a cDNA library of bull seminal vesicle poly (A) + RNA were screened by colony hybridisation using radioactively labelled synthetic probes. The respective clone containing the longest cDNA insert was sequenced. In case of major protein the Mr of the 134 amino acid residue precursor polypeptide was 15,480 as deduced from direct mRNA sequencing. The precursor sequence of 25 amino acid residues has a hydrophobic character and very likely constitutes a signal peptide, directing the protein towards the secretory pathway. The deduced amino acid sequence contained no consensus sequence indicative of N-glycosylation.

Amino Acid Sequence↗

Leukocytospermia and function of the seminal vesicles on seminal quality.

OBJECTIVE: To determine possible relationships between number of leukocytes, function of seminal vesicles, and seminal quality. DESIGN: The study was carried out on men who consecutively attended an infertility clinic between June 1989 to June 1991. SETTING: This study was conducted in a private immunological center for infertility, a tertiary care center, The Centro Immunológico-Sección Esterilidad y Reproducción. PATIENTS: Semen samples from 280 infertility patients attending an Immunological Center for Infertility were analyzed. MAIN OUTCOME MEASURE: We evaluated the effect of leukocytospermia in the presence of normal or abnormal function of seminal vesicles on seminal quality. RESULTS: Sperm count, percent of motile sperm, and percent of sperm vitality were significantly reduced when both leukocytospermia and hypofunction of seminal vesicles were present (P less than 0.01). Leukocytospermic subjects with normal function of seminal vesicles showed similar seminal parameters to those nonleukocytspermics. The incidence of subjects with antisperm antibodies measured by direct immunobeads was significantly higher in leukocytospermic men with hypofunction of seminal vesicles. No differences in the incidence of antisperm antibodies with nonleukocytospermic samples were observed in those with both leukocytospermia and normal function of seminal vesicles. CONCLUSIONS: These data provide evidence that white blood cells were deleterious for seminal quality when seminal vesicles were also affected.

Acid Phosphatase↗

Prognostic indicators for long term outcome following radical retropubic prostatectomy for prostate cancer involving the seminal vesicles.

Seminal vesicle involvement at the time of radical prostatectomy (RP) for prostate cancer has been equated with metastatic disease. We review our biochemical freedom from disease results following RP in patients with seminal vesicle involvement with particular attention to identifying variables that may be predictive of disease recurrence. We retrospectively reviewed our surgical database and identified patients with pT3b (2002 AJCC) prostate cancer at RP [corrected]. There were 70 cases without lymph node involvement and with available clinical follow-up identified. Any patient receiving androgen deprivation therapy, radiation therapy, or with a sustained PSA elevation greater than 0.2 ng/mL was considered a biochemical failure. Results were calculated using the Kaplan-Meier method. Mean age was 63.4 (range 45.7-79.5) years, mean preoperative PSA was 11.3 ng/mL (range 2-60), mean biopsy Gleason score was 7.2 (range 4-9), mean RP Gleason score was 7.5 (range 5-9), and median follow-up time was 61.5 months (range 2.3-160.6). Overall, 33/70 (47%) patients were without evidence of disease without further therapy. For patients with pT3bN0Mx prostate cancer, margin status, capsular invasion, and PSA were not statistically significant risk factors for disease progression. Gleason score and major Gleason grade were the only statistically significant variables that predicted disease progression. A specimen Gleason score of greater than 7 and major Gleason grades greater than 3 were associated with an increased rate of disease progression in this patient group.

Aged↗

Corrected seminal fructose levels: index of secretory activity of seminal vesicles.

Seminal fructose, sperm count, and sperm motility were measured in 340 men attending an infertility clinic. Seminal fructose correlates negatively with sperm count but not with sperm motility. The best correlation between sperm count and seminal fructose was obtained using the logarithm (log) of sperm count. When seminal fructose was multiplied by the log of sperm count obtaining a value named "corrected fructose," the correlation with sperm count disappeared, and there was positive correlation between corrected seminal fructose and sperm motility. Therefore, corrected seminal fructose level was significantly lower in asthenospermic than in normomotile subjects, irrespective of the sperm count. Corrected seminal fructose, but not seminal fructose levels, was lowered in subjects with either low levels of serum testosterone (less than 3 ng/ml) or evidence of an obstructive process in the reproductive tract. In both situations sperm motility was also reduced. The corrected fructose level was not affected by the presence of varicocele, hyperprolactinemia, or hyperserotoninemia. Measurement of corrected seminal fructose rather than seminal fructose may be a useful marker of the secretory activity of the seminal vesicles.

