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Biomedical subjects

H Friedman

Publications and source records attributed to H Friedman.

At least 271 records · Page 15Linked to original sources

Serologic abnormalities in patients with endemic pemphigus foliaceus (Fogo selvagem), their relatives, and normal donors from endemic and non-endemic areas of Brazil.

Based on epidemiologic data, a current hypothesis states that Fogo selvagem (FS) may be triggered by environmental factors present in endemic areas of Brazil. Because the appearance of new cases is limited to those areas, we wanted to ascertain if the presence of the pemphigus autoantibodies was restricted to the patients. To further delineate the restriction of the autoantibody response in these patients we also investigated the presence of lupus-associated autoantibodies. Using indirect immunofluorescence (IF) we tested the sera of patients with FS (n = 196), their relatives (n = 138), their cohabitants (n = 13), and normal donors from endemic (n = 38) and non-endemic areas (n = 44) for pemphigus autoantibodies. Antinuclear antibodies (ANA) and anti-nDNA antibodies were determined by indirect IF against Hep-2 cells and Crithidia lucilliae, respectively. Autoantibodies against nRNP, Ro/SSA, La/SSB, and Sm were assayed by double immune diffusion in agarose gels. FS autoantibodies were present in the sera of all patients with active disease (n = 196, 100%, titers greater than 40 to 2560), but were not found in any sera from normal individuals in endemic or non-endemic areas. The titer of the FS autoantibody showed a rough correlation with the extent and activity of the disease. Furthermore, lupus-associated autoantibodies were not present in any of the tested samples. We conclude the FS antiepidermal autoantibodies are specific serologic markers of the disease and are not present in unaffected individual from the endemic areas. As such, they provide an important marker that should be useful in ongoing epidemiologic studies aimed at identifying putative etiologic agent(s).

Antibodies, Antinuclear↗

The time-line genogram: highlighting temporal aspects of family relationships.

The genogram, or family diagram, is an assessment tool widely used by clinicians to study family members and their relationships over several generations. The standard genogram format is limited, however, because it does not show temporal patterns directly. An alternative, the Time-Line Genogram (TLG), which plots time on the vertical axis to display life events and changes in relationships when they actually occurred, highlights temporal aspects of family history that the standard format sometimes obscures.

Birth Order↗

Growth of Legionella pneumophila in thioglycolate-elicited peritoneal macrophages from A/J mice.

Legionella pneumophila is a facultative intracellular bacterium which readily grows in cultures of guinea pig and human mononuclear phagocytes. In this report, we demonstrate that the Legionella sp. also grows in thioglycolate-elicited macrophages obtained from A/J mice but not in cells from other mouse strains tested, such as BDF1, DBA/2, C3H/HeN, C57BL/6, and BALB/c. Growth of Listeria monocytogenes and interleukin-1 production in A/J mice were similar to their growth and production in other strains tested, and the growth of Staphylococcus epidermidis was restricted by A/J macrophages. This finding suggests that although A/J macrophages share functional capabilities with cells from other mouse strains, they differ in growth restriction capacity for the Legionella sp. Resident macrophages were less permissive than were thioglycolate-elicited cells in that resident cells from A/J mice failed to support the growth of Legionella pneumophila. Also, resident cells from BDF1 mice rapidly eliminated the bacteria, rather than merely restricting growth. This finding was also observed in in vivo studies in which thioglycolate pretreatment of mice resulted in the enhanced recovery of viable bacteria from the peritoneal cavity of mice infected intraperitoneally. Higher numbers of bacteria were obtained from A/J mice and, in addition, this strain was more susceptible to the lethal effects of Legionella infection. These data suggest that, as with other intracellular bacteria, macrophages may serve a pivotal role in the early stages of Legionella infection and further suggest that the A/J mouse represents a useful animal model for the study of Legionella infection and immunity.

Animals↗

Role of gamma interferon in induction of natural killer activity by Legionella pneumophila in vitro and in an experimental murine infection model.

Legionella pneumophila has been shown to induce gamma interferon (IFN-gamma) both in vitro and in vivo during experimental infections of mice. With complement-mediated serologic depletion of murine splenocytes, the cellular sources of IFN-gamma following in vitro stimulation with L. pneumophila antigens were Thy-1.2+, Lyt-2-, L3T4-, and asialo-GM1+, which is consistent with the natural killer (NK) cell phenotype. Additionally, Percoll density discontinuous centrifugation demonstrated that maximal production of IFN coincided with high NK activity in fractions which were enriched for large granular lymphocytes. Furthermore, 18- to 24-h incubation of splenocytes with L. pneumophila whole-cell vaccine resulted in augmented NK cytotoxic activity against YAC-1 tumor target cells in a 51Cr release assay. The addition of macrophages to purified large granular lymphocyte populations augmented both IFN-gamma production and NK activity, suggesting that antigen is required for optimal responses. In an experimental infection model using an intratracheal inoculation route, NK activity was enhanced in the spleen, peripheral blood, and lung cells of infected mice, with maximal stimulation in the lung leukocytes at the site of infection. The results of the present study indicate that NK cells respond in vivo and in vitro to stimulation by L. pneumophila by producing IFN-gamma and by increased cytolytic activity.

