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Biomedical subjects

C Grillon

Publications and source records attributed to C Grillon.

At least 55 records · Page 3Linked to original sources

Effects of ethanol on the processing of low probability stimuli: an ERP study.

The effect of a moderate dose of ethanol on the processing of low probability task-relevant and task-irrelevant stimuli was investigated using event-related potentials (ERPs). Sixteen subjects received alcoholic and placebo beverages on alternate days. ERPs were recorded from 15 locations on the scalp. The subjects were asked to press a button upon detection of rare target stimuli embedded among frequent standard and rare "novel" stimuli. Ethanol 1) reduced the amplitude of P3 to novel stimuli, but not P3 to target stimuli, 2) did not affect the mismatch negativity, and 3) delayed P3 latency and reaction time independently. These results suggest that 1) the processing of rare task-irrelevant stimuli is more vulnerable to the effects of ethanol than is the processing of task-relevant stimuli, and 2) ethanol impacts stimulus evaluation time and response production stages of information processing.

Acoustic Stimulation↗

Yohimbine facilitated acoustic startle in combat veterans with post-traumatic stress disorder.

Preclinical and clinical studies have suggested that the acoustic startle reflex (ASR) is a useful model to investigate the neurochemical basis of anxiety and fear states. This work has revealed that the anxiogenic alpha-2 receptor antagonist, yohimbine, increases the amplitude of the ASR in laboratory animals and in healthy human controls. Because of the growing body of data that support the hypothesis that severe stress results in substantial alterations in noradrenergic neuronal reactivity, the present investigation evaluated the effects of yohimbine on the ASR of 18 patients with PTSD and 11 healthy combat controls. Subjects received IV yohimbine (0.4 mg/kg) or saline placebo on 2 separate days in a randomized double blind placebo control design. A trial of two tone frequencies with varied intensity (90, 96, 102, 108, 114 dB) white noise and instantaneous rise time, was delivered binaurally through headphones. Tones were delivered every 25-60 s, for a 40-ms duration. Startle testing was performed 80 min post-infusion and lasted 15-20 min. Yohimbine significantly increased the amplitude, magnitude and probability of the ASR in combat veterans with PTSD, but did not do so in combat controls. Overall startle was significantly larger in the PTSD subjects; however, this did not account for the differential effect of yohimbine, since yohimbine had no significant effect in the control group. This study demonstrates an excitatory effect of yohimbine on the amplitude, magnitude and probability of the ASR in PTSD patients that is not seen in combat controls.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Acoustic startle and anticipatory anxiety in humans: effects of monaural right and left ear stimulation.

The startle reflex elicited by binaural acoustic startle stimuli is potentiated by the threat of electric shock. The present study explored the lateralization of this fear-potentiated startle reflex effect using acoustic startle stimuli delivered binaurally or monaurally to the left or right ear and recorded from the left and right orbicularis oculi muscles. Consistent with previous results, the acoustic startle to binaural stimulation was potentiated during the anticipation of shock. This effect was also present for monaural stimulation but was greater when startle stimuli were delivered to the right than to the left ear. The results are discussed in terms of hemispheric lateralization during shock anticipation.

Acoustic Stimulation↗

Baseline and fear-potentiated startle in panic disorder patients.

The present study investigated whether patients with panic disorder had an increase in the startle response and whether this effect, if present, was specific to anticipatory anxiety. The eyeblink component of the acoustic startle reflex was measured in a paradigm involving the anticipation of electric shocks (fear-potentiated startle) in 34 patients with panic disorder and 49 healthy controls. Startle was also recorded in the absence of specific threat at the beginning and at the end of the testing. The testing consisted of three phases: adaptation, fear-potentiated startle, and recovery. In the adaptation and recovery phases, startle stimuli were delivered in the absence of threat. In the fear-potentiated startle phase, startle stimuli were delivered in threat conditions, when subjects anticipated shocks, and in safe conditions that predicted the absence of shocks. Startle was larger in the younger patients (age < 40 years old) compared to the younger controls throughout the testing. The difference reached significance only during the fear-potentiated startle phase, however. Startle was nonsignificantly reduced in the older patients (age > or = 39 years old), compared to the older controls. The results are discussed in terms of the contextual effects of the experimental setting.

Adolescent↗

Safety signals and human anxiety: a fear-potentiated startle study.

