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Biomedical subjects

A Valenti

Publications and source records attributed to A Valenti.

At least 19 recordsLinked to original sources

Tumor necrosis factor-alpha does not cause lung edema in rabbits.

Although tumor necrosis factor-alpha (TNF) is a key mediator in the pathophysiology of sepsis and septic shock, its role in lung microvascular injury is controversial. In isolated blood-perfused rabbit lungs, we studied the microvascular effects of human recombinant TNF by measuring the capillary filtration coefficient (Kf,c) as an index of microvascular leakiness and the arterial and venous resistances and occlusion pressures to define the microvascular pressure profile. At the end of the experiments, the lung wet-to-dry weight ratio (W/D) was determined as an index of edema. TNF increased the pulmonary venous resistance slightly but did not affect Kf,c or W/D. Furthermore, TNF at different doses failed to increase W/D less than or equal to 8 h after in vivo administration. Our data suggest that 1) the pulmonary microvascular response to TNF differs from the systemic response, which is characterized by arteriolar vasodilation, and 2) TNF is insufficient to cause lung edema, both in vivo and in vitro. Thus the development of lung microvascular injury may require the combined action of TNF and other mediators.

Animals

A short incubation with PGE2 affects the proliferative response of T lymphocytes to PWM.

In this study we have investigated the role of PGE2 in the activation of human T lymphocytes by PWM. A preincubation of these cells with molar concentrations of the prostaglandin ranging from 10(-9) M to 10(-4) M is able to reduce the expression of IL-2R and CD71 on T lymphocyte membrane during the first days of culture, while the DR molecule which is expressed later in the same experimental conditions is not affected by the treatment of T lymphocytes with PGE2. The PGE2-induced inhibition of IL-2R and CD71 well correlates with the reduction of 3H-thymidine incorporation by T cells, indicating that a preincubation of T lymphocytes with PGE2 profoundly affects the proliferative apparatus of these cells when they are stimulated by PWM.

Antibody-Producing Cells

Prostaglandin E2-induced inhibition of the in vitro immune response by SRBC-stimulated human lymphocytes.

Exogenous PGE2 strongly inhibits the response of human lymphocyte cultures to SRBC. This effect is mediated through a T cell inhibition since non-T cells are not significantly affected. Indomethacin, which inhibits in this system lymphocyte endogenous PGE2 synthesis increases the in vitro immune response. The effect of indomethacin is overcame by exogenous PGE2. These data may be relevant for explaining the immunomodulatory role of PGE2 following antigen challenge.

Animals

Effects of progesterone on [35S] t-butylbicyclophosphorothionate binding in some forebrain areas of the female rat and its correlation to aggressive behavior.

The antiaggressive effects of progesterone (P) were evaluated in association with alterations in [35S] t-butylbicyclophosphorothionate (TBPS; chloride ion channel antagonist) binding in some forebrain sites of the female rat using in vitro quantitative autoradiography. The administration of 4 mg P was followed by a reduction in the frequency of different aggressive behaviors such as circling, nose-to-nose and fighting (mostly of the defensive nature) in ovariectomized (OVX) sexually mature rats, housed in pairs, during male-female encounters. Quantitative autoradiography data revealed that the same P dose, at the forebrain level, was responsible for low [35S] t-butylbicyclophosphorothionate binding levels in the medial preoptic area, lateral and basolateral amygdala nucleus and oriens-pyramidalis hippocampus CA1 layer, with even lower values being obtained following the in vitro addition of the potent P metabolite 5 alpha-pregnan-3 alpha-ol-20-one. These results suggests that the probable antiaggressive role of P during heterosexual encounters may be regulated by a local potent metabolite acting at the membrane site of the GABA complex.

Aggression

Differential modulation of [3H]flunitrazepam binding in female rat brain by sex steroid hormones.

Quantitative autoradiographic analysis revealed changes in [3H]flunitrazepam (a benzodiazepine agonist) binding in the anterior hypothalamus nucleus, the medial preoptic area and the cortico-medial amygdala nucleus following in vivo estradiol. The administration of 4 mg of progesterone, but not 1 mg, increased the binding of [3H]flunitrazepam in the basolateral amygdaloid nucleus and in the oriens-pyramidalis CA1 layer of the hippocampus. Exposure of brain sections in vitro to the potent, naturally occurring progesterone metabolite, 3 alpha-hydroxy-5 alpha-dihydroprogesterone, induced GABA-dependent changes in flunitrazepam binding, similar to the changes induced by progesterone, thus suggesting that different steroid mechanisms are implicated in the control of flunitrazepam binding.

Animals

The in vitro conversion of 3H androstenedione to testosterone and dihydrotestosterone in the adrenal gland of castrated male rat: influence of gonadal steroid administration.

