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E Fride

Publications and source records attributed to E Fride.

34 records · Page 2Linked to original sources

Immunoenhancing effects of alprazolam, a benzodiazepine receptor agonist.

The effects of alprazolam (ALP), a triazolobenzodiazepine with high affinity for "central" benzodiazepine receptors, were examined on several parameters of immune function in mice. NK, MLR, and mitogen-induced lymphocyte proliferation were all significantly increased 2 hr after administration of low doses (0.02-1.0 mg/kg) of ALP. Twenty four hr later, similar but less robust immunoenhancing effects were observed. These measures of immune functions were not affected by higher doses of ALP (5-10 mg/kg). The immunoenhancing effects of ALP did not appear related to serum corticosterone levels. These and other findings demonstrate that the GABA/benzodiazepine receptor chloride channel complex can bidirectionally modulate immune function.

Alprazolam↗

Inhibition of calcium mobilization is an early event in opiate-induced immunosuppression.

Morphine administered as a subcutaneous implant inhibits the initial increase in cytoplasmic free-calcium [Ca2+]i induced by mitogens in mouse splenocytes. This effect was not reproduced by incubation of splenocytes with morphine (10(-8)-10(-4) M). Analysis of splenocyte subpopulations demonstrates that this effect was manifest in both B and T cells. However, within T cell subpopulations, CD4+ but not CD8+ cells were affected. Adrenalectomy abolished this effect of morphine in CD4+ T but not CD4-, CD8- spleen cells (most likely Thy 1.2- B cells). Moreover, simultaneous administration of the opiate antagonist naltrexone blocked the effect of morphine in CD4-, CD8- spleen cells, but not in CD4+ T cells. These data indicate that the effects of morphine on mitogen-stimulated increase in [Ca2+]i may be mediated through distinct glucocorticoid-dependent and -independent mechanisms. The morphine-induced inhibition of an increase in [Ca2+]i in immune cells reported here may be an early event mediating opiate-induced immunosuppression.

Animals↗

Strain-dependent association between immune function and paw preference in mice.

The relationship between immune function and the preferred direction of behavioral asymmetry was examined in several mouse strains. Mixed leukocyte reaction, natural killer cell activity, cytotoxic T lymphocyte response and lymphoproliferation in response to mitogens were investigated in animals with left or right paw preference. From the 7 strains and substrains examined, it appeared that differences in immune function between left and right pawed mice, when present, vary in directionality. Thus, in C3H/HeJ and 129/J, left pawed mice had higher immune responses than right pawed mice, whereas in C3H/HeNCr MTV- and BALB/cJ animals, the reverse was found. In C3H/HeNCr MTV+, C57BL/6J and Collin's heterogenous control population for the high/low asymmetry lines, no differences between animals with left or right paw preference were found. The statistical significance of these differences were not uniform for all the immune parameters studied. These data indicate that the association between immune function and preference for using the left versus right paw is a strain-dependent phenomenon and may suggest that the inconsistent evidence for an association between immune deficiency and left-handedness could be due to genetic heterogeneity among subpopulations.

Animals↗

Morphine-induced immune alterations in vivo.

The high incidence of human immunodeficiency virus (HIV) seropositivity among drug abusers prompted us to examine in an animal model the effects of morphine on aspects of the immune system that may be specifically related to HIV infection. We now report a robust, sustained elevation in the ratio of CD4+/CD8+ cells in the spleen and thymus of mice chronically treated with morphine. Since CD4+ cells have been reported to be target cells for HIV, these alterations, in concert with a marked cellular atrophy that appears to be restricted to organs of the immune system, suggest that opiates may serve as cofactors in altering the immune status of the host and thus contribute to the increased susceptibility to HIV infection and eventual development of AIDS in opiate abusers.

Animals↗

Immunoenhancing effects of alprazolam in mice.

The GABA/benzodiazepine receptor chloride channel complex has been proposed to play a modulatory role in immune function. The effects of alprazolam, a triazolobenzodiazepine with high affinity for "central" benzodiazepine receptors, were examined on several parameters of immune function in mice. Natural killer cell activity, mixed leukocyte reactivity and mitogen-induced lymphocyte proliferation were all significantly increased two hr after administration of low doses (0.02-1.0 mg/kg) of alprazolam. Twenty four hr later, similar but less robust immunoenhancing effects were observed. Higher doses of alprazolam (5-10 mg/kg) did not affect these measures of immune function. The immunoenhancing effects of alprazolam did not appear related to corticosterone levels. In contrast, vehicle injection caused a profound suppression of these immune parameters two hr later, which was no longer apparent 24 hr later. This immunosuppression appeared to correlate with a concurrent rise in serum corticosterone levels. These data support the hypothesis that the GABA/benzodiazepine receptor chloride channel complex modulates immune function. Use of low doses of alprazolam may be of potential clinical importance when immunoenhancement is required.

Adjuvants, Immunologic↗

Immune function in lines of mice selected for high or low degrees of behavioral asymmetry.

