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Biomedical subjects

V Covelli

Publications and source records attributed to V Covelli.

At least 37 records · Page 2Linked to original sources

Effect of genetic modification of acute inflammatory responsiveness on tumorigenesis in the mouse.

Two distinct bidirectional selective breedings for quantitative traits were initiated from identical genetically heterogeneous mouse populations. The resulting lines are characterized by maximal or minimal acute inflammatory responsiveness (AIR): AIRmax and AIRmin lines, respectively, and by resistance or susceptibility to chemical skin tumorigenesis: Car-R and Car-S lines, respectively. The AIR response to s.c. injection of polyacrylamide microbeads, measured by cell content in the local exudate, was 10 times higher in AIRmax than in AIRmin mice. The response to selection was asymmetrical: the realized heritability was 0.26 in AIRmax and 0.008 in AIRmin, and resulted from the additive effect of 7-11 quantitative trait loci (QTL). Low responsiveness was globally dominant in F1 and 48% of F2 segregant variance was found to be due to genetic factors. These findings are the first demonstration of innate regulation of AIR by germ line genes. Susceptibility to skin tumorigenesis induced by a two-stage initiation (DMBA)-promotion (TPA) protocol was lower in AIRmax mice than in AIRmin mice, a 6-fold difference in tumor induction rate. Intense AIR was found to be associated with resistance, and low AIR with susceptibility to tumorigenesis, in F2 segregants chosen for extreme AIR phenotypes. At least some of the AIR QTLs therefore contain genes controlling tumorigenesis. Tumor phenotypes differed more in Car-R and Car-S than in AIRmax and AIRmin lines, indicating that QTLs unrelated to AIR, contribute to the host response to tumorigenesis. The extreme phenotypes/genotypes of the four selected lines and the known genetic constitution of their foundation population, offer new possibilities to discriminate the genes/mechanisms controlling two important traits: AIR and response to chemical tumorigenesis. Collaborative projects will be favorably considered. The description of tumor resistance genes in AIRmax and Car-R mice may be helpful for epidemiology and therapy of human cancer.

Acute Disease↗

Stress, neuropsychiatric disorders and immunological effects exerted by benzodiazepines.

Psychoneuroimmunology is a growing scientific field which deals with the mutual interplay between nervous and immune systems. In this framework, many data have demonstrated that cytokines (CKs) derived from the periphery are able to cross the blood brain barrier and act upon the central nervous system (CNS) [e.g., the hypothalamic-pituitary-adrenal axis (HPAA)], thus regulating several physiological functions (thermoregulation, sleep, appetite) or damaging the nervous tissue, when released in exaggerated amounts. On the other hand, nervous cells, such as astrocytes and microglial cells also generate proinflammatory CKs which may be detrimental for the CNS. The neuromodulating CK network can be triggered by microorganisms and/or their products (i.e. bacterial endotoxins), but also stressful life events may activate the HPAA, thus affecting the immune system function. This review will place emphasis on some clinical conditions, such as phobia and migraine without aura (MWA), characterized by anxiety disorders. Patients affected by these neuropsychiatric alterations exhibit multiple functional deficits of phagocytes and T lymphocytes which allow penetration of various pathogens into the host. This is also supported by the detection of circulating bacterial endotoxins and the evidence of both spontaneous and induced exaggerated release of proinflammatory CKs in phobic and MWA patients. The possible iatrogenic effects of benzodiazepines (BDZ) on the immune system have been evaluated by in vitro and in vivo studies. In this respect, it emerges that diazepam exerts an inhibitory function on the immune system, while alprazolam behaves as an immunoenhancer. The presence of central and/or peripheral BDZ receptors on immune cells seems to be the key mechanism responsible for the immunomodulation exerted by these drugs.

Adjuvants, Immunologic↗

Genetic control of immune responsiveness, aging and tumor incidence.

