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M A Raskind

Publications and source records attributed to M A Raskind.

At least 73 records · Page 4Linked to original sources

Enhanced hypothalamic-pituitary-adrenocortical axis responses to physostigmine in normal aging.

BACKGROUND: The purpose of this study was to determine the effects of normal human aging on the hypothalamic-pituitary-adrenocortical (HPA) axis response to the centrally active cholinesterase inhibitor physostigmine. This drug stimulates the HPA axis at a suprapituitary level by increasing central nervous system (CNS) cholinergic activity. METHODS: Plasma ACTH, beta-endorphin (beta E) and cortisol responses to a 10-minute infusion of physostigmine (.0125 mg/kg) were compared between groups of 10 normal older subjects (71 +/- 2 years [mean +/- SEM]) and 9 normal young subjects (27 +/- 2 years). Plasma physostigmine concentrations were measured to assess the comparability of the pharmacologic stimulus between groups. RESULTS: Endocrine responses were substantially greater in older subjects than young subjects for ACTH (p < .01), beta E (p < .01) and cortisol (p < .01). Plasma physostigmine concentrations did not differ between older and young subjects. CONCLUSION: This study demonstrated increased HPA axis responsivity to a CNS cholinergic stimulus in normal human aging.

Adrenocorticotropic Hormone↗

Galanin-binding sites in the female rat brain are regulated across puberty yet similar to the male pattern in adulthood.

The neuropeptide galanin (GAL) has been implicated in a variety of neuroendocrine functions and has been shown to be regulated by gonadal hormones in several brain regions. We have used slice binding and quantitative autoradiography techniques to determine whether the activation of GAL pathways across puberty in female rats is associated with changes in the density of GAL binding in telencephalic and diencephalic regions as we previously observed in male rats. We have also asked whether sex differences in GAL immunoreactivity and GAL gene expression detected in some brain regions would be paralleled by sex differences in 125I-GAL-binding density in adult male and female rat brains. To control for intrinsic differences in the level of endogenous GAL synthesis and release, brain slices from prepubertal female and adult male and female rats were treated with guanosine 5'-triphosphate (GTP) to induce dissociation of endogenous GAL from its binding sites prior to incubation with radiolabeled ligand. 125I-GAL binding was significantly reduced in seven brain regions of adult compared with prepubertal female rats. These regions included the islands of Calleja (p < or = 0.03), the medial amygdaloid nucleus, posterodorsal division (p < or = 0.05), median eminence (p < or = 0.02), medial habenular nucleus (p < or = 0.05), rhomboid thalamic nucleus (p < or = 0.05), and paraventricular (p < or = 0.05) and intermediodorsal (p < or = 0.02) thalamic nuclei. Only one region, the lateral preoptic area, exhibited significantly enhanced 125I-GAL binding in adult female (p < or = 0.04) compared with prepubertal animals.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Sex difference in coexpression by galanin neurons accounts for sexual dimorphism of vasopressin in the bed nucleus of the stria terminalis.

Vasopressin (VP) neurons in the bed nucleus of the stria terminalis (BNST) are steroid sensitive and sexually dimorphic. The number of VP messenger RNA (mRNA)-expressing neurons is larger in male than in female rats. This initial observation suggested that sexual dimorphism resulted from enhanced proliferation and/or survival of VP neurons after gonadal hormone exposure during the critical perinatal period. However, galanin (GAL) and VP mRNAs were recently reported to be coexpressed in the BNST of adult male rats, and GAL gene expression, unlike VP gene expression, is not sexually dimorphic. These findings are consistent with the hypothesis that the sex difference in VP cell number in the BNST results from a sex difference in the number of GAL neurons dedicated to express the VP gene. To test this hypothesis, double in situ hybridization histochemistry was performed for GAL and VP mRNAs in the BNST of adult male and female rats. For quantification, the posterior BNST was divided into its two anatomical regions: medial (BSTM) and lateral (BSTL) divisions. Extending previous results for the whole BNST, the number of GAL-expressing cells in either the BSTM or the BSTL was not sexually dimorphic. A significant sex difference was found in the number of GAL cells coexpressing VP in the BSTM (mean +/- SE, male, 124 +/- 8; female, 56 +/- 6; P < or = 0.0001), but not in the BSTL (male, 80 +/- 9; female, 83 +/- 15). Accordingly, the number of cells expressing GAL mRNA only was significantly lower (P < or = 0.002) in the BSTM of male (43 +/- 5) than in female (85 +/- 9) rats. Evidence is provided that the reduced incidence of coexpression of VP by GAL neurons in the BSTM of female rats may account for the reported sex difference in VP cell number in the entire BNST. The results suggest that gonadal hormones in the perinatal period may not influence the proliferation and/or survival of VP neurons in the BNST per se but influence, instead, the capacity of GAL neurons to synthesize VP.