Cerebral lateralization has been suggested to play a regulatory role in immune function. In this study, several measures of immune function were evaluated in mice selectively bred for either a strong (HI) or weak (LO) degree of behavioral asymmetry (paw preference) and compared to an unselected control population (HET). Both HI and LO animals had fewer spleen cells but higher degrees of [3H]thymidine incorporation into DNA (on a per cell basis) than HET mice. However, only HI mice had lower immune functions compared to HET controls manifest as reduced mixed leukocyte reaction (MLR), cytotoxic T lymphocyte (CTL) activity, and natural killer (NK) cell activity. These findings indicate that although both extremes in the degree of paw preference may be associated with deviations from the norm, a high degree of behavioral lateralization is associated with decreased immune responsiveness in this animal model.

Animals↗

Opiate-induced inhibition of calcium flux in immune cells.

Administration of morphine as a subcutaneous implant inhibits the initial influx of calcium (Ca2+) induced by mitogens in mouse splenocytes. This effect was not reproduced by incubation of splenocytes with morphine (10(-8)-10(-4)M). Within T cell subpopulations, CD4+, but not CD8+ cells were affected. Adrenalectomy abolished this effect of morphine in CD4+ but not B cells. Moreover, simultaneous administration of the opiate antagonist naltrexone blocked the effect of morphine in B cells, but not in CD4+ cells. These data indicate that inhibition of Ca2+ influx by morphine may be mediated through distinct glucocorticoid-dependent and independent mechanisms. The morphine-induced inhibition of Ca2+ influx in immune cells reported here may be an early event mediating opiate-induced immunosuppression.

Adrenalectomy↗

Mitochondrial protein synthesis may be involved in long-term memory formation.

The hypothesis that two qualitatively different stages of cerebral protein synthesis (PS) are required for the formation of long-term memory (LTM) for an active-avoidance task was investigated in rats. Cytoplasmic PS was inhibited with anisomycin (ANI-5.0 mg subcutaneously). When ANI was injected at 15 min pre- and 30 min posttraining, so that cerebral PS was inhibited by 90% for 2 hours starting just before training. LTM formation was prevented. When ANI was given after training, it was not effective. Mitochondrial PS was inhibited with chloramphenicol (CAP-1.5 mg intracisternally). Inhibition occurred 40 min after the injection. CAP interfered with LTM formation only when injected between 15 and 55 min after training. From these data it was concluded that two stages of PS are required for the formation of LTM. The first one takes place in the cytoplasm, starts with the commencement of training and is independent of newly synthesized mRNA. The second stage takes place in mitochondria starting approximately 25 min after training and is dependent upon newly formed mRNA.

Animals↗

Alterations in behavioral and striatal dopamine asymmetries induced by prenatal stress.

We investigated the effects of maternal noise and light stress, randomly applied throughout pregnancy, on the development of behavioral and neurochemical asymmetries in the rat offspring. This form of maternal stress resulted in a rightward positioning of the tail of both sexes soon after birth as opposed to the leftward bias in controls. At adulthood, prenatally stressed offspring showed a change in directional bias compared to controls with a preponderance of left turns after amphetamine. In the males, this was expressed as a reduction in directional preference, while in females a reversal occurred of their dominant turning direction from right (controls) to left. We also observed a reduction in dopamine turnover rates in the left corpora striata of stressed offspring of both sexes. Again, in the females, this change was particularly marked and resulted in a reversal towards the right hemisphere. The findings from this study are consistent with the possibility that the alterations in cerebral asymmetries induced by prenatal stress may underly the decrease in the ability of the offspring to cope with anxiety provoking situations.

3,4-Dihydroxyphenylacetic Acid↗

Prenatal stress increases anxiety related behavior and alters cerebral lateralization of dopamine activity.

Effects of unpredictable (random) prenatal stress on the level of anxiety and cerebral lateralization of dopamine turnover rates were studied in rats. The observation of a decrease in the amount of time spent in the open arms of a "plus-maze" supported earlier findings of an increased fearfulness to stressful situations in the offspring in adulthood. We also observed elevated rates of dopamine turnover in the right prefrontal cortex and reduced dopamine activity in the right nucleus accumbens and left corpus striatum of the prenatally stressed animals. This resulted in directional shifts of left-right differences in dopamine activity in all 3 areas. These findings indicate that prenatal stress induces permanent alterations in dopaminergic activity and in cerebral asymmetry. We suggest that the changes in cerebral lateralization of dopamine function may underly the increase in reactivity to anxiety-provoking situations in prenatally stressed offspring.

Animals↗

Increased interhemispheric coupling of the dopamine systems induced by prenatal stress.