Age-related alterations of the immune system affect both antibody and cell-mediated immune responses, T-cell responses being more severely affected than B-cell responses. Within the T-cell population, aging leads to replacement of virgin by memory cells and to accumulation of cells with signal transduction defects. Changes in T-cell subsets and in cytokine production profiles may produce suitable conditions for T-cell-mediated disregulation of antibody responses characterized by the production of low affinity and self-reactive antibodies. Also B-cells exhibit intrinsic defects and natural killer (NK) cell activity a profound loss in old mice. Whether age-related immune disfunctions influence life span and tumor incidence has been examined in mice genetically selected for high or low antibody responsiveness. It has been found that genetic selection of vigorous antibody responses in most cases produces mice with longer life span and lower lymphoma incidence. Moreover, the results of genetic segregation experiments indicate that antibody responsiveness and life span are polygenic traits regulated by a small number of the same or closely linked loci. Mice genetically selected for high or low mitotic responsiveness to PHA exhibit low or high tumor incidence, respectively, but no difference in life span, suggesting that T-cell activity is restricted to immune surveillance of neoplastic transformation. Studies on mice genetically selected for resistance or sensitivity to chemical carcinogenesis have uncovered loci that control both resistance to tumor induction and longevity while have no effects on immunity and disease incidence. Thus, the relative role of the immune system in conditioning the duration and the biological quality of life remains to be determined.

Aging↗

Pathogenetic role of phagocytic abnormalities in human virus immunodeficiency infection: possible therapeutical approaches. A review.

Polymorphonuclear cells (PMN) and monocytes/macrophages (M/M) represent the first defence line against invading microorganisms. Both phagocytic cell functions are precociously compromised in human immunodeficiency virus (HIV)-infected subjects, thus leading to infectious and neurological complications in the late stages of disease. Among intracellular pathogens, emerging bacteria such as Bartonella henselae and Rhodococcus equi can cause peculiar clinical pictures, i.e. the bacillary parenchimal angiomatosis and a classical pyogranulomatous broncopneumonia, respectively. On the other hand, overproduction of proinflammatory cytokines (CKs) and, in particular, tumor necrosis factor-alpha under HIV or lipopolysaccharide stimulation may cause neural damage in terms of demyelination and subsequent development of acquired immunodeficiency syndrome (AIDS) dementia complex. Some therapeutical attempts have been made with colony stimulating factors in order to increase the number and potentiate the function of PMN and M/M. On the other hand, the use of drugs able to reduce exaggerated release of CKs by M/M is suggested in AIDS patients in order to prevent a further aggravation of the clinical condition.

HIV Infections↗

Sensitivity of C3H 10T1/2 cells to radiation-induced killing and neoplastic transformation as a function of cell cycle.

Cell-age sensitivity to both cell killing and neoplastic transformation induced by radiation was investigated using synchronized populations of C3H10T1/2 cells. Mitotic-cell suspensions, collected using a mitotic shake-off procedure, were irradiated with 4Gy 250 kVp X-rays or 0.5 Gy fission neutrons from the RSV-TAPIRO reactor at CR-Casaccia. For study of cell killing the mitotic-cell suspensions were either irradiated immediately after collection, or plated for subsequent irradiation, which was performed every hour, covering an interval of 17 h. The response pattern observed was similar after X-rays and neutron irradiation, but the magnitude of the variation through the cell cycle was smaller in the case of neutrons (1.3- compared with 5-fold). For study of neoplastic transformation induction the irradiation was performed immediately after collection, i.e. in M phase, or at later times corresponding to mid-G1, G1/S and G2 phases. The sensitivity of the G2/M phase was examined by irradiating the cells with 4Gy X-rays while still attached to the flask bottom, and dislodging them after 25 min. SimilarLy to cell survival, the transformation frequency showed a small variation after neutron irradiation (1.4- compared with 3.1-fold) for the phases examined.

Animals↗

Genetics of chemical carcinogenesis--III. Tissue-specificity of the genes controlling susceptibility and resistance to skin carcinogenesis in the mouse.