Animals↗

Is early-onset Alzheimer disease a distinct subgroup within the Alzheimer disease population?

Although patients with Alzheimer disease (AD) share major clinical and neurohistologic features regardless of age of onset, the hypothesis that early-onset AD comprises a distinct subgroup remains viable. Most studies addressing this hypothesis find quantitative differences between early- and late-onset AD patients. Early-onset AD is characterized by shorter survival, more rapid cognitive deterioration, greater frequency of language disturbance, more severe and widespread neurochemical abnormalities, and a greater density of neurohistologic lesions. In addition, both the chromosome 14 genetic abnormality and chromosome 21 amyloid precursor protein mutations appear restricted to early-onset familial AD. Age of onset of AD subjects may be relevant to the design of clinical trials. For example, the efficacy of a drug that slows disease progression may be more easily demonstrated in subjects with early-onset disease.

Age of Onset↗

Plasma arginine vasopressin response to hypertonic saline infusion in Alzheimer disease.

In this study, we tested the hypothesis that the plasma arginine vasopressin (AVP) response to osmotic stimulation induced by hypertonic saline infusion is blunted in the early and middle stages of Alzheimer disease (AD). Because animal data support stimulatory cholinergic mediation of AVP osmoregulation at a brain level, the AVP response in AD might provide clinically useful information about the status of brain cholinergic systems. Seventeen AD outpatients and eight normal older subjects underwent both a 90-min hypertonic saline infusion and a 90-min control (normal saline) infusion. Substantial increases in plasma osmolality during hypertonic saline infusion were accompanied by substantial and linear increases in plasma AVP in both groups. However, there were no significant differences in AVP responses between AD and normal older subjects. These results do not support the utility of plasma AVP response to hypertonic saline in the assessment of brain cholinergic status in AD.

Aged↗

Sympathetic nervous system activity in major depression. Basal and desipramine-induced alterations in plasma norepinephrine kinetics.

BACKGROUND: To determine whether elevations of plasma norepinephrine (NE) in major depression represent increased sympathetic nervous system (SNS) activity and to assess the effects of desipramine hydrochloride on sympathetic function. METHODS: SNS activity was assessed in depressed patients and controls by an isotope-dilution, plasma NE kinetic technique using mathematical modeling and compartmental analysis. This approach provided estimates of the rate of NE appearance into an extravascular compartment, which is the site of endogenous NE release from SNS nerves, the corresponding rate of NE appearance into plasma, and the rate of NE clearance from plasma. RESULTS: Norepinephrine appearance into the extravascular and vascular compartments was significantly elevated in 17 depressed patients compared with that in 36 controls. The rate of NE clearance from plasma was similar in both groups. This is compatible with increased SNS activity in major depression. Desipramine, given for 2 days, significantly reduced the concentration of NE in plasma of patients and controls by markedly suppressing the rates of extravascular and vascular NE appearance, compatible with a short-term reduction in SNS activity. Desipramine prolonged the rate of NE clearance from plasma, consistent with a blockade of NE re-uptake into SNS nerve terminals. The initial suppression of SNS activity by desipramine was reversed by long-term (28 days) treatment of patients, with extravascular and vascular NE appearance rates returning to approximately basal levels. An associated rise in plasma NE concentrations compared with the baseline was attributable to a progressive reduction in plasma NE clearance. CONCLUSION: Sympathetic nervous system activity is elevated in major depression and is suppressed by short-term desipramine administration. The demonstration of SNS reactivation occurring with prolonged desipramine treatment is compatible with the theory that long-term treatment desensitizes CNS alpha 2-adrenergic receptors and emphasizes the value of examining the temporal course of responses to pharmacological challenges of neuroendocrine systems. Previously reported elevations of plasma NE during prolonged administration of tricyclic antidepressants are probably the result of a reduction in plasma NE clearance, not an increase in SNS activity.

