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N Fabris

Publications and source records attributed to N Fabris.

At least 73 records · Page 4Linked to original sources

Improvement in the proliferative capacity and natural killer cell activity of murine spleen lymphocytes by thyrotropin.

In the present study we investigated the effect of thyrotropin (TSH) on both the proliferative capacity and the natural killer (NK) cell activity of murine spleen lymphocytes. It was found that TSH at various concentrations significantly increased the proliferative response of mouse lymphocytes to both concanavalin A (Con A) and phytohemagglutinin (PHA). This increase was particularly evident when suboptimal concentrations of mitogens were used (40-50% increase). The administration to cell cultures of TSH alone could not induce a significant stimulation of proliferative capacity. In order to provide a better knowledge about the mechanism by which TSH improved the mitogen-induced lymphocyte proliferation, the effect of the pituitary hormone on lymphocytes directly stimulated with recombinant interleukin-2 (RIL-2), was examined. It was observed that there was a great increase in IL-2-induced lymphocyte proliferation by TSH. The improvement in proliferative capacity of lymphocytes was particularly evident by using suboptimal rIL-2 concentrations (25-30% increase). The studies carried out on the cytotoxic activity of NK cells showed that TSH was able to significantly increase the IL-2-induced NK cell activity without modifying the basal levels of cytotoxicity. The results support the immunoregulatory role of TSH and contribute towards understanding the mechanisms of interaction between neuroendocrine and immune systems.

Animals↗

In vitro restoration by thymulin of NK activity of cells from old mice.

Old mice show a reduced natural killer (NK) cell activity. Among the causes proposed to explain this defect, both intrinsic failure of NK cells or age-related alteration of microenvironmental factors relevant for NK function, have been taken into consideration. The findings reported in the present paper, demonstrate that thymic peptides, and in particular the facteur timique serique (FTS), more recently called thymulin (ZnFTS) in its zinc-bound form, whose production and activity is generally reduced in old age, is able, when administered in vitro, to restore the crippled NK cytotoxicity of spleen cells from old mice. Neither the zinc-unbound form of the hormone (FTS) nor zinc ions alone are effective. The action is exerted on the basal NK activity and not on IFN-boosted NK cytotoxicity, at variance with the restoration obtained in similar experimental conditions with thyroid hormones, thus suggesting that different mechanisms or maturative steps of NK cells are involved.

Aging↗

Natural killer cell activity in patients with gynecologic malignancies: correlation with histologic grading and stage of disease.

Basal natural killer (NK) cell activity in peripheral blood lymphocytes (PBLs) of 29 patients with gynecologic malignancy and 10 healthy controls was performed using K 562 cell line. A significant decrease of NK cell activity was observed in patients with gynecologic malignancy (p = 0.003). The NK cell activity of patients with poorly differentiated tumor or with stage IV of disease was significantly reduced with respect to patients at any other lower grade or earlier stage. We conclude that in patients with gynecologic malignancies there is a decrease of basal NK cell activity of PBLs, which is more significant in cases of distant tumor dissemination or poorly differentiated tumor (p less than 0.001).

Adult↗

Lymphocyte subset and NK activity in cervical intra-epithelial neoplasia.

We have studied the systemic T-lymphocyte subset and, in particular, the natural-killer (NK) activity in 23 patients with cervical intra-epithelial neoplasia (CIN), and 11 controls (a history of normal cervical PAP smears and colposcopy patterns). The lymphocyte phenotypes were studied using a panel of monoclonal antibodies, and NK activity was evaluated as the percentage lysis of K 562 target cells. In patients with CIN we found a significant decrease in NK activity (p = 0.002) which was directly correlated with the grade of CIN, with no alterations in the absolute number of NK cells.

Adult↗

Arginine-containing compounds and thymic endocrine activity.

