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Biomedical subjects

I Florentin

Publications and source records attributed to I Florentin.

At least 55 records · Page 3Linked to original sources

[Cancer and immunosuppression : experimental aspects].

The hypothesis that immunodepression favors a carcinogenetic process and thus subsequent tumor development remains controversial in spite of numerous experimental studies. This is due, on one hand, to the difficulty in demonstrating the presence of tumor-associated antigens and, on the other, to the complex immunological mechanisms which lead to the destruction of tumors cells. With respect to immunosurveillance, the present situation can be summarized as follows: the development of virus-induced tumors is under the control of a T-cell dependent system; a T-cell depression (thymectomy, congenital absence of thymus, anti-lymphocytic serum) increases the number of these tumors; chemically induced tumors or spontaneous tumors are under the control of non-specific effectors such as macrophages and NK cells; NK cell deficiency (of congenital origin such as in beige mice) or acquired (chemically induced) increases tumor growth; carcinogens can induce general immunodepression (chemical carcinogenesis) or stimulate specific suppressive cells (U.V. radiation) thus allowing tumors development. The tumors being established, it may itself contribute to an immunodepressive state thus fostering its growth through the activity of: immune complexes; specific or non specific suppressive cells; an increase in the level of alpha 2-globulin immunosuppressive molecules which are present under normal conditions; a release of several factors acting at different levels such as prostaglandin E, anti-inflammatory factors acting on monocytes, etc. The apparition of an antigenic and immunogenic tumor heterogeneity due to development of new clones will also modify host-tumor relationships. The complexity of the immunological mechanisms which are involved in the control of tumor growth may explain the variable results of immune prevention and of the immunotherapy of cancer.

Aging↗

Kinetic studies of the immunopharmacologic effects of NPT 15392 in mice.

NPT 15392 [9-erythro-(2-hydroxy,3-nonyl)-hypoxanthine] was administered in a single intraperitoneal injection to Balb/c mice at a dose of 0.1 mg/kg. Modifications of immune parameters were evaluated 1-14 days after the treatment. NPT 15392 potentiated antibody responses to both T-dependent (SRBC, TNP-KLH) and T-independent (TNP-LPS) antigens and delayed-type hypersensitivity to oxazolone. The proliferative response of spleen cells from NPT-treated mice to stimulation with PHA was depressed, but that to dextran sulphate was augmented. The responses to Con A or LPS were inconsistently modified. NPT 15392 augmented killer cell functions, including both T cell-mediated cytotoxicity against allogeneic tumor cells and NK cell activity against YAC-1 tumor cells. It slightly augmented or depressed ADCC activity against antibody-coated chicken erythrocytes (CRBC) depending on the time of its administration. Concerning the stimulation of NK cell activity, the effect was more marked on spleen effector cells when NPT 15392 was given i.v. and on peritoneal effector cells when it was given i.p. From these results, T helper cells, B cells, and NK cells appeared to be target cells of NPT 15392 action. The various stimulatory effects peaked at different times according to the immune function tested. In addition, the prolonged, sometimes double-peaked action (antibody response to T-dependent antigens, NK activity) indicates complex mechanisms of action which may involve indirect interactions mediated by lymphokines or monokines.

Adjuvants, Immunologic↗

The enhancement of interleukin 2 like production after in vivo stimulation of rat lymphoid cells by an acute non specific inflammatory process.

Interleukin 2 (IL 2) production was studied in lymphoid cells from rats undergoing an acute non specific inflammatory reaction induced by intrapleural injection of calcium pyrophosphate. Spleen and lymph node cells derived from inflamed animals had an increased level of IL 2 like production compared to cells from normal animals. Thymocytes also showed enhanced IL 2 like production although the absolute levels were lower than spleen or lymph node cells. It has been suggested that the acute non specific inflammatory reaction is able to modify lymphocyte reactivity via IL 2 and interleukin 1 (IL 1). The nature of the humoral factors released by the inflammatory process which are capable of initiating these events is also discussed.

Acute Disease↗

Macrophage activation by tuftsin and muramyl-dipeptide.

Peritoneal macrophages from tuftsin or MDP-treated mice were tested for their cytostatic activity for tumor cell proliferation. Both substances are able to activate macrophages either after intravenous injection or after incubation in vitro with normal macrophages. But a stimulation as well as an inhibition of tumor cell growth can result from macrophage activation depending on the timing and dose injected. Restoration of the impaired cytostatic capacity of macrophages of mice observed with aging, is obtained by repeated administration of tuftsin. Normal and BCG-stimulated macrophages were examined for their regulatory activity on the proliferation of P815 tumor cells. Low density of macrophages per well determines a stimulation of target cell growth whether the macrophages are normal or activated. When the number of macrophages is increased, under conditions in which normal macrophages are not inhibitory. BCG-stimulated macrophages exert already a strong cytostatic activity. At high macrophage content it appears that normal macrophages can also display an inhibitory activity. Macrophage-tumor cell interactions are highly dependent on the concentration and the state of activation of macrophages.

