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Biomedical subjects

D A Schmitt

Publications and source records attributed to D A Schmitt.

At least 19 recordsLinked to original sources

Exposure to ultraviolet radiation causes dendritic cells/macrophages to secrete immune-suppressive IL-12p40 homodimers.

UV-induced immune suppression is a risk factor for sunlight-induced skin cancer. Exposure to UV radiation has been shown to suppress the rejection of highly antigenic UV-induced skin cancers, suppresses delayed and contact hypersensitivity, and depress the ability of dendritic cells to present Ag to T cells. One consequence of UV exposure is altered activation of T cell subsets. APCs from UV-irradiated mice fail to present Ag to Th1 T cells; however, Ag presentation to Th2 T cells is normal. While this has been known for some time, the mechanism behind the preferential suppression of Th1 cell activation has yet to be explained. We tested the hypothesis that this selective impairment of APC function results from altered cytokine production. We found that dendritic cells/macrophages (DC/Mphi) from UV-irradiated mice failed to secrete biologically active IL-12 following in vitro stimulation with LPS. Instead, DC/Mphi isolated from the lymphoid organs of UV-irradiated mice secreted IL-12p40 homodimer, a natural antagonist of biologically active IL-12. Furthermore, when culture supernatants from UV-derived DC/Mphi were added to IL-12-activated T cells, IFN-gamma secretion was totally suppressed, indicating that the IL-12p40 homodimer found in the supernatant fluid was biologically active. We suggest that by suppressing DC/Mphi IL-12p70 secretion while promoting IL-12p40 homodimer secretion, UV exposure preferentially suppress the activation of Th1 cells, thereby suppressing Th-1 cell-driven inflammatory immune reactions.

Animals↗

Modifications of bone and connective tissue after orthostatic bedrest.

Eight male volunteers were submitted to a 6-week anti-orthostatic bedrest trial followed by a 1-month reambulation period. We prospectively monitored whole-body composition by dual-energy X-ray absorptiometry, bone and connective tissue metabolism by biochemical markers and calcium regulating hormones by 1-84 parathyroid hormone and 1,25-dihydroxyvitamin D(3). Bone mineral density (BMD) did not vary significantly; however, a trend toward an increase in head BMD and a decrease in trunk, lumbar vertebrae and lower limb BMD was observed. A decrease in the lower limb lean content occurred by day 27 and was maximum by day 42 after the beginning of bedrest; it normalized by day 30 after bedrest. The serum levels of both osteocalcin and C-terminal crosslinked telopeptide of type I collagen increased as a consequence of bedrest. A slight increase in the serum levels of the N-terminal propeptide of type III collagen, a marker of connective tissue metabolism, was observed during the bedrest period. Except for the C-terminal extension propeptide of type I collagen, all markers decreased to baseline pre-immobilization levels during the 1-month recovery phase. Serum PTH and 1,25-dihydroxyvitamin D(3) levels were low during the bedrest period and rose during the reambulation phase. These results seem to reflect early changes in bone and connective tissue metabolism as a result of bedrest unloading, but their order of magnitude remains moderate, thus emphasizing the necessity to perform longer-duration trials.

Absorptiometry, Photon↗

Head-down tilt bed rest and immune responses.

Head-down tilt bed rest (HDT) is used as a model for studying the physiological changes occurring in weightlessness during spaceflight. In the present study, eight volunteers were subjected to a strict HDT of -6 degrees for 42 days. Blood samples were obtained 37 and 13 days before, at days 13, 34, and 41 during, and 12, 33, and 47 days after HDT. FACScan analysis was used to determine cell subpopulations. Plasma was used to quantify various circulating hormone levels. Whole blood and reconstituted blood were stimulated with various activators such as phytohaemagglutinin-P (PHA), PHA combined with phorbol-12-myristate 13-acetate (PMA), anti-CD2, anti-CD3, and lipopolysaccharide. Supernatants were collected and analysed for the interleukins IL-1beta, IL-2, IL-6, and IL-10, interferon-gamma (IFN-gamma) and tumour necrosis factor-alpha (TNF-alpha). The total number of T lymphocytes and monocytes did not change significantly, whereas the number of polymorphonuclear cells increased during HDT. The percentage of CD2+ and CD3+ cells was increased at day 35 of HDT. The percentage and total number of natural killer cells (CD2+/CD3-/CD56+) was increased 12 days before and 14 days after HDT. TNF-alpha secretion did not change significantly during HDT. IL-2, IL-10 and IFN-gamma were increased at day 34 of HDT. IL-1beta levels were increased before and during HDT compared to post-HDT measurements. No significant changes were observed in plasma immunoglobulin, complement factors and other factors of the inflammatory system. Prolactin levels increased slightly but significantly at day 35 of HDT, thyreotropin and growth hormone levels remained virtually unchanged. Cortisol decreased slightly but significantly over the entire duration of the study. The changes observed during HDT do not indicate that the immune system is blunted, and these changes do not seem to correlate with the duration of HDT. Taken together these results show that a HDT does not reproduce the changes in immune responses observed after spaceflight.

