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Biomedical subjects

E Mocchegiani

Publications and source records attributed to E Mocchegiani.

At least 37 records · Page 2Linked to original sources

Plasticity of neuro-endocrine-thymus interactions during aging--a minireview.

Thymic regrowth and reactivation of thymic endocrine activity may be achieved even in old animals by different endocrinological or nutritional manipulations. In particular: a) intrathymic transplant of pineal gland or treatment with melatonin; b) implantation of a growth hormone secreting tumor cell line or treatment with exogenous growth hormone; c) castration or treatment with exogenous LH-RH; d) treatment with exogenous thyroxine or triiodothyronine, and e) nutritional interventions such as arginine or zinc supplementation. These data strongly support the idea that thymic involution is a phenomenon secondary to age-related alterations in neuroendocrine-thymus interactions and that it is the disruption of such interactions in old age which is responsible for most of age-associated dysfunctions. With regard to the mechanisms involved in hormone-induced thymic reconstitution, it is, at present, difficult to draw any definitive conclusion. The effect of GH, thyroid hormones and LH-RH may be due to the presence on thymic epithelial cells, supposed to produce thymic peptides, of the specific hormone receptors. Melatonin or pineal derived factors may as well act through specific receptors but experimental demonstration is still lacking. The role of zinc, whose turnover is usually reduced in old age, is of quite wide-range: from the reactivation of zinc-dependent enzymes, required for both cell proliferation and apoptosis, to the reactivation of thymulin, a zinc-dependent thymic hormone. The role of zinc may be even more crucial. According to recent preliminary data obtained both in animal and in man, it appears that the above reported endocrinological manipulations, capable of restoring thymic activity in old age, may act also by normalizing the altered zinc pool.

Age Factors↗

Impaired peripheral zinc metabolism in patients with senile dementia of probable Alzheimer's type as shown by low plasma concentrations of thymulin.

Plasma concentrations of a zinc carrier peptide, namely thymulin, were measured according to a bioassay in young donors, healthy elderly, and patients with senile dementia of Alzheimer's type (SDAT). Thymulin is a hormone released by thymic epithelial cells and its biological activity on cells of immune system is dependent on the presence of one molecule of zinc bound to the peptide. Plasma from different subjects were fractionated by gel filtration to yield protein-bound thymulin and free thymulin. The biological activity of the peptide was then assessed in the two different fractions. The activity of protein-bound thymulin was higher in young donors than in elderly or SDAT patients, being the lowest in SDAT. Addition of zinc ions to plasma fractions increased the thymulin activity of samples from elderly and SDAT patients to levels observed in young donors. Thymulin activity in free thymulin fractions was lower in the elderly than in the young and was practically undetectable in SDAT patients. The addition of zinc ions normalized the activity of thymulin in these fractions from both the elderly and SDAT patients. These findings confirm the presence of an altered zinc status in the elderly and suggest that an impaired zinc metabolism may be present in SDAT patients.

Adult↗

Thymulin, zinc and insulin-like growth factor-I (IGF-I) activity before and during recombinant growth hormone (rec-GH) therapy in children and adults with GH deficiency.

Plasma thymulin (active and total) levels; IGF-I and zinc concentrations were evaluated in 9 children and in 8 adults with GH-deficiency (GHD) before and after 3-6 months of recombinant-GH treatment. Before therapy, GH deficient children had lower plasma active thymulin levels (1.0 +/- 0.3 log-2), not due to a peripheral defect in zinc saturation since plasma zinc levels were within the normal range, and total thymulin levels (1.3 +/- 0.3 log-2) than in the age-matched control group. GH therapy significantly increased active thymulin (3rd month: 3.0 +/- 0.2 log-2, 6th month: 4.0 +/- 0.2 log-2), total thymulin (3rd month: 3.3 +/- 0.3 log-2, 6th month: 4.3 +/- 0.2 log-2) and IGF-I levels (3rd month: 283.3 +/- 7.2 micrograms/L, 6th month: 411.2 +/- 44.2 micrograms/L, vs basal: 144.3 +/- 11.5 micrograms/L); at the 6th month of therapy, thymulin levels (active and total) were comparable to those found in controls. A positive correlation existed between zinc and plasma IGF-I levels (r = 0.66, p < 0.05). In adults with GHD, plasma active (1.9 +/- 0.3 log-2) and total thymulin levels (3.9 +/- 0.1 log-2), significantly lower (p < 0.01 and 0.05, respectively) than in controls before treatment, increased after GH therapy (active thymulin, 3rd month: 3.0 +/- 0.2 log-2, 6th month: 4.4 +/- 0.3 log-2; total thymulin, 3rd month: 3.9 +/- 0.3 log-2, 6th month: 4.7 +/- 0.2 log-2), being at 6th month of therapy no more different from the values recorded in the age-matched control group. In conclusion, children and adults with GHD have a marked impairment of the thymic endocrine activity, which can be restored by six months of GH treatment. The effects of GH on thymic functions may be mediated by IGF-I, through the modulation of zinc turnover, suggesting the possible existence of an interplay among GH, zinc, IGF-I and thymulin both in children and adults with GHD.

