Biosynthesis of brain 2-phenylethylamine: influence of decarboxylase inhibitors and D-amphetamine.
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Biomedical subjects
Publications and source records attributed to A D Mosnaim.
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Attempts to define biological parameters that may be specifically associated with the pathophysiology of post traumatic stress disorder (PTSD) have met with only limited success, reflecting perhaps the practical limitations resulting from the high frequency of comorbidity of this condition with Axis I, II and III psychiatric diagnoses. We now report our studies on natural killer cell activity (NKCA), and the response of this cellular immune function to an in vitro methionine-enkephalin (MET) challenge in a population of Vietnam veterans with PTSD. Due to the characteristics of our PTSD patients, our protocol included four sex-matched, age-comparable control groups: (1) chronic alcoholics, (2) chronic drug abusers excluding alcohol, (3) chronic users of alcohol and other drugs of abuse and (4) drug-free, healthy volunteers. Although these groups did not significantly differ in their "baseline" NKCA, significant findings emerged from their response to preincubation with MET (10(-10), 10(-8) and 10(-6) M; 40:1 effector-to-target cell ratio). To minimize interindividual variations in the expression of NKCA each subject was used as its own control. Whereas peptide challenge resulted in an increase in NK lytic function in a subpopulation of group four (one or more MET concentrations, 8 out of 22 subjects), it produced mixed results in samples from individuals in group 2, and in general failed to elicit NKCA changes in the samples from participants in groups 1 and 3. Nine of the thirteen PTSD patients responded to MET preincubation with decreases in NKCA, which in five of them reached values below 20% of baseline for the three peptide concentrations tested. These findings may suggest that the "stress factor" in Vietnam veterans with PTSD plays a role in downmodulating NK lytic function in response to an in vitro MET challenge, an effect that appears to be potentiated by the use of drugs of abuse other than alcohol. The possible clinical relevance of these findings, including the identification of a subgroup of PTSD patients on the basis of immunological tests such as the one described in this work, deserves further investigation.
The effect of amphetamine sulfate (AMPH) on beta-phenylethylamine (PEA) and 3-methoxytyramine (3MT) levels in the rat frontal and cingulate cortices, the nucleus accumbens, and the striatum were evaluated after the administration of either cocaine or reserpine alone and in combination with AMPH. The purpose of this study was to evaluate the neuromodulator properties of PEA on dopamine (DA) release as reflected by 3MT steady-state concentrations. The highest concentration of PEA was found in the nucleus accumbens, followed by the cingulate and frontal cortices, and then the striatum. Time-course effects of the intraperitoneal administration of 5 mg/kg AMPH on PEA and 3MT concentrations were similar but not identical. AMPH at a dosage of 1 mg/kg significantly increased PEA concentration only in the striatum. A dosage of 2.5 mg/kg reserpine, which markedly depressed 3MT levels in all brain regions studied except the striatum, significantly reduced PEA concentrations only in the nucleus accumbens. This dosage of reserpine reduced DA concentrations by more than 80% in all regions examined, but its effects on norepinephrine were less marked. Pretreatment with cocaine (10 mg/kg) or reserpine (2.5 mg/kg) potentiated the effects of 1 mg/kg AMPH on PEA and 3MT levels in the frontal cortex and of 3MT in the striatum. Pretreatment with either 1 mg/kg reserpine (specifically used to partially mobilize DA storage) or cocaine (10 mg/kg) produced quantitative changes in the effects of 5 mg/kg AMPH on PEA and 3MT levels that were region-specific. For example, in contrast to the cortical regions and the nucleus accumbens, the AMPH-induced increase in 3MT was potentiated in the striatum. On the other hand, the increase in brain PEA produced by AMPH (5 mg/kg) was not influenced by either increased cytoplasmic DA (as deduced from the effects of 1 mg/kg reserpine pretreatment) or DA uptake inhibition (as deduced from the effect of cocaine pretreatment) in the frontal cortex or the nucleus accumbens. Furthermore, the increase in PEA produced by AMPH (5 mg/kg) in the cingulate cortex and the striatum were abolished and potentiated, respectively, by these drug pretreatments. Our results suggest that although DA release and PEA formation are stimulated by AMPH, these effects appear to involve mechanisms that are not directly related and hence suggest a dissociation between 3MT and PEA formation in the brain. Our work also suggests that PEA is most likely not to be co-released with DA following the administration of AMPH. Therefore, it is concluded that whatever physiological role PEA may play in central synaptic transmission, its effects do not appear to be dependent on DA release.
