Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “testis”

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 307 records · Page 17Linked to original sources

Differences in cadmium transport to the testis, epididymis, and brain in cadmium-sensitive and -resistant murine strains 129/J and A/J.

Although most animals with scrotal testes are susceptible to cadmium-induced testicular toxicity, strain-related differences are seen in mice. Resistant murine strains demonstrate a decreased cadmium concentration in the testis and also in the epididymis and seminal vesicle. In this study we analyzed cadmium transport into tissues with a vascular barrier, the testis, epididymis, and brain, in an attempt to characterize the mechanisms of strain resistance to cadmium-induced testicular toxicity. In the resistant murine strain A/J, 109Cd transport (administered as 109CdCl2) was significantly attenuated in the testis, epididymis, and brain, when compared to the sensitive murine strain 129/J. The unidirectional influx constant (Ki, in microliter g-1 min-1) for 109Cd was 0.01929 in the A/J testis as compared with 1.174 in the 129/J testis (P <.0001). The percentage of a 109Cd dose that reached the A/J testis by 60 min was over 10 times less than that which reached the 129/J testis. The transport system used by cadmium in the 129/J testis was saturable, with 20 microM unlabeled cadmium chloride inhibiting transport by over 60%. The transporter was competitively inhibited by zinc (P =. 00017), but not by calcium, indicating a specificity in ion transport. Studies with isolated tubules and analysis of testicular fluid compartments demonstrated no significant difference in cadmium uptake or efflux between the strains when corrected for the amount of 109Cd entering the testis. Therefore, murine strain differences in testicular sensitivity to cadmium appear to be related to the variable presence of a transport system for cadmium in the testicular vasculature.

Animals↗

Thyroid hormone receptors in neonatal, prepubertal, and adult rat testis.

Thyroid hormone (TH) is involved in the differentiation and development of rat testis, whereas its role in adult testis function is still undefined. The aim of our work has been to further analyze the presence in the testis of rats of various ages of messenger RNA (mRNA) coding the different TH receptor (TR) subtypes using a sensitive assay, such as reverse transcriptase-polymerase chain reaction (RT-PCR). To rule out the possibility of an "illegitimate transcription," we have analyzed both T3-binding capacity of adult rat testis and the presence in the same organ of TR proteins by immunohistochemistry, using specific antibodies directed against the various TR isoforms. Messenger RNA coding for TR alpha1 and alpha2 isoforms was clearly visible in gels prepared from RT-PCR samples obtained from the testis of rats of all ages, including adults, whereas mRNA for the TR beta1-beta2 was absent. The T3 maximal binding capacity (Cmax) by nuclear extracts of testicular homogenates gradually decreased from birth to adulthood, still remaining significantly detectable in adult testis, and represented approximately 1% of the Cmax observed in the liver. The immunostaining technique revealed an intense nuclear staining along the basement membrane of testicular tubules prepared from rats of all ages and incubated with an antipeptide antibody specific for TR alpha1 (alpha1-403). Staining with an antipeptide antibody specific for TR beta1 (beta-62) was never present. Our data show that mRNAs coding for the functional TR alpha1, and also for the still undefined alpha2, are present in the testis of rats of all ages. T3-binding activity and immunohistochemical studies confirmed that the message is translated into proteins. The transcriptional activity clearly decreased from birth to adulthood, but it still remained significantly present. The presence of a TR alpha1 message indicates that the adult rat testis may be directly responsive to T3 and, therefore, suggests an action of TH on rat testis that is not only developmental, but also metabolic.

Aging↗

[Effect of testosterone on spermatogenesis: dynamics of testosterone secretion in adult rat testis].