In the present study we considered the effects of bilateral orchiectomy on the metabolism of androstenedione in the adrenal gland of the adult male rat. Adrenal glands of intact animals incubated in the presence of 3H androstenedione resulted in its conversion to testosterone and dihydrotestosterone (the two principal metabolites investigated). The value of the latter metabolite increased with the elapsing of time from castration despite the decrease of testosterone with respect to that observed in the sham operated rats of the same age. This effect is reversed in the presence of testosterone treatment with androstenedione and testosterone levels similar to those obtained in intact animals. Androstenedione adrenal metabolism is greatly lowered following the administration of dihydrotestosterone propionate, resulting in high substrate residue values with respect to untreated castrated rats. Contemporarily, testosterone metabolite value remains unchanged while the production of dihydrotestosterone is significantly lower. Finally a decrease of DHT was also encountered in the presence of estradiol benzoate. The above results clearly point to a progressive activation of the 5 alpha-reductase of the adrenal gland after castration utilizing androstenedione as substrate. The metabolic pathway leading to the production of dihydrotestosterone from androstenedione appears to be modulated differently following the administration of gonadal steroids.

Adrenal Glands

The in-vitro transformation of [3H]dehydroepiandrosterone into its principal metabolites in the adrenal cortex of adult castrated male rats and following steroid treatment.

The adrenal gland of castrated adult male rats metabolized [3H]dehydroepiandrosterone in vitro to delta 4-androsten-3,17-dione (4AD), testosterone, dihydrotestosterone (DHT) and 5 alpha-androstane-3,17-dione (5 alpha AD). Despite the low testosterone values, DHT and 5 alpha AD were higher 30 and especially 60 days after castration, with raised 4AD:testosterone and decreased testosterone:DHT ratios. The 5 alpha-reductase activity thus appears to increase with time after castration. Fourteen days after castration, 4AD was the only metabolite that was raised compared with intact animals, and testosterone was comparable in sham-operated and castrated rats. The administration of testosterone propionate to castrated rats restored testosterone values to those of intact rat adrenals, whereas 4AD values were greater. The administration of dihydrotestosterone propionate also yielded higher levels of 4AD, in the presence of a lower testosterone value. After administration of oestradiol benzoate, 4AD values were lower especially compared with the other hormone-treated groups, and there was an unexpectedly high testosterone value. These data indicate that the adrenal gland contributes to the production of androgens, as previously noted by Andò, Canonaco, Beraldi et al. (1988) who showed increased plasma 4AD and testosterone levels in adult male rats 30 days after castration. Furthermore, adrenal androgen production in castrated animals is differentially regulated by sex steroids.

3-Oxo-5-alpha-Steroid 4-Dehydrogenase

Effect of prostaglandin E2 on pokeweed mitogen-activated human lymphocyte cultures.

It is shown that a short incubation of peripheral human lymphocytes with PGE2 is able to reduce the B cell differentiation induced by PWM. The target of PGE2 action appears to belong to T lymphocytes, since the treatment of non-T cells is uneffective in reducing the immune response. Both OKT4+ and OKT8+ subsets are sensitive to PGE2. Data concerning the role of endogenous as well as exogenous PGE2 either on unfractionated or fractionated OKT4+, OKT8+ and non-T lymphocytes are also discussed. The PGE2 inhibition on immunoglobulin synthesis in PWM-stimulated cultures seems to be mediated by a complex effect on both the T cell subsets.

Antibody-Producing Cells

Ultrastructural findings of Candida albicans blastoconidia submitted to the action of fenticonazole.

A study has been conducted about ultrastructural changes induced by an imidazole derivative, fenticonazole (Lomexin), on Candida albicans blastoconidia. The structural upset has been progressively exerted starting from coating membrane surfaces throughout cytosol components and nuclear compart, so that the existence can be assumed for a direct dependence of these changes upon activity failure by a few organules. Membrane permeability processes have resulted to be involved, which are the main metabolic paths in the defective ATP synthesis, and enzyme blockades responsible for peroxide accumulation.

Antifungal Agents

The evaluation of androgen circulating levels following castration in adult male rats.

In the present study dehydroepiandrosterone (DHEA), androstenedione (A), testosterone (T) and dihydrotestosterone (DHT) plasma levels were determined in adult male rats five days, seven weeks and eleven weeks after orchiectomy and confronted, respectively, with rats 60 days old which were sacrificed 5 days, 7 weeks and 11 weeks after the sham-operation for orchiectomy. It was revealed that five days after castration A, T and DHT were decreased with respect to sham-operated rats. Seven and eleven weeks after orchiectomy only T remained lower. In all three groups of castrated animals the A/T ratio resulted augmented whereas T/DHT ratio resulted lower with respect to the sham-operated animals. Five days after castration DHEA plasma concentration was positively correlated to A levels and both androgens resulted negatively correlated to T plasma levels. Seven weeks after bilateral orchiectomy an inverse correlation appeared between DHEA/A ratio and T. This emphasizes the role of DHEA and A in maintaining testosterone circulating levels. Seven and eleven weeks following castration the A/T ratio was negatively related to the T/DHT ratio, indicating that A contributes to DHT plasma levels. In the second part of our study the effect of sex steroid administration was evaluated 7 weeks after castration. A linear correlation between DHEA and T circulating levels was obtained following the administration of T while treatment with oestradiol caused a significant increase of the DHEA/A ratio. The castrated animals that received DHT presented lower T circulating levels while the A/T ratio was significantly increased.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenal Glands

Physiological changes in androgen plasma levels with elapsing of time from castration in adult male rats.

