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Formation of dopamine and noradrenaline in rat vas deferens: comparison with guinea-pig vas deferens.

1 The formation of [14C]-3,4-dihydroxyphenylalanine (DOPA) from [14C]-tyrosine, in the presence of the amino acid decarboxylase inhibitor, brocresine (3-hydroxy-4-bromobenzyloxyamine dihydrogen phosphate), was greatly enhanced in rat vasa deferentia depolarized by a KCl-enriched Krebs-Henseleit solution (52 mM KCl) compared with tissues maintained in unmodified Krebs-Henseleit solution. 2 When the conversion of tyrosine was allowed to proceed as far as catecholamine (brocresine absent) no significant difference was observed between the accumulation of [14C]-catecholamines (CA) in depolarized rat vasa deferentia and the accumulation in control (non-depolarized) tissues. 3 Endogenous CA levels in the depolarized rat vasa deferentia fell to 67% of the controls after a 1 h incubation period and to 53% at the end of 2 hours. 4 Chromatographic separation on Amberlite CG-120 columns of the newly synthesized CA and catechol metabolites from the rat vas deferens revealed that a very high proportion was present as dopamine. The percentage distribution after 1 h incubation in control Krebs-Henseleit was: noradrenaline (NA): 30.6 +/- 5.2; dopamine 56.9 +/- 5.9; acid metabolites: 12.8 +/- 1.1; and in KCl-rich Krebs-Henseleit, NA: 32; dopamine: 44.7 and acid metabolites 23.3. In contrast to the newly synthesized (14C-labelled) CA, endogenous dopamine comprises only 10% of the endogenous CA stores in rat vas deferens. 5 The distribution of newly synthesized NA and dopamine in rat vas deferens is strikingly different from that of guinea-pig vas deferens where more than 80% of newly formed amine is present as NA. In the latter tissue depolarization with K+ causes a striking increase in CA biosynthesis.

Animals

Adrenergic contribution to the motor transmission in the dog vas deferens.

Isolated vas deferens preparations from 9 dogs were subjected to electrical stimulation and chemical excitation under physiological conditions. The experimental smooth muscle cylinders were confined to the terminal 3 cm portions of either the distal 'urethral' segment or the proximal 'epididymal' segment. Intermittent field stimulation, at 60 sec intervals, was provided by a stimulator of low output impedance under constant parameters of frequency and voltage and an occasionally varied pulse width. Results from this examination completely confirmed the following: (i) a high degree of contractile sensitivity to minute doses of noradrenaline (0.03--0.03 micron; 10(-8)-10(-7) g/ml) and tyramine 0.58 micron (10(-7) g/ml; (ii) an apparent ease and rapidity of extinguishing the electrically-induced twitches by either small doses of phentolamine 0.25 micron (10(-7) g/ml) or phenoxybenzamine 5.8 micron (2 x 10(-6) g/ml); (iii) a complete absence of any inhibitory action by tyramine or noradrenaline on the electrically-induced twitches. The behavior of this motor transmission of the longitudinal muscle of the vas deferens to classical alpha-adrenoceptor blocking agents and the intense susceptibility to the motor actions of the putative neurotransmitter clearly fit in with a picture of an adrenergic implication in this mode of transmission.

Adrenergic alpha-Antagonists

Evidence for a strong non-adrenergic component in the motor transmission to the rabbit vas deferens.

Isolated vas deferens preparations from 16 rabbits of the New Zealand white strain were subjected to electrical and chemical excitability under physiological conditions and under the influence of drugs. Such smooth muscle fibres were strictly confined to the terminal 3 cm. segments of the distal 'urethral' portions of the vasa deferentia. Intermittent field stimulation, at 60 second intervals, was provided by a stimulator of low output impedance under constant parameters of voltage, pulse width and frequency. Results from this investigation revealed the undermentioned anomalous but distinct findings viz: (a) the presence of a minor adrenergic component which disappeared in phentolamine but remained unaffected by prolonged exposures to phenoxybenzamine; (b) the presence of a predominantly non-adrenergic component which was totally refractory to phenoxybenzamine but suffered a weak diminution in phentolamine; and (c) the picture of a phentolamine-insensitive but twitch-inhibiting effect shared by both tyramine and noradrenaline. Rabbit vasa consistently displayed a remarkable insensitivity to the motor effects of submicromolar concentrations of the putative neurotransmitter substance i.e. noradrenaline. The indirect sympathomimetic agent, tyramine failed to elicit any contractions when employed in doses as massive as 290 micrometers. i.e. 5 x 10(-5) g/ml, except in 2 out of 14 trials when a weak phentolamine-susceptible bursts of single contractions were produced. Thus, the adrenoceptors involved in the mediation of the twitch-inhibiting effects, appear not to behave towards conventional adrenoceptor antagonists in the classified manner. It seems appropriate therefore to invoke an unknown neurotransmitter for the non-adrenergic component in this motor transmission.