The effect of a safety signal on the magnitude of anticipatory anxiety was investigated using the fear-potentiated startle reflex paradigm in humans. The amplitude of the acoustic startle reflex was measured during the anticipation of unpleasant electric shocks ("threat") and during "safe" conditions. Threat and safe conditions were signaled by three different colored lights. Two lights signaled safe conditions (safe 1, safe 2) and the other light signaled the threat condition (threat). In phase I, the lights alternated, each presentation consisting of one colored light. In phase II, the lights were presented alone or in the two combinations of safe 1 (or safe 2) + threat and safe 1 + safe 2. In both phases, the contingency between the lights and the shock was explained to the subjects. It was emphasized that no shock could be administered when the safe 1 and threat light were simultaneously presented in phase II. Subjects' belief and understanding of the instructions were verified. In Phase I, startle was increased in the threat-alone compared to the safe-alone condition, reflecting increased anticipatory anxiety in the threat-alone condition. In phase II, startle in the safe + threat condition was smaller than in the threat-alone condition, but was larger than in the safe + threat. These results were interpreted as suggesting that the threat signal was still able to elicit anticipatory anxiety despite the fact that it was no longer associated with a threat.

Acoustic Stimulation↗

Effects of ethanol on the acoustic startle reflex in humans.

The effect of ethanol on human sensorimotor reactivity was assessed by examining the acoustic startle response. Twelve healthy normal subjects participated in a startle reflex experiment in which placebo or ethanol were given on separate days. Three types of startle probes were used. They consisted of pulse-alone bursts of white noise at 108 dB(A) and 99 dB(A) to explore startle reactivity, and of a 108 dB(A) pulse preceded by a 85 dB(A) prepulse stimulus (prepulse+pulse) to assess prepulse inhibition. Startle amplitude was larger to the 108 dB(A), compared to the 99 dB(A) pulse-alone probes. The prepulse stimulus significantly reduced the amplitude of the startle reflex elicited by the subsequent 108 dB(A) stimulus. The amplitude of the startle response was dramatically reduced by acute ethanol. The effects of ethanol on prepulse inhibition could not be assessed because the startle response was too small in the ethanol condition.

Acoustic Stimulation↗

P300 assessment of anxiety effects on processing novel stimuli.

In the present experiment, event-related potentials (ERPs) were used to investigate the effect of anxiety on the attention to novel stimuli. A total of 16 healthy subjects participated in an experiment involving the anticipation of electric shocks. ERPs from 15 scalp sites were recorded in response to three types of auditory stimuli, and two attentional modes during threat and safe conditions. The three types of auditory stimuli were (1) frequent "standard" tones, (2) rare "target" tones, and (3) rare "novel" sounds. In the passive attentional mode, subjects passively listened to the stimuli. In the active attentional model, they had to Press a button in response to target tones. In each attentional mode, stimuli were presented under two conditions: threat (anticipation of shock) and safe (no-shock anticipation). P3 to the target stimuli was not affected by shock anticipation. The amplitude of P3 to the novel stimuli, however, was increased by the threat of shock in the passive but not in the active mode. The lack of impact of anxiety on P3 to the novel stimuli in the active mode is discussed.

Acoustic Stimulation↗

The tetrapeptide AcSerAspLysPro (Seraspenide), a hematopoietic inhibitor, may reduce the in vitro toxicity of 3'-azido-3'-deoxythymidine to human hematopoietic progenitors.

3'-azido-3'-deoxythymidine (AZT), the main antiviral drug used in AIDS treatment, is known to induce anemia and neutropenia. These effects have been attributed to its toxicity to hematopoietic progenitors. In this report, we present a new approach to reduce AZT hematotoxicity by using an inhibitory factor of the hematopoietic stem cells, the tetrapeptide AcSerAspLysPro (AcSDKP, Seraspenide), which has been shown to increase the survival of mice subjected to high doses of chemotherapy and to block reversibly the cycling of human granulocyte-macrophage colony forming unit (CFU-GM) and burst forming unit erythroid (BFU-E) progenitors. Normal bone marrow mononuclear cells (BMMNC) from 14 subjects were incubated with or without AcSDKP (10(-10) M) for 20 h and with or without AZT (100 microM) for another 2 h. After washing, cells were plated in methylcellulose in the presence of interleukin 3 (IL-3), granulocyte-macrophage colony stimulating factor (GM-CSF) and erythropoietin (EPO). Under these conditions, the preincubation of cells with AcSDKP reduced significantly the toxicity of AZT to both BFU-E and CFU-GM at least in 3 out of 8 and 4 out of 10 cases, respectively. A careful statistical analysis of these observations indicates that AcSDKP may be an efficient factor in preserving progenitors against AZT-induced hematopoietic toxicity.

Amino Acid Sequence↗

Yohimbine-facilitated acoustic startle reflex in humans.