Acetylmuramyl-Alanyl-Isoglutamine↗

Correction of immunodeficiency in aged mice by levamisole and bestatin administration.

An attempt to correct the impaired immune functions of aged mice was made by injecting repeatedly (over a 6-month period) two chemically defined immunostimulating agents, levamisole and bestatin, into 12- to 16-month-old hybrid mice. Continuous treatment with levamisole restored T-cell-dependent functions (delayed-type hypersensitivity reaction and antibody response to T-dependent antigens) and prevented the appearance of suppressor cells induced by aging. In aged animals, this treatment led to macrophage activation and to a significant reduction of ADCC activity near the baseline value of young animals. Weekly injections of bestatin resulted in varying effects, depending on the dose administered. Small doses (10 microgram/injection) were more effective in restoring humoral response to SRBC rather than delayed-type hypersensitivity reaction, whereas large doses (100 microgram/injection) had the opposite effect. Macrophage activation was obtained only after the administration of the high dose of bestatin. Continuous treatment with bestatin did not eliminate suppressor cell activity, but decreased the ADCC normally elevated in aged animals. A significant reduction of spontaneous tumors and prolongation of median survival was observed in mice given repeated injections of levamisole and of 100 microgram bestatin, compared with untreated aged mice and with mice given low doses of bestatin.

Adjuvants, Immunologic↗

In vivo immunomodulating properties of two synthetic agents: azimexon and tuftsin.

Mice were submitted to various immunologic tests at different times after a single intravenous (IV) injection of azimexon or tuftsin in order to determine the mode of action of these chemically defined immunomodulators. Azimexon, (BM 12,531) an aziridine derivative, potentiated antibody responses to both thymus-dependent (TNP-KLH) and thymus-independent (TNP-LPS) antigens and DTH reaction to oxazolone when injected at least 1 day before the antigen. It activated macrophages, rendering them cytostatic for tumor cells, but depressed ADCC activity of spleen cells directed against antibody-coated CRBC. Tuftsin, a basic tetrapeptide, potentiated antibody response to TNP-KLH when injected at least 3 days before the antigen. The response to TNP-LPS was stimulated on days 1 and 3, but was slightly depressed on day 7. It rendered macrophages highly cytostatic for tumor cells but, as observed with azimexon, the activation process required 7 days to develop. ADCC was enhanced throughout the period of observation.

Adjuvants, Immunologic↗

[Stimulation of proliferation of rat spleen cells, in vitro, by a nonspecific acute inflammatory exudate. Modulation of cell response to phytohemagglutinin (PHA)].

The effect of an acute non-specific inflammatory exudate with mitogenic activity on macrophages in culture has been tested on the spontaneous and PHA-induced DNA synthesis of spleen cells in vitro. Stimulatory effect of this exudate was observed on spontaneous DNA synthesis which was detectable over a range of 1 : 4 to 1 : 4,000 concentrations. After optimal PHA stimulation, an inhibition of mitogen-induced DNA synthesis was observed when the cells were exposed to the highest concentrations (up to 1 : 128) of the exudate. Thereafter, the phenomenon could be reversed and the stimulation was maximal at a concentration of 1 : 2,000. When a sub-optimal dose of PHA was used, the simulatory effect was more pronounced and detected from 1 : 8 up to 1 : 4,000 concentrations.

Acute Disease↗

In vitro effect of an acute nonspecific inflammatory exudate on tritiated-thymidine incorporation by unstimulated and PHA-stimulated spleen cells.

The effect of an acute nonspecific inflammatory exudate with mitogenic activity for macrophages in culture has been tested on the spontaneous and PHA-induced DNA synthesis by spleen cells in vitro. Stimulatory effect of this exudate was observed on the spontaneous DNA synthesis which was detectable over a range of 1:4 to 1:4096 concentrations. After optimal PHA stimulation, an inhibition of mitogen-induced DNA synthesis was observed when the cells were exposed to the highest concentrations (up to 1:128) of the exudate. Thereafter, the phenomenon could be reversed and the stimulation was maximal at the concentration of 1:2048. When a suboptimal dose of PHA was used, the stimulatory effect was more pronounced and detected from 1:8 up to 1:4096 concentrations.