OBJECTIVE: To study the effect of testosterone on spermatogenesis. METHODS: Testosterone concentrations were measured in testicular interstitial fluid (IF), and serum sample from the testicular artery, testicular veins on the surface of the testis, and the peripheral venous, inferior vena cave and proximal spermatic veins in adult SD rats. The left and bilateral veins at the proximal end of the spermatic cord were ligated respectively. Testosterone concentrations and weight of the testis were measured, and the changes of the testicular morphology were studied 3 days and 21 days after ligation respectively. RESULTS: The testosterone concentrations were highest in IF. The serum testosterone concentrations were highest in the testicular veins on the surface of the testis. The serum testosterone concentrations in the proximal spermatic veins, the testicular artery, the peripheral venous and inferior vena cave were (42.503 +/- 12.749), (42.503 +/- 12.749), (5.598 +/- 3.649), (2.533 +/- 1.719) and (2.418 +/- 1.495) mg/L respectively. Three days after the proximal spermatic veins were ligated bilaterally, the weights of the testis and the serum testosterone concentrations declined markedly. The epithelium of the seminiferous tubules degenerated slightly and part of the structure was indistinct. Three days after the left proximal spermatic veins were ligated, the weights of the left testis, the testosterone concentrations in the left IF and in the serum of the left testicular artery declined distinctly except the serum testosterone concentration of the peripheral venous, inferior vena cave and those of the right testis. The epithelium of the seminiferous tubules in the left testis degenerated slightly and part of the structure was indistinct. It was restored 21 days after ligation. CONCLUSIONS: A "small circulation" (testis-the testicular veins-the spermatic veins-the spermatic artery-the testicular artery-testis) may exist. The results indicate that after ligation of the proximal spermatic veins, the reduction of the testosterone concentrations and changes of testicular morphology is temporary and may be recovered.

Animals↗

Expression of a novel pyridoxal kinase mRNA splice variant, PKH-T, in human testis.

AIM: To identify the genes specifically expressed in human adult and fetal testes and spermatozoa. METHODS: A human testis cDNA microarray was established. Then mRNAs of human adult and fetal testis and spermatozoa were purified and probes were prepared by a reverse transcription reaction with mRNA as the template. The microarray was hybridized with probes of adult and fetal testes and spermatozoa. The nucleic acid sequences of differentially expressed genes were determined and homologies were searched in the databases of GenBank. RESULTS: A novel human testis-specific gene, PKH-T, was identified by hybridizing adult and fetal testis and spermatozoa probes with a human testis cDNA microarray. The cDNA of PKH-T was 1 069 bp in length. The cDNA sequence of this clone was deposited in the Genbank (AY303972) and PKH-T was also determined as Interim GenSymbol (Unigene, HS.38041). PKH-T contained most PKH conserved motif. The 239 amino acid sequences deduced from the 719 bp open reading frame (ORF) had a homology with the gene PKH (U89606). PKH-T was specifically and strongly expressed in the testis. Comparison of the differential expressions of PKH and PKH-T in testes of different developmental stages indicated that PKH-T was expressed in the adult testis and spermatozoa, while PKH, in the adult, fetal and aged testes. PKH-T had no expression in the testis of Sertoli cell only and partially spermatogenic arrest patients. CONCLUSION: PKH-T is a gene highly expressed in adult human testis and spermatozoa. It may play an important role in spermatogenesis and could be related to male infertility.

Adult↗

Response of scrotal and non-scrotal vertebrate testis to the male antifertility agent alpha-chlorohydrin.

Effect of single oral dose (90 mg/kg body weight), multiple doses (90 mg/kg body weight for 7 days) or even higher doses (180-300 mg/kg body weight) of alpha-chlorohydrin on the testis-epididymis complex of dog, rat, cryptorchid rat, hedgehog, domestic fowl, lizard, frog, and toad has been studied. alpha-chlorohydrin treatment, at any dose, did not induce lesions in the testis-epididymis complex of dog and hedgehog having testis in scrotum and inguinal canal respectively. Abdominal testis of cryptorchid rat, domestic fowl, lizard, frog and toad also did not respond to alpha-chlorohydrin treatment. Lesions in normal rat testis-epididymis complex, after single oral dose of alpha-chlorohydrin, were quite prominent. Non-sensitivity of alpha-chlorohydrin to these animal species may be due to the absence of the pampiniform plexus complex in hedgehog and sub-mammalian animal species. Absence of conventional epididymis in the sub-mammalian animal species may be the additional reason of the non-sensitivity of the drug. Prominence of collateral blood vasculature in dog testis-epididymis complex and some alterations in the blood supply due to cryptorchidity in cryptorchid rat testis seems to be the reason of non-sensitivity of alpha-chlorohydrin to dog and cryptorchid rat testis. These observations confirm the hypothesis that the action of a single oral dose of alpha-chlorohydrin is associted with the blood vasculature of the testis-epididymis complex.