Adrenergic alpha-Antagonists

Quantitative age related histologic changes in the human vas deferens.

Sections of vas deferens from 50 men between 27 and 82 years of age were examined histologically for evidence of changes in muscle area and for changes in per cent of the cross-sectional area of the vas deferens that was occupied by muscle and connective tissue as a function of age. No variation in quantitative measurement of muscle or connective tissue could be correlated with age but a diffuse increase in unmeasurable amounts of connective tissue was seen with increasing age.

Adult

Some properties of the smooth muscle of mouse vas deferens.

1. Contractions of the mouse vas deferens in response to electrical stimulation differ form those recorded form the guinea-pig vas deferens in that they are abolished by tetrodotoxin. 2. Changes in membrane potentials were recorded form the smooth muscle of both preparations in response to stimulation with current pulses applied by an intracellular electrode and by alrge extracellular plate electrodes. 3. Both preparations behaved similarly in response to intracellular stimulation. Electrotonic potentials in response to extracellular current pulses spread in a longitudinal direction in the guinea-pig vas deferens in accordance with the cable-like properties of this preparation. In contrast, no longitudinal spread of eletrotonus was observed in the mouse vas deferens. 4. Responses to nerve stimulation differed in the two preparations. In the guinea-pig, single stimuli caused excitatory junction potentials (e.j.p.s) which gave rise to action potentials. Some cells from the mouse vas deferens showed similar e.j.p.s and action potentials, although the threshold for the initiation of action potentials was lower and more variable. 5. The majority of cells in the mouse vas deferens failed to show action potentials in response to a single stimuli even though the amplitude of e.j.p.s was from 35 to 40 mV. This was probably due to the large resting membrane potentials of these cells, as all-or-nothing action potentials could be evoked if successive e.j.p.s were allowed to sum with each other or if a depolarizing current pulse was applied at the peak of an e.j.p. 6. The nature of the response to nerve stimulation recorded from differnt cells in the mouse vas deferens could be correlated with the amplitude and time course of the response of the same cell to intracellular stimulation. 7. It is concluded that individual smooth muscle cells in both preparations are probably coupled electrically but that there are few, if any, low resistance pathways in the longitudinal direction in the mouse vas deferens.

Action Potentials

Enhancement by elevated external potassium of the maximal responses to acetylcholine and norepinephrine in the rat vas deferens.

In the rat vas deferens, the maximal response to acetylcholine increased almost linearly as a function of external potassium concentration, [K+]0. The magnitudes of the maximal responses in 10, 15 and 20 mM [K+]0 were 128, 155 and 184% of the maximal response in 6 mM [K+]0, respectively. The response to carbachol also increased in 20 mM [K+]0 to almost the same extent. The enhancement of the norepinephrine response was observed only in 20 mM [K+]0; its magnitude was only 125%. The increase in [K+]0 from 6 to 20 mM did not affect the sensitivity (expressed as the geometric mean ED50) either to norepinephrine or to acetylcholine. Denervation of the postganglionic nerves to the vas deferens did not affect the enhancement of the maximal responses in 20 mM [K+]0, indicating that the release of neuronal transmitters may not be involved.

Acetylcholine

Metabolism of sex steroids in the human and canine vas deferens.