Adult↗

Haemorrhagic papillary cystadenoma of the seminal vesicle mimicking giant seminal vesicle cyst: MRI appearances.

Papillary cystadenoma of the seminal vesicle is very rare. We describe such a case presenting in a 58 year old man with bladder outlet obstruction. Investigations included magnetic resonance imaging (MRI), the usefulness of which in pre-operative diagnosis is highlighted in this case. Seminal vesicle cysts can usually be identified by conventional radiological imaging techniques such as ultrasound and computed tomography; however, identification would be difficult if the cyst is very large, causing distortion of the adjacent anatomy. In such cases, MRI, through coronal and sagittal scanning, can be helpful in localising the lesion, as in this patient. The precise pathological nature of the cyst can only be confirmed by biopsy.

Cystadenoma↗

Efficacy of transrectal ultrasound-guided seminal vesicle biopsies in the detection of seminal vesicle invasion by prostate cancer.

Detection of microscopic seminal vesicle invasion with prostate cancer by transrectal ultrasound-guided seminal vesicle biopsies provides a method of evaluation that is much less subjective than digital rectal examination or imaging techniques. The accuracy of seminal vesicle biopsy is analyzed in 73 patients undergoing transrectal ultrasound-guided biopsy of 145 seminal vesicles followed by radical prostatectomy. Of 133 benign seminal vesicle biopsies 11 (8.3%) were found in the surgical specimen to have cancer involving an average of 6% of the seminal vesicle area. Of 8 seminal vesicle biopsies showing cancer adjacent to seminal vesicle epithelium 100% demonstrated seminal vesicle invasion in the surgical specimen extending for an average of 19% of the seminal vesicle area. Three biopsies exhibited cancer but no seminal vesicle epithelium; only 1 (33%) of these had seminal vesicle invasion for 5% of the seminal vesicle area. One biopsy revealed normal prostate tissue. Careful placement of bilateral biopsy sites cephalad to the prostate base (not traversing any portion of the prostate gland) is recommended. Caution should be exercised when basing treatment decisions on seminal vesicle biopsies that do not reveal seminal vesicle epithelium histologically.

Aged↗

Calcium-binding protein in bull seminal vesicle secretion and seminal plasma.

A protein which showed high affinity for calcium ions was isolated from bull seminal vesicle secretion and seminal plasma. Its calcium-binding activity depended on the ionic strength and pH of the medium. The dissociation constant was 7-7 X 10(-7) M and there were 14 binding sites per protein molecule. The molecular weight of calcium-binding protein from bull seminal vesicle secretion, estimated by the gel filtration method, was 110,000. The protein may be involved in the regulation of the calcium ion level in seminal plasma.

Animals↗

Purification of a cell-cell adhesion regulator from porcine seminal vesicle fluid.

Seminal plasma derived factors are implicated in mediating inflammation in the female reproductive tract following insemination at mating. During inflammation, leukocytes are activated to express adhesion receptors resulting in adherence to each other and for the ECM as well as for various cell types. The present study describes the purification of a leukocyte cell-cell adhesion regulator derived from seminal vesicle fluid. Seminal vesicle fluid proteins were chromatographed by cation exchange, hydrophobic interaction and reversed phase. Chromatography on Phenyl Superose resolved two distinct forms of cell-cell adhesion regulation, type I and II. Reversed phase chromatography of fractions inducing type I adhesion resulted in the isolation of a 15kDa adhesion inducing protein (pAIF-1). The N-terminal sequence contained a hydrophobic consensus sequence which exists in: two bovine seminal vesicle proteins (BSPA3, PDC 109); IGF-II receptor; fibronectin; and the cation independent mannose-6-phosphate receptor.

Amino Acid Sequence↗

Prognostic significance of seminal vesicle invasion on the radical prostatectomy specimen. Rationale for seminal vesicle biopsies.