Animals↗

Comparison of the high mobility group proteins and their chromatin distribution in trout testis and liver.

The trout testis contains two major high mobility group (HMG) proteins HMG-T and H6 which, although related to the four mammalian HMGs, exhibit distinct variation as evidenced by differences in electrophoretic mobility and amino acid sequence. Previous work using various endonucleases as probes has shown that HMG-T and H6 are located at specific sites in the testis chromatin. The differentiation of testis cells during spermatogenesis is characterized by a unique transition from a histone-packaged genome to one bound by a class of small molecular weight, highly basic proteins, the protamines. Questions arise as to whether any of the HMG variability may be unique to the process of spermatogenesis and whether the histone-protamine transition occurring in most testis cells affects the HMG protein distribution and/or the specificity of the probe. In an attempt to answer these questions, the distribution of the HMG proteins in the chromatin of trout liver, a tissue lacking protamine, has been studied and comparisons made with testis. Liver HMGs exhibit the same electrophoretic characteristics as the testis HMGs indicating that the variability when compared to mammalian HMGs is primarily phylogenetic in origin rather than tissue-specific. Furthermore, micrococcal nuclease digestion of liver nuclei and its effect on the subsequent HMG protein distribution during chromatin fractionation yields a pattern very similar to that for testis, suggesting that the interaction of the HMGs with the remaining testis nucleohistone is not significantly altered by the ongoing transition to nucleoprotamine. Finally, the HMGs represent an unusually high proportion of the total testis non-histone protein population; the implications of this are discussed.

Animals↗

The use of laparoscopy in the management of the nonpalpable testis.

Fifty-eight children with a nonpalpable testis have been evaluated at our institution between 1988 and 1994. Laparoscopy was performed in these children to effect a treatment plan. The children range in age from 10 months to 14 years. Thirty patients had a nonpalpable left testis, 18 had a nonpalpable right testis, and 10 had bilateral nonpalpable testes. In 28 children, a testis was visualized. Two underwent laparoscopic orchiectomy and 26 underwent either a standard single stage procedure (11), a staged open procedure (3), or a laparoscopically assisted staged procedure (12). Attenuated vessels were seen in 26 patients and inguinal exploration revealed a viable testis in 6 patients and a testis remnant, which was removed, in 20 patients. Four patients had laparoscopic blind-ending vessels. Diagnostic laparoscopy affords the surgeon not only the ability to localize the testis with virtual certainty, but also the advantage of planning a highly successful treatment program. The position of the testis intra-abdominally and the length of the spermatic vessels can be easily evaluated to decide whether a staged approach versus a single stage procedure can be performed. The use of the KTP laser has made the two staged procedure quite easy with only one Trocar site necessary. This experience has allowed us to develop and modify an algorithm for the effective management of the nonpalpable testis.

Adolescent↗

Comparison of the response of rat testis and accessory sex organs to treatment with testosterone and the synthetic androgen methyltrienolone (R1881).