Animals↗

Comparative study of the histologic reactions to intravenous injections of heat-killed Pseudomonas aeruginosa and of BCG.

Intravenous injection (i.v.) of heat-killed Pseudomonas aeruginosa in mice produced histologic changes in the thymic cortex, some of which resembled, while others differed from, those produced by i.v. injection of living BCG. The changes that were similar consisted of pyroninophilia of cortical lymphocytes and hyperplasia of epithelial cells in the medulla and at the corticomedullary junction with increased PAS positive cells and secretions. Major differences, however, in the sequence and nature of the histologic events were observed. Pseudomonas injections produced thymic epithelial cell hyperplasia with increased PAS positive cells and secretions and pyroninophilia of thymic cortical lymphocytes earlier than did i.v. BCG (day 1 versus day 7). Corticomedullary inversion of thymic structure and early transient hyperplasia of the thymus dependent areas in the lymph nodes and spleen occurred after Pseudomonas but not after BCG injections. Hyperplasia in the B cell areas and germinal centers started to appear at day 10 after injection of Pseudomonas and persisted up to day 21 (compared to day 7 and day 14, respectively, for BCG). In contrast to i.v. BCG, Pseudomonas injections did not produce granulomas or macrophage proliferations.

Animals↗

Restoration of impaired immune functions of aged animals by chronic bestatin treatment.

An attempt to correct the state of immunodeficiency in old age was made by repeatedly injecting a chemically defined immunostimulating agent, bestatin, to 16 month old (C57Bl/6 x BALB/c) F1 mice. Aged mice were found to have depressed T-cell and B-cell responses but increased ADCC activity. Weekly injections of bestatin over a period of 6 months resulted in varying effects depending on the dose administered. Small doses (10 microgram per injection) were more effective in restoring humoral responses to SRBC rather than delayed-type hypersensitivity reactions, whereas large doses (100 microgram per injection) acted in the opposite way. Macrophage activation was only obtained after the administration of the high doses of bestatin. Continuous treatment with bestatin did not prevent the appearance of suppressor cells induced by ageing. It led to a significant reduction of ADCC activity in aged animals near to the base line value of young animals. Animals were examined for the presence of spontaneous tumours from the end of the treatment until the age of 28 months. A significant reduction of spontaneous tumour incidence was observed in mice given repeated injections of 100 microgram bestatin when compared to untreated aged mice and to mice given the low doses of bestatin.

Aging↗

Pharmacologic factors and manipulation of immunity systemic adjuvants in cancer therapy.

Because of the experimental and clinical studies which have been extensively conducted with bacillus Calmette-Guérin (BCG) as a systemic adjuvant in cancer immunotherapy, we have analyzed the main factors and conditions which determine its beneficial action and have underlined some of these (eg, the dose factor which controls the amplification of suppressor cells which is probably responsible for failures and even the possible tumor-enhancing effect of immunotherapy). Knowing those factors and conditions, we have been able to establish a systematic immunopharmacologic study of systemic immunity adjuvants, which has resulted in the discovery of agents whose actions are more rapid than that of BCG on one or a few populations of cells involved in immunity and which, unlike BCG, do not induce suppressor cell amplification. This amplification may explain the difference in the results obtained with this mycobacterium in various clinical immunotherapy trials in which it was applied differently. It is proposed to combine these mono- or pauc-functional adjuvants in order to try to obtain all of the beneficial effects of BCG without the amplification of suppressor cells.

Adjuvants, Immunologic↗

Effects of Bacillus Calmette-Guérin and levamisole on immune responses in young adult and age-immunodepressed mice.

The immunomodulating effects of bacillus Calmette-Guérin (BCG) and levamisole were tested in young adult mice after a single administration and in 12-month-old mice after continuous administration. In young mice, BCG was shown to activate macrophages, to potentiate antibody responses and delayed hypersensitivity reaction, to increase antibody-dependent cell-mediated cytotoxicity, and to induce nonspecific suppressor cells. Levamisole was not able to modify any of these immune responses in young mice. The action of these adjuvants differed markedly when tested in age-immunodepressed mice. BCG was found to be strongly immunosuppressive on antibody formation and induced suppressor cell activity in the spleen. Moreover, the survival of immunodepressed mice continuously treated with BCG was shortened in comparison to untreated aged mice. In contrast, levamisole acted as an immunorestoring agent because it strongly stimulated the antibody response compared to aged controls and did not induce suppressor cell population. The survival of levamisole-treated mice was prolonged when compared to untreated aged mice. When the surviving mice were killed and autopsied at the age of 24 months, the incidence of spontaneous tumors was significantly lower in the group of mice treated by levamisole.

Age Factors↗