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Developmental expression of the Yf subunit of glutathione S-transferase P in epithelial cells of the testis, efferent ducts, and epididymis of the rat.

BACKGROUND: Glutathione S-transferases (GSTs) are a family of isozymes that catalyze the conjugation of the tripeptide, glutathione, to various electrophilic compounds. The major GST in the pi class is GST-P, a homodimer of the Yf subunit, also known as Yp or rat subunit 7. This subunit is found in high concentrations in the epididymis and has recently been immunolocalized within epithelial principal and basal cells of the epididymis. METHODS: In the present study we examine in groups of animals fixed in Bouin's fixative for light microscopy and in 4% paraformaldehyde and 0.5% glutaraldehyde in phosphate buffer for electron microscopy, the pattern of immunostaining for the Yf subunit of GST-P in the testis, efferent ducts and epididymis at various ages after birth. RESULTS: In the epididymis, on postnatal days 7 and 15, an immunoperoxidase reaction was localized exclusively to the apical and supranuclear regions of the undifferentiated columnar epithelial cells of the entire epididymis. By day 21, a dramatic change had taken place. In the initial segment, intermediate zone and proximal caput epididymidis, the columnar cells showed a distinct checkerboard-like staining pattern with cells ranging from being intensely reactive to unreactive. In contrast, principal cells of the distal caput, corpus, and proximal cauda epididymidis were weakly reactive. By day 28 the ratio of reactive to unreactive cells in the initial segment, intermediate zone, and proximal caput epididymidis was higher. By day 39, the differentiated columnar epithelial cells, referred to as principal cells, took on their adult staining pattern in the proximal and middle areas of the initial segment as well as the corpus and proximal cauda epididymidis where they were slightly reactive; in the distal initial segment they were strongly reactive. At day 49, principal cells in the intermediate zone and proximal caput became intensely reactive, while showing a distinct checkerboard-like staining pattern in the distal caput; similar observations were made for tissues taken from 56 and 90-day-old animals. Basal cells also showed a variable staining pattern in the different epididymal regions as a function of age. At day 21, when they first appeared, they were unreactive except for an occasional reactive cell in the corpus region. At day 28, only in the corpus epididymidis were many basal cells seen to be reactive. By day 39 the more numerous basal cells of the corpus and proximal cauda epididymidis were intensely reactive and remained so into adulthood. In these regions, basal cells appeared as dome-shaped cells (days 21, 28, 39), but then gradually flattened out and exhibited processes (days, 49, 56, adults) which collectively appeared to envelop the base of each tubule in a mesh-like network. The change in basal cell shape in each region coincided with the arrival of fluid and spermatozoa into the lumen (corpus day 49, proximal cauda day 56). In other epididymal regions, basal cells at day 28 were mostly unreactive. However, there was a gradual increase in the number of reactive basal cells of these regions between day 39 and 56. CONCLUSIONS: The present results thus demonstrate a dramatic change in the immunostaining pattern for the Yf subunit of GST-P during postnatal development for both principal and basal cells along the epididymis. Such results suggest that different factors play a role in the regulation of the expression of the Yf protein, not only in different epididymal regions, but also in different cell types during postnatal development.

Animals↗

Reexamination of the morphology of the extratesticular rete and ductuli efferentes in the goat.

The morphology of the extratesticular rete and ductuli efferentes was reexamined in serial cross sections collected from the entire mass of the efferent ductules and in longitudinal sections collected from the partially unraveled efferent ductules. The extratesticular rete forms a 3-4-mm-long sac-like dilatation, which, within the head of the epididymis, has a wide lumen (up to 4 mm) and gives off along its length numerous evaginations, which, in turn, make connections with the ductuli efferentes. The latter is a mass of 16-18 ductules lined by three types of nonciliated cells: type II cells are characterized by dense, periodic acid-Schiff (PAS)-positive granules; type III cells are characterized by empty-appearing, PAS-negative vacuoles; and type I cells lack both granules and vacuoles. The distribution of the three types of nonciliated cells varies along the length. Whereas only type I cells are present in the beginning portion of the efferent ductule, type II cells predominate in the middle portion and type III cells in the distal portion (near the epididymis). The transition from one cell type to the other type is gradual; thus there are short segments along the length that share characteristics first for type I and type II cells and then for type II and type III cells. These results demonstrate that different nonciliated cell types are not randomly distributed in the epithelium of the ductuli efferentes but, instead, gradually differentiate from type I to type II to type III cells along the length of each efferent ductule. Factors controlling this differentiation remain to be studied.

Animals↗

Novel action of carnitine: inhibition of aggregation of dispersed cells elicited by clusterin in vitro.