Adult↗

Phenotype of chromosome 14-linked familial Alzheimer's disease in a large kindred.

We report the clinical and neuropathological features of chromosome 14-linked familial Alzheimer's disease (14qFAD) in affected members of the L family. Some clinical information on all 16 known affected individuals and detailed neuropathological findings in 6 family members were available for review. Common features of the phenotype of 14qFAD in the L family included onset of dementia before the age of 50, early progressive aphasia, early-appearing myoclonus and generalized seizures, paratonia, cortical atrophy, numerous and extensive senile plaques and neurofibrillary tangles, and prominent amyloid angiopathy. Descriptions of phenotypic features were available for six additional recently defined 14q-linked FAD kindreds: the findings in four of them (FAD4, FAD2, A, B) indicated a relatively consistently shared 14qFAD phenotype, conforming closely with the specific clinical and neuropathological characteristics noted in the L family. Comparisons also suggested several ostensible phenotypic variants in 14qFAD: (1) In two 14q-linked kindreds (SNW/FAD3, FAD1), affected individuals in some instances were noted to survive to age 70 or beyond and the mean age at onset (> 49 years) in these two kindreds was somewhat higher than in their five 14qFAD counterparts (< 48 years in each); (2) in the SNW/FAD3 kindred, seizures and myoclonus were absent in all 10 subjects examined; and (3) cerebellar amyloid plaques were variably present within and among several 14qFAD kindreds. Comparisons with phenotypic features recently detailed in three kindreds (TOR3, F19, ROM) with codon 717 amyloid precursor protein gene mutations (i.e., APP717 FAD) suggested several distinctions: Prominent progressive aphasia, myoclonus, seizures, and paratonia were all apparently less prevalent in APP717 FAD, with language function predominantly spared over the initial disease course. The extent of homogeneity and heterogeneity in the clinical and neuropathological phenotype of 14q-linked FAD and its possible meaningful distinctions from the phenotypes of APP717 FAD await further determination.

Adult↗

Activation of galanin pathways across puberty in the male rat: galanin gene expression in the bed nucleus of the stria terminalis and medial amygdala.

Galanin and vasopressin are coexpressed in the bed nucleus of the stria terminalis and medial amygdala of the male rat. In adult males, the level of gene expression for both peptides in these regions is dependent on circulating levels of testosterone. We hypothesized that galanin messenger RNA levels would be enhanced in adult males compared with prepubertal males due to the rise in plasma testosterone levels. We used in situ hybridization and quantitative autoradiography to measure galanin messenger RNA in cells of the bed nucleus of the stria terminalis and medial amygdala of prepubertal and adult male rats. Our results show that significantly (P < or = 0.05) more galanin messenger RNA expressing neurons are detectable in the bed nucleus of the stria terminalis of adult compared with prepubertal male rats. In contrast, no differences were observed between the groups in the number of labeled neurons detected within the medial amygdala. However, the average labeling intensity was significantly enhanced in both the bed nucleus of the stria terminalis (P < or = 0.001) and medial amygdala (P < or = 0.001) of adult compared with prepubertal animals. The present findings are consistent with the hypothesis that gonadal hormones regulate galanin gene expression in some brain regions and suggest that the activation of the hypothalamic-pituitary-gonadal axis which occurs naturally with puberty is associated with activation of galanin pathways in the bed nucleus of the stria terminalis and medial amygdala.

