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Biomedical subjects

R Freedman

Publications and source records attributed to R Freedman.

At least 181 records · Page 10Linked to original sources

Natural immunity against ovarian tumors.

We have analysed natural killer (NK) cytotoxic activity in peripheral blood and ascitic fluids of patients with advanced stage of ovarian epithelial carcinoma. All patients displayed low NK activity in peripheral blood and virtually no cytotoxicity in ascitic fluids. NK activity in ascitic fluids could be substantially augmented after regional administration of virus-modified tumor cell extracts (VMTE), and that in peripheral blood after culture of effector cells with interleukin-2 (IL-2) in vitro. Activated NK cells displayed cytotoxic activity against NK-sensitive and NK-resistant tumor cell lines as well as against fresh ovarian tumors. Parallelism was found between regional NK augmentation and regression of malignant ascites. The latter observation suggests possible NK cell role in defense against ovarian tumors.

Ascitic Fluid↗

Gating of auditory evoked responses in normal college students.

Several neurophysiological indicators of abnormal sensory processing found in psychosis are also found in lower incidence in normal populations, particularly those at the age of risk for illness. One such parameter, gating of the auditory evoked potential, was evaluated in college students. Auditory stimuli were presented in pairs to 21 normal subjects, who generally showed gating or suppression of the vertex P50 wave to the second stimulus. Since suppression in this conditioning-testing paradigm is often absent in psychotic patients, we attempted to see if particular parameters, perhaps related to the psychotic state, that would interfere with suppression could be identified in these normal subjects. Increase in motor activity by either active or passive movement did not alter suppression. Distraction of attention by a serial subtraction test also did not interfere. Suppression was not related to mood in most subjects. Extreme self-ratings of tension-anxiety and anger-hostility were closely associated with absence of suppression, however. The results suggest that changes in concentration or motor activity do not affect suppression, but absence of suppression is associated with significant disturbance of mood in a fraction of a normal population of college students.

Auditory Perception↗

Antagonism of phencyclidine action by metaphit in rat cerebellar Purkinje neurons: an electrophysiological study.

Metaphit (1-[1-(3-isothiocyanatophenyl)-cyclohexyl]piperidine), a derivative of the psychotomimetic drug phencyclidine (PCP), is postulated to bind irreversibly to PCP receptors. We examined here the electrophysiological interactions of metaphit with PCP in rat cerebellar cortex, since a specific effect of PCP on cerebellar neuronal circuitry has been shown. Metaphit, applied locally to Purkinje neurons by micropressure ejection through multibarreled micropipettes, has a reversible depressant action lasting for 5-20 min. Following this, PCP-induced inhibition is blocked with no recovery despite repeated applications of PCP for over an hour. This blockade was not seen unless the dose of metaphit was sufficient to transiently depress Purkinje neuron discharge. Metaphit does not antagonize inhibitory effects of locally applied norepinephrine or gamma-aminobutyric acid. This electrophysiological data suggests that metaphit is an irreversible antagonist of PCP in the cerebellum.

Action Potentials↗

Metaphit, an acylating ligand for phencyclidine receptors: characterization of in vivo actions in the rat.