A novel effect of carnitine and O-acylcarnitine derivatives has been described. The presence of these compounds has been shown to inhibit the aggregation of erythrocytes otherwise elicited by the addition of clusterin or fetuin. The specificity of carnitine action has been investigated by comparing influences of chemically related compounds. The concentrations required for inhibition by approximately 50% of aggregation of erythrocytes by clusterin under in vitro conditions defined were determined to be 1.5 mM for L(-) or D(+) enantiomers of carnitine; 0.5 mM for decanoyl(-)- or (+)-carnitine; 0.13 mM for lauroyl(-)- or (+)-carnitine, and 0.05 mM for myristoyl(-)- or (+)-carnitine. In contrast, concentrations up to 12.5 mM of dimethylcarnitine, deoxycarnitine, acetylcholine, acetyl-beta-methylcholine, or inositol had no detectable inhibitory effect on aggregation elicited by clusterin. Clusterin addition also resulted in the aggregation of three other cell types examined (guinea pig spermatozoa, a cell line derived from testes of neonatal mice called TM4 cells, and Sertoli cells from testes of 20 day-old rats). As in the case with erythrocytes, the presence of carnitine inhibited aggregation of spermatozoa, TM4 cells, and Sertoli cells in suspension. We consider possible mechanisms by which carnitine inhibits aggregation of erythrocytes and other populations of dispersed cells incubated in the presence of clusterin.

Animals↗

Capacity of rete testicular and cauda epididymal boar spermatozoa to undergo the acrosome reaction and subsequent fusion with egg plasma membrane.

The capacity to undergo the acrosome reaction and subsequent fusion with egg plasma membrane was examined in rete testicular and cauda epididymal spermatozoa from boars. Sperm penetration assay using zona-free hamster eggs demonstrated that the penetration rates for rete testicular spermatozoa preincubated for induction of the acrosome reaction for 2 and 3 h were 55% and 97%, respectively. However, most of the eggs (93%) were penetrated with polyspermy by cauda epididymal cells preincubated for 2 h. Results obtained by the triple-stain technique revealed the percentages of acrosome-reacted spermatozoa in the rete testicular and cauda epididymal samples preincubated for 3 h to be 61% and 74%, respectively. These results indicate that many rete testicular spermatozoa possess the capacity to undergo the acrosome reaction and subsequent fusion with egg plasma membrane in vitro, which appears to be completely established only after sperm transit through at least the proximal part of the epididymis.

Acrosome↗

Cells positive for microtubule-associated protein 1B (MAP 1B) are present along rat and human efferent ductules and epididymis.

Microtubule-associated protein 1B (MAP 1B) is a neuronal cytoskeleton marker with predominant expression in the developing nervous system. The present study provides evidence for the expression of this cytoskeleton protein in non-neuronal and neuronal cells along rat and human efferent ductules and epididymis (initial segment, caput, and cauda). Reverse transcription/polymerase chain reaction and Western blot analysis were used to confirm the presence of MAP 1B (mRNA and protein) in rat tissues. Immunohistochemical studies revealed MAP-1B-positive staining in columnar ciliated cells present in efferent ductules and in narrow cells located in the initial segment, in both rat and human. MAP-1B-positive basal cells, located underneath the columnar cells, were only identified in the initial segment and caput epididymidis of the rat. Qualitative analysis of tissues from 40-day-old and 120-day-old rats indicated that the number of MAP-1B-positive ciliated, narrow, and basal cells per tubule increased with sexual maturation. These immunoreactive cells did not stain for dopamine beta-hydroxylase or acetylcholinesterase, indicating that they were not adrenergic or cholinergic in nature. Immunohistochemical studies also revealed the presence of MAP-1B-positive staining in interstitial nerve fibers in caput and cauda epididymidis from both rat and human. Thus, the expression of MAP 1B is not confined to a specific cell type in rat and human efferent ductules and epididymis. The functional significance of this cytoskeleton protein in tissues from the male reproductive tract requires further investigation.

Animals↗

Simultaneous ultramicroanalysis of both 17-keto-and 17beta-hydroxy androgens in biological fluids.

Sensitive methods for quantifying androgens were lacking. Therefore, a relatively simple procedure for separating steroids was combined with highly specific assay methods so that eight androgens could be measured with high accuracy, precision and sensitivity. Semi-automated separations on Sephadex LH-20 columns used heptane:methylene chloride:ethanol:water (50:50:1:0.12) and a flow rate of 17.0 min/ml. The six peaks eluted contained androstenedine; androsterone, epiandrosterone and dihydrotestosterone; testosterone and dehydroepiandrosterone; 3alpha-androstanediol; 3beta-androstanediol; and androstenediol. Androstenedione, dehydroepiandrosterone and androstenediol were quantified using specific antisera (sensitivity less than or equal to 75 pg). Testosterone and dihydrotestosterone were measured by competitive protein-binding assays using rabbit TeBG (sensitivity less than or equal to 150 pg). 3alpha- and 3beta-androstanediol were similarly assayed using human TeBG (sensitivity approximately 150 pg). Androsterone was reduced with NaBH4 and the resulting 3alpha-androstanediol was assayed using human TeBG (sensitivity approximately 200 pg). Inter- and intra-assay variations were less than 10% for radioimmunoassays and less than 16% for competitive protein-binding assays over the entire dose response curve.