We have studied the ability of the synthetic androgen methyltrienolone (R1881) to maintain testis and accessory organ weights, as compared to the effect of testosterone propionate (TP). In contrast to TP, R1881 is not metabolized and does not significantly bind to androgen-binding protein (ABP). Thirty-six rats were treated with ethane dimethane sulphonate (EDS) and GnRH antagonist (Org30267) to abolish all testicular androgen production, and recombinant human FSH (rec-hFSH, Org32489) was administered to ensure adequate FSH levels. Of these rats, five groups of four rats were treated daily with 0-, 50-, 100-, 200-, and 400-microgram TP, s.c., and four groups of four rats were treated daily with 150-, 300-, 600-, and 1200-microgram R1881, s.c. One control group of four rats received vehicle injections only. EDS treatment, followed by GnRH antagonist and rec-hFSH treatment for 17 days, significantly reduced testis, prostate, and seminal vesicle weights (P < 0.001, P < 0.01, P < 0.001, respectively). Simultaneous treatment with androgens prevented this organ weight decrease, in a dose-dependent manner. In all TP-treated animals, relative weights (% of control) of the acces, sory sex organs were significantly higher than the relative testis weights (P < 0.001). However, there was no difference in relative weights between testis and accessory sex organs in the R1881-treated animals. In another series of experiments, we investigated the effect of treatment with Finasteride, a 5 alpha-reductase inhibitor, on testis and accessory sex organ weights in rats treated with EDS and TP. Treatment with EDS, TP (300 micrograms/day) and Finasteride (40 mg/kg/day) did not alter testis weight as compared to the effect of treatment with EDS and TP alone. Prostate and seminal vesicle weights were, however, markedly reduced (significantly different from rats treated with EDS and TP alone; P < 0.01 and P < 0.05, respectively). Immunohistochemical analysis of androgen-receptor (AR) expression in the testis revealed that testicular AR immunoexpression is androgen dependent and that FSH alone is not able to maintain AR immunoexpression. Furthermore, the stage-dependent pattern of AR immunoexpression in Sertoli-cell nuclei, during the spermatogenic cycle, is identical in all TP- and R1881-treated rats. It is concluded that testes, prostate, and seminal vesicles are equally stimulated when the androgen receptor in these tissues is exposed to the same intracellular concentration of free androgen and that the low 5 alpha-reductase activity in the testis plays a critical role in the differential response of the testis and the accessory sex organs to T. Furthermore, stage-dependent AR immunoexpression in Sertoli cells does occur in the absence of testicular androgen production and is not due to androgen metabolism or local differences in androgen concentration.

Animals↗

Torsion of the cryptorchid testis--can it be salvaged?

PURPOSE: The literature concerning undescended testis mainly concentrates on the increased risks of infertility and development of germ cell tumors. Yet the UDT also appears to be at higher risk for torsion compared to the normally descended testis, and this issue is relatively poorly addressed. We reviewed all cases of torsion of UDTs operated on at our hospital during the last 20 years in an attempt to characterize better this condition and its salvageability. MATERIALS AND METHODS: In this retrospective clinical study we reviewed and analyzed all cases of testicular torsion involving UDT operated on at our hospital between 1984 and 2004. RESULTS: A total of 11 children were operated on at our hospital for torsion of undescended testis between 1984 and 2004. Patient age ranged from 1 month to 18 years (median 7.5 months). In all cases unilateral torsion of undescended testis was diagnosed, with 73% of cases involving the left side. Clinical symptoms included inguinal swelling and erythema associated with a tender, firm mass palpated in the groin area and an empty ipsilateral hemiscrotum. Doppler ultrasound examination was routinely performed in the last 7 patients to confirm the diagnosis. During inguinoscrotal exploration severe ischemia or overt necrosis of the testis was found in 5 of 11 cases. Three of these 5 cases were managed by orchiectomy, while in the other 2 cases the testis subsequently vanished. In the 6 patients who exhibited some improvement following detorsion and warming of the tissue the testes were preserved and orchiopexy was performed. Followup was available in only 5 patients, with vanishing of the torsed testis observed in 4 and a normal testicle detected 21 years postoperatively in 1 patient who was diagnosed early. CONCLUSIONS: This series clearly demonstrates poor rates of surgical salvage, which we mainly attribute to delays in parental response and in primary physician referral to the hospital. Parents, who have a pivotal role in early diagnosis, were usually unaware of this urological emergency, and some were surprisingly unaware of the presence of cryptorchidism. By increasing the awareness regarding this entity among members of the medical community and parents, we hope that torsion of the cryptorchid testis (literally, "hidden testis") will no longer necessarily be synonymous with "crypt-torsion" ("hidden torsion").

Adolescent↗

Laparoscopy for the nonpalpable testis.