OBJECTIVE: The prognostic significance of seminal vesicle invasion on the radical prostatectomy specimen was evaluated according to the proximal or distal site of this invasion. MATERIALS AND METHODS: 52 consecutive patients undergoing radical prostatectomy for stage pT3b N0 M0 prostatic cancer were classified into two groups: group A (18 patients): patients with invasion limited to the proximal part of the seminal vesicles (stage T3b limited); group B (34 patients): patients with invasion extending to the free part of the seminal vesicles (stage T3b extensive). The PSA progression-free curves were compared between the two groups. A multivariable regression model was performed to determine independent prognostic factors. RESULTS: Overall, the 5-year PSA progression free rate of the 52 patients was 14.4%. The 5-year PSA progression-free rate of the patients in group A was 45.4 vs. 4.2% at 4 years in group B (p = 0.0004). The stage of seminal vesicle invasion and the Gleason score were the only independent predictive factors of PSA progression (p = 0.02 and p = 0.04, respectively). CONCLUSIONS: The prognostic significance of seminal vesicle invasion is not constant and depends on the site of invasion. Preoperative seminal vesicles biopsies can select patients with invasion extending to the free part of seminal vesicles and who have a poor prognosis in terms of PSA progression after radical prostatectomy.

Adenocarcinoma↗

Protein kinase CK2 activities in human prostatic and seminal-vesicle secretions and seminal plasma.

Human prostatic secretion and seminal plasma contain certain protein kinase activities. Protein kinases play important roles in regulating a vast variety of cellular functions. The objective of this study was to determine whether one of these protein kinase activities in human prostatic secretion and seminal plasma is due to CK2, a messenger-independent, serine/threonine protein kinase that has considerable potential as a regulatory enzyme. By employing an anti-CK2 antibody and a CK2-specific peptide substrate, we have established that CK2 is present in these secretions. Approximately 70% of the CK2 activity present in seminal plasma of normozoospermic men (n = 49) is correlated to the number of sperm originally present in the semen. Further, both the prostate gland and the seminal vesicles are sources of CK2 activity in the seminal plasma of vasectomized men (n = 38). Although there was considerable variation between individuals in CK2 activity, the variation in repeat semen samples of the same vasectomized men (n = 6) was within 21%. There was no correlation of CK2 activity in seminal plasma with age for vasectomized (27-48 years, n = 38), oligozoospermic (28-43 years, n = 24), or normozoospermic men (26-48 years, n = 49). These data suggest that the majority of CK2 activity in the seminal plasma of normozoospermic men originates from sperm but that the prostate and seminal vesicles are accessory sex-gland sources of this enzyme.

Adult↗

Chemical characterization of the predominant proteins secreted by mouse seminal vesicles.

Mouse seminal vesicles secrete four major protein components with estimated molecular masses of 95, 38, 17, and 16 kDa. Amino acid sequencing revealed that the 95-kDa component represents a protein with an unknown structure, while the 38-kDa component was identified as semenoclotin, the 17-kDa component as seminal-vesicle-secreted protein IV, and the 16-kDa component as seminal-vesicle-secreted protein V. Semenoclotin and the 95-kDa component were readily cross-linked by transglutaminase, suggesting that the two proteins are involved in the formation of the mouse copulatory plug. Treatment of mouse seminal vesicle fluid with human prostate-specific antigen rapidly degraded semenoclotin, indicating a structural resemblance of this protein to human semenogelins, despite the vast difference in primary structure. As previously reported for other seminal-vesicle-secreted proteins, the semenoclotin transcripts are shown to be under androgen control.

Amino Acid Sequence↗

[A case of seminal vesicle cyst associated with ipsilateral renal dysplasia and ectopic ureter opening into seminal vesicle].