Androgens↗

Cytotoxic phenotype of intra-epithelial lymphocytes in normal and cryptorchid human testicular excurrent ducts.

BACKGROUND: Most testicular and epididymal lymphocytes express T-cell markers, but their cytotoxic potential and activation status have not been reported. In this study, distribution of the cytotoxic cells was compared between normal and cryptorchid testes stratified into two groups: the first with complete absence of germ cells [Sertoli cell-only (SCO)] and the second with arrested spermatogenesis (SCA). METHODS: Immunohistochemistry for the T-lymphocyte marker CD3 and cytotoxic markers CD8, TIA-1 and granzyme B was performed on paraffin-embedded sections. RESULTS: The number of CD8+ and CD3+ intra-epithelial lymphocytes (IELs) increased distally throughout the normal epididymis. TIA-1 immunostaining revealed that a significant proportion of IELs exhibited cytotoxic potential, whereas granzyme B staining disclosed a subpopulation of activated cytotoxic lymphocytes (CTLs). TIA-1/CD8 and granzyme B/CD8 double immunostaining revealed that the vast majority of TIA-1+ and granzyme B+ cells were CD8+. The proportion of activated granzyme B+ lymphocytes increased distally throughout the normal epididymis. The number of TIA-1+ and granzyme B+ intra-epithelial and stromal lymphocytes was significantly increased in the normal as opposed to the SCO cryptorchid epididymis and proximal vas deferens. CONCLUSIONS: These results suggest that exposure of the testicular excurrent ducts to spermatozoa or immature germ cells triggers the activation and recruitment of CTLs. Cytotoxic granule effector mechanisms may contribute to the immunological barrier preventing the immune response to spermatozoa in testicular ducts.

Adolescent↗

Androgen receptor and 5 alpha-reductase activity in the ductuli efferentes and epididymis of adult rhesus macaques.

We measured androgen receptors (AR) and 5 alpha-reductase activity (5 alpha RA) in the ductuli efferentes and epididymides from adult rhesus macaques. Tissue samples were either assayed biochemically for AR or stained immunocytochemically (ICC) with a monoclonal antibody against AR. To estimate 5 alpha RA, tissue microsomes were incubated with [1 alpha,2 alpha-3H]testosterone, and the [3H]dihydrotestosterone formed was quantified. We found significant regional differences in the levels of both 5 alpha RA and AR in the excurrent ducts. In general, both enzyme activity and AR levels were higher in the caput and corpus epididymis than in ductuli efferentes and cauda epididymis. With ICC, positive nuclear AR staining was detected in all epithelial cell types, whereas variable numbers of stromal cells were positively stained. Our data demonstrate that there are segmental differences in the concentrations of 5 alpha RA and AR in epididymis and suggest that there may be regional differences in the regulation of epididymal functions by androgen.

Animals↗

Morphology and innervation pattern of the feline urogenital junction.

The feline urogenital junction is situated between the extratesticular rete and the spacious initial segments of the efferent ductules. The rete epithelium is cuboidal to low columnar. The rete cells forming the junction rest on a wavy basal lamina, display deep mutual invaginations, possess central nuclei with several infoldings and form a distinct border with the columnar epithelial cells of the initial segments of the ductuli efferentes. The epithelium of the initial segments is composed of ciliated cells and non-ciliated principal cells. The latter are the dominating type and characterized by an apical brush-border and a supranuclear endocytotic apparatus. The stroma of the extratesticular rete contains an abundance of collagen whereas contractile cells are here generally absent. In contrast, the initial segments of the efferent ductules are surrounded by elastic fibres and a layer of contractile cells. All nerves for the feline urogenital junction come from the nervus spermaticus superior. In the epididymal head, small nerve bundles deviate into the septa between the ductules. Single fibres establish a dense network within the muscular coat of the ductuli. At the transition to the extratesticular rete, this network ends abruptly. Nerve fibres in the confines of the rete are associated with blood vessels or proceed to the testicular interior, but establish no relationships with the rete epithelium or the myofibroblasts of the mediastinum. The nervous network in the walls of the efferent ductules and their initial segments is not only composed of sympathetic but also parasympathetic, non-myelinated fibres. Particularly noteworthy is the abundance of calcitonin gene-related peptide (CGRP)- and substance P (SP)-containing axons around the initial segments. Both neuroproteins are consistent markers for sensory neurones. Taken together, it can be assumed that the entry of seminal fluid and spermatozoa into the efferent ductules is controlled by a regulatory nervous chain provided with afferent and efferent components.

Animals↗