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Insulin-mediated regulation of epididymal fat pad malic enzyme.

The complex nature of insulin-mediated biological responses has made it difficult to interpret such data. Prior studies in our laboratory had characterized the insulin-mediated increases in hepatic malic enzyme activity in normal and diabetic rats (Drake et al., 1983; Drake and Mucenski, 1985). However, since insulin-mediated regulatory processes have been shown to be tissue specific, we decided to examine malic enzyme activity in the epididymal fat pads of normal, diabetic, and insulin-treated normal and diabetic rats. This data revealed that in direct contrast to the hepatic studies, the normal epididymal fat pad contained the low specific activity malic enzyme molecule. Insulin treatment of both normal and diabetic rats resulted in an increase in epididymal fat pad malic enzyme activity due to increases in both enzyme quantity and specific activity. In order to quantitate epididymal fat pad malic enzyme mRNA levels, we isolated a 2.4 kb malic enzyme specific cDNA which was designated pR ME 1. In both normal and diabetic rats, the observed increases in malic enzyme quantity were directly paralleled by increases in malic enzyme mRNA content. The Northern blot data revealed an apparent differential expression of the malic enzyme mRNA doublet between insulin-treated normal and diabetic epididymal fat pads. This study demonstrates that insulin modulates epididymal fat pad and hepatic malic enzyme activity in a tissue-specific manner utilizing a defined subset of insulin-sensitive parameters involving alterations in enzyme specific activity and/or quantity.

Adipose Tissue↗

Effects of a high semen-collection frequency on the quality of sperm from ejaculates and from six epididymal regions in boars.

This study examines the effect of semen-collection rhythm on the sperm maturation process in boar epididymis. Three post-pubertal boars were submitted to a high semen-collection frequency (stressed boars) during 4 days, and three males were kept as a control group (control boars). Semen samples coming from six epididymal regions and from the ejaculate of each male were evaluated for sperm concentration, sperm vitality, sperm motility and sperm morphology. In each epididymal region, either fluid resorption or fluid secretion was determined from the variation in sperm concentration. The pattern of fluid resorption-secretion along the epididymal duct differed significantly between the stressed and control boars. A high semen-collection frequency also affected the development of sperm motility and the sperm cytoplasmic droplet displacement along the epididymal duct. The incidence of some sperm abnormalities was also found to be higher in some epididymal regions and ejaculates of stressed boars. From the results of this study, it can be concluded that a high semen-collection frequency brings about an altered resorption and secretion pattern of the epididymal fluid, which results in defective sperm maturation and abnormal development of sperm motility.

Animals↗

Distribution of vitamin D3 receptor in the epididymal region of roosters (Gallus domesticus) is cell and segment specific.

Vitamin D3 is a steroid hormone well known by its role in maintaining calcium homeostasis, however this hormone may also participate in other biological functions, including control of reproductive processes. The vitamin D3 action is mediated by the vitamin D3 receptor (VDR). VDR is widely distributed in the rodent reproductive tract, however the occurrence of VDR and the role of the vitamin D3 in the avian reproductive tract remain unknown. The aim of the present study was to investigate the expression and cellular distribution of VDR in the epididymal region of roosters. VDR expression was investigated by Western blotting analysis and the tissue distribution of the receptor was determined by immunohistochemistry. The Western blotting assay revealed a major VDR protein band of 61kDa in the epididymal region of rooster. Nuclear VDR expression was found in all segments of the epididymal region, namely rete testis, efferent ductules, connecting ducts and epididymal ducts. Nonciliated cells of the distal efferent ductules showed the highest levels of VDR expression, followed by the proximal efferent ductules and rete testis. The connecting and epididymal ducts showed less intense VDR immunostaining. The differential VDR expression in the epididymal region segments reveals that several extratesticular ducts may be target for vitamin D3 action and suggests that vitamin D3 may have a regional-specific function, such as calcium transport, that is modulated through VDR activity.

Animals↗

Successful fertilization, pregnancy, and birth using epididymal sperm frozen 24 hours after conventional oocyte insemination.