Between 1988 and 1992, 287 infants and children have been evaluated for an undescended testis. In 35, the testis was not palpable. These 35 patients ranged in age between 10 months and 14 years, with a mean of 44 months and a median of 15 months. Thirteen patients had a nonpalpable right testis, 18 had a nonpalpable left testis, and four had bilateral nonpalpable testes. Diagnostic laparoscopy was performed in these 35 boys with a nonpalpable testis to allow a planned approach to management of this condition. In 11 children, a testis was visualized. The testis was in an inguinal hernia sac in seven, and single stage conventional orchiopexy was performed. In four children an intra-abdominal testis was seen, and three infants underwent laparoscopic clip ligation of the testicular vessels. One teenager underwent orchiectomy. In 21 of the remaining 24 boys, small, attenuated testicular vessels were noted to pass into the inguinal canal and inguinal exploration was required. A small testicular remnant was excised in 15 patients, but orchiopexy was possible in six boys. Diagnostic laparoscopy takes 7 to 10 minutes and enables the surgeon to develop a planned approach to this condition. With the information gathered at laparoscopy, the surgeon is best able to decide if an inguinal exploration is necessary or if a single-stage orchiopexy is possible. If a two-stage orchiopexy is required for an intra-abdominal testis, then clip ligation of the testicular vessels can be performed laparoscopically as the first stage, followed by Fowler-Stephens orchiopexy 6 to 9 months later.

Adolescent↗

Barrier properties of testis microvessels.

The blood-testis barrier is believed to be constituted by tight junctions between Sertoli cells in seminiferous tubules and possibly by myoid cells that encircle these tubules. We now show that testis microvessels are endowed with several markers of barrier properties of brain microvessels, such as the glucose transporter, P-glycoprotein, and gamma-glutamyl transpeptidase. Quantitative EM studies show that the endothelium in testis, as in brain, is continuous and has long junctional profiles and few vesicles. However, a small proportion of testis capillaries have expansions in their junctional clefts suggestive of patent paracellular channels, which may explain their higher permeability. Because barrier features are thought to be induced and/or maintained in brain microvessels by astrocytes, we assessed whether astrocyte-like cells exist in the testis. We found that the intertubular Leydig cells, adjacent to microvessels, express the astrocyte markers: glial fibrillary acidic protein, glutamine synthetase, and S-100 protein. We suggest that the testis endothelium contributes to the blood-testis barrier and that these endothelial barrier features are influenced by Leydig cells. We believe that the endothelial and the epithelial (Sertoli) components of the blood-testis barrier are "in series" and complement each other in achieving a stable milieu for spermatogenesis.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Autoantigenic germ cells exist outside the blood testis barrier.

Preleptotene spermatocytes and spermatogonia are germ cells located outside the blood-testis barrier provided by the Sertoli cells. These cells have been found to express autoantigens accessible to circulating antibodies. Mice immunized with syngeneic testis with or without bacterial adjuvant had detectable IgG on cells at the periphery of seminiferous tubules. Sera from orchiectomized but not from testes-intact mice immunized with testis and adjuvants readily transferred similar IgG deposits to testes of normal recipients. When testis-specific antisera from orchiectomized mice and testis-intact mice were compared for their reactivity on prepuberal testicular cells, serum from orchiectomized donors had significantly higher reactivity. Ig was eluted from IgG-positive testes with acid buffer and was shown to be highly enriched in antibody to prepuberal testicular cells, confirming the Ag-specific nature of the IgG deposits. The testis IgG deposits reacted with antisera to IgG1 and IgG3 but not IgG2a or IgG2b. This finding can explain lack of association of C3 in the deposits. Only 30 to 40% of seminiferous tubules had IgG deposits and they coincided with stages 7 to 12 of the spermatogenic cycle. Thus, the expression of the autoantigens is stage specific. The in situ formation of immune complexes by circulating autoantibodies demonstrates conclusively that testis autoantigens are not completely sequestered, and the blood-testis barrier as an immunologic barrier is incomplete.

Aging↗

Vasculature of the mouse, rat, and rabbit testis-epididymis.