Maternal noise and light stress, randomly applied throughout pregnancy, has previously been shown to induce alterations in behavioral asymmetries in the adult offspring. In the present study, we investigated whether interhemispheric communication of neurotransmitters would be influenced by this treatment. Dopamine and serotonin turnover rates were measured in the left and right prefrontal cortex, nucleus accumbens and caudate nucleus of adult rats which were stressed prenatally. In control animals, dopamine turnover was only significantly correlated between the left and right hemispheres in the males (p less than 0.01). Prenatal stress greatly increased the degree of interhemispheric correlation (p less than 0.001) which now became highly significant in both sexes (p less than 0.001). For serotonin, left-right turnover rates only correlated in control females and no effect of gestational stress was seen. These results indicate that prenatal stress greatly increases interhemispheric coupling of dopamine in the adult offspring. We suggest that this facilitated communication may underly the alterations in behavioral asymmetries induced by prenatal stress.

3,4-Dihydroxyphenylacetic Acid↗

Effects of prenatal stress on vulnerability to stress in prepubertal and adult rats.

This study investigated the hypotheses that unpredictable prenatal stress has effects on the offspring, similar to those induced by perinatal administration of glucocorticoids and increases the vulnerability to stressful situations at adulthood. Rats were exposed to random noise and light stress throughout pregnancy. Offspring were tested for the development of spontaneous alternation behavior (SA) and at adulthood, their response to novel or aversive situations, open field, extinction and punishment following acquisition of an appetitive response and two-way active avoidance, were assessed. In prenatally stressed rats, the development of SA was significantly delayed. On repeated exposure to an open field they were less active; control rats had elevated plasma corticosterone (CCS) on days 2 and 4 of open field exposure, while prenatally stressed rats had significantly raised plasma CCS after each exposure (days 1-8). Furthermore, punishment-induced suppression of an appetitive response was enhanced. Acquisition of active avoidance was faciliated in female but reduced in male prenatally stressed offspring. It is suggested that random prenatal noise and light stress may cause impairment of development of hippocampal function which lasts into adulthood. This impairment is manifested as an increase in vulnerability and a decrease in habituation to stressful stimuli.

Animals↗

Are the effects of gestational stress on motor development and cerebellar cholinesterase activity mediated prenatally?

Prenatal random noise and light stress retards early motor development in the rat. To determine whether this delay is pre- or postnatally mediated and whether the developing cerebellum may play a role in the delay, rats were subjected to this form of stress and their offspring were fostered or cross-fostered onto control rats and vice versa. Their motor development was assessed by a series of behavioral tests between birth and day 10 of life. Prenatally stressed pups (Eo), whether reared by stressed (Em) or control mothers (Cm), showed a retardation in motor development. However, stressed pups matured earlier when reared by a control mother than by a stressed dam. Control pups (Co) raised by stressed mothers showed normal behavioral development. Cerebellar cholinesterase activity, which has been shown to undergo characteristic alterations with normal maturation, did not differ between stressed and control pups at birth. However, on day 10, cholinesterase activity was lower in EmCo than in CmCo pups, whereas that in CmEo and EmEo pups did not differ significantly from controls. It is concluded that three effects of random noise and light stress during pregnancy may be distinguished: (1) A prenatal effect as expressed by a delay in motor development, (2) a postnatal (rearing) effect on motor development and (3) a rearing effect expressed as a decrease in cerebellar ChE activity.

Animals↗

Prenatal stress impairs maternal behavior in a conflict situation and reduces hippocampal benzodiazepine receptors.

Maternal behavior (pup retrieval) was assessed in prenatally stressed rats during control and conflict situations (having to pass through an airstream) when their pups were 4-5 days old. There was no difference in pup retrieval between experimental and control rats under normal conditions but only 52% of the former retrieved their pups during the conflict situation, compared with 96% of the controls. Catecholamine (CA) levels in the arcuate nucleus (Arc.n.) and noradrenaline in the medial preoptic nucleus (POM) were not altered in prenatally stressed females, but their dopamine levels in the POM tended to be lower (p less than 0.1). The number of benzodiazepine (BZ) receptors in the hippocampi of prenatally stressed females was significantly lower than in controls. We conclude from these results that random prenatal noise and light stress increases the vulnerability to stressful situations in the female offspring during adulthood, which may be accompanied by altered CA function in the hypothalamus and BZ binding in the hippocampus.

Animals↗

The effects of prenatal exposure to predictable or unpredictable stress on early development in the rat.

Pregnant rats were exposed to different schedules of noise and light stress, and the development of their offspring was studied during the first 2 weeks of life. Motor development was measured by different tests: Righting reflex (Days 2-4); cliff avoidance (Days 4-10); turning on an inclined plane (Days 5-10); and swimming behavior (Days 6-10). Development of motivation-involved behavior was measured with a home-seeking test (Days 6-16). Other developmental landmarks such as acoustic response (Days 12-14) and eye-opening (Days 14-17) were also recorded. Thrice-weekly random stress resulted in a delay in the development of all behaviors studied. Daily stress exposure throughout pregnancy resulted in smaller litters with heavier pups, but otherwise normal behavioral and physical development. Rats exposed to daily stress during the last week of pregnancy only produced litters that did not differ in size and body weight, but that displayed accelerated development of all parameters (except for eye-opening) from Day 6 onwards. It is concluded that the unpredictable nature of prenatal stress is responsible for delays in behavior of offspring.

Animals↗