Animals↗

Building collaborative relationships with families of the mentally ill.

Studies of the expressed emotion construct have demonstrated that educational programs aimed at helping families deal with a mentally ill member can reduce patient relapse rates and improve family coping. The authors describe a clinical approach to family psychoeducation focused on building collaborative relationships with mental health professionals. The approach is based on the assumption that family education will benefit the patient, but any implication that the family is to blame for the patient's illness is studiously avoided. Five tasks that must be addressed in beginning work with families of the mentally ill are discussed. They are ensuring that the family has a chance to be heard, imparting information, helping the family deal with the feelings engendered by the patient's illness, identifying the family's coping patterns, and helping the family face the ethical and existential conflict between their own needs and those of the patient.

Adaptation, Psychological↗

Suppression by cannabinoids of a cloned cell line with natural killer cell activity.

Preincubation of a cloned cell line with natural killer (NK) cell activity, as well as splenic mononuclear cells with either delta 9-tetrahydrocannabinol (THC) or 11-hydroxy-delta 9-tetrahydrocannabinol (11-OH-THC) suppressed NK cytolytic activity against YAC-1 target cells in a dose-dependent manner. THC was more inhibitory for cloned cells than 11-OH-THC and suppressed the lytic activity of these cells without reducing cell viability in the concentration range of 5 micrograms/ml (16 microM) to 10 micrograms/ml (32 microM). THC also inhibited proliferation of cloned NK cells, but this inhibitory effect was reversible in that extensive washing of cells following cannabinoid pretreatment eliminated the suppressive effect. Single-cell analysis revealed that THC did not inhibit the binding of cloned NK cells to target cells and further showed that NK cells freshly isolated from mouse spleen were restricted in killing capacity following binding to target cells. Therefore, THC and 11-OH-THC appear to directly inhibit NK cell cytolytic activity in a postbinding stage.

Animals↗

Altered interleukin production during Friend leukemia virus infection.

Spleen cells from BALB/c mice, infected 14 to 28 days earlier with Friend leukemia virus (FLV), were shown to be inhibited in their ability to produce interleukin 2 (IL-2) when stimulated with mitogen. Likewise, these spleen cell populations failed to respond following mitogenic stimulation or exogenous addition of recombinant IL-2. By contrast, the FLV-infected spleen cell populations produced normal levels of interleukin 1 (IL-1) and thymocytes from FLV-infected mice responded normally to addition of exogenous IL-1. This suggests that FLV infection selectively affects the ability of spleen cells to produce cytokines. Spleen cell populations enriched for T lymphocytes and depleted of tumor cells by density gradient centrifugation in Ficoll were unable to produce IL-2. This indicates that the failure to detect IL-2 in cells from FLV-infected mice was not due to a dilution of T lymphocytes by tumor cells but was a functional inability to produce IL-2. Furthermore, enriched T lymphocytes from FLV-infected mice failed to respond blastogenically to exogenous IL-2. Additional studies indicate that tumor cells, but not macrophages or T lymphocytes from FLV-infected spleens, suppressed the blastogenic response to mitogens and IL-2 production by normal splenic T lymphocytes.

Animals↗

Eosin-related fluorescence of acidophil pituitary cells.

The examination of haematoxylin and eosin stained sections of normal and neoplastic pituitary glands under ultraviolet light illumination discloses fluorescence of acidophil cells. The distinction between prolactin and growth hormone-producing cells is not possible. Such fluorescence depends on previous eosin staining.

Adenoma↗

Drugs of abuse and virus susceptibility.