Preclinical studies have suggested the acoustic startle reflex (ASR) may be a useful animal model to investigate the neurochemical basis of anxiety and fear states. This work has revealed that the anxiogenic alpha-2 receptor antagonist, yohimbine, increases the amplitude of the ASR in laboratory animals. The present investigation evaluated the effects of yohimbine on the ASR in healthy subjects. Seven healthy subjects received IV yohimbine (0.4 mg/kg) or saline placebo on two separate days in a randomized double blind placebo control design. A trial of 2 tone frequencies with varied intensity (90, 96, 102, 108, 114 dB) white noise, instantaneous rise time, was delivered binaurally through headphones. Tones were delivered every 25-60 sec, for a 30 ms duration. Startle testing was done 80 minutes post infusion and lasted 15-20 minutes. Sign rank testing indicated yohimbine caused an overall increase in startle amplitude, as well as significant augmentation of startle amplitude at 96, 102, 108, 114 decibels but not at the 90 dB intensity. Sign rank tests indicated a significant reduction of startle latency by yohimbine at only the 96 dB intensity. Significant correlations were observed between startle and peak anxiety, startle and plasma MHPG, peak anxiety and plasma MHPG. This study demonstrates in healty human subjects an excitatory effect of yohimbine on the magnitude of the ASR and a decrease in its latency. In the context of the key role of this reflex in the alarm response, this finding adds to the array of documented behavioral, biochemical and cardiovascular effects of yohimbine in humans which support the relationship between increased noradrenergic function and anxiety states.

Acoustic Stimulation↗

Measuring the time course of anticipatory anxiety using the fear-potentiated startle reflex.

The time course of the facilitation of the acoustic startle reflex induced by anticipation of electric shocks was measured in 20 normal volunteers. Shocks could be administered during the last 10 s of 45-s threat conditions but not during 50-s no-threat conditions, each condition being signaled by a different light. Consistent with previous data, overall eyeblink startle levels were higher during the threat than during the no-threat conditions. However, the magnitude of this fear-potentiated startle effect became progressively larger in the threat condition the longer the light was on and then abruptly decreased with the onset of the light signaling the no-threat condition. These effects of the threat of shock on startle were interpreted in terms of anticipatory anxiety. Other interpretations, such as changes in selective or generalized attention, were also discussed. This paradigm provides a method to assess the time course of anticipatory anxiety in humans.

Acoustic Stimulation↗

Optimization of cell culture conditions for the evaluation of the biological activities of the tetrapeptide N-Acetyl-Ser-Asp-Lys-Pro, a natural hemoregulatory factor.

The present study attempts to define the difficulties in evaluating the properties of the hemoregulatory peptide AcSDKP using in vitro assays. In fact, in the presence of sera, which are generally added to basic culture media, AcSDKP is catabolized by proteases present in the serum. The kinetics of AcSDKP degradation depends on the nature and on the concentration of the added serum. In in vitro conditions, the half life of this peptide can be increased by the addition of 1 microM captopril, a metalloprotease inhibitor. Thus, these points need to be considered in designing experiments to study the effects of AcSDKP.

Amino Acid Sequence↗

Catabolism of the tetrapeptide N-Ac-Ser-Asp-Lys-Pro (AcSDKP), an inhibitor of hematopoietic stem cell (CFU-S) proliferation, following in vitro incubation with hematopoietic tissues from normal and leukemic mice.

The comparative degradation of N-Ac-Ser-Asp-Lys-Pro (AcSDKP), a negative regulator controlling the proliferation of the hematopoietic pluripotent stem cell, was investigated following incubation with plasma, bone marrow and spleen cells from normal mice and mice bearing a transplantable myeloid leukemia. Using the tetrapeptide, specifically radiolabelled in the lysyl residue, degradation of [3H]AcSDKP was followed by measurement of [3H]Lys formation resulting from its catabolism. It was shown that already after 1 h the degradation of AcSDKP in plasma from leukemic mice was higher compared to that following incubation in plasma from normal mice, whereas incubation with bone marrow cells exhibits a small difference only after 4 hours incubation. However, no increase of AcSDKP catabolic activity was observed following incubation with spleen cells from leukemic animals when compared with incubation of normal spleen cells.

Animals↗

Startle gating deficits occur across prepulse intensities in schizophrenic patients.