Adolescent↗

The zinc pool is involved in the immune-reconstituting effect of melatonin in pinealectomized mice.

Melatonin (MEL) affects the immune system by direct or indirect mechanisms. An involvement of the zinc pool in the immune-reconstituting effect of MEL in old mice has recently been documented. An altered zinc turnover and impaired immune functions are also evident in pinealectomized (px) mice. The present work investigates further the effect of "physiological" doses of MEL on the zinc pool and on thymic and peripheral immune functions in px mice. Daily injections of MEL (100 micrograms/mouse) for 1 month in px mice restored the crude zinc balance from negative to positive values. Thymic and peripheral immune functions, including plasma levels of interleukin-2, also recovered. The nontoxic effect of MEL on immune functions was observed in sham-operated mice. Because the half-life of MEL is very short (12 min), interruption of MEL treatment in px mice resulted, after 1 month, in a renewed negative crude zinc balance and a regression of immune functions. Both the zinc pool and immunological parameters were restored by 30 further days of MEL treatment. The existence of a significant correlation between zinc and thymic hormone after both cycles of MEL treatment clearly shows an involvement of the zinc pool in the immunoenhancing effects of MEL and thus suggests an inter-relationship between zinc and MEL in px mice. Moreover, the existence of significant positive correlations between zinc or thymulin and interleukin-2 suggests that interleukin-2 may participate in the action of MEL, via zinc, on thymic functions in px MEL-treated mice.

Analysis of Variance↗

Role of the low zinc bioavailability on cellular immune effectiveness in cystic fibrosis.

An altered cellular immune response as a secondary phenomenon has been suggested to be probably involved in the bronchopulmonary infections by Pseudomonas aeruginosa in cystic fibrosis (CF). The difficulty to eradicate with modern anti-pseudomonal antibiotics the bronchopulmonary infections has led us to further investigate the possible existence of other cellular immune defects and their cause. Alterations in zinc turnover are present in CF. Zinc is relevant for good immune functioning. In particular, zinc is required to confer biological activity to thymulin (ZnFTS), a biochemically defined thymic hormone with a modulating action on cell-mediated immunity. The zinc-unbound form (FTS) is inactive and it can be unmasked by in vitro zinc addition to the plasma samples revealing the total amount of circulating thymulin (active + inactive). Marginal zinc deficiencies may prevent peripheral biological activation of active thymulin. Total zinc-saturable thymulin fractions in CF are similar to those observed in normal subjects, whereas the active quota is strongly reduced associated with concomitant high plasma levels of inactive thymulin compared to the values of healthy children (P < 0.01). A strict correlation exists between zinc and thymic hormone-saturable fraction (r = 0.87, P < 0.01) in CF. These findings suggest that the defect is not due to a thymic failure but to a reduced peripheral saturation of thymulin by zinc ions. This defect might depend on augmented plasma concentration of alpha 2-macroglobulin, which has a higher binding affinity for zinc than thymulin. T cell subsets are normal in CF. Reduced NK cell number and activity are present. Also, plasma IL-2 levels are reduced. The existence of positive correlations between zinc and IL-2 (r = 0.79, P < 0.01) and between zinc or active thymulin and NK activity (r = 0.70, P < 0.01 and r = 0.88, P < 0.01, respectively) suggest a close link among zinc failure, impaired IL-2 activity, low thymulin level, and reduced NK activity in CF patients with both normal and growth retardation. Although the role of NK cells is unknown in CF, a zinc supplementation, in order to induce a complete saturation of thymulin molecules, to correct some cellular immune defects and to improve the growth, may be suggested.

Adolescent↗

Thyroid and thymic endocrine function and survival in severely traumatized patients with or without head injury.