OBJECTIVE: To assess if epididymal sperm cryopreserved 24 hours after exposure to oocytes in conventional IVF can be successfully used for intracytoplasmic sperm injection (ICSI) in a subsequent cycle. DESIGN: Case report. SETTING: University of California, Irvine, Center for Reproductive Health. PATIENTS: Two men with obstructive azoospermia requiring microsurgical epididymal sperm aspiration, IVF, and ICSI. INTERVENTIONS: Freezing of epididymal sperm 24 hours after egg exposure in conventional IVF and subsequent use for assisted fertilization in a new cycle. MAIN OUTCOME MEASURE: Frozen-thawed epididymal sperm survivability and maintenance of fertilization and pregnancy capacity. RESULTS: At the time of sperm aspiration procedure (cycle I) a total of 30 oocytes were available for insemination. Of these, 15 were used for conventional IVF resulting in 2 embryos (13%) and 15 were used for ICSI, resulting in 3 embryos (20%). Sperm was cryopreserved 24 hours after conventional IVF and thawed 6 months later in a new cycle. Upon thawing, sperm were still found to be motile and at this time (cycle II) only assisted fertilization was used. Of 27 oocytes injected, 12 (44%) produced normal, cleaving embryos. One singleton pregnancy with the birth of a healthy infant girl was achieved after the tubal transfer of 5 embryos. CONCLUSION: The birth of a normal, healthy infant girl with epididymal sperm frozen 24 hours after exposure to oocytes in conventional IVF emphasizes the value of freezing any aliquot of epididymal sperm, even if the motility is very low, to avoid additional surgery in the male. From a basic science standpoint, this observation may renew interest in the study of sperm cryopreservation after occurrence of acrosome reaction and hyperactivation.

Cryopreservation↗

Testicular and epididymal sperm in a microinjection program: methods of retrieval and results.

OBJECTIVE: To describe the methods of collection and laboratory preparation of epididymal and testicular sperm; to compare the fertilization and pregnancy rates; and to establish prognostic factors. DESIGN: Retrospective analysis. SETTING: Academic reproductive medicine clinic. PATIENT(S): One hundred twelve consecutive microinjection cycles in 80 patients using either epididymal or testicular sperm. INTERVENTION(S): Sperm were collected by microepididymal sperm aspiration, open testicular biopsy, or fine needle tissue aspiration testicular biopsy. MAIN OUTCOME MEASURE(S): Fertilization rate, implantation, and clinical pregnancy rates. RESULT(S): The fertilization rate was higher with epididymal sperm (67%) than with testicular sperm (50%). Implantation rates (fetal hearts per embryo, testicular: 11%, epididymal: 8%) and pregnancy rates (clinical pregnancy per oocyte collection procedure, testicular: 25%, epididymal: 29%) were not significantly different with epididymal and testicular sperm. Multiple regression analysis showed that normal fertilization rates were significantly lower with testicular sperm, immotile sperm, and severe spermatogenic disorders. CONCLUSION(S): Although fertilization rates are significantly lower with testicular sperm, higher implantation rates resulted in equivalent pregnancy rates. Thus, testicular aspiration of sperm for intracytoplasmic sperm injection is a simple, inexpensive method of sperm retrieval in cases of azoospermia resulting from genital tract obstruction or severe spermatogenic disorder.

Biopsy↗

Frozen-thawed epididymal spermatozoa for intracytoplasmic sperm injection.

OBJECTIVE: To report the fertilization rate and pregnancy results for intracytoplasmic sperm injection (ICSI) cycles using frozen-thawed epididymal spermatozoa. DESIGN: Retrospective analysis of consecutive ICSI cycles. SETTING: Tertiary referral center for infertility. PATIENT(S): Infertile couples in whom 39 patients (59 ICSI cycles) required the use of frozen-thawed epididymal spermatozoa. As no cycles were performed using fresh epididymal spermatozoa, outcomes were compared with those of 130 couples (170 ICSI cycles) using fresh ejaculated spermatozoa for severe oligoasthenozoospermia-teratozoospermia, in which < 200,000 motile spermatozoa were retrieved after Percoll density gradient centrifugation. INTERVENTION(S): Epididymal sperm aspiration during microsurgery, followed by ICSI. MAIN OUTCOME MEASURE(S): Fertilization, embryo cleavage, ET, and clinical pregnancy rates (PRs). RESULT(S): A total of 484 metaphase II oocytes were injected with frozen-thawed epididymal spermatozoa, resulting in a two-pronuclear fertilization rate per injected metaphase II oocyte of 47%, significantly lower than in cycles using fresh ejaculated spermatozoa (73%). Embryo implantation rates (12.0% versus 13.3%) and clinical PRs per transfer (18.4% versus 27.0%) were not different. When the prefreeze vitality was > 20%, compared with lower vitality, both the fertilization (56% versus 22%) and embryo cleavage (91% versus 57%) rates were significantly greater. CONCLUSION(S): The routine collection and cryopreservation of epididymal spermatozoa at microsurgery allows multiple ICSI treatment cycles with success rates similar to those of ejaculated spermatozoa. However, when the vitality of aspirated spermatozoa is < 20%, the poor fertilization rates indicate the need to consider an alternative source of viable spermatozoa.