Metaphit, which acylates phencyclidine (PCP) receptors in vitro, was shown to acylate PCP receptors and antagonize the behavioral and electrophysiological effects of PCP in vivo. Metaphit (2 mumol/rat) administered i.c.v. produced PCP-like stereotyped behavior and ataxia in 10 to 20% of rats. At a lower dose, Metaphit (1 mumol/rat) antagonized the ability of PCP to induce stereotyped behavior and ataxia for 3 and 4 days, respectively. The Metaphit-induced antagonism of PCP induction of stereotyped behavior and ataxia was dose-dependent and specific as Metaphit did not antagonize induction of stereotyped behavior by amphetamine. Further evidence for a specific PCP receptor mechanism was the finding that PCP pretreatment blocked the effects of subsequent Metaphit administration. Metaphit also antagonized PCP-induction of stereotyped behavior, but not ataxia, after i.v. administration. Doses of Metaphit that produced long-term antagonism of the behavioral effects of PCP also produced a significant decrease in the maximum binding, but not Kd, of the binding of the PCP analog, [3H]-1-(2-thienyl)cyclohexyl]piperidine, in Metaphit-pretreated rats. The binding of [3H]etorphine and [3H]spiroperidol was not altered significantly by pretreating rats with Metaphit. (-)-Cyclazocine and (+)-SKF 10,047 induced stereotyped behavior and ataxia that was not antagonized by Metaphit-pretreatment. In electrophysiological experiments, Metaphit, like PCP, initially depressed the firing of caudate neurons as does PCP, but then irreversibly inhibited PCP-induced depression of caudate neurons. These results suggest that metaphit antagonized the effects of PCP by selectively acylating PCP receptors and that (-)-cyclazocine- and (+)-SKF 10,047-induced behavioral effects are not mediated primarily by PCP receptors.

Acylation↗

Electrophysiological interactions of isomers of cyclazocine with the phencyclidine antagonist metaphit in rat cerebellar Purkinje neurons.

Metaphit, 1-(1-(3-isothiocyanatophenyl) cyclohexyl) piperidine, an analog of phencyclidine (PCP) has been shown previously to selectively block PCP receptors and to irreversibly antagonize the depressant effect of PCP in cerebellum. In this study, we examined the electrophysiological interactions of metaphit and naloxone with stereoisomers of cyclazocine, an agent known to have analgesic and psychotomimetic activity in behavioral studies, effects that have been ascribed to opiate and PCP receptor activity. A dose-dependent and reversible slowing of Purkinje neuron discharge was seen with local application of (+)- or (-)-cyclazocine. We found that the blockade of (-)-cyclazocine effects required both high doses of naloxone and the presence of metaphit, whereas the responses to (+)-cyclazocine were blocked by metaphit alone on most cerebellar Purkinje neurons. These findings suggest that the depressant reaction of (+)-cyclazocine in cerebellar Purkinje neurons is primarily mediated through PCP receptors. (-)-Cyclazocine responses, on the other hand, appear to be due to activity at both PCP and kappa opioid receptors.

Animals↗

Investigation of the failure of parenterally administered haloperidol to antagonize dopamine released from micropipettes in the caudate.

An anomaly in the experimental data underlying the theory that neuroleptics act by blockade of dopaminergic neurotransmission is the repeatedly demonstrated failure in several laboratories of parenterally administered neuroleptics to antagonize electrophysiologic actions of locally applied dopamine (DA) in striatum. This failure is enigmatic since many investigators have successfully demonstrated antagonism when both dopamine and neuroleptic are applied directly to striatal neurons by microiontophoresis. We used multibarrel micropipettes to pressure-eject DA agonists onto rat caudate neurons while observing the ability of parenterally administered haloperidol to block the inhibitory actions of dopaminergic agonists on neuronal activity. Experiments performed at times of maximal behavioural effect of haloperidol did not demonstrate agonist-antagonist interaction. This result has been obtained by four other teams of investigators. A variety of pharmacologic manipulations were employed to help solve this enigma. Acute treatment with reserpine and alpha-methyl-paratyrosine, performed to minimize any possible interference by endogenous DA, did not permit blockade of dopamine by haloperidol. To see if this failure of antagonism could be generalized to other DA agonists, apomorphine, amphetamine, and phencyclidine (PCP) were also investigated. Although the direct dopaminergic agonist apomorphine was not antagonized by haloperidol, the indirect DA agonist PCP was successfully antagonized. Amphetamine, which has both direct and indirect actions when applied locally, was not antagonized. Antagonism of direct agonists was demonstrated in rats with unilateral 6-hydroxydopamine-induced lesions of the nigrostriatal pathway. In these preparations, parenterally administered haloperidol reversed the receptor-mediated supersensitivity to the inhibitory effects of locally applied DA and apomorphine.(ABSTRACT TRUNCATED AT 250 WORDS)

Amphetamine↗

Current perspectives on iatrogenic neonatal respiratory distress syndrome.