Bed Rest↗

The role of cytokines in UV-induced systemic immune suppression.

Exposure to ultraviolet radiation induces skin cancer. In addition, UV exposure suppresses the immune response. The mechanism by which skin exposure to UV induces systemic immune suppression is not entirely clear, but a role for cytokines secreted by irradiated epidermal cells has been described. Ultimately, these immune regulatory cytokines affect antigen presenting cell function at distant sites. We describe here preliminary findings suggesting that one consequence of UV exposure is an alteration of IL-12 production by lymph node dendritic cells that result in impaired immune function.

Animals↗

Reversal of ultraviolet radiation-induced immune suppression by recombinant interleukin-12: suppression of cytokine production.

Exposure to ultraviolet (UV) radiation, a complete carcinogen, suppresses the immune response. Data from a number of laboratories have indicated that one consequence of UV exposure is suppressed T helper type 1 (Th1) cell function with normal Th2 cell activation, resulting in a shift to a Th2-like phenotype. The reversal of UV-induced immune suppression and tolerance induction by recombinant interleukin-12 (rIL-12) supports this observation. The focus of this study was to determine the mechanism(s) by which rIL-12 reverses UV-induced immune suppression. Two possibilities were considered: up-regulation of interferon-gamma (IFN-gamma) secretion by rIL-12 and suppression of UV-induced cytokine secretion by rIL-12. To our surprise we found that the ability of rIL-12 to overcome UV-induced immune suppression was independent of its ability to up-regulate IFN-gamma secretion. Rather, rIL-12 suppressed the production of cytokines that are known to be important in UV-induced immune suppression. Injecting UV-irradiated mice with rIL-12, or adding rIL-12 to UV-irradiated keratinocyte cultures suppressed IL-10 secretion, in part by affecting the transcription of the IL-10 gene. Furthermore, we found that rIL-12 suppressed UV-induced tumour necrosis factor-alpha (TNF-alpha) production. Because IL-10 is involved in the UV-induced suppression of delayed-type hypersensitivity and TNF-alpha in the UV-induced suppression of contact allergy, these findings provide a mechanism to explain how rIL-12 overcomes UV-induced immune suppression in these related but different immune reactions. In addition, they suggest a novel mechanism by which rIL-12 alters immune reactivity, direct suppression of cytokine secretion induced by UV radiation.

Animals↗

Teaching of space life sciences.

Space life sciences is not really a new life sciences discipline such as immunology was some decades ago and it may never be so. Rather it is a field that will provide each existing life sciences discipline with new and more information gathered from space research. In fact, the danger is that space research will be confined in a separate discipline, and thus it will be cut off from classical ground research. Conversely, scientists should increasingly consider spaceflight as a tool and should integrate the findings of space research into their traditional disciplines. A brief survey of topics and main findings in the various subdisciplines of space life sciences is provided. This is followed by a discussion of typical problems encountered such as access to space, controls, ground-based simulations, medical care in space, extravehicular activity, and environmental control and life support. As many space life sciences courses are initiated around the world either by space agencies or universities or jointly, there is a need to consider the international, intercultural, and interdisciplinary aspects of such programs. It is argued that the growing knowledge derived from space research should be integrated into the regular teaching of life sciences rather than leaving it confined to a separate field. Teaching of space life sciences is a prime candidate for the application of the new techniques of "cyberspace education", where interactive learning and globalization of the learning process will take a leading place. The experts and student body are dispersed over many nations, research is of necessity conducted on a basis of international cooperation. The conduct of tele-education is discussed and existing information sources and courses are listed.

