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Biomedical subjects

A Bravo-Cuellar

Publications and source records attributed to A Bravo-Cuellar.

14 recordsLinked to original sources

The bactericidal capacity of peripheral blood monocytes from HIV positive patients may collapse very soon after the infection.

The activity of peripheral blood monocytes from HIV positive patients was measured by the intensity of the chemoluminescence those cells emit when they ingest a foreign particle. In most patients (84%) that value was impaired. Such an alteration may occur very early in the course of the disease. The anti-p24 antibody titer was correlated with monocyte phagocytic potential as measured by the chemoluminescent value thus indicating the need for adequate monocyte activity in order to obtain antibody formation. The severity of opportunistic infections that HIV positive subjects may develop is a clear indication that their immune systems are abnormal. The most frequently affected cells are those which bear the viral receptor, the CD4 antigen. Those cells are mainly the helper T cells and monocytes. The monocytes are the immune system phagocytic cells which actively control infections, in part by the release oxidative radicals. Those radicals can easily be measured by the chemoluminescence (CL) the cells emit when they ingest a foreign particle. This study examines the CL emitted by peripheral blood monocytes from HIV-positive and control subjects while they phagocytose opsonized zymosan in vitro and correlates these values with other laboratory parameters.

Blood Bactericidal Activity

Hepatotoxicity induced by a single ip injection of ruthenium red.

Ruthenium red (RR) has been used as a marker in morphological observations of the glycocalix because it interacts with polyanionic mucopolysaccharides. This fact may explain its agglutinating effect on rat blood red cells following a single 20 mg/kg intraperitoneal injection, which increases with time post-injection. This study was performed to determine whether such an effect was due to a direct effect of the RR on the blood cells, to interference with coagulation, or to the non-specific general toxicity of this dye. Male rats were injected with 20 mg/kg RR ip and the enzymatic and coagulation parameters, plus the liver morphology were examined. Alanine aminotransferase (ALAT) activity was increased at 30, 60 and 120 min, and aspartic aminotransferase (ASAT) activity was increased 60, 120 and 480 min after RR injection. The prothrombin time (PT) and partially activated thromboplastin time (PTT) were significantly decreased, particularly after 60-120 min. The liver had an external granular appearance with clear signs of congestion and oedema, and showed degenerative changes very soon after RR injection. A single administration of RR induces serious functional and structural changes in the liver. Such a toxicity, and these changes must be taken into consideration, particularly with regard to neurological studies.

Animals

Increased phagocytic activity of peripheral blood monocytes after intravenous injection of phospholipase A2 to monkeys.

One of the expressions of the activity of phagocytic cells such as monocytes or macrophages is a burst of increased oxidative activity on stimulation. The free oxygen radicals liberated, mainly O2- and H2O2, lead to chemoluminescence, which is thus a measure of activation. Chemoluminescence also depends on arachidonic acid metabolism, and this depends on phospholipase A2 (PLA2). We modified monocyte activity in monkeys by injecting them i.v. with this enzyme and observed that 30 min after injection, the phagocytic activity of peripheral blood monocytes and the chemoluminescence they emitted was greater than that of controls. We suggest that PLA2 may act as an in vivo immunomodulator in mammals.

Adjuvants, Immunologic

Enhanced production of interleukin 1 by mouse peritoneal macrophages after aclacinomycin administration.

The peritoneal cells of mice injected with aclacinomycin (ACM), an oncostatic drug of the anthracyclin family, were found to secrete more interleukin (IL-1), after two successive 24-h periods of in vitro LPS stimulation than those of control mice. This measured IL-1 production is one of the signs of enhanced macrophage activity. The cells of ACM-injected mice also contained more intracellular IL-1 than those of controls. In contrast, macrophages from ACM-injected mice only increased their IL-1 production after the first 24-h incubation with PMA, and not after the second 24-h incubation. The response to ACM was dose- and time-dependent. We have also compared the IL-1 production by macrophages from mice injected with other anthracyclins, at doses equimolar to that of 4 mg/kg ACM and we have observed that adriamycin, 4'-epiadriamycin and aclacinomycin had similar activity, while THP-adriamycin an daunorubicine were slightly more active. Exploitation of this increased IL-1 production by macrophages could be beneficial in the design of tumor treatment protocols.

Aclarubicin

Pulmonary toxicity of oxygen.

Prolonged exposure to hyperoxia in order to compensate for inefficient ventilation can lead to progressive pulmonary damage and death. Since pulmonary macrophages control bacterial and viral penetration, we studied the effect of hyperoxia on pulmonary alveolar macrophages from newborn and adult rats, kept in air or in a 95% normobaric oxygen atmosphere. The viability of pulmonary alveolar macrophages in bronchoalveolar lavages of newborn rats after 3 d in oxygen was significantly lower than that of newborn rats after 3 days in air. The functional capacity, as measured by the phagocytosis of Candida was similarly affected and these observations mays explain why infections develop. Adult rat macrophages were not sensitive to hyperoxia.

Animals

Allo-activated CD4+ and CD8+ lymphocyte subsets: new ultrastructural findings based on computer-assisted image analysis.