Iatrogenic respiratory distress syndrome (RDS) continues to result in significant morbidity and mortality. In this series of 176 cases of neonatal RDS, 8 (4.6%) resulted from errors in obstetric management: poor documentation of fetal maturity prior to elective delivery (6 cases), elective cesarean section with premature rupture of the membranes at 33 weeks of gestation (1) and failure to attempt tocolysis at 32 weeks of gestation (1). One neonatal death occurred among the eight cases. The authors encourage others to analyze their experiences in order to identify this important health care problem.

Cesarean Section↗

Primary structure of histidine-tRNA synthetase and characterization of hisS transcripts.

Histidine-tRNA synthetase is one of the smallest bacterial aminoacyl-tRNA synthetases. It is less than one-half the size of the largest aminoacyl-tRNA synthetases. The entire nucleotide sequence of the Escherichia coli hisS locus was determined. The coding region is comprised of 424 codons, and the sequence was determined for 200 nucleotides on the 5'- and 3'-sides of the coding region. The translated nucleotide sequence was confirmed extensively by independent amino acid sequence information obtained by Edman degradations of purified peptides and by measurements of peptide masses by fast atom bombardment mass spectrometry. A significant sequence alignment of four bacterial aminoacyl-tRNA synthetases was reported recently (Webster, T., Tsai, H., Kula, M., Mackie, G., and Schimmel, P. (1984) Science 226, 1315-1317). Although the four enzymes vary considerably in length, this match occurs within the first 100 amino acids of each of the four enzymes and is in the segment believed to be part of the catalytic core. But no strong alignment could be found of the histidine sequence with these four tRNA synthetase sequences. This enzyme may be derived, therefore, from a different progenitor. Previous work suggested that three places in the hisS 5'-noncoding sequence could be promoter sites for RNA polymerase (Eisenbeis, S. J., and Parker, J. (1982) Gene 18, 107-114). We detected a 1400-nucleotide RNA species by RNA blot analysis with a hisS-specific probe. S1 nuclease mapping demonstrated a 5'-end to the RNA species occurs at -67 +/- 1, relative to the first nucleotide of the coding region. This position coincides with the predicted start site for transcription from one of the previously proposed promoter sites.

Amino Acid Sequence↗

Inhibition of Purkinje cell firing by systemic administration of phenylisopropyl adenosine: effect of central noradrenaline depletion by DSP4.

The effect of the metabolically stable adenosine analog (-)-N6(R-phenyl-isopropyl)-adenosine (PIA) on the rate of spontaneous Purkinje cell firing was studied in anesthetized rats. In control animals, systemically administered PIA elicited only small and inconsistent changes in firing rate. However, in animals previously treated with DSP4 (50 mg/kg i.p.), which selectively lesions central noradrenergic afferents, or with the adrenergic antagonist sotalol (15 mg/kg), PIA elicited consistent decreases in firing rate. These effects were antagonized by the systemic administration of the adenosine receptor antagonist aminophylline (50-150 mumol/kg). Local administration of adenosine by pressure ejection caused a dose-dependent depression of Purkinje cell firing that was likewise inhibited by the methylxanthine. In DSP4 treated rats the depression of synaptic transmission by adenosine in rat hippocampus in vitro was unaltered, and theophylline did not cause any marked rise in Purkinje cell firing, suggesting that DSP4 does not sensitize neurons to the depressant effects of adenosine derivatives. PIA also caused a dose-dependent decrease in arterial blood pressure and a decrease in heart rate that was of equal magnitude in control and DSP4 treated rats. The results show that the central effects of systemically administered adenosine analogs are altered by procedures that disrupt the normal depressant effect of tonic noradrenergic input.

Action Potentials↗

Norepinephrine-dependent and independent mechanisms of persistent effects of amphetamine in rat cerebellum.