OBJECTIVE: Functional links among the brain, endocrine and immune system have been described previously. An impairment of both immunological defence mechanisms and thyroid hormone turnover was present in trauma conditions. An investigation on the relevance of thymulin and thyroid hormones in multiple trauma patients with or without head injury has been performed. The role of these hormones as predictive factors for patients outcome was also evaluated. DESIGN: Plasma thymulin levels and plasma thyroid hormone concentrations were tested in multiple trauma patients 24 h after admission to the Intensive Care Unit (ICU) and again after 5 and 10 days. SETTING: Department of Immunology Ctr. INRCA, IInd ICU, S. Matteo Hospital Pavia and ICU "Umberto I" Hospital, Ancona. PATIENTS: 45 patients were evaluated including 14 multiple trauma patients without head injury and 31 multiple trauma patients with head injury at various level of coma, graded according to the Glascow Coma Score (GCS). INTERVENTIONS: Routine protocol interventions were performed in all head injured patients. MEASUREMENTS AND RESULTS: Thymulin and triiodothyronine (T3) levels were reduced, and reverse triiodothyronine (rT3) increased in all traumatized patients, but multiple trauma patients with head injury and GCS < or = 5 had the lowest levels of thymulin and T3 and the highest levels of rT3. No difference in plasma thyroxine (T4) and thyrotropin (TSH) levels was observed among injured patients. The analysis of predictive factors for the outcome has assigned to thymulin the highest score (29.6%) compared with the score for T3 (19.3%) and rT3 (26.3%). The total relative risk (delta %) calculated on the basis of T3 or rT3 rises significantly when thymulin relative risk is added. CONCLUSIONS: Thymulin is markedly reduced in multiple trauma patients with head injury and it represents a predictive factor for the outcome better than the one deriving from the single measurements restricted to thyroid hormones.

Accidental Falls↗

Zinc, human diseases and aging.

Zinc is one of the most important trace elements in the body for many biological functions; it is required as a catalytic component for more than 200 enzymes, and as a structural constituent of many proteins, hormones, neuropeptides, hormone receptors, and probably polynucleotides. Due to its role in cell division and differentiation, programmed cell death, gene transcription, biomembrane functioning and obviously many enzymatic activities, zinc is considered a major element in assuring the correct functioning of an organism, from the very first embryonic stages to the last periods of life. This biological role together with the many factors that modulate zinc turnover explains on one hand, the variety of clinical and laboratory signs resulting from its reduced bioavailability, and on the other, the high number of human pathologies characterized by alterations in the zinc pool. As zinc supplementation is efficacious in most of these conditions, it is regarded more as an oriented therapeutical support, than a simple dietary integrator. Furthermore, the relevance of zinc status to many age-associated diseases and, according to experimental studies, the aging itself of the major homeostatic mechanisms of the body, i.e., the nervous, neuroendocrine and immune systems, places zinc in a pivotal position in the economy of the aging organism.

Aging↗

Reversibility of the thymic involution and of age-related peripheral immune dysfunctions by zinc supplementation in old mice.

With advanced ageing the zinc pool undergoes progressive reduction as shown by the low zinc plasma levels and the negative crude zinc balance, both in humans and in rodents. It has been suggested that such zinc deficiency might be involved in many age-related immunological dysfunctions, including thymic failure. The relevance of zinc for good functioning of the entire immune system is, at present, well documented. In particular, zinc is required to confer biological activity to one of the best-known thymic peptides, thymulin, which is responsible for cell-mediated immunity. In deep zinc deficiencies, in humans and other animals, the low thymulin levels are due not to a primary failure of the thymus, but to a reduced peripheral saturation of thymic hormones by zinc ions. In aged mice both a reduced peripheral saturation of the hormone and a decreased production by the thymus were present. Oral zinc supplementation in old mice (22 months old) for 1 month induced a complete recovery of crude zinc balance from negative (-1.82) to positive values (+1.47), similar to those of young animals (+1.67). A full recovery of thymic functions with a regrowth of the organ and a partial restoration of the peripheral immune efficiency, as measured by mitogen responsiveness (PHA and ConA) and natural killer cell (NK) activity, were observed after zinc supplementation. These findings clearly pin-point for relevance of zinc for immune efficiency and suggest that the age-related thymic involution and peripheral immunological dysfunctions are not intrinsic and irreversible events but are largely dependent on the altered zinc pool.