The contribution of the vas deferens to the metabolism of steroids was investigated in the human and in the dog by perfusion experiments and in vitro incubation. Perfusion of testosterone or androstenedione through the canine vas deferens resulted in the formation of dihydrotestosterone; no significant formation of estrogens could be detected. When dihydrotestosterone was perfused, 3alpha- and 3beta-androstanediols were isolated. In vitro incubation experiments with human was deferencs have shown an active metabolism of androgens by this time and, therefore, confer a new role to the vas deferens in the male.

Androgens

On the transportation of spermatozoa in the vas deferens.

In this report the intraluminal pressure of the vas deferens was measured in vivo in male cross-bred dogs. The measurement of the pressure elucidated that the vas deferens repeated autonomic contraction. This contraction was not the so-called peristalsis but the entire portion of the vas deferens contracted simultaneously. Stimulation of the hypogastric nerves resulted in a prominent elevation of the pressure in the proximal portion of the vas deferens, i.e., the portion approximate to the epididymis, followed 5-10 seconds later by a rise in the distal portion, i.e., the portion approximate to the prostate. These results suggest that the spermatozoa present near the proximal end of the vas deferens are transported littly by little by the autonomic movements of the vas deferens and that on ejaculation the spermatozoa are pressed forward from the proximal end of the vas deferens to its peripheral end by the stimuli through the hypogastric nerves.

Animals

Morphologic variations along the length of the monkey vas deferens.

Gross and microscopic morphology of the vas deferens of sexually mature macaque monkeys were studied with special reference to the changes and modifications occurring throughout its entire length. The vas deferens was subdivided into four regional segments designated proximal, middle, distal, and ampulla. Each segment showed morphologic variations and it seemed to correspond roughly to the region located in a different part of the body which it traverses. The longitudinal folds of the epithelium are simple in the proximal region but gradually become more complex towards the distal region. In the ampulla, they often branch and form crypts. Stereocilia of epithelial cells are taller and more uniform in the proximal portion in comparison with the short, irregular stereocilia found in the more distal segment of the vas deferens. The luminal epithelial cells of the proximal part apparently have no granules or cytoplasmic blebbings, while the principal cells in the distal portion contain large numbers of cytoplasmic granules and apical blebs. Cells in the middle segments possess cytological features intermediate to the proximal and distal regions. These structural variations along the length of the vas deferens sug gest that this segment of the excurrent duct of the testis performs functions other than just as a passageway for spermatozoa.

Animals

Further evidence for adrenergic transmission in the human vas deferens.

1. Isolated portions of human vas deferens responded to field stimulation of the intramural nerve fibres or to exogenously applied noradrenaline with rhythmical contractions of both longitudinal and circular muscle layers. 2. In guinea-pig and rabbit vas deferens field stimulation produced an initial rapid 'twitch' response which was not found with human vasa. 3. Responses of the human vas to field stimulation were depressed by the alpha-adrenoceptor blocking agents phentolamine and yohimbine. 4. It is concluded that the motor innervation of the human vas deferens is adrenergic and the relevance of this to the physiological operation of the tissue is discussed.

Adrenergic Fibers

The correlation between spontaneous contractions and postjunctional supersensitivity of the smooth muscle of the rat vas deferens.

Chronic postganglionic denervation of the rate vas deferens produces an increase in the sensitivity of the in vitro smooth muscle to norepinephrine, methoxamine, acetylcholine, potassium and electrical stimulation. The maximal contractile response to norepinephrine and acetylcholine is increased but the maximal response to potassium or electrical stimulation is not affected. In addition, the vas deferens becomes spontaneously active after denervation. The spontaneous contractions are not prevented by tetrodotoxin, phentolamine or atropine. The appearance and magnitude of the spontaneous contractions are temporally correlated with the development of postjunctional supersensitivity. At a given time after denervation there is a significant correlation between the magnitude of the spontaneous contractions and the sensitivity to norepinephrine, i.e., the sensitivity to norepinephrine being greatest in those tissues with the largest spontaneous contractions. There is an inverse relationship between the magnitude of the spontaneous contractions and the endogenous norepinephrine concentration. Pretreatment of rats with reserpine (1. 0 mg/kg/day for 5-7 days) results in supersensitivity of the vas deferens ,o norepinephrine and acetylcholine. Those tissues obtained from reserpine-pretreated rats which are supersensitive are also spontaneously active. It is concluded that the -ppearance of spontaneous contractions in the rat vas deferens is an index of postjunctional supersensitivity.