Adult↗

Epididymal anomalies associated with hydrocele/hernia and cryptorchidism: implications regarding testicular descent.

Controversy exists regarding the role of the epididymis in testicular descent, as epididymal abnormalities have been reported in 36 to 79% of boys with an undescended testis. Although most undescended testes are associated with a patent processus vaginalis, the incidence of epididymal abnormalities in descended testes with a patent processus has not been reported. Epididymal morphology was examined in 81 boys with a hydrocele/hernia without cryptorchidism (90 testes) and 100 children undergoing orchiopexy (115 testes). Boys with an intra-abdominal undescended testis were excluded. Among 48 boys with a hydrocele/hernia 24 (50%) had an epididymal abnormality if the processus was patent and communicated with the testis (complete hernia), compared to 4 of 42 patients (10%) if there was not a communication with the testis (p less than 0.01). Among the 96 children with an undescended testis 68 (71%) had an epididymal abnormality if there was a patent processus, compared to 3 of 19 boys (16%) without a patent processus (p less than 0.01). These data suggest that most epididymal abnormalities probably do not contribute to testicular maldescent.

Adolescent↗

Aberrant epididymal tissue: a significant clinical entity.

Epididymal anomalies are relatively rare and usually they are associated with an undescended testis. A 33 to 66 per cent incidence of epididymal anomalies has been noted in male subjects with cryptorchidism. An increased incidence of epididymal anomalies also has been noted in association with cystic fibrosis, von Hippel-Lindau's syndrome and in male offspring of women treated with diethylstilbestrol. The frequency and anatomical spectrum of epididymal anomalies among men with normal descended testes are not known. We describe 3 patients with bilaterally descended testes, who were found to have aberrant epididymal tissue at scrotal or inguinal exploration. The variable presentations of aberrant epididymal tissue in these 3 patients can be explained best by understanding the embryology and anatomy of the epididymis and its associated vestigial structures. In all likelihood the structures encountered in our patients were the ductus aberrans inferior and the paradidymis. These structures, which rarely are included in urological anatomical descriptions of the epididymis, can be significant clinically. Therefore, it is important that the urologist be aware of their existence and their means of presentation.

Adolescent↗

Estimate of epididymal transit time in the chimpanzee.

During their passage through the epididymis, sperm undergo functional changes which result in their maturation and in their ability to fertilize ova. Maturational changes effected during epididymal transport are attributable to sequential changes in various regions of the plasmalemma of the sperm head and flagella. These functional changes in the plasmalemma result, at least in part, from the sequential binding of proteins secreted by the epididymal epithelium into the epididymal lumen. An estimate of epididymal transit time is essential to such investigations. Time elapsed from a testicular arterial infusion of a single pulse of tritiated-thymidine to the release of 3H-labeled sperm into the lumen of the seminiferous tubule was about 39 days. Seminal fluid-free 3H-labeled sperm first appear in the ejaculate about 41 +/- 1 days post-infusion. Total transit time for 3H-labeled Sd2 sperm released into the tubular lumen to appear in the ejaculate is estimated as the difference between these values. Since total transit time is equal to the seminiferous tubule transit time plus the epididymal transit time, epididymal transit time constitutes some lesser portion of the total transit time of 2 +/- 1 days.

Animals↗

Is physical examination useful in predicting epididymal obstruction?

OBJECTIVES: To evaluate the independent predictive value of subjective epididymal fullness in predicting obstruction in azoospermic men (group 1) and determining preoperatively the need for vasoepididymostomy (VE) in men presenting for vasectomy reversal (group 2). METHODS: All men were evaluated with a medical history and physical examination. During the physical examination, the epididymis was classified as full, if any portion was palpably distended, or normal. Obstruction was confirmed at surgical exploration for group 1 after a biopsy that revealed sufficient spermatogenesis. In group 2, the indications for VE were either no fluid seen from the testicular end of the vas or thick, pasty fluid devoid of sperm. In cases in which VE was required, these units were classified as obstructed. RESULTS: The predictive value of epididymal fullness was evaluated in 51 units (12 in group 1 and 39 in group 2). The sensitivity, specificity, and positive and negative predictive values were 67%, 100%, 100%, and 83%, respectively, in group 1 and 33%, 89%, 20%, and 94%, respectively, in group 2. CONCLUSIONS: Epididymal fullness in azoospermic men is predictive of obstruction, although a normal epididymal examination cannot rule out obstruction. In men presenting for vasectomy reversal, the absence of epididymal fullness is predictive of vasal fluid that allows for vasovasostomy. Epididymal fullness may suggest, but cannot predict, unfavorable vasal fluid that requires VE.