Administration, Oral↗

Benefit of oral zinc supplementation as an adjunct to zidovudine (AZT) therapy against opportunistic infections in AIDS.

Zinc is perhaps the most important trace element for immune function. Congenital or acquired zinc deficiencies are associated with immune abnormalities and increased susceptibility to infectious diseases. AIDS subjects suffer from reduced zinc bioavailability, more severe in stage IV than in stage III. Such zinc deficiency causes, among other effects, a profound reduction in the biological activity of one of the thymic hormones, thymulin (zinc-facteur-timique-serique, ZnFTS). With these premises, zinc sulphate was administered orally at a daily dose of 200 mg for 30 days to AZT-treated stage III subjects with generalized lymphadenopathy (17 subjects) and stage IV subgroup C1 (12 subjects) AIDS patients. 18 stage III subjects with generalized lymphoadenopathy and 10 stage IV subgroup C1 subjects treated only with AZT served as controls. Zinc sulphate supplementation of stage III and in stage IV C1 patients was followed by an increase or a stabilization in the body weight and an increase of the number of CD4+ cells and the plasma level of active zinc-bound thymulin. The frequency of opportunistic infectious episodes in the 24 months following entry into the study was reduced after zinc supplementation in stage IV C1 subjects (11 infections vs 25 in controls) and delayed in stage III zinc-treated subjects (1 infection/24 months vs 13 infections/24 months in controls). The effect of zinc on opportunistic infections is restricted to infections due to Pneumocystis carinii and Candida, whereas no variations have been observed in the frequencies of cytomegalovirus and toxoplasma infections. These data may support the benefit of zinc as an adjunct to AZT therapy in AIDS pathology.

AIDS-Related Opportunistic Infections↗

Age-related thymus involution: zinc reverses in vitro the thymulin secretion defect.

The inevitability of thymic involution in aging has been opened to question by two recent findings. First, it has been demonstrated that the synthesis and/or secretion of one thymic factor, zinc-thymulin (Zn-FTS), is still present, although reduced, in humans over 90 yr of age and in mice over 24 months of age. The major defect resides in the zinc saturation of thymulin, rather than in the synthesis and secretion rate of the polypeptide by the thymus. Zinc pool is in fact reduced in old age. Thymic explants from old mice in vitro for a short period (6 h) produce nearly the same amount of thymulin as young thymuses, but the zinc-bound form is nearly absent. Zinc addition to the cultures fully recovers the defect. These findings clearly suggest that thymic involution is not an intrinsic and irreversible phenomenon, but is largely due to microenvironmental factors, among which zinc is crucial.

Aging↗

Pituitary-thyroid axis and immune system: a reciprocal neuroendocrine-immune interaction.

A good body of experimental and clinical results has supported the existence of numerous reciprocal interactions among the nervous, endocrine and immune systems. Increasing evidence has been accumulated in the last years on the interaction between pituitary-thyroid hormones and the immune system on the basis of either the existence of receptors for thyreotropic and thyroid hormones on lymphocytes or the frequent immune alteration in physiological and pathological fluctuations of thyroid hormones. The data were obtained either in animals with experimentally induced hyper- or hypothyroidism or in humans with various hyperthyroid or hypothyroid situations. Conversely, immune-derived products such as lymphokines and monokines have been shown able to influence the pituitary-thyroid axis modulating either the thyroid hormone levels or the hormone/cytokine production by thyrocytes. The present paper aims at summarizing the data available on the existence of thyroid-immune interactions, and at analyzing the possible integration between pituitary-thyroid hormones and immune factors in favoring the development and maintenance of both thymic and peripheral immune efficiency. The relevance of pituitary-thyroid-immune interactions is discussed for its implication in the ageing process.

Aging↗

Plasma zinc level and thymic hormone activity in young cancer patients.