It is widely recognized that various microorganisms including viruses have immunomodulatory effects and, under appropriate circumstances, may markedly suppress the immune response mechanisms. Cannabinoids present in marijuana also have immunomodulatory effects. In the present studies THC as well as its metabolic product 11-OH THC were studied in regard to their effects in vivo and in vitro on selected parameters of the immune response system known to be important in antiviral resistance, including immunity to retroviruses. Cannabinoids markedly suppressed the ability of murine macrophages to spread on glass (an important functional marker of macrophages) as well as to phagocytize yeast particles. Splenic macrophage cultures treated with the cannabinoids also were deficient in their ability to produce interleukin 1 on appropriate stimulation with bacterial LPS. Spleen cells capable of producing antibody to sheep erythrocytes when stimulated with this antigen in vitro were markedly affected when treated with graded doses of THC or 11-OH THC. Furthermore, the blastogenic responsiveness of normal mouse splenocytes to the T-cell mitogens Con A and PHA as well as the B-cell mitogen E. coli LPS was markedly suppressed by graded concentrations of the cannabinoids in doses that did not affect the viability of the cells. Natural killer cell activity of normal mouse spleen cells was also markedly inhibited by THC and 11-OH THC. Similarly, these cannabinoids suppressed the blastogenic responsiveness and NK activity of human peripheral blood leukocytes from normal individuals. The ability of mouse spleen cells to produce interferon on in vitro stimulation was also suppressed by THC. In addition, injection of THC into mice suppressed blastogenic responsiveness of spleen cells, NK activity, and the production of interferon by lymphoid cells. Thus, it was apparent that these cannabinoids had immunomodulatory effects, both in vivo and in vitro, at noncytotoxic small doses and impaired the ability of the lymphoid cells to express immune function necessary for antiviral resistance.

Acquired Immunodeficiency Syndrome↗

Isolation of a nonendotoxic antitumor preparation from Serratia marcescens.

White-type polysaccharide preparation (WPS) obtained from Serratia marcescens bacteria by hot 0.2 N acetic acid extraction was shown to have antitumor effects. These were manifested by enhanced resistance to the take of TA3 transplantable murine adenocarcinoma and by the induction of regression of Meth A sarcoma in mice. Optimal conditions for the liberation and isolation of these substances were sought to achieve the highest antitumor activity and the lowest endotoxin (ET) content. Simultaneously, the activities of the WPS preparations were tested in various tests which are frequently used as in vitro correlates of in vivo antitumor effects, such as the activation of macrophage cytotoxicity, activation of natural killer (NK) cells, and tumor necrosis factor (TNF) generation. We found that the enhanced resistance to the take of TA3 tumor correlated with ET content of the WPS preparations. Preparations with reduced or no ET content showed diminishing activity in this assay or were without any measurable effect. The induction of TNF production and NK activation did not show such close relationship with the ET content. This was particularly evident if testing WPS samples obtained after 60 or 120 min hydrolysis at 90 degrees C. The greatest discrepancy was found between ET content and the Meth A regression induction. Samples with no detectable ET content and no activity in the macrophage, NK, or TNF tests were potent inducers of Meth A regression. Partial purification of such WPS samples could be achieved and a preparation was obtained with high Meth A regression capacity. Preliminary chemical analysis of this preparation showed 25.5% amino acid, 53.7% neutral carbohydrate, less than 0.4% KDO, 0.8% hexosamine, less than 0.1% phosphorous, and less 1.0% long-chain carboxylic acid content. The above chemical analytical data are not consistent with designating such preparations as ET or ET derivatives, such as Lipid A or its split products. This conclusion was confirmed by the lack of endotoxic properties as determined by biological assays on this preparation.

Adenocarcinoma↗

Hyperoxic lung injury in mice: effect of neutrophil depletion and food deprivation.

Conflicting data exist on the role of neutrophils (PMNs) in the pathogenesis of hyperoxic lung damage. We examined the contribution of PMNs and the contribution of food deprivation, a frequent complication of the methods used to produced neutropenia, to the lung damage that results when mice are exposed to high concentrations of oxygen. Mice were exposed to either 100% oxygen or air for up to 4 days. Neutropenia was induced by a single tail vein injection of nitrogen mustard (NM) given 1 day before the oxygen exposure. Food deprivation, which induced the same weight loss as that found in NM-treated mice, was achieved by withholding food (fasted) during the oxygen exposure. We examined mortality; weight loss; bronchoalveolar lavage (BAL fluid) protein concentration, cell count, and differential count; the number of PMNs in blood; and lung histologic conditions by light and electron microscopy. NM-treated mice lost approximately 25% of their body weight when exposed to either air or oxygen. They also had more severe lung damage than the saline-treated mice during hyperoxic exposure, despite a marked reduction in the number of PMNs in blood, BAL fluid, and lung tissue. Although a correlation was found between the number of blood PMNs and the BAL protein concentration in the nonneutropenic mice (r = 0.69; P less than 0.001), no correlation was seen in the neutropenic mice (r = 0.26). Fasted, oxygen-exposed mice had the same weight loss as the NM mice, but they had more severe lung damage at an earlier time (day 3 vs. day 4) and greater mortality than the saline-treated and the NM-treated mice. These results indicate that PMNs are not required for either the development or progression of hyperoxic lung damage in mice; fasting increases susceptibility to the lung damage; and differences in nutritional status may explain, in part, the controversial role of PMNs in oxygen-induced lung damage.