Carcinogenesis-resistant (Car-R) and carcinogenesis-susceptible (Car-S) mice have been obtained by the method of bi-directional selective breeding. After 10 generations of selection Car-R and Car-S mice show a remarkable difference in their response to chemical carcinogenesis. Car-R and Car-S mice, initiated and promoted by skin application of 9,10-dimethyl-1,2-benzanthracene (DMBA) and 12-O-tetradecanoylphorbol-13-acetate (TPA) reach a tumour multiplicity of 0.05 and 6.2, respectively, after 49 days of promotion. When benzo[a]pyrene (B[a]P) is topically applied for initiation, followed by TPA promotion, Car-R and Car-S mice maintain a large difference in sensitivity to skin tumour induction. Car-S mice are also more susceptible than Car-R mice to complete carcinogenesis produced by single or repeated applications of DMBA only. On the contrary, when DMBA or B[a]P are administered by subcutaneous injection rather than by topical application, no significant difference in tumour incidence is observed between the two lines. All tumours induced by topical administration of carcinogens on the skin are of epithelial origin, whereas the tumours produced by subcutaneous injection are of connectival origin. These observations suggest a tissue-specific effect of the selected genes, probably restricted at the skin level.

9,10-Dimethyl-1,2-benzanthracene↗

Tumor necrosis factor-alpha increases after corticotropin-releasing hormone administration in Cushing's disease. In vivo and in vitro studies.

The aim of this study was to evaluate the effect of acute human corticotropin (ACTH)-releasing hormone (CRH) administration (100 micrograms, as i.v. bolus) on tumor necrosis factor-alpha (TNF alpha) levels in the inferior petrosal sinuses and in the peripheral blood of 7 patients with Cushing's disease subjected to diagnostic inferior petrosal sinus sampling. Blood samples for ACTH, beta-endorphin (beta-EPH) and TNF alpha were collected from inferior petrosal sinuses and periphery simultaneously. In addition, TNF alpha concentrations were measured after CRH administration (10 nmol/l, 100 nmol/l and 1 mumol/l) in culture medium from primary cultures obtained in 3 of 7 patients. At baseline, plasma ACTH and beta-EPH levels were significantly higher in the inferior petrosal sinus ipsilateral to the ACTH-secreting adenoma than in the contralateral one and in the periphery (p < 0.001) whereas no significant difference was found as far as serum TNF alpha levels were concerned. CRH administration caused a significant increase of ACTH (p < 0.001), beta-EPH (p < 0.01) and TNF alpha (p < 0.01) levels greater in the ipsilateral inferior petrosal sinus than in the contralateral one and in the periphery. In addition, CRH increased ACTH, beta-EPH and TNF alpha levels in the culture medium of three ACTH-secreting tumors at the doses of 100 nmol/l and 1 mumol/l (greater than 300, 200 and 110% of baseline pretreatment incubation levels, respectively). These data suggest that CRH may increase TNF alpha concentrations in the inferior petrosal sinus ipsilateral to the ACTH-secreting adenoma and in the peripheral blood as well. In addition, it stimulated TNF alpha release both in vivo and in vitro. These findings suggest the possibility that an imbalanced intrapituitary TNF alpha production can be detected in ACTH-secreting adenomas.

Adenoma↗

The influence of sex on life shortening and tumor induction in CBA/Cne mice exposed to X rays or fission neutrons.