It has been reported that in many neoplastic diseases, including leukemia, alterations in plasma zinc levels may frequently occur, although the causes for such alterations have yet to be clearly defined. Since zinc is required to induce biological activity to thymulin (Zn-FTS), a biochemical defined thymic hormone, and marginal zinc deficiencies may prevent its peripheral biological activation, we investigated the plasma level of zinc and of both active thymulin (Zn-FTS) and total zinc saturable thymulin (Zn-FTS + FTS) in 91 young patients affected by acute lymphoblastic leukemia (ALL) at various stages of the disease. It was discovered that the plasma zinc level was reduced at the onset and relapse, whereas in complete remission and in off-therapy it was in the normal range. Total zinc-saturable thymulin concentration did not change during the disease, whereas the active fraction was reduced at the onset and in relapse when compared with values observed in the other stages of the disease or in healthy controls. These data suggest that zinc plasma deficiency is present in ALL patients at the onset and during relapse, and that such a deficiency causes a decrease in the activity of thymulin despite a nearly normal production by the thymus. An impairment of peripheral immune efficiency in ALL patients is commonly found. The existence of positive correlations between zinc or active thymulin and peripheral immunological parameters (phytohemagglutinin [PHA] and concanavalin A [ConA]) at various stages of the disease suggests a link between derangement of peripheral immune function, thymic hormone activity, and zinc failure. These findings, considered together, suggest the possibility of a carefully controlled clinic trial with zinc in ALL patients at the onset and in relapse even in the light of in vitro ineffectiveness of physiological zinc or thymulin concentrations on the duplicative index of human lymphoblastoid cells.

Adolescent↗

The immuno-reconstituting effect of melatonin or pineal grafting and its relation to zinc pool in aging mice.

It has been demonstrated that melatonin, the main neuro-hormone of the pineal gland, affects thymic functions and the regulation of the immune system. In addition, experimental evidences indicate that melatonin can modulate zinc turnover. The knowledge that with advancing age both melatonin and zinc plasma levels decline, and that zinc supplementation in old mice is able to restore the reduced immunological functions, has prompted investigations on the effect of chronic melatonin treatment or pineal graft in old mice on the age-related decline of thymic endocrine activity, peripheral immune functions and zinc turnover. Both melatonin treatment in old mice and pineal graft into the thymus of old mice correct the reduced thymic endocrine activity and increase the weight of the thymus and its cellularity. A restoration of cortical thymic volume, as detected by the percentage of tissue in active proliferation, is also observed in old mice after both treatments. Thymocyte CD phenotype expression is also restored to young values. At peripheral level, recovery of peripheral blood lymphocyte number and of spleen cell subsets, with increased mitogen responsiveness also occurs. Melatonin treatment or pineal graft induce also a restoration of the altered zinc turnover in aged mice with an increment of the crude zinc balance from negative (-1.6 microgram/day/mouse) to positive value (+1.2 microgram/day/mouse), similar to that one of young mice (+1.4 microgram/day/mouse). The reduced zinc plasma level is restored to normal values. These findings support the idea that the effect of melatonin on thymic endocrine activity and peripheral immune functions may be mediated by the zinc pool.

Aging↗

Oral zinc supplementation in Down's syndrome subjects decreased infections and normalized some humoral and cellular immune parameters.

The effect of 4 months of oral zinc supplementation on immune functions in non-institutionalized young female and male Down's syndrome (DS) subjects was studied. Along with plasma levels of zinc, the immune parameters, measured before and after zinc treatment, were plasma levels of thymulin, the percentage and the absolute number of circulating white blood cells, total lymphocytes, lymphocyte subpopulations, the mitogen-induced lymphocyte proliferation, the production of interleukin-2, and the activity of stimulated granulocytes. Some immune parameters were significantly influenced by zinc treatment. In particular, a normalization of thymulin and zinc plasma levels were found in these subjects after zinc supplementation. At the end of the clinical trial, in vitro lymphocyte proliferation and polymorphonuclear activity also increased and reached normal values. Zinc administration exerted a positive clinical effect in these children, since a reduced incidence of infections was found.

Administration, Oral↗

Modulation of the neuroendocrine system and immune functions by zinc supplementation in children with Down's syndrome.

Plasma levels of TSH, T4, T3, and reversal T3 (rT3) were measured in 51 children with trisomy of the chromosome 21 and in 15 controls. Levels of TSH were higher in children with DS than in controls and rT3 levels were decreased. However, T3 and T4 levels were in the normal range. Plasmic zinc and thymulin, a zinc-dependent thymic hormone, were also decreased. After dietary supplementation with ZnSO4, levels of plasmic zinc, thymulin, TSH and rT3 were restored. A follow up of DS children one year after the cessation of zinc therapy showed that plasma levels of zinc decreased and TSH lightly increased. Zinc deficiency may play a crucial role in the pathogenesis of thyroid gland disfunction which leads to the autoimmune hypothyroidism often observed in this syndrome.

Down Syndrome↗