Animals↗

Cytolytic activity of human peripheral blood leukocytes against Legionella pneumophila-infected monocytes: characterization of the effector cell and augmentation by interleukin 2.

The present study was an in vitro attempt to define the effector mechanisms against the intracellular bacterium Legionella pneumophila. Monocytes from human peripheral blood leukocytes (PBL) were infected in vitro with L. pneumophila and cultured for 2 days to allow intracellular replication of the bacterium. Cells were then labeled with 51Cr and used as targets in a 4-h 51Cr-release assay. We report here that autologous nonadherent PBL effectively lysed infected monocytes, and this activity was enhanced when the effector cells were precultured with IL 2 for 2 days. The IL 2-activated killer cells were also cytolytic against uninfected cultured monocytes, but cytotoxicity was higher against Legionella-infected target cells in a dose-dependent manner. The effector cells were located in Percoll density fractions that were enriched for large granular lymphocytes. The phenotype of the effector cell activated by IL 2 was determined to be OKM1+, OKT11+, partially Leu-11+, and negative for Leu-M1, OKT4, OKT8, and Leu-7, indicating that it is neither a T cell nor a monocyte, and is possibly and NK subset that is Leu-11+ and Leu-7-. Cold target inhibition studies indicated that a similar recognition structure is shared by both infected and uninfected monocytes, but differs from that on K562 tumor target cells. Thus, in addition to tumor surveillance and controlling viral infections, killer cells can be activated to provide protection against intracellular bacterial infections.

Antibodies, Monoclonal↗

Age-associated differences in cannabinoid-induced suppression of murine spleen, lymph node and thymus cell blastogenic responses.

The effects of delta 9-tetrahydrocannabinol (THC) and 11-OH THC on the proliferative responses of murine thymus, spleen and lymph node cells were examined. Specifically, weanling and adult mouse lymphocytes were stimulated in vitro with the T-cell mitogens concanavalin A and phytohemagglutinin. Thymus cells were suppressed at lower cannabinoid concentrations than cells from either spleen or lymph nodes. However, splenic cells from weanling mice were much more readily suppressed than were those from adult animals. Lymphoid cell numbers were varied from 1 x 10(6) to 8 x 10(6) cells/ml/culture and treated with a constant dose of THC or 11-OH THC. The smallest number of cells from the spleen or lymph nodes resulted in the greatest suppression. Thymus cells, however, were more readily suppressed than spleen or lymph node cells, regardless of the number of cells in culture. Furthermore, 11-OH THC suppressed the responses of the thymus cells to phytohemagglutinin more than to concanavalin A. The proliferative responses of spleen and lymph node cells from weanling mice to concanavalin A and phytohemagglutinin were much more readily suppressed than were cells from adult mice. This age-related difference was seen in the dose-response studies as well as in the studies with varying cell numbers in culture. In all cases, spleen and lymph node cells from younger mice were more readily suppressed to concanavalin A and phytohemagglutinin than those from older mice when treated with the cannabinoid preparations.

Age Factors↗

Differential effects of marijuana components on proliferation of spleen, lymph node and thymus cells in vitro.

The effects of delta 9 THC and 11-OH THC on the proliferative response of murine spleen cells stimulated in vitro with the T cell mitogens Con A or PHA were compared with the effects of these drugs on the mitogen-induced proliferation of murine thymus and lymph node cells. Thymus cells were found to be suppressed at lower cannabinoid concentration than either spleen or lymph node cells. However, splenic cells were more easily suppressed than were the lymph node cells. Lymphoid cell numbers were varied from 1 X 10(6) to 8 X 10(6) cells and treated with a constant dose of either THC or 11-OH THC. When suppression was noted with spleen and lymph node cells, the smallest number of cells in the assay resulted in the greatest level of suppression of cell proliferation. No significant suppression to PHA induced proliferation was found for lymph node cells at any cell number tested. Thymus cells were always more readily suppressed than spleen or lymph node cells regardless of the number of cells in culture. Furthermore, 11-OH THC suppressed the responsiveness of the thymus cells to PHA more than to Con A under the experimental conditions used. Thus, the ability of cannabinoids to induce suppression of the proliferative response of lymphoid cells to mitogens depends on the organ source of the cells, nature of the cannabinoid (THC or 11-OH THC), dose of the cannabinoid, mitogen used (PHA or Con A), and number of cells in culture.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