An experimental study of male and female CBA/Cne mice was set up at Casaccia primarily to investigate the influence of sex on long-term survival and tumor induction after exposure to high- and low-LET radiation. Mice were whole-body-irradiated at 3 months of age with fission-neutron doses of 0.1, 0.2, 0.4, 0.8, 1.2 and 1.8 Gy at the RSV-TAPIRO reactor (mean neutron energy 0.4 MeV, in terms of kerma, y(D) = 51.5 keV/micron), or with 250 kVp X-ray doses of 1, 3, 5 and 7 Gy. Control and irradiated animals were then followed for their entire life span. As a general finding, male CBA/Cne mice appear more susceptible to tumorigenesis than females. In particular, the incidences of induced acute myeloid leukemia and malignant lymphomas are significant only in male mice. Benign and malignant solid tumors of many types are observed in mice of both sexes, the most frequent being in the lung, liver and ovary. However, evidence for a radiation response is limited to the case of Harderian gland neoplasms. In addition, a comparison of the observed frequency of all irradiated compared to unirradiated animals bearing solid tumors shows that the total tumor occurrence is not altered markedly by radiation exposure. A decrease in survival time is observed for both sexes and radiation types and correlates well with increasing dose. Moreover, both sex and radiation quality appear to influence the life shortening. A similar dose dependence of survival time is found when tumor-free animals alone are considered, suggesting a non-specific component of life-shortening.

Animals↗

Comparison of 7,12-dimethylbenz(a)anthracene-DNA adduction in the epidermis of two lines of mice selected for resistance (CAR-R) or susceptibility (CAR-S) to skin carcinogenesis.

Two lines of mice were produced by bidirectional selective breeding: one resistant (CAR-R) and one susceptible (CAR-S) to two-stage skin carcinogenesis by dimethylbenz(a)anthracene and 12-O-tetradecanoyl-phorbol-13-acetate. The dimethylbenz(a)anthracene-DNA adduct formation was compared in the two lines by a postlabeling procedure so as to determine whether the striking interline difference observed as to tumor incidence could (in part) be due to differences in the formation of DNA-reactive metabolites. Results show that qualitatively, adduct profiles in CAR-R and CAR-S epidermis are similar. Quantitatively, the total binding level is slightly higher in CAR-S versus CAR-R mice during the 30-day follow-up. However, these minor differences do not increase in function of the response to selection observed through three consecutive generations. A 2- or 4-week promotion with 12-O-tetradecanoylphorbol-13-acetate enhances the decrease of adduct level in the two lines. This effect is somewhat more pronounced in CAR-S mice. Results strongly suggest that the expression of the genes responsible for CAR-R/CAR-S phenotypic difference affects mainly the postinitiation stages.

9,10-Dimethyl-1,2-benzanthracene↗

Genetics of chemical carcinogenesis--II. Papilloma induction and malignant conversion in susceptible (Car-s) and resistant (Car-R) lines of mice produced by bidirectional selective breeding and in their (Car-S X Car-R) F1 hybrids.

Susceptible (Car-S) and resistant (Car-R) lines of mice separated by 10 consecutive generations of bidirectional selective breeding present a very large difference in responsiveness to two-stage skin carcinogenesis. Car-S mice initiated with 0.5 micrograms 9,10-dimethyl-1,2-benzanthracene (DMBA) and promoted with 0.25 micrograms 12-O-tetradecanoyl-phorbol-13-acetate (TPA) for 77 days showed a papilloma incidence of 88% and a tumour multiplicity of 3.2 +/- 0.4 (mean +/- SE), with a tumour induction rate of 0.415. Car-R mice initiated with larger DMBA and TPA doses (50 micrograms and 20 micrograms respectively) and promoted for 111 days gave a comparable papilloma response: incidence 65%, tumour multiplicity 3.2 +/- 0.6 and tumour induction rate 0.288. The difference in papilloma response between the two lines is due to the interaction of genetic and environmental factors. In order to overcome the genetic effect with environmental factors and induce in Car-R a papilloma response comparable to that of Car-S, the DMBA dose had to be increased up to 100 times, that of TPA 40 times and the promotion time augmented by 44%. Papilloma to carcinoma conversion 112 days after the end of promotion depends on the DMBA and TPA doses applied. The number of carcinomas induced in Car-S mice and in (Car-S X Car-R) F1 hybrids was larger than that induced in Car-R mice, but the ratio of carcinoma conversion was lower, therefore a larger proportion of the small number of papillomas induced in the Car-R mice progressed to malignancy. The dominance effect measured in (Car-S X Car-R) F1 hybrids demonstrated that the susceptibility to papilloma induction was an incomplete dominant character (d/a = 0.38), whereas for carcinoma conversion the resistance was incompletely dominant (d/a = -0.49).