When compared to controls (n = 30), human immunodeficiency virus type-1 (HIV-1)-positive individuals, either asymptomatic (n = 10) or diagnosed with acquired immunodeficiency syndrome (AIDS) (n = 10), showed a statistically significant decrease in the percentage and absolute number of CD4 ( + ) T-lymphocyte cells (flow cytometry, Becton Dickinson FACScan; mean +/- SD of 42.6 +/- 6.9 and 948.5 +/- 393.3, 19.5 +/- 8.7 and 269.8 +/- 174.3, 4.6 +/- 4.1 and 60.1 +/- 134.3, respectively; Student's t- test, p < 0.05). However, this decrease was less marked in asymptomatic patients; in fact, the percentage and number of the above cells in this group of subjects was significantly higher than in the AIDS patients (Student's t-test, p < 0.05). However, we failed to find significant differences in the percentage of natural killer cells (NKCs; CD15 ( + ) CD56 ( + ) ) between the HIV-1-infected asymptomatic or AIDS groups of patients, or when compared with the controls (mean +/- SD of 10.4% +/- 9.4%, 14.3% +/- 9.7%, and 14.8% +/- 6.4%, respectively). Whereas either group of patients had a lower number of NKCs per microliter than the control group (mean +/- SD of 137.8 +/- 87.6, 91.1 +/- 98.3, and 331. 5 +/- 266.5, respectively), this decrease only reached statistical significance for the AIDS patients (Student's t-test, p < 0.05). Healthy controls showed statistically significantly higher NKC activity than either the HIV-1-infected asymptomatic or AIDS group of patients (K-562 target cell; mean +/- SD and range values as percentage of specific lysis of 19.1% +/- 15.6% and 2.4%-58.2%, 3.4% +/- 3.2% and less than 0.1% [non-detectable]-10.3%, and 6.4% +/- 5. 5% and less than 0.1%-19.5%, respectively; Student's t-test, p < 0. 05). Challenge of samples from the control group with either interleukin-2, alpha-interferon, or with a mixture of the calcium ionophore A23187 (Io) plus the 12-O-tetradecanoylphorbol-13-acetate ester (TPA) resulted in every case in a statistically significant increase in NKC lytic function (mean +/- SD and range values as percentage of specific lysis of 19.1% +/- 15.6% and 2.4%-58.2%, 27. 6% +/- 17.4% and less than 0.1%-56.0%, 32.1% +/- 20.9% and 2.1%-76. 4%, and 62.6% +/- 24.0% and 16.7%-95.0%, respectively; Student's t-test, p < 0.05). A similar challenge for samples from the HIV-1-positive subjects, either asymptomatic or with AIDS, resulted in most cases in an enhanced NKC activity; however, this increase in NKC lytic function reached statistical significance only for the group of Io + TPA-incubated samples (Student's t-test, p < 0.05). These results indicate that control or patient baseline NKC activity, and the response of this cellular immune function to a challenge with different immunomodulators, are phenotype-independent. They also suggest an association between HIV-1 infection and alterations in the initial mechanisms responsible for NKC activation; a similar general explanation has been suggested to account for the abnormal NKC lytic function observed in various severe pathological conditions, e.g., extensive burns, polytrauma, and sepsis. Understanding the molecular mechanism involved in regulating initial NKC activation could provide the rational basis for the design of newer pharmacological strategies to treat these conditions.
Preliminary findings suggest that abnormalities in matrix metalloproteinase (MMP) activity may be found in the cerebrospinal fluid (CSF) of patients with Creutzfeldt-Jakob disease (CJD). In this study of 16 subjects with CJD and 16 age-, and sex-matched controls, we determined the presence of MMP-2 and MMP-9 in their active and proenzyme forms, the relative levels of MMP-3 and four inhibitors of MMP activity (TIMP-1, TIMP-2, TIMP-3 and TIMP-4), and the concentration of 4-3-3 protein. The methodology used involved zymography and immunological techniques. The results indicate that, compared with controls, CJD patients have a significantly higher positive frequency of pro-MMP-9 and of the active form of MMP-2, along with significantly higher levels of TIMP-1 and TIMP-2, classical inhibitors of MMP-9 and MMP-2, respectively. We also found a positive correlation between 14-3-3 protein concentration and that of TIMP-1 and TIMP-2 levels (correlation coefficients of 0.793 and 0.798, respectively). These results suggest that abnormalities in MMP and TIMP profiles may be helpful in the biochemical characterisation of CJD.
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