In the present study we investigated in adult male rats the effects of castration on Dehydroepiandrosterone (DHEA), Androstenedione (delta 4), Testosterone (T) and Dihydrotestosterone (DHT) plasma levels: five days (group II), seven weeks (group III) and eleven weeks (group IV) after orchiectomy. The same hormone assays were performed in rats approximately 60 days of age which underwent a sham-operation for orchiectomy (group I). Our data show that five days following orchiectomy (group II) delta 4, T and DHT were decreased with respect to sham-operated rats. (Group I: delta 4: 83.3 +/- 14.9 (SEM) ng/dl (n = 12); T: 435.32 +/- 51.45 (n = 12); DHT: 51.47 +/- 6.54 (n = 12); Group II: delta 4: 44.81 +/- 6.09 (n = 12) P = 0.05; T: 25.54 +/- 2.88 (n = 12) P less than 0.01; DHT: 12.9 +/- 2.51 (n = 12) P less than 0.01). Seven weeks afterwards T and DHT remained significantly lower (group III: T: 54.37 +/- 12.21, n = 16) (P less than 0.01; DHT: 33.22 +/- 4.49 (n = 16) P less than 0.01) while eleven weeks after all steroids were significantly decreased with respect to the values observed in sham-operated rats. (Group IV) delta 4: 32.01 +/- 5.7 (n = 10) P less than 0.01: T: 27.29 +/- 7.05 (n = 10) P less than 0.01; DHT: 29.03: 5.34 (n = 10) P less than 0.01).(ABSTRACT TRUNCATED AT 250 WORDS)

Androgens

Testosterone metabolism in the olfactory epithelium of intact and castrated male rats.

To study the ability of the olfactory epithelium (OE) to transform testosterone (T) into its active metabolites estradiol (E2) and dihydrotestosterone (DHT), and the influence of castration on this ability, 24 adult male rats were either castrated, and subsequently treated with oil or T, or sham operated. In all groups the in vitro conversion of T by the OE into E2 and DHT is relevant, demonstrating for the first time the presence of aromatase and of 5 alpha-reductase in this tissue. In particular conversion of T into E2 is lowered by castration and restored by T replacement, suggesting that aromatization in this tissue is androgen dependent. The ability of circulating T to influence morphological and physiological features of the OE suggests the hypothesis that androgens may vary the functioning of the olfactory apparatus and modulate the efficiency by which olfactory information is conveyed to the brain.

Animals

Effects of castration on androstenedione, testosterone and dihydrotestosterone plasma levels in adult male rats.

In the present study we investigated the effects of castration on androstenedione (A), testosterone (T) and dihydrotestosterone (DHT) plasma levels in adult male rats 5 and 47 days after castration. In another group of 60-day-old castrated rats, the three steroids have been evaluated during testosterone propionate administration. Our data show that 5 days after orchiectomy all three steroids were significantly decreased (p less than 0.001) with respect to control values. 47 days after orchiectomy, T and DHT were also significantly decreased with respect to the control group. In both groups of orchiectomized rats the A/T ratio increased significantly with respect to controls. On the contrary, the T/DHT ratio sharply decreased. This suggests that DHT, in orchiectomized rats, could derive from precursors other than T. A negative correlation between A and the T/DHT ratio was observed 47 days after castration in adult animals and emphasized upon testosterone propionate administration. In the latter group, T was significantly lower while A is significantly augmented with respect to control values. Finally, the above-mentioned negative correlation indicates a possible prevalent role of A in contributing to the circulating levels of DHT in adult orchiectomized rats.

Androstenedione

[Preliminary observations on the distribution of serotoninergic and cerebellar-projecting neurons of the raphe nuclei of the brain stem].

Cerebellar projection from raphe nuclei were investigated in rabbit by using retrograde transport of HRP and serotonergic mapping by direct fluorescence. A close topographical correlation between the HRP labeled cells and the serotonergic neurons has been observed. The current study has demonstrated the presence of paramedian and lateral cells whose cytoarchitecture is identical with midline cells of many raphe nuclei. All of the raphe nuclei except the linear nuclei, contained serotonergic perikarya. The midline and paramedian portions of the nuclei raphe obscurus, pallidus, magnus, and nucleus raphe dorsalis contained principally serotonergic neurons; the lateral portions of the medullary raphe nuclei and the nuclei raphe pontis and centralis superior contained a significant number of non-fluorescent cells. In these regions, fluorescent sections often revealed the size, shape, and orientation of the perikarya and dendrites; further verification of cytoarchitectural characteristics of these neurons depended heavily upon these clues.

Animals

Monoamino-oxidase activity in rat pineal gland. Histochemical studies.

Monoamine-oxidase (MAO) activity was detected in rat pineal gland with dopamine, 5-hydroxytryptamine (5-HT), norepinephrine and tryptamine as substrates, and nitroblue tetrazolium salt as electron acceptor. Pinealocytes stained deeply when 5-HT was the substrate. Dopamine and tryptamine substrates gave similar patterns, with moderate activity in the pinealocytes. Norepinephrine reactivity was detected in the nerve-endings.

Animals