The effects of prepulse stimuli of different intensities in inhibiting the startle reflex was assessed in 14 age-matched and gender-matched schizophrenic patients and 14 normal controls. The subjects were presented with startling stimuli consisting of bursts of white noise (106 dBA) with or without prepulse stimuli. Four intensities of prepulse stimuli were utilized: 75, 80, 85, and 90 dBA. Throughout the testing, the background noise was maintained at 70 dBA. The prepulse stimuli more effectively inhibited the startle reflex in the control group compared to the schizophrenic patients who showed deficient prepulse inhibition (gating) of the startle reflex. These results suggest that schizophrenics have impaired central inhibitory mechanisms over a fairly broad range of background noise to prepulse ratios. Further studies are needed to clarify exactly which ratios are optimal in eliciting prepulse inhibition (PPI) and in differentiating between schizophrenic and control groups.

Adult↗

Gating and habituation of the startle reflex in schizophrenic patients.

Schizophrenic patients exhibit impairments in both sensorimotor gating and habituation in a number of paradigms. Through human and animal model research, these fundamental cognitive deficits have well-described neurobiologic bases and offer insights into the neuroanatomic and neurotransmitter abnormalities that characterize patients with schizophrenic spectrum disorders. In this context, the startle response is particularly interesting, because it is a cross-species response to strong stimuli that is plastic or alterable using experimental and neurobiologic manipulations. Thirty-nine medicated schizophrenic patients and 37 normal control subjects were studied in a new electromyography based startle response paradigm in which both prepulse inhibition (an operational measure of sensorimotor gating) and habituation (the normal decrease in response magnitude to repeated stimuli over time) can be separated and assessed in one test session. The results indicate that schizophrenic patients have extensive deficits in both intramodal and cross-modal sensorimotor gating and a trend to show acoustic startle habituation deficits. The deficit in prepulse inhibition of startle amplitude exhibited by schizophrenic patients was evident when an acoustic prepulse stimulus preceded either an acoustic or a tactile startle stimulus. No deficit was observed in the prepulse-induced facilitation of startle latencies, indicating that the failure of gating was not due to a failure of stimulus detection. These findings suggest centrally mediated deficits in sensorimotor gating in schizophrenic patients.

Acoustic Stimulation↗

Changes in the expression of lectins in human T lymphocyte membrane upon mitogenic stimulation.

Surface lectins, specific for given sugar structures, are expressed on human T cells, as shown by flow cytofluorometry using F-neoglycoproteins bearing either beta- and alpha-D-galactosyl, beta-D-galactosyl 6-phosphate, or alpha-L-rhamnosyl groups, but not by F-neoglycoproteins bearing other sugar groups (such as alpha-D-mannosyl groups). After stimulation with Phaseolus vulgaris mitogen, the number of cells that bind beta-D-galactosyl 6-phosphate groups (6-P-beta-D-Galp lec+ cells) increased fourfold during the first five days; these cells are helper (CD4+) T cells. Conversely, cells that bind alpha-L-Rha groups belong to the T suppressor (CD8+) family and their number moderately increased. Upon stimulation by concanavalin A, the number of cells expressing the lectin recognizing alpha-L-Rha groups increased during the first two days and then decreased within the next two days. These results are discussed with regard to the implication of lymphocyte membrane lectins in the suppressor mechanism and in the homing process.

Animals↗

N400 and semantic categorization in schizophrenia.

The N400 component of event-related potentials (ERPs) was investigated in medicated schizophrenic patients and normal controls in a semantic categorization task. The subjects' task was to indicate whether pairs of words were semantically related or unrelated. The ERPs to the unrelated second words of the pairs contained a negative component, N400, which was reduced and delayed in the patients. However, inspection of individual subjects' data indicated that N400 was abnormal only in a subgroup of schizophrenics. Abnormalities in the amplitude of N400 suggest impairments in semantic expectancies, whereas abnormalities in the latency of N400 suggest a delay in information processing.

Adult↗

Soluble human lymphocyte sugar binding proteins with immunosuppressive activity.

Suppression of the immune response, which involves suppressor factors released from specialized T cells, is inhibited by alpha-L-rhamnose. In this paper, we show the presence of rhamnose-specific receptors on a human CD8+ T cell-rich population and describe a novel method to isolate cells which express a given sugar-binding protein on their surface. We describe the isolation of alpha-L-rhamnose-specific molecules (rhamnose-binding fractions: RBF) from a water-soluble extract from lymphocytes, their purification by affinity chromatography on immobilized neoglycoproteins containing rhamnose residues. RBF kept their ability to bind rhamnose, as shown by the binding of fluorescein-labeled RBF to rhamnosylated BSA-substituted beads. RBF efficiently suppresses DNA synthesis of mitogen-stimulated human lymphocytes as well as B cell immunoglobulin production. Therefore, these rhamnose-binding molecules appear to be antigen-independent suppressor factors.

Carrier Proteins↗