The frequent association of malnutrition, infectious disease and aging has stressed the role played by some nutrients on the immune efficiency and particularly on the age-dependent immunological decline. Since arginine has been proven to enhance immune efficiency as demonstrated by the observation that supplemental dietary arginine accelerates would healing and increases thymus weight, we have evaluated the influence of oral administration of arginine on the age-associated immune deficiencies and in particular on the reduced thymic endocrine activity, as measured by the circulating level of one of the best known thymic peptides, i.e. thymulin. Thirty days oral treatment with arginine at the dose of 0.03 g/Kg b.w./day in 20 month old mice induces a full recovery of thymic endocrine activity and a significant increase of PHA responsiveness by spleen cells, when compared with untreated age-matched controls. In humans, oral administration of a commercially available arginine-lysin combination (Lysargin, Baldacci, Pisa, Italia) at the dose of 4 gr. of arg. + 4 gr. of Lysine induces a significant increment of thymulin blood level both in elderly and in cancer patients and at peripheral level, an increase of CD4+ lymphocyte subpopulation. These findings confirm the immunomodulation role of arginine and suggest that on the target of arginine as the thymus and particularly its endocrine activity. Furthermore arginine and arginine-containing compounds may offer a new therapeutical approach to restore thymic immunodeficiencies associated with age or secondary to pathologies inducing thymic deterioration such as trauma, stress and cancer.

Animals↗

Zinc and bromocriptine long-term administration in patients with prolactinomas: effects on prolactin and thymulin circulating levels.

Several studies have demonstrated zinc (Zn), prolactin (PRL) and thymulin (Zn-FTS) interplay: Zn inhibits, in a dose related manner, PRL release from lactotropes in vitro and stimulates thymulin synthesis in vivo both in humans and in animals. PRL receptors are present on thymic epithelial cells (TEC); PRL stimulates TEC trophism and activity. Little is known about the influence of PRL on Zn metabolism, though in prolactinomas we found reduced Zn and thymulin circulating levels. For this reason, we evaluated PRL, Zn, bioactive thymulin (Zn-FTS) and total thymulin (T-FTS: Zn-bound plus Zn-unbound form) serum levels in 58 patients with prolactinomas (PRL: 253 +/- 263 micrograms/L), Zn (82 +/- 23 micrograms/dl), Zn-FTS (2.2 +/- 0.20 log2(-1] and T-FTS (3.7 +/- 0.25 log2(-1] were significantly lower (p less than .01) than those found in age matched controls. Zn-unbound bioinactive thymulin form (FTS) levels were in the normal range. Bromocriptine administration (Brc) (2.5-5 mg p.o., b.i.d. for 9 months) to 20 patients with microprolactinomas lowered serum PRL levels (10.5 +/- 6.2 micrograms/L) and significantly increased (p less than .01) Zn (118.6 +/- 14.7 micrograms/dl), Zn-FTS (3.96 +/- 0.7 log2(-1)) and T-FTS (4.66 +/- 0.7 log2(1)) circulating levels. ZnSO4 administration (400 mg p.o. daily for 3 months) to 6 patients with microprolactinomas, significantly increased (p less than .01) Zn (136 +/- 18 micrograms/dl), Zn-FTS (4.5 +/- 0.5 log2(-1)) and T-FTS (5.6 +/- 0.9 log2(-1)) levels, while caused only a slight decrease in serum PRL concentrations (from 95 +/- 8 to 75 +/- 9 micrograms/L; p: NS).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Evaluation of NK and LAK cell activities in neoplastic patients during treatment with morphine.

The cytotoxic activity of Natural Killer (NK) and Lymphokine Activated Killer (LAK) cells in neoplastic patients with or without antalgic treatment was studied. NK cell activity was found reduced in untreated neoplastic patients when compared to healthy subjects. The atalgic treatment with morphine (orally or intrathecally administered) was able to significantly reduce the mean values of NK cell activity found in cancer patients. In three patients the cytotoxicity of NK cells significantly decreased during transfer from oral to intrathecal administration of morphine. In contrast to the NK cell function, the development of LAK cell activity significantly increased in neoplastic patients when compared to healthy controls. Further increments were obtained during treatment with morphine. The oral treatment with morphine was able to determine a higher induction of LAK cells than the intrathecal administration of the drug. Besides providing new knowledge on the effect of morphine on immune system our findings suggest that, in order to include neoplastic patients in clinical trials of adoptive immunotherapy with LAK cells and interleukin-2 (IL-2), the antalgic therapy with oral administration of morphine may represent a better solution than the intrathecal administration of the drug.

Administration, Oral↗

Thymic endocrine activity in children with idiopathic growth-hormone deficiency.