Acetylcholine

The effects of denervation, cocaine, 6-hydroxydopamine and reserpine on the characteristics of drug-induced contractions of the depolarized smooth muscle of the rat and guinea-pig vas deferens.

Previous studies have suggested that postjunctional supersensitivity of the vas deferens is due in part to altered electrophysiological properties, the sensitivity of the muscle being increased to any agonist which initiates contraction by means of depolarizing the cell membrane. Results of the present study indicate that altered electrical properties are not the only postjunctional changes which can account for the enhanced response. Dose-response curves for stimulant agonists were obtained in isolated vasa deferentia which were depolarized by a K-rich, Na-free solution. Chronic denervation resulted in a 2- to 3-fold displacement of the dose-response curve for norepinephrine to the left of control. Cocaine (10-(5)M) did not potentiate the response to norepinephrine of the innervated, depolarized smooth muscle. Supporting the contention that the supersensitivity of the depolarized tissue is postjunctional in nature was the finding that the denervated vas deferens was supersensitive to methoxamine, an agent which is not taken up by the neuronal amine transport system. Pretreatment of rats with reserpine (1.0 mg/kg/day for 5-7 days) also produced supersensitivity of the depolarized vas deferens. The increased maximal response to drugs of the denervated rat vas deferens which is observed in normally polarized tissues is absent in depolarized tissues suggesting that the phenomenon of increased maximum requires the existence of a membrane potential in order to be manifest. The denervated vas deferens, but not the vas deferens from reserpine-pretreated animals, exhibits an increase in the duration of drug-induced contractions. This effect occurs in both normal and depolarizing salt solutions suggesting that the change which leads to this phenomenon differs from those alterations which lead to postjunctional supersensitivity and to the enhanced maximal response.

Animals

A prosthetic vas deferens.

Six dogs were implanted with the synthetic vas deferens device as part of our continuing research into the development of a reversible occlusive device for implant in the transected vas deferens. The experimental objectives were to assess the effects of sperm path length and duration of aspermia on total sperm count and motility by implanting three different lengths of the device in animals with different degrees of aspermic duration induced by bilateral vasectomy. Device lengths varied from 1.55 cm to 4.3 cm including the pilot tubes. The prosthesis is fabricated entirely of silicone rubber with Dacron velour tissue ingrowth material bonded to the outside surface of the ring to which vas ends are sutured. The pilot tubes extend 4 mm beyond the suture rings and are 0.6 mm OD with a 0.3 mm ID that extends through the entire length of the device. The flexible pilot tubes are an important feature of this design and insert into the vas lumen ensuring alignment between the device and the vas deferens while maintaining the necessary resiliency to adapt to the inherent movements of the vas without perforation. All animals included in these experiments were carefully selected and conditioned before implant. The evaluation of performance was based on semen samples collected at one week intervals. Sperm subsequently appeared in the ejaculate of all 6 dogs, demonstrating that the restoration of sperm transport can be restored after bilateral vasectomy through the implantation of a prosthetic vas deferens. The potential application of this device to the human male for the restoration of fertility appears excellent.

Animals

Postjunctional supersensitivity of the rat vas deferens and gap junctions.

Tissues from the duodenum and vas deferens of Sprague-Dawley rats were examined of the rat vas deferens and gap junctions. Can. J. Physiol. Pharmacol. 54, 412-416. by electron microscopy after glutaraldehyde fixation and postosmication. Gap junctions (nexuses) were readily demonstrated in the duodenum in both control and reserpine treated animals (1.0 mg/kg per day for 7 days). Honever, gap junctions could not be demonstrated in vas deferens. It is concluded that the postjunctional supersensitivity and spontaneous activity induced by reserpine in vas deferens, does not result from the formation of gap junctions.

Animals

[Influence of denervation on metabolism of phospholipid in the rat vas deferens].