The arrangement of blood vessels serving the testis-epididymis vas investigated microscopically in the mouse, rat, and rabbit. Blood vessels were visualized by infusing liquid silicone rubber into the vessels and subsequently clearing the surrounding tissue. Comprehensive illustrations of the vasculature were prepared from three-dimensional examinations. Arterial and venous vessels serving the testis-epididymis follow similar routes in all three species. However, the arrangements and characteristics of the blood vessels demonstrate dramatic species differences. For example, arteries within the testes have tight coils in the mouse and artery-artery anastomoses in the rat. Veins form vascular pathways that connect the testis and efferent ductules in all three species but also form a connection between the testis and cauda epididymidis in the rabbit only. Testosterone concentrations were determined in blood obtained by micropuncture of selected testis-epididymal veins. The measurements establish that the highest levels of testosterone are found in testicular surface veins. Also, vas deferential veins of the rabbit had significant amounts of testosterone. Studies of the blood-vessel volumes suggested that the volumes of arteries and veins in the testis are similar, whereas venous volumes exceed arterial volumes in all of the other organs examined. The studies provide comprehensive information about the architecture and physiology of blood vessels serving the testis-epididymis in the mouse, rat, and rabbit. Each species exhibits diversity in the vasculature and testosterone content of the veins. Veins connecting the testis to the efferent ductules and cauda epididymidis may provide for the preferential delivery of testicular secretions to androgen-dependent organs before the secretions are metabolized or diluted in the systemic blood.

Animals↗

Differential expression of transforming growth factor-beta in the interstitial tissue of testis during aging.

Transforming growth factor-betas (TGF-betas) have significant effects on testis development. The pattern of TGF-beta expression in aging testis has not been established to date. We examined age-related changes in the expression of TGF-beta and its receptors in the testis using Western blot analysis. TGF-beta1 expression increased continuously in aging rat testis, whereas no age-associated changes were observed for TGF-beta3. Strong expression of TGF-beta2, as well as type I and II receptors was observed in 12-month-old testis, but following this time, expression decreased dramatically. Interestingly, TGF-beta2 and -beta3 displayed strong and similar expression patterns in liver, regardless of age, suggesting that the down-regulation of TGF-beta2 is testis-specific. We observed significant induction of p53 and p21WAF1 in 18-month-old testis that appeared to correspond with aging. Moreover, caloric restriction (CR) prevented age-related decrease in TGF-beta2 expression. Using immunohistochemistry, we showed that all TGF-beta1, -beta2, and -beta3 proteins are expressed primarily in interstitial cells, which are located in the space between adjoining seminiferous tubules. Our data collectively indicate that aging in the testis is regulated by differential expression of TGF-beta proteins, and decreased levels of TGF-beta2 contribute to the aging process.

Aging↗

Tissue specific expression of testis angiotensin converting enzyme is not determined by the -32 nonconsensus TATA motif.

Testis ACE is an isozyme of angiotensin-converting enzyme (ACE) made by male germ cells. These cells recognize a small intragenic promoter which contains a positive regulatory element, TCTTAT, at position -32. A probe containing this element was gel shifted to an identical location by rat testis and rat liver nuclear extracts; formation of the complex was blocked by anti-TATA binding protein antibody. Recombinant TATA binding protein recognized the testis ACE TCTTAT motif as well as a probe containing the consensus TATA motif. Mice transgenic for testis ACE promoter constructs containing either the wild type testis ACE motif or a consensus TATA sequence expressed a reporter gene at high levels only within the testis. These data suggest that the testis ACE motif TCTTAT is a non-consensus TATA, but is not responsible for the highly restricted pattern of testis ACE gene expression.

Animals↗

Testis fascin (FSCN3): a novel paralog of the actin-bundling protein fascin expressed specifically in the elongate spermatid head.

During spermiogenesis, significant morphological changes occur as round spermatids are remodeled into the fusiform shape of mature spermatozoa. These changes are correlated with a reorganization of microfilaments and microtubules in the head and tail regions of elongating spermatids. There is also altered expression of specialized actin- and tubulin-associated proteins. We report the characterization of a novel, spermatid-specific murine paralog of the actin-bundling protein fascin (FSCN1); this paralog is designated testis fascin or FSCN3. Testis fascin is distantly related to fascins but retains its primary sequence organization. cDNA clones of mouse testis fascin predict a 498 amino acid protein of molecular mass 56 kD that shares 29% identity with mouse fascin. Mapping of murine and human FSCN3 genes shows localization to the 7q31.3 chromosome. Northern analysis indicates that FSCN3 expression is highly specific to testis and that in situ hybridization further restricts expression to elongating spermatids. Antibodies raised against recombinant FSCN3 protein identify a band at 56 kD in testis, epididymis, and epididymal spermatozoa, suggesting that testis fascin persists in mature spermatozoa. In accord with the in situ hybridization results, immunofluorescent microscopy localizes testis fascin protein to areas of the anterior spermatid head that match known distributions of F-actin in the dorsal and ventral subacrosomal spaces. It is possible that testis fascin may function in the terminal elongation of the spermatid head and in microfilament rearrangements that accompany fertilization.