Biological Science Disciplines↗

Use of an adaptable cell culture kit for performing lymphocyte and monocyte cell cultures in microgravity.

The results of experiments performed in recent years on board facilities such as the Space Shuttle/Spacelab have demonstrated that many cell systems, ranging from simple bacteria to mammalian cells, are sensitive to the microgravity environment, suggesting gravity affects fundamental cellular processes. However, performing well-controlled experiments aboard spacecraft offers unique challenges to the cell biologist. Although systems such as the European 'Biorack' provide generic experiment facilities including an incubator, on-board 1-g reference centrifuge, and contained area for manipulations, the experimenter must still establish a system for performing cell culture experiments that is compatible with the constraints of spaceflight. Two different cell culture kits developed by the French Space Agency, CNES, were recently used to perform a series of experiments during four flights of the 'Biorack' facility aboard the Space Shuttle. The first unit, Generic Cell Activation Kit 1 (GCAK-1), contains six separate culture units per cassette, each consisting of a culture chamber, activator chamber, filtration system (permitting separation of cells from supernatant in-flight), injection port, and supernatant collection chamber. The second unit (GCAK-2) also contains six separate culture units, including a culture, activator, and fixation chambers. Both hardware units permit relatively complex cell culture manipulations without extensive use of spacecraft resources (crew time, volume, mass, power), or the need for excessive safety measures. Possible operations include stimulation of cultures with activators, separation of cells from supernatant, fixation/lysis, manipulation of radiolabelled reagents, and medium exchange. Investigations performed aboard the Space Shuttle in six different experiments used Jurkat, purified T-cells or U937 cells, the results of which are reported separately. We report here the behaviour of Jurkat and U937 cells in the GCAK hardware in ground-based investigations simulating the conditions expected in the flight experiment. Several parameters including cell concentration, time between cell loading and activation, and storage temperature on cell survival were examined to characterise cell response and optimise the experiments to be flown aboard the Space Shuttle. Results indicate that the objectives of the experiments could be met with delays up to 5 days between cell loading into the hardware and initial in flight experiment activation, without the need for medium exchange. Experiment hardware of this kind, which is adaptable to a wide range of cell types and can be easily interfaced to different spacecraft facilities, offers the possibility for a wide range of experimenters successfully and easily to utilise future flight opportunities.

Biological Transport↗

Immune responses in extreme environments.

In order to identify some of these interactions and regulation between the immune system and other physiological variables we have investigated the immune status in extreme conditions such as long term isolation and confinement, strict antiorthostatic bed rest and spaceflight.

Allergy and Immunology↗

In vitro interleukin-1 and 2 production and interleukin 2 receptor expression in the rhesus monkey.

Anti-human monoclonal antibodies were used to detect and quantify interleukins-1 and 2 and interleukin-2 receptor expression in peripheral blood mononuclear cells from a rhesus monkey. Interleukin-1 production could be induced by phorbol esters (PMA) and was potentiated by phytohemagglutinin (PHA). Interleukin-2 secretion could also be induced by the combination of PHA and PMA, but only weakly with PHA alone. Interleukin-2 receptor expression was present in a subpopulation of unstimulated lymphocytes and could be enhanced by PHA or PMA. These data show once again that the rhesus monkey immune system is cross-reactive with the human one and that rhesus macaque could be a good model to study interleukin therapy.

Animals↗

Neuroendocrine system and immune responses after confinement.

A confinement experiment in a normobaric diving chamber was undertaken to obtain more understanding of the effects of confinement and isolation on human psychology and physiology. Pre- and post-confinement blood samples were obtained from four test subjects and five control subjects for the analysis of plasma proteins, hormone levels and immune responses. The absence of significant changes in the immune responses correlates with the absence of major changes in neurohormones and other hormones such as cortisol, prolactin, growth hormone, insulin-like growth factor 1, triiodothyronin, thyrotrophin and 1,25-dihydroxyvitamin D. It is increasingly recognized that the immune system is not an independent physiological system, but a system that interacts multidirectionally with other organs and body functions. It seems that the conditions of this confinement experiment were not stressful from a psychological point of view. The presence of a female crew member had probably a positive effect on group behavior of the test subjects. In conclusion, the data suggest that confinement for 60 days in a small habitat without particularly stressful situations has no significant impact on a variety of neuroimmunological parameters.