Previous studies of the effects of chronic low-dose amphetamine (2 mg/kg per day X 21 days) on the spontaneous discharge rate of cerebellar Purkinje neurons have shown persistent depressant effects for up to 50 days after cessation of drug administration. The depression of spontaneous discharge observed was only partially reversible by various pharmacological agents which disrupt noradrenergic neurotransmission in cerebellum. In the present study, several additional approaches were used to investigate further this persistent effect. Rats were treated, either before or after chronic treatment with amphetamine, with intracisternal 6-hydroxydopamine at doses which destroy most noradrenergic fibers in cerebellum. In either case Purkinje neurons were still significantly slowed after cessation of amphetamine treatment, although the depression was not as great as previously observed. In another experiment, cerebellar cortical levels of 3-methoxy, 4-hydroxy phenyl glycol (MHPG) were measured after cessation of amphetamine administration, to determine if there was biochemical evidence for increased noradrenergic neurotransmission. At ten days, MHPG levels were elevated by 36%, and they returned to control values by 30 days. The evidence obtained in these studies suggests that chronic amphetamine treatment causes a persistent increase in noradrenergic neurotransmission, but non-noradrenergic mechanisms may also be important mechanisms in the long-lasting depression of activity of cerebellar Purkinje neurons.

Amphetamine↗

Combined grafts of the ventral tegmental area and nucleus accumbens in oculo. Histochemical and electrophysiological characterization.

Dissection techniques and optimal donor stages have been established for constructing an isolated intraocular model of the ventral tegmental area (VTA)-accumbens system using intraocular sequential grafting. Single grafts including accumbens and VTA respectively survived and developed many organotypic features when taken from 15-17 day fetuses. Falck-Hillarp fluorescence histochemistry showed dopamine neurons and terminals in single VTA grafts, no or almost no catecholamine fibers in single accumbens grafts, and a well-developed VTA-accumbens dopamine pathway in combined grafts where cell bodies in the VTA part provided the accumbens part with a rich terminal network. A similar distribution was found using immunohistochemistry with antibodies directed against tyrosine hydroxylase. CCK-like immunoreactivity had a distribution that mimicked that of the catecholamine-containing system. Enkephalin-like immunoreactivity was found both in single VTA and in single accumbens pieces as well as in both parts of the double grafts. Cells with long-duration action potentials typical of dopamine neurons discharged at approximately 8 Hz in single VTA grafts and below 1 Hz in the VTA part of VTA-accumbens double grafts. Cells in the accumbens portion of double grafts had shorter action potential durations and fired at 10-20 Hz. Haloperidol increased discharge frequency in VTA neurons with long action potential durations while apomorphine reduced discharge markedly. Antidromic activation of putative dopamine neurons in the VTA part was obtained by electrical stimulation of the accumbens part. The indirect dopamine agonist + 3-methyl-phencyclidine slowed firing rates of neurons in the accumbens part of double grafts. Taken together, the histochemical and the electrophysiological data show that the intraocular VTA-accumbens system retains several of its normal structural and functional characteristics. It is proposed that the isolated VTA-accumbens projection can be used as a model to study the cellular mechanism of action of stimulant and opiate drugs of abuse.

Animals↗

Electrophysiological and neurochemical correlates of the neurotoxic effects of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) on central catecholamine neurons in the mouse.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) is an agent which produces a parkinsonian syndrome in man. To explore the use of MPTP in a rodent model of parkinsonism, male albino mice (NMRI) were given MPTP (50 mg/kg, s.c.) twice with a 6-8 h interval. Up to 10 weeks after injection, mice were killed and high-pressure liquid chromatography was used to assay dopamine (DA) and noradrenaline (NA) concentrations in various regions of the CNS. At 4 and 10 weeks after injection, DA levels were significantly reduced in occipital cortex (-40%), hippocampus (-30%), and striatum (-60%). NA levels were reduced by 60-80% in frontal and occipital cortex, hippocampus, and cerebellum. Neither DA nor NA concentration was reduced in spinal cord. Dopaminergic denervation was also suggested by electrophysiological data which showed that treatment with MPTP increased the spontaneous discharge rate of caudate neurons and decreased the potency of locally administered phencyclidine, an indirect DA agonist. However, denervation was evidently not complete enough to produce postsynaptic receptor supersensitivity, as MPTP treatment did not increase the potency of locally applied DA, and it did not increase 3H-spiperone binding in striatal membrane preparations. These results suggest that MPTP causes regionally selective and long-term reductions of catecholamine transmission in the CNS of the mouse.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine↗