Epididymis↗

In vitro fertilization of porcine oocytes with fresh and frozen-thawed ejaculated or frozen-thawed epididymal semen obtained from identical boars.

The objective of this study was to compare the in vitro fertilizing capacity of porcine spermatozoa from fresh and frozen-thawed semen and frozen-thawed epididymal spermatozoa obtained from identical boars. Prior to IVF, fresh spermatozoa were capacitated in TCM 199. Frozen semen samples were stored in 0.25-ml plastic straws using a lactose/glycerol/orvus-es-paste extender. Cumulus-oocyte-complexes (COC) obtained from superovulated prepuberal gilts were fertilized in vitro within 2 h after aspiration with one of the semen samples. After final dilution for IVF, frozen-thawed epididymal semen samples showed motility rates (72.2 +/- 5.6%) similar to those of spermatozoa in fresh semen (76.4 +/- 4.5%), while sperm motility decreased in frozen-thawed ejaculated semen (40.2 +/- 9.4%). Considerable individual differences in sperm motility between boars were observed for ejaculated semen but not for epididymal semen. Enhanced fertilizing capacity of frozen-thawed epididymal spermatozoa was confirmed by pronucleus formation and cleavage rates, with significantly more embryos developing to the 2- and 4-cell stages compared with the groups fertilized with fresh or with frozen-thawed ejaculated semen (59.7 vs 14.6 and 16%). In conclusion, consistent in vitro fertilization rates with minimal semen variability are obtained using frozen-thawed epididymal semen. Following a modified freezing protocol, epididymal spermatozoa can easily be frozen in small containers for IVF, with higher resultant motility and fertilization rates than with ejaculated semen.

Journal Article↗

Different actions in the rat prostatic and epididymal vas deferens of cyclopiazonic acid or ryanodine on noradrenaline-induced contractions.

The effects of ryanodine, cyclopiazonic acid (CPA), and nifedipine on noradrenaline (NA)-induced contractions were investigated to characterize the role of the sarcoplasmic reticulum (SR) in the epididymal and prostatic parts of the rat vas deferens. In the epididymal part, NA (0.1, 1, and 100 microM) evoked marked rhythmic contractions superimposed on a tonic response. NA (100 microM) evoked biphasic tonic contractions consisting of a fast (initial) component and delayed secondary components. Nifedipine (1 microM) suppressed the rhythmic activity and the contractions to low NA concentrations and markedly reduced the components of the response to NA (100 microM). Contractions of the epididymal part to NA (0.1, 1, and 100 microM) were not blocked by ryanodine (1-30 microM) or CPA (1-30 microM). The secondary component in the response to NA (100 microM) was enhanced by CPA (> or =10 microM). Thus in the epididymal part, NA stimulates contraction predominantly by mobilizing extracellular calcium. However, a residual nifedipine-insensitive contraction to NA (100 microM) was observed and was not blocked by ryanodine (30 microM) or CPA (30 microM). In the prostatic part, NA evoked mainly tonic contractions. The response to NA (100 microM) consisted of three distinct components. Nifedipine (1 microM) reduced the contractions to low concentrations of NA (0.1 and 1 microM) and all three components of the response to NA (100 microM). Contractions of the prostatic part to low concentrations of NA (0.1 and 1 microM) were not blocked by CPA (30 microM) or ryanodine (30 microM). The components of the response to NA (100 microM) were affected differently by the drugs. Ryanodine (17-30 microM) or CPA (1-30 microM) suppressed the initial component and reduced the second component. The third component was largely unaffected by CPA but reduced by ryanodine. In the additional presence of nifedipine (1 microM), the residual components of NA (100 microM) response were markedly reduced and the contractions to low concentrations of the agonist virtually abolished. These results suggest that NA contracts the prostatic part by mobilizing both extra- and intracellular calcium. These results show that NA-induced contractions of the epididymal and prostatic parts of the rat vas deferens differ in sensitivity to ryanodine or CPA. The results suggest that, during stimulation of the epididymal part, the SR functions mainly to buffer calcium entering through nifedipine-sensitive voltage-gated calcium channels. In contrast, in the prostatic part, the SR serves mainly as a source of calcium and contributes more to contractions evoked by higher concentrations of the agonist.