Influence of denervation on phospholipid metabolism in the vas deferens and effect of phospholipase C treatment on sensitivity of the vas deferens for noradrenaline were studied. The incorporation of 32P-orthophosphate into phosphatidylethanolamine and phosphatidylcholine was markedly increased by denervation. Incorporation of 32P-orthophosphate into proteolipid was accelerated more than that of 3H-leucine. Sensitivity of the denervated vas deferens for noradrenaline was strongly reduced by phospholipase C treatment. These data suggest that the supersensitivity of the denervated vas deferens for noradrenaline was mainly due to the increase in phospholipids.

Animals

Fine structural studies of the rat vas deferens.

A fine structural study of the normal rat vas deferens was undertaken utilizing perfusion fixation. Morphological features not previously appreciated were revealed using this technique of fixation, and included the following. The rat vas deferens exhibited a gross morphological and microscopic differentiation along its length: A proximal segment was characterized by a thin muscular wall, an epithelium of low height (comparable to that of the cauda epididymidis) and a distended lumen typically filled with an accumulation of sperm; a distal segment exhibited a thick muscular wall, a convoluted mucosa, and a pseudostratified columnar epithelium with long stereocilia extending into the lumen. The transition from the morphology typical of the proximal segment to that of the distal segment was gradual and progressive, marked by an increase in the mass of the muscular wall and in the height and ultrastructural complexity of the epithelium. Clear or "foamy" cells, characteristic of the cauda epididymidis, were observed in the initial centimeter of the vas deferens. Also, a cell type designated as "mitochondrion-rich" was observed in the distal vas segment. The structure of the small mitochondria in such cells, however, did not conform to the description of mitochondria in similar cells found in the human (Hoffer, '76). Intraepithelial macrophages containing residual accumulations which often resembled spermatozoan remnants in advanced stages of dissolution were present in all segments of the rat vas deferens, confirming in this species a spermiophagic role for such cells.

Animals

Zinc and copper content in rat epididymis and vas deferens.

The zinc and copper content in the different epididymal segments and vas deferens of castrated rats were investigated with the help of atomic absorption spectrophotometer. The vas deferens showed maximum zinc content as compared to that of different parts of epididymis in all groups whether castrated unilaterally, bilaterally or in the intact control. Zinc content was reduced in the epididymis and vas deferens ipsilateral to the castrated side as compared to that of contralateral control and intake animals. Lowest zinc content was observed in the epididymis and vas deferens of bilaterally castrated animals from that of other groups. Absence of sperms was observed in all segments of epididymis and vas in bilaterally castrated animals and from the unilaterally castrated side. Copper content was unaltered in all epididymal segments and vas deferens. There appears to be a correlation between the absence of sperms in the male genital tract and the decrease in zinc content.

Animals

Transverse testicular ectopia with fused vas deferens: A systematic review.

BACKGROUND: Transverse testicular ectopia (TTE) with fused vas deferens is an extremely rare anomaly, often diagnosed intraoperatively. Current TTE classifications do not address internal ductal variations, limiting surgical guidance. OBJECTIVE: To systematically review cases of TTE with fused vas deferens, summarize presentation, operative strategies, outcomes and identify patterns that highlight the need for classification refinement. METHODS: A PRISMA 2020-compliant systematic review (PROSPERO; CRD420251247785) was performed across PubMed, ScienceDirect and citation of included articles through December 2025. Case reports and series confirming fused vas deferens were included. Data extracted comprised demographics, presentation, imaging, surgical approach, and outcomes. Quality assessment used JBI checklists. RESULTS: 12 studies (16 patients) were included. Most presented with unilateral inguinal hernia (62%) and contralateral undescended testis (68%); 81% were diagnosed intraoperatively. Anatomical patterns included common/proximal fused vas (87%), Y-shaped fusion (6%), and long-loop vas (6%). Trans-septal orchidopexy was the preferred approach, with preservation of vas integrity. Postoperative outcomes were favorable; long-term follow-up was limited. CONCLUSION: TTE with fused vas deferens represents a distinct variant requiring careful intraoperative recognition. We propose a Type IV TTE category for internal ductal fusion to guide surgical planning and classification refinement. Further accumulation of case-based evidence may help clarify its anatomical patterns and operative implications.

Humans