Primary allo-stimulation induces substantial and differentiated modifications in the development of cytoplasmic organelles of peripheral T-lymphocyte subsets. The present computer-assisted image analysis provides evidence that the CD4+ subset undergoes significant increase in organelle density after stimulation, while the CD8+ subset exhibits a post-stimulation organelle development proportional to the cell size. Each immunological subset contains two distinct patterns of cytoplasmic organization, here defined as type I (containing a few cytoplasmic organelles) and type II (with well-developed synthesis and storage organelles). On the basis of these findings cytologic parameters could be ascribed to a heterogeneous proliferation of functionally distinct T-cell clones in CD4+ and CD8+ subsets.

CD4-Positive T-Lymphocytes

Enhanced activity of peritoneal cells after aclacinomycin injection: effect of pretreatment with superoxide dismutase on aclacinomycin-induced cytological alterations and antitumoral activity.

Peritoneal macrophages from mice injected with aclacinomycin (ACM) (4 mg/kg, i.p.) showed increased functional activity, as assessed by increased antitumoral activity in vitro and in vivo and zymosan-triggered chemoluminescence. They also showed ultrastructural signs of activation (increased number of cytoplasmic organelles), and atypical alterations (giant vacuoles and giant lysosomes containing heterogenous myelinoid bodies, lipofuscine-like substance, cytoplasmic debris, and a fine granular material). As these atypical alterations could be due to the generation of superoxide following ACM injection, superoxide dismutase (SOD) was injected 1 h prior to ACM administration. Neither the morphological characteristics of activation, nor the enhanced metabolic and antitumoral activities induced by ACM were affected by SOD pretreatment, but the atypical alterations were inhibited in a dose-dependent manner. Heat-inactivated SOD did not prevent their appearance. The atypical alterations were not found in peritoneal macrophages from talc or lipopolysaccharide-injected mice, but they were present in Adriamycin-treated mice and were also prevented by SOD pretreatment, indicating that the alterations are due to anthracycline treatment. Finally, [125I]SOD was phagocytized by peritoneal macrophages in vitro and in vivo and not by L1210 tumoral cells, explaining why the atypical alterations induced by ACM were no longer seen after SOD pretreatment. The unchanged direct oncostatic activity of ACM following SOD pretreatment suggests that this combination may have some wider perhaps clinical, potential.

Aclarubicin

4'-O-tetrahydropyranyl adriamycin (THP-ADM)-induced modifications of murine peritoneal macrophages.

4'-O-tetrahydropyranyl adriamycin (THP-ADM) is a newly synthetized anthracyclin reported to be an efficient oncostatic drug in animals and in humans and which is less cardiotoxic than adriamycin (ADM). Since part of the efficiency of anthracyclins may be due to their immunoregulatory activity, we investigated to what extent THP-ADM had such properties and we observed that THP-ADM stimulates free oxygen radical secretion by murine peritoneal macrophages. They could thus help the control of infections cancer patients have a tendency to develop. Peritoneal macrophages of THP-ADM-treated mice have an in vitro cytostatic activity towards P815 tumor cells higher than normal cells and when stimulated with LPS they secrete more IL-1, an important effector of the immune response.

Animals

Enhanced activity of murine peritoneal cells after aclacinomycin injection: characteristics of the enhanced respiratory burst.

After the i.p. injection into normal mice, of 4 mg/kg of aclacinomycin (ACM), a dose which prolongs the survival of tumor-bearing mice, the zymosan-elicited chemoluminescence (CL) of the peritoneal cells (PC) is greater than that of control cells. The volume in which the drug is administered plays an important role in the intensity of the response. ACM also stimulated the CL of PC from tumor-bearing mice. It is known that CL can also be elicited by soluble stimuli such as 4 beta-phorbol-12-myristate-13 alpha-acetate or Ca2+ ionophore A 23187, which, however, act in different ways. The response of ACM cells to these stimuli is also greater than in control cells. The enhanced CL of ACM-treated cells can be inhibited by incubating in vitro the zymosan-triggered PC with superoxide dismutase (300 units/ml) and catalase (2750 units/ml), but not with ethanol (20 microM) or potassium cyanide (100 microM). This indicates the participation of O2- and H2O2 in the CL of ACM-treated cells, whereas mitochondrial respiration does not appear to be involved. Furthermore, the following facts suggest the participation of arachidonic acid metabolism in the control of CL: (a) the in vitro addition of nordihydroguaiaretic acid (7 x 10(-6) M) and indomethacin (10(-3) M) inhibits the CL, while indomethacin (10(-6) M) has the opposite effect; (b) the PC from normal or ACM-treated mice when stimulated with zymosan secrete high amounts of prostaglandin (PG); (c) treated cells secrete the same amounts of PGE2 and 6-keto-PGF1 alpha but the secretion of PGF2 alpha and particularly of thromboxane B2 is greater in treated cells than in control cells and indomethacin (10(-6) M) strongly inhibits PG secretion in all groups; (d) in vitro addition of PGE2 at a concentration of 10(-6) M has an inhibitory effect on the CL emission of control and of treated cells, but it does not have this effect at lower concentrations (10(-8) M). These data suggest that the lipoxygenase pathway of arachidonic acid metabolism may be involved in the triggering of CL of ACM-treated cells, as well as that of normal cells, whereas products of the cyclooxygenase pathway may act as feedback inhibitors.