Amino Acid Sequence↗

[Diagnosis of non-palpable testis in childhood: laparoscopy or magnetic resonance tomography?].

Laparoscopy and magnetic resonance imaging (MRI) are competetive tools in the diagnostic of non-palpable testis. Advantages and disadvantages of this methods will be demonstrate. 29 boys investigated for this indication with MRI. In case MRI failed to locate the testis laparoscopy was performed with a new miniaturized set of pediatric instruments (1.9 mm optic). The aim of laparoscopy was the identification of the spermatic duct and vessels and their topographic relation to the internal inguinal ring. All findings were verified by open surgical procedures. MRI revealed 10 inguinal and 7 abdominal testis. There was no false positive finding. In 12 boys MRI showed no testis. 4 cases were correct negative, 8 cases were false negative (32%). In these 8 MRI-negative patients laparoscopy revealed 7 inguinal and 1 abdominal testis. The optical quality of the mini-telescope was sufficient for a 100% correct diagnosis. Laparoscopy related complications did not occur. Laparoscopy proved to be a powerful low risk diagnostic method in non-palpable testis with high sensitivity and specifity (100% correct positive, 0% false negative). Therefore lapraroscopy is recommended as primary diagnostic access for this indication. In the same anesthesia a optimal therapy is possible. Nevertheless a positive MRI-finding locates the testis reliably, whereas a negative finding always needs further exploration because testis might have been missed.

Adolescent↗

Morphogenesis of the bovine rete testis: the intratesticular rete and its connection to the seminiferous tubules.

The development of the intragonadal rete testis and the establishment of the connection between seminiferous and straight testicular tubules was studied using ultrastructural and histochemical methods in 60 bovine embryos and fetuses ranging from day 39 through day 225 post conceptionem. The methodology included a modified acetylcholinesterase (AChE) reaction as a selective marker for pre-Sertoli cells and a modified microsomal aminopeptidase (MAP) reaction as a selective marker for the epithelia of rete testis and straight testicular tubules. Between 40 and 45 days, the rete testis is predominantly an extratesticular rete situated in the cranial peduncle of the gonadal fold and in broad contact with the pro/mesonephric giant corpuscle. During this period, the intragonadal rete enters the gonad proper from its craniodorsal pole and extends into the cranial fourth of the testis. Between 60 and 110 days the rete testis attains its definitive position, extending into the central longitudinal axis as far as to the caudal fourth of the testis. For the caudal expansion of the rete testis the preceding proliferation of the mediastinal stroma is an important prerequisite. In the 40 to 45-day-old embryo the area of the testicular cords may be divided into two zones. A narrow outer zone contains plate-like cords with a thick diameter, and a larger central zone is filled with a network of thinner cords. Only the thick outer cords transform into the permanent seminiferous tubules, whereas the thinner cords in the central zone are transitory structures that disappear between 45 and 110 days. One important function of these transitory cords is to establish a continuous system of basal laminae that allows a direct connection between the central ends of the growing seminiferous tubules and the peripheral extensions of the rete testis (future straight testicular tubules). The first true straight testicular tubules become visible between 85 and 110 days. Due to a strong proliferation of the tubulus rectus-cells the straight testicular tubules elongate continuously, and the border between the rete system and the seminiferous tubules is slowly shifted towards the testicular periphery. This shift is not restricted to the prenatal period, but proceeds until after birth. At the cytological level, the formation and elongation of the straight testicular tubules is effected by proliferating cells that advance along the continuous basal lamina into the area of the seminiferous tubules. The pre-Sertoli and germ cells in this zone of invasion are separated from each other and overgrown by the tubulus rectus-cells. Exposed to the special milieu of the straight testicular tubules, pre-Sertoli and germ cells apparently cannot survive and finally disappear.

Acetylcholinesterase↗