Experimental and clinical evidences suggest that thymic endocrine function is modulated by the neuroendocrine network and in particular by growth hormone. The plasma of thymulin has been found reduced in congenital hypopituitarism and increased in acromegalic conditions when compared with the values observed in age-matched controls. In the present paper we have investigated in congenital GH-deficient children the effect of one year therapy with GH on the plasma level of thymulin, IGF-1 and plasma zinc; this last parameter has been checked because zinc is required for thymulin activity and modulates IGF-1 production. The basal thymulin and IGF-1 values are lower in GH deficient children than age-matched controls whereas zinc levels show a slight reduction. GH therapy induces a significant increment both of thymulin and IGF-1 levels and a slight increase of plasma zinc. A positive correlation has been found between zinc values and thymulin activity but not between GH and thymulin. Whether the recovery of thymulin production in GH deficient children by GH therapy is mediated by IGF-1 or by bioavailability of zinc ions remains to be established.

Adolescent↗

Recovery of spleen cell natural killer activity by thyroid hormone treatment in old mice.

The age-dependent changes in thyroid-hormone blood levels and the effects of in vivo and in vitro thyroid-hormone administration on both basal and lymphokine-induced spleen cell natural killer (NK) activities have been investigated in young and old Balb/c mice. Both thyroxine (T4) and triiodothyronine (T3) plasma levels decline progressively with increasing age of the mice, displaying in 25-month-old mice only 50 and 60% of the T4 and T3 blood levels, respectively, found in young mice. In vivo T4 administration to old mice causes a significant increment in endogenous NK activity (2.2-fold increase), which approaches the values observed in young animals, while it does not modify NK activity in young mice. The T4 injection in old mice does not induce changes in the lymphocyte sub-populations. When T4 is administered in vitro alone or in combination with interferon (IFN) and/or interleukin 2 (IL-2), no effect is observed either on basal activity or IL-2-induced cytotoxicity, whereas the IFN sensitivity of spleen cells from old mice is significantly recovered (4-fold increase). T4 is able to increase IFN-induced cytotoxicity even when administered in vitro simultaneously with IFN to the cytotoxic assay (1.5- and 2.7-fold increases in young and old mice, respectively). Under these conditions, IFN alone is not able to exert any boosting effect even at a young age. In vivo propylthiouracil (PTU) administration completely abrogates the IFN responsiveness of spleen cells in young mice. The interruption of the PTU treatment results in a recovery of IFN-inducible NK cytotoxicity. Taken together, our findings point out the important role of thyroid hormones in the modulation of NK cell activity and provide a new insight into the mechanisms by which the endocrine system is able to influence the expression of natural immunity.

Aging↗

Reversibility of age associated NK defect by endocrinological and/or nutritional intervention.

Several abnormalities arise at the level of NK cell function in both rodents and humans with increasing age. The age-related changes are not irreversible alterations since they can be reversed either by endocrinological or nutritional approaches, suggesting that age-related microenvironmental changes may play a relevant role in the age-related immune deterioration. Whether endocrine and nutritional factors have an additive effect or act through the same intracellular mechanisms remains to be established, though the first possibility seems more likely since the action of TSH and thyroid hormones is specifically directed towards lymphokine-boosted NK activity, while AL are able to prevent age-associated defect of basal NK cytotoxicity.

Aging↗

Plasticity of neuroendocrine-immune interactions during aging.

Intact neuroendocrine-immune interactions are essential for the development and functional maintenance of both systems. Normal physiological aging appears to be, in part, dependent on age-related modifications of neuroendocrine-immune interactions. The thymus plays a major role in this context. Experimental manipulation at the thymic or neuroendocrine level may reciprocally correct the age-associated dysfunctions, suggesting the reversible nature of such phenomena.

Adaptation, Physiological↗

Improvement of natural killer cell activity by in vitro active lipids (AL 721) administration in old mice.

Results of several experiments have given rise to the hypothesis that the decline of the immunocompetence with aging is at least in part related to alterations of the lipid membrane composition and, consequently, to a decrease in membrane fluidity. The age-dependent decline of mitogen responsiveness can, in fact, be reversed by a special lipid mixture designated as active lipids (AL 721), which acts by means of its fluidizing action on the plasma membrane. The purpose of this study was to examine the possibility of raising the low endogenous levels of Natural Killer (NK) activity by in vitro AL administration in old mice. When spleen cells from old mice were incubated in vitro with AL, a significant increase in cytotoxic activity was obtained over control cultures, without reaching, however, the levels observed in young mice. In spleen cells from young mice, the AL administration causes a slight augment of NK basal activity. These results suggest that cell membrane fluidity plays an important role in the efficiency of NK cells, giving support to the hypothesis that a rectification of rigidified cell membranes may represent a valuable approach to restore proper physiological functions in old age.