Neurophysiologic studies of sensory gating in schizophrenia: comparison of auditory and visual responses.

Gating of visual and auditory evoked responses was assessed in chronic schizophrenic patients treated with neuroleptic drugs. Middle latency components of the visual evoked response (N90-P130) were recorded at the occiput after flash stimulus. Possible inhibitory mechanisms of sensory gating were assessed in a conditioning-testing paradigm by measuring the change in amplitude of response to a second stimulus, relative to the response to the first stimulus. Simultaneous electrooculograms were recorded to detect contamination of recordings by eye movement. Neither schizophrenic patients nor normal control subjects demonstrated significant suppression of visual evoked responses in the conditioning-testing paradigm. These results differed markedly from similar measurements of a middle latency component of the auditory evoked response (P50) recorded using the same conditioning-testing paradigm in these subjects. Normal controls showed significant decrements of the P50 response to the second auditory stimulus (mean decrement over 80%), whereas schizophrenic patients failed to show a significant decrement (mean less than 40%). This finding for auditory evoked responses replicated previous studies of normal and schizophrenic subjects. Multiple conditioning stimuli were substituted for the single conditioning stimulus used previously in an attempt to enhance gating of auditory responses, but suppression of the P50 test response did not increase in either normal or schizophrenics.

Adult↗

Electrophysiological interactions between haloperidol and reduced haloperidol, and dopamine, norepinephrine and phencyclidine in rat brain.

Haloperidol and its metabolite, reduced haloperidol, were compared as antagonists of catecholaminergic neurotransmission in central nervous system of the rat. Agonists and antagonists were applied from multibarrelled micropipettes, which were also used to record extracellularly the effects of these substances on neuronal discharge. Haloperidol antagonized dopaminergic inhibition of caudate neurons and inhibition of cerebellar Purkinje neurons induced by noradrenaline, whereas reduced haloperidol was an ineffective antagonist. Phencyclidine, which is an indirect dopaminergic agonist in the caudate, caused inhibition of the discharges of caudate neurons resembling that induced by dopamine itself. These indirect effects of phencyclidine were also antagonized by haloperidol but not by reduced haloperidol. The data suggest that the metabolite, reduced haloperidol, is not an effective neuroleptic drug in the central nervous system.

Animals↗

Interaction of norepinephrine with Purkinje cell responses to cerebellar afferent inputs in aged rats.

Age-related differences in the modulatory actions of NE on the evoked activity of cerebellar Purkinje cells were examined in young (3 month) and old (18-20 month) Fischer 344 rats. We have previously shown that NE is more potent in young than in old rats, in terms of its ability to inhibit spontaneous activity. In this investigation complex spike excitation, simple spike excitation, and inhibition of Purkinje cell discharge were elicited by stimulation of climbing fibers, mossy fibers, and cerebellar parallel fibers, and quantified by computing post-stimulus time histograms of the neuronal response, recorded extracellularly. Histograms were compared before, during and after local ejection of NE from multibarreled micropipettes. In young rats NE preferentially inhibits spontaneous discharge more than evoked excitations. The inhibitory response of the Purkinje cell to activation of basket and stellate cell afferents is potentiated by NE with respect to the inhibition of spontaneous discharge. In old rats the NE-induced potentiation of both excitatory and inhibitory responses was significantly diminished. The loss of noradrenergic enhancement of the relative responsiveness of Purkinje neurons to afferent inputs in senescent animals may relate to behavioral deficits seen in aging.

Action Potentials↗