Aclarubicin

Specific suppression of the in vitro parent anti-hybrid reaction. I. Characterization of a suppressor cell induced in hybrids by pretreatment with parent-strain spleen cells.

Spleen cells from B6D2F1 hybrid mice pretreated with 5 X 10(7) B6 spleen cells iv 7 days earlier (B6-pretreated B6D2F1) exhibit a reduced capacity to stimulate the in vitro proliferative and anti-D2 CTL responses of B6 spleen cells. This inability of B6-pretreated B6D2F1 spleen cells to stimulate B6 spleen cells efficiently is due neither to the absence of stimulating cells bearing the D2 alloantigens nor to the destruction of B6 responding cells, but to the presence in the B6-pretreated B6D2F1 cell population of a suppressor mechanism, since the addition of B6-pretreated B6D2F1 spleen cells to a culture of normal B6 responding and irradiated B6D2F1-stimulating spleen cells can suppress the B6 anti-B6D2F1 response. This suppression is mediated by a nylon adherent, Thy-1-negative cell of parent-strain origin which is radioresistant at 2000 R. This suppressor cell is not induced by the injection to B6D2F1 hybrids of spleen cells from the other parent strain (D2) or an allogeneic strain (C3H). It does not suppress either the response of the other parent (D2) or an allogeneic strain (C3H) to B6D2F1 antigens, or the response of B6 cells to an allogeneic strain (C3H).

Animals

Inhibition of hybrid resistance by 5-fluorouracil. Destruction of a Thy-1+ Lyt-1+2- spleen cell implicated in the expression of hybrid resistance.

Hybrid resistance designates the poor proliferation of parent-strain bone marrow cells injected into lethally irradiated hybrids. While testing a variety of oncostatic drugs for their capacity to inhibit hybrid resistance, we found that 5-fluorouracil (5-FU) injected into B6D2F1 hybrids three days before grafting enhances the growth of parent-strain B6 bone marrow cells. Hybrid resistance can be restored in these 5-FU-treated B6D2F1 recipients by the injection of spleen cells from untreated (normal) B6D2F1 mice. Treatment of these normal B6D2F1 spleen cells with anti-Thy-1 or anti-Lyt-1 antibodies plus complement abolishes their capacity to restore resistance, whereas treatment with anti Lyt-2 antibody plus complement has no effect. It is known that the rejection of parent-strain bone marrow cells by the F1 hybrid is a multistep process in which more than one cell type is involved, and that the final effector cell is asialo-GMI+, cyclophosphamide-sensitive, and responsive to IFN (possibly the natural killer cell). The Thy-1+Lyt-1+2- spleen cell we describe here, which is eliminated by the 5-FU, doesn't seem to be the final effector cell for hybrid resistance since transfer of spleen cells from cyclophosphamide-treated (final-effector-cell-depleted) B6D2F1 hybrids into 5-FU treated B6D2F1 mice restores hybrid resistance just as well as do normal B6D2F1 spleen cells; and, when injected into 5-FU-treated B6D2F1 hybrids, the IFN inducer pI:pC also restores resistance. The cell we now describe would be a third cell type, probably responsible for the initial recognition of grafted parent-strain bone marrow cells, which triggers the mechanism of hybrid resistance. This hypothesis could explain the observed specificity of parent-strain bone marrow graft rejection by F1 hybrids.

Animals

[Phagocytic activity in PMN leukocytes and macrophages of athymic nu/nu mice].

The athymic nu/nu mice represent a natural model for studying defense mechanisms. This study had the object of evaluating the phagocytic activity of polymorphonuclear leucocytes (PMN) and peritoneal macrophages (PM) in congenitally athymic homozygotic nu/nu mice. The results showed that the chemotaxis, random mobility, ingestion of latex particles and reduction of nitroblue tetrazolium were all normal. Nevertheless, the enzyme myeloperoxidase in the PMN was significantly diminished when compared with Balb/c mice. These results suggest a partial decrease in the oxidative metabolism of the PMN in nu/nu mice.

Animals

Kinetics of in vivo tumor cell destruction after specific immunization.

The natural cytotoxic activity in vivo can be evaluated by measuring in vivo tumor cell destruction after injecting mice with 125IUdR-labeled tumor cells, measuring their total body radioactivity and calculating the % radioactivity lost. We have studied the in vivo destruction of 125IUdR-labeled L1210 leukemic cells by B10.D2 mice previously immunized 4 times with heavily irradiated L1210 leukemic cells. Mathematical analysis of our results indicates that the radiolabel loss on day 1 is similar in normal and immunized animals, but that it stays greater over the following days in immunized animals, indicating that the difference between the two groups is not the extent of the initial cell destruction but the durability of the response. There is a good correlation between the eventual survival, the % of 125IUdR lost and the number of tumor cells present in the peritoneal cavity three hours after their injection. Such a methodology provides a very early prediction of the survival of each mouse, thus identifying animals with a poor prognosis.

Animals