Amygdala↗

Activation of galanin pathways across puberty in the male rat: assessment of regional densities of galanin binding sites.

Galanin-like immunoreactivity and galanin messenger RNA levels increase across puberty in neurons of gonadal steroid-dependent brain nuclei. We hypothesized that this activation and the associated increase in endogenous galanin release would result in changes across puberty in both galanin binding density and the level of receptor occupancy. Here we have assessed the density of galanin binding sites in several brain regions of prepubertal and adult male rats with or without GTP to induce dissociation of endogenous galanin from its binding sites. The developmental changes in the level of receptor occupancy were used as an indirect measure of changes in neuropeptide release from galanin expressing neurons. In standard binding conditions (buffer preincubation), 125I-labeled galanin binding showed a generalized decline in adult brains (34-68%) compared with prepubertal levels in most regions of the telencephalon and diencephalon. Following preincubation with 10(-5) M GTP, galanin binding showed a dramatic increase in most regions of the adult (152-504%) and several regions of the prepubertal brain (132-245%) over their standard binding levels. However, this increase was greatest in adult animals. Finally, although preincubation of brain slices with GTP eliminated most of the apparent age-related differences observed in standard binding conditions, several brain regions of the adult brain continued to show a significant reduction (38-76%) in 125I-labeled galanin binding compared with prepubertal animals. Only one region, the lateral preoptic area, exhibited enhanced 125I-labeled galanin binding in adult (160%) compared with prepubertal brain after GTP preincubation.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Galanin in the bed nucleus of the stria terminalis and medial amygdala of the rat: lack of sexual dimorphism despite regulation of gene expression across puberty.

Neurons in the bed nucleus of the stria terminalis (BNST) and the medial amygdala (AMe) coexpress vasopressin and galanin (GAL) in the adult male rat. Here, we have asked whether GAL gene expression, like vasopressin gene expression in these same neurons, exhibits sexual dimorphism and whether GAL pathways in the BNST and AMe are activated with puberty in female rats as we have previously observed in male rats. In Exp 1, in situ hybridization histochemistry and quantitative autoradiography were used to compare GAL gene expression in the BNST and AMe of prepubertal (24-day-old) and adult (90-day-old) male and female rats. In the BNST, both the number of GAL mRNA-expressing neurons (F = 41.98; P < or = 0.0001; males, P < or = 0.007; females, P < or = 0.001) and the intensity of labeling (F = 40.35; P < or = 0.0001; males, P < or = 0.004; females, P < or = 0.002) were significantly increased in adult compared to prepubertal animals of both sexes. In the AMe of both males (P < or = 0.001) and females (P < or = 0.001), the intensity of labeling was significantly enhanced across puberty (F = 66.29; P < or = 0.0001); however, the number of GAL mRNA-expressing neurons in this region did not change. We found no evidence for sexual dimorphism of GAL gene expression in either brain region. In Exp 2, we replicated our observations of a lack of sexual dimorphism of GAL gene expression in the BNST of adult male and female rats. These findings are consistent with the hypothesis that GAL neurons in the BNST and AMe are steroid sensitive in both sexes. However, our failure to detect any differences in either the number of GAL mRNA-expressing neurons or the level of expression between male and female rats at either age indicates that these pathways do not exhibit sexual dimorphism.

Amygdala↗

Estrogen receptor and neurotensin/neuromedin-N gene expression in the preoptic area are unaltered with age in Fischer 344 female rats.

The sensitivity of hypothalamic centers to estrogenic regulation may be impaired with age and contribute to the loss of reproductive function in female rats. Here, we have tested the hypothesis that aging is associated with alterations