9,10-Dimethyl-1,2-benzanthracene↗

Could migraine be a "protective factor" against tumors?

Patients with migraine headaches show significantly lower prevalence of malignant neoplasms when compared with the general control group or the age-matched control group. Conversely, no significant difference concerning the family history for neoplasms has been found between the two groups. Nevertheless, headache and cancer in a family member in migraneous are not coexistent. Although more extensive, epidemiological studies are necessary to confirm our data, it is suggested that some particular biochemical or psychologic aspects involved in the pathogenesis of migraine might represent the presence of a protective factor against neoplasm development.

Adolescent↗

Hypothalamic-pituitary-adrenal axis and immune system.

Complex and bidirectional relationships operate between the hypothalamic-pituitary-adrenal (HPA) axis and the immune system (IS) and either in vivo or in vitro evidence supports a physiological role of the HPA axis-IS network. A part of the well-known pharmacological effects of glucocorticoid hormones (GC) as immunodepressive agents, the direct effects of many HPA axis hormones on IS functions are actually documented also in physiologic conditions. Conversely, numerous IS soluble mediators are reported to affect the HPA axis functions at various steps of HPA axis regulation, in both physiologic and pathologic conditions. Stress and aging may represent two paradigmatic conditions to show the relevance of the bidirectional network between HPA axis and IS, as in both HPA activation and IS impairment are frequently coexistent. Finally, in the context of the wide spectrum of HIV-related HPA axis abnormalities, a case of a Cushing's syndrome associated to an acquired immunodeficiency syndrome (AIDS-related complex) in a 24-year-old homosexual drug abuser is reported.

AIDS-Related Complex↗

Interleukin-1 beta plasma secretion during diurnal spontaneous and induced sleeping in healthy volunteers.

We previously reported nocturnal plasma IL-1 beta (beta) increases during sleep in absence of stress-induced activation of hypothalamic-pituitary-adrenal (HPA) axis. In this paper we evaluate the presence of plasma IL-1 beta secretion in nine healthy volunteers (mean age 31.2 +/- 4.2) during post-prandial naps, after the administration of zolpidem, a benzodiazepine receptorial agonist. Although a significant increase in IL-1 beta plasma levels during spontaneous sleep was present in only four subjects when compared to those obtained during wake and induced-sleep, spontaneous sleep IL-1 beta mean plasma levels appeared slightly higher than both wake and induced-sleep values. Moreover, a negative correlation was present between IL-1 beta and cortisol (F) values obtained during the early afternoon (r = 7; p < 0.05). Our findings are consistent with a possible association of IL-1 beta secretion to physiologic sleep also during daytime spontaneous naps, with the presence of F influence on this phenomenon, and with the lack of IL-1 beta association to daytime naps after sleep-inducer pharmacological agents.

Administration, Oral↗

Neoplastic transformation of C3H 10T1/2 cells: a study with fractionated doses of monoenergetic neutrons.

As most occupational and environmental exposures to ionizing radiation are at low dose rates or in small dose fractions, risk estimation requires that the effects of the temporal distribution of dose are taken into account. Previous in vitro studies of oncogenic transformation, as well as in vivo studies of carcinogenesis induced by high-LET radiation, yielded controversial results concerning the presence of an inverse dose-rate effect. The present study tested the influence of one scheme of dose fractionation of monoenergetic neutrons on neoplastic transformation of C3H 10T1/2 cells. Neutrons of 0.5, 1.0 and 6.0 MeV were used. Cells were exposed to doses of 0.25 and 0.5 Gy, given acutely or in five fractions at 2-h intervals. The acute and fractionated irradiations with each energy were done on the same day. No significant difference between the two irradiation modes was found for both cell inactivation and neoplastic transformation at all energies. These results are in agreement with our data for fractionated fission-spectrum neutrons from the RSV-TAPIRO reactor.

Animals↗