Analysis of Variance↗

Are there two forms of beta 2-N-acetylglucosaminyltransferase I in rat testicular and epididymal fluids?

The activity of alpha 3-D-mannoside-beta-1,2-N-acetylglucosaminyltransferase I (GnT I; EC 2.4.1.101), which catalyzes the first step in the conversion of oligomannose to complex or hybrid N-glycans of glycoproteins, was detected in rat testicular and cauda epididymal fluids. The GnT I activity of testicular fluid had a pH optimum of 6.0, whereas that of the cauda epididymal fluid was optimal at pH 7.0. The enzyme in testicular fluid had an absolute requirement for either Co2+, or Mn2+, Mg2+ and Ca2+, the activity being stimulated by these cations in the above order, whereas that of cauda epididymal fluid had an absolute requirement for Mn2+ or Ca2+, with Co2+ and Mg2+ being ineffective. The specific activity of GnT I in cauda epididymal fluid was somewhat higher than in testicular fluid. The apparent Km value for alpha 1-3 alpha 1-6mannopentaose of GnT I in the testicular and epididymal fluids was 0.57 and 0.38 mM, respectively. The substrate specificity for both GnT I activities decreased in the following order: alpha1-3 alpha 1-6mannopentaose>alpha1-3 alpha 1-6mannotriose>alpha 1-3mannobiose>alpha 1-6mannobiose. These data suggest that two forms of GnT I exist in the testicular and epididymal fluids.

Animals↗

Immunocytochemical localization and biochemical characterization of a novel plasma membrane-associated, neutral pH optimum alpha-L-fucosidase from rat testis and epididymal spermatozoa.

1. Immunocytochemical and biochemical techniques have been used to localize and characterize a novel plasma membrane-associated, neutral-pH-optimum alpha-L-fucosidase from rat spermatozoa. Light and electron microscopy specifically localized the fucosidase on the plasma membrane of the convex region of the principal segment of testicular and cauda epididymal sperm heads. Immunoreactivity for alpha-L-fucosidase was also detected in the Golgi apparatus of spermatocytes and spermatids but no immunoreactivity was observed in the acrosome. 2. Fractionation of epididymal sperm homogenates indicated that over 90% of the alpha-L-fucosidase activity was associated with the 48,000 g pellet. This pellet-associated activity could be solubilized with 0.5 M NaCl but not with 0.5% Triton X-100, suggesting that fucosidase is peripherally associated with membranes. Sucrose-density-gradient centrifugation of sperm homogenates indicated that fucosidase was enriched in the plasma membrane-enriched fraction. Analysis of alpha-L-fucosidase on intact epididymal sperm indicated that the enzyme was active, displayed linear kinetics and had a pH-activity curve (with an optimum near 7) which was comparable to that of fucosidase from epididymal sperm extracts. These results further suggest that fucosidase is associated with plasma membranes, and that its active site is accessible to fucoconjugates. Evidence that most of the fucosidase is associated with the exterior of the plasma membrane came from studies in which intact sperm had fucosidase activity comparable to that of sperm sonicates, and from studies in which approx. 90% of the fucosidase activity on intact sperm could be released from the sperm by gentle shaking with 0.5 M NaCl. Isoelectric focusing indicated that the NaCl-solubilized epididymal sperm fucosidase appears to have one major and one minor isoform with pIs near 7.2 and 5.2, respectively. SDS/PAGE and Western blotting indicated that the NaCl-solubilized extract of epididymal sperm contains two protein bands of 54 and 50 kDa which were highly immunoreactive with the IgG fraction of anti-fucosidase antibodies. Although the function of the novel sperm fucosidase is not known, its specific localization to the plasma membrane of the region of the rat sperm head involved in sperm-egg binding and its high enzymic activity at neutral pH on intact sperm suggest that this enzyme may have a role in sperm-egg interactions.

Animals↗

Successful lowering of epididymal carnitine by administration of pivalate to rats.