Aging↗

Neuroendocrine-thymus interactions. I. In vitro modulation of thymic factor secretion by thyroid hormones.

Several in vivo experimental and clinical studies suggest that the production of thymic hormones, such as thymulin (Zn-FTS), is modulated by thyroid hormones. It was not determined in these studies, however whether such modulation is exerted directly on the thymic epithelial cells which synthesize and secrete thymic hormones. In order to discriminate between direct and indirect modulation, the effect of thyroid hormones on the in vitro production of thymulin by whole thymic organ culture, as detected by the rosette inhibition assay, has been investigated. Donors of thymuses were young 6N-propyl-2 thiouracil (PTU)-treated hypothyroid Balb/c mice and normal littermates. Thymuses from hypothyroid mice were shown to produce concentrations in vitro nearly undetectable of thymic hormone, when compared to thymuses from normal mice. The in vitro addition of triiodothyronine (T3) caused a complete recovery of the thymic hormone production by thymuses from hypothyroid mice and an increased synthesis even by normal thymuses over control values. The complete blockade of in vitro thymic hormone production with cycloheximide, which inhibits mRNA and protein synthesis but not thyroid hormone permissive actions, suggests that the T3 induced increment of thymic hormone level in the supernatant is due to de novo synthesis. Furthermore, the number of thymulin-producing cells, as detected by immunofluorescence using a specific antithymulin monoclonal antibody, which is quite low in thymuses from hypothyroid mice, is completely regained after in vitro incubation with T3. These findings support the idea that the modulation of thyroid hormones on thymic endocrine activity is directly exerted at thymic level.

Animals↗

Modulation of lymphoid cell sensitivity to interferon by thyroid hormones.

The possibility of increasing the responsiveness of lymphoid cells to Interferon (IFN) was investigated by studying the effect of the in vitro preincubation of spleen cells from young mice with thyroid hormone prior to the administration of IFN on their Natural Killer (NK) activity. Both physiological concentrations of T4 or T3 are able to significantly increase the boosting action of IFN on NK cells. The increase in IFN-responsiveness is observable at various IFN concentrations and the peak level of IFN-induced NK activity is reached with less than a half-optimal IFN concentration after T4 pretreatment. The effect of T4 on the IFN-sensitivity of NK cells requires a very short time, being already fully expressed after only 30 min, with minor increments at more prolonged incubation times. These results indicate for the first time the possibility of modulating the in vitro sensitivity to IFN by a hormonal approach.

Animals↗

Prolactin, thymulin and zinc in chronic hemodialysis: effect of renal transplant.

The interrelationships between PRL, thymulin and Zn, were studied in 25 patients with chronic renal failure (CRF) undergoing kidney transplantation and immunosuppressed with cyclosporine A (CsA). The possible role of serum PRL levels in predicting allograft rejection was also investigated. Before the kidney transplant serum PRL levels were significantly higher than in normals (mean +/- SE, 28.3 +/- 7.1 vs 7.5 +/- 0.6 micrograms/l, p less than 0.001) and their response to TRH (200 micrograms iv) was impaired (mean delta % at peak, 45.4 +/- 9.5 vs + 641 +/- 47.5, p less than 0.001). After kidney transplantation a dramatic decrease in serum PRL concentrations was observed in all patients, followed by a slight upward trend in the following two weeks, while TRH test administered on 3rd, 7th and 14th day, induced a progressive increase in serum PRL responses (delta % at peak, 201 +/- 43.3, 220 +/- 37.1 and 305 +/- 15.5, respectively). No difference in serum PRL patterns was observed between patients with (8 cases) and without (17 cases) clinical features and kidney fine needle biopsies suggestive of rejection. Basal serum Zn levels of patients with CRF (18.1 +/- 0.6 mumol/l) were similar to those observed in normals (17.7 +/- 0.2 mumol/l) and without any correlation with serum PRL levels. A decrement in serum Zn was recorded during CsA infusion and on the first day after the surgery, followed by a slight and slow upward trend. Basal serum thymulin titers were low [2.92 +/- 0.18 (1/log2)], were further reduced after CsA infusion [1.68 +/- 0.15 (1/log2)] and returned to the pretransplant levels in the two weeks after grafting.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