A case of seminal vesicle cyst associated with ipsilateral renal dysplasia and ectopic ureter opening into seminal vesicle was experienced recently in our clinic. The case was a 14-year-old boy with the chief complaint of macrohematuria. Left kidney was not visualized in the excretory urogram and no evidence of left renal artery was seen in the abdominal aortogram. On cystoscopy the left ureteral orifice as well as the left half side of the trigone were not detected and this region appeared elevated, suggesting an extrinsic mass displacing the posterior bladder wall. The right ureteral orifice was normal. CT-scan and echogram showed the mass in the retrovesical region. The seminal vesiculogram demonstrated a seminal vesicle cyst and reflux up the left dilated ureter. After left nephroureterovesiculectomy was performed, renal dysplasia and a seminal vesicle cyst were histopathologically confirmed. The definitions in the literature for seminal vesicle cyst with maldeveloped kidney and ectopic ureter opening into the seminal vesicle with maldeveloped kidney are somewhat confusing, and they should be standardized for proper diagnosis and treatment of such cases.

Adolescent↗

[Obstructive urinary symptoms associated with giant cyst of seminal vesicle].

OBJECTIVE: Seminal vesicle cysts are rare diseases and frequently cause no symptoms. An acquired giant seminal vesicle cyst in a 73-year-old man is presented. Bladder outlet obstruction was the main complaint, mimicking that arising from the prostate. METHODS: Ultrasonography and computed tomography revealed a well-defined, homogeneous, retrovesical cystic mass. Urinary tract was normal. RESULTS: A CT-guided drainage of the cystic mass was performed and urinary symptoms disappeared. The cystic mass recurred at 6 months' follow-up. Treatment was by surgery, which confirmed the seminal vesicle origin of the cyst. CONCLUSIONS: Acquired seminal vesicle cysts may cause bladder outlet obstruction.

Aged↗

Inguinal hernia of seminal vesicle cyst.

Seminal vesicle cysts are uncommon abnormalities in the pelvis. The case of a seminal vesicle cyst that extended through the inguinal canal is reported. A 35-year-old man presented with left inguinal swelling. He was diagnosed with a left inguinal hernia. However, the interpretative diagnosis was a spermatic cord tumor. The operation was changed to tumor resection. The tumor existed along with the vas deferens from part of the parietal peritoneum outside the inguinal tunnel to the deep pelvic space. The cylinder-shaped tumor was 3 cm in diameter and 20 cm long. Pathological examination revealed a seminal vesicle cyst that extended through the inguinal canal. To the best of our knowledge, this is the first case report of a seminal vesicle cyst inguinal hernia.

Adult↗

Morphology and functions of the human seminal vesicle.

The seminal vesicles originate in embryos of about 58 mm crown-rump-length from the Wolffian duct under the influence of testosterone. Along with the ampulla of the vas deferens and the ejaculatory duct, they form a functional unit that develops slowly until the onset of puberty. Developmental malformations occur as uni- or bilateral agenesis, aplasia, cysts, or ureterovesicular fistules. After puberty, the glands form sac-like structures which have a capacity of about 3.4-4.5 ccm and contribute about 70% of the seminal fluid. In addition to secretion, they are capable of reabsorption of fluids or dissolved substances, and of spermatophagy (ingestion and degradation of damaged spermatozoa by epithelial cells). Secretory activity of the glands is a measure of testosterone supplementation to the epithelium. Nervous regulation of secretion is realized by cholinergic post-ganglionic, sympathetic (and perhaps parasympathetic) fibres, derived from pelvic plexus. Contraction of the muscular wall occurs under the influence of excitatory adrenergic and modulatory NPY-encephalin-peptidergic nerve fibres. The secretory products of the seminal vesicles encompass (1) ions (K+: 1.1 mM ml-1) (2) low molecular weight substances (fructose: above 1.2 mg ml-1; prostaglandins above 250 microliters ml-1, (3) peptides (endorphin: 330 pg ml-1), and (4) proteins. In addition to plasma protein related forms such as transferrin, lactoferrin, and fibronectin, specific proteins such as semenogelin (52 kDa) are synthesized, the scaffold protein of semen coagulate forming the substrate for PSA (prostate specific antigen), sperm motility inhibitor (ca. 18 kDa), and others (placental protein 5, protein kinase inhibitor, carboanhydrase, 5'-nucleotidase), some of which are immunosuppressive. Therefore, functions of the seminal vesicles concern (a) formation of seminal coagulum, (b) modification of sperm functions (motility, capacitation), and (c) immunosuppression. Additional functions within the female genital system, perhaps during pre-implantation period, are likely, but remain to be proven experimentally.

Adolescent↗