This study was designed to lower the epididymal content of carnitine in male rats and to examine subsequent effects on fertility and sperm motility. As carnitine is transported from serum into the epididymal lumen a method to lower serum carnitine was sought. Administration of 20 mmol/L sodium pivalate in the drinking water for up to 5 weeks substantially lowered serum carnitine (to 20% of control levels within 1 week) and reduced epididymal carnitine content (to 25% of control levels in the proximal and 52% of control in distal regions) within 2 weeks. Carnitine in distal cauda epididymal fluid was also reduced (to 30% of control levels) but no changes were observed in the sperm carnitine content. The percentage motility and kinematic parameters of spermatozoa released from four epididymal regions and diluted into artificial medium were unaltered by the treatment, and all males retained their fertility in mating tests performed at weekly intervals. Increasing the dose of sodium pivalate administered to 60 mmol/L for 2 weeks lowered serum carnitine concentration more but did not further decrease epididymal carnitine content and altered neither sperm motility nor male fertility. The rat epididymis secretes an excessive amount of carnitine into its lumen so that substantially lowering the tissue content does not reduce sperm carnitine or affect their motility or fertilizing ability.

Animals↗

Effects of ethanol ingestion on epididymal glycosidases and fertility in the rat.

Epididymal glycosidases play a role in sperm maturation by modifying sperm surface glycoproteins. To study the effects of ethanol on epididymal sperm maturation, ethanol (3 g/kg body weight as 25%, v/v) was administered to a group of rats by gastric-intubation twice daily for 30 days. In another group, rats were also treated with alcohol for 30 days but were then withdrawn from treatment for 30 days to assess the reversibility of ethanol-induced effects. Ethanol-induced changes in epididymal tissue and sperm glycosidases, cauda epididymal sperm motility and the fertility of rats were assessed. Ethanol treatment caused a marked decrease in the specific activities of glycosidases in both tissues and spermatozoa from epididymal segments. Cauda epididymal sperm motility and the fertility of ethanol-treated rats were significantly impaired compared to control rats fed an isocaloric diet. These changes are likely to be the consequence of direct and indirect effects of ethanol mediated through subnormal testosterone and dihydrotestosterone. Most of these changes were found to be reversible. The present study suggests that impaired activity of sperm glycosidases may be one of the factors responsible for defective sperm motility and fertilizing potential in ethanol-treated rats.

Animals↗

The effects of oxytocin and arginine vasopressin in vitro on epididymal contractility in the rat.

Oxytocin (OT) and arginine vasopressin (AVP) have been found to be present in the reproductive system of the mammalian male, but their function in this system is unclear. This study examined the effects of these two hormones on contractions of the rat caput epididymis, as well as the hormones' effects on epididymal diameter during contractions. The initial segments of caput epididymides were observed in vitro in a solution of modified Tyrode's solution, with a test solution containing a concentration of either OT or AVP being added after a 5-min period. The frequency and diameter of the epididymal contractions were measured before and after addition of each test solution. Also observed was the effect of magnesium concentrations on the ability of OT to induce changes in epididymal contractility. This study found that the frequency of epididymal contractions increase and that the diameter of the epididymal tubules decrease proportionally during contractions with the addition of either OT or AVP. Furthermore, we noted that Mg++ has an inverse correlation with the frequency of contractions of the caput epididymis both in the presence and absence of OT. These findings suggest that both OT and AVP may have a role in regulating epididymal contractility and thus, perhaps, sperm transport through that organ.

Animals↗

Effect of hyperthermia on epididymal cyclic AMP levels in diabetic non-diabetic and hypophysectomized rats.

The effect of elevated body temperatures on the concentrations of epididymal cyclic AMP levels in non-diabetic, diabetic and hypophysectomized rats was studied. Cyclic AMP levels were increased during hyperthermia in all animals examined. This increase in epididymal cyclic AMP concentration was not seen in animals that had been supplemented with exogenous insulin prior to the experiment. The effect of pituitary lipolytic hormones on epididymal cyclic AMP levels was also investigated. Significant elevations of epididymal cyclic AMP levels were observed in hypophysectomized rats during hyperthermia indicating that pituitary hormones are not essential in causing these increases. Extrapituitary hormones, such as glucagon, might be responsible for epididymal cyclic AMP increases. Increases in epididymal cyclic AMP levels may therefore be the result of the reduction of blood insulin and concomitant increases of lipolytic hormones of both pituitary and extrapituitary origins.

Adipose Tissue↗