Adult↗

Use of bed rest and head-down tilt to simulate spaceflight-induce immune system changes.

Bed rest, both with and without head-down tilt, has been extensively used as an earth-bound analog to study physiologic effects mimicking those occurring in weightlessness during spaceflight. We have been able to show in six subjects that 4 weeks of head-down tilt bed rest induces a significant decrease in interleukin-2 secretion by PHA-stimulated T lymphocytes. Another study, lasting 113 days, with two subjects showed a decreased interleukin-2 receptor expression in PHA-stimulated peripheral blood mononuclear cells but a decreased interleukin-2 production in one subject only. Under the same conditions, interleukin-1 production was largely increased in both subjects. Several other immune parameters were also analyzed. Increased interleukin-1 production could contribute to bone mineral loss encountered during bed rest and decreased interleukin-2 secretion could play a role in the appearance of infectious diseases often observed during bed red.

Antibody Formation↗

Effect of space flight on cytokine production and other immunologic parameters of rhesus monkeys.

During a recent flight of a Russian satellite (Cosmos #2229), initial experiments examining the effects of space flight on immunologic responses of rhesus monkeys were performed to gain insight into the effect of space flight on resistance to infection. Experiments were performed on tissue samples taken from the monkeys before and immediately after flight. Additional samples were obtained approximately 1 month after flight for a postflight restraint study. Two types of experiments were carried out throughout this study. The first experiment determined the ability of leukocytes to produce interleukin-1 and to express interleukin-2 receptors. The second experiment examined the responsiveness of rhesus bone marrow cells to recombinant human granulocyte-macrophage colony-stimulating factor (GM-CSF). Human reagents that cross-reacted with monkey tissue were utilized for the bulk of the studies. Results from both studies indicated that there were changes in immunologic function attributable to space flight. Interleukin-1 production and the expression of interleukin-2 receptors was decreased after space flight. Bone marrow cells from flight monkeys showed a significant decrease in their response to GM-CSF compared with the response of bone marrow cells from nonflight control monkeys. These results suggest that the rhesus monkey may be a useful surrogate for humans in future studies that examine the effect of space flight on immune response, particularly when conditions do not readily permit human study.

Animals↗

The distribution of protein kinase C in human leukocytes is altered in microgravity.

Protein kinase C (PKC) is an ubiquitous enzyme that mediates intracellular signal transduction in eukaryotes. Jurkat and U937 cells were exposed to microgravity during a Space Shuttle flight and stimulated with a radiolabeled phorbol ester (3H-PDBu) that specifically activates and labels several PKC isoforms. Both the total amount of 3H-PDBu labeling per cell and the relative distribution of labeling between subcellular compartments were altered in microgravity compared to onboard and ground 1 g control samples. The amount of total phorbol ester labeling per cell was increased approximately twofold in microgravity samples when compared with onboard 1 g samples for both cell lines. The subcellular distribution of PKC in the cytosol and nuclear fractions appeared to be correlated with the applied acceleration. In both cell types the relative amount of phorbol ester labeling in the nuclear fraction decreased with applied acceleration, whereas the labeling in cytosolic fraction increased with g level. No significant differences were observed between labeling levels in the membrane fraction in both cell types. Interleukin-1beta synthesis by U937 cells was markedly decreased in microgravity when compared to the onboard 1 g control, suggesting that the observed alterations in PKC distribution may have functional consequences. The results may have important implications for the effect of gravity on cellular signal transduction.

Cell Nucleus↗

Effect of IL-12 on immune suppression and suppressor cell induction by ultraviolet radiation.

The carcinogenic potential of UV radiation (the primary cause of nonmelanoma skin cancer) is associated with its ability to suppress cell-mediated immune responses. Previous studies have shown that this UV-induced immune suppression is caused by the secretion of immunosuppressive cytokines such as IL-10. Because the effects of IL-10 on the immune response are countered by IL-12, we injected irradiated mice with IL-12 to determine whether it could overcome UV-induced immune suppression. Administration of IL-12 blocked the suppression of delayed-in-time hypersensitivity reactions observed in UV-irradiated animals. Moreover, IL-12 prevented the induction of suppressor T cells, in that adoptive transfer of spleen cells from UV-irradiated mice treated with IL-12 had no effect on the immune response of the recipient mice, whereas transfer of spleen cells from UV-irradiated mice treated with the vehicle inhibited the immune response. In addition, IL-12 neutralized the activity of UV-induced suppressor T cells. Although the adoptive transfer of UV-induced suppressor T cells from irradiated mice suppressed the immune response of the recipient mice, treatment of the recipient mice with IL-12 following the adoptive transfer overcame the immune suppression. The results of these experiments demonstrate that IL-12 can overcome UV-induced immune suppression by preventing the induction of, as well as neutralizing the activity of pre-formed suppressor T cells.

Animals↗

Immune responses in humans after 60 days of confinement.

A confinement experiment in a normobaric diving chamber was undertaken to better understand the effect of confinement and isolation on human psychology and physiology. Pre- and postconfinement blood samples were obtained from four test subjects and control donors to analyze immune responses. No modification in the levels of CD2+, CD3+, CD4+, CD8+, CD19+, and CD56+ cells was observed after confinement. Mitogen-induced T-lymphocyte proliferation and interleukin-2 receptor expression were not altered significantly. Whole blood interferon-alpha and gamma-induction and plasma cortisol levels were also unchanged, as was natural killer cell activity. These data suggest that in humans, no specific components of the immune response are affected by a 2-month isolation and confinement of a small group.

Adult↗

The Rhesus monkey as a model for testing the immunological effects of space flight.

The Rhesus monkey has been proposed as a model for the effects of space flight on immunity. In order to determine the feasibility of the use of the Rhesus monkey as a model, we studied the use of Rhesus monkey cells for immunological procedures that have been shown to be affected by space flight in both rodents and humans. We have shown that both lymph node cells and peripheral blood leukocytes can be stained with monoclonal antibodies to detect the following surface markers: CD4, CD-8, Ia and surface immunoglobulin. Also, the level of Ia antigen expression was increased by treatment of the cells with human interferon-gamma. In addition, cells were induced to produce interferons and interleukins. Isolated neutrophils also demonstrated increased oxidative burst. These data indicate that the Rhesus monkey will be a useful model for space flight studies of immunity.

Animals↗

Isolation and confinement as a model for spaceflight immune changes.

The immune system of astronauts is disturbed during and after spaceflight. This situation may result from stressors encountered during the flight (microgravity, radiation, psychological stress, or confinement) or from physiological changes (demineralization or fluid shift). Therefore, ground-based investigations should be designed to determine the effects of these factors on the immune system. Very little is known about the influence of confinement or isolation on immune reactions. However, interesting data exist from experiments with animals and humans under different conditions (submarines, antarctic expeditions, single-person cave isolation, and underwater diving). The question remains as to whether these results can be extrapolated to spaceflight. Therefore, investigations of humans under isolation conditions analogous to space missions have been performed by Russian and, more recently, European investigators. Such investigations are important for understanding the physiological and psychological disturbances that occur during long periods of confinement, especially when future lunar and martian missions are considered.

Animals↗

Demonstrations of a B-cell population that regulates the immune response in spleens of mice infected with herpes simplex virus type I.

A population of B cells that regulates the immune response was demonstrated in splenic mononuclear cells (SMNC) from mice infected with herpes simplex virus type 1 (HSV). SMNC, obtained from mice 3 days after HSV infection at a dose of 100 LD50, exhibited a reduction in the proliferative response of naive SMNC stimulated with various lectins or allogeneic lymphocytes in a 5-day mixed lymphocyte reaction. Cocultivation of naive SMNC with phagocytic cell-free SMNC (M phi-MNC) from infected mice resulted in the inhibition of lymphocytic blast transformation stimulated with various lectins. These cells were characterized as nylon-wool adherent cells that were eliminated by treatment with anti-Ig antiserum, but not anti-Thy 1.2 monoclonal antibody or anti-asialo GM1 antiserum, followed by complement treatment. In addition, the suppressor cell activity was not demonstrated in M phi-MNC obtained from HSV-infected CBA/CaHN-xid/J mice, which contain a congenital B-cell deficiency. These results suggest that, in addition to suppressor T cells, a population of B cells, which can inhibit lymphocyte proliferations upon stimulation with lectins and alloantigens, might be generated in spleens of mice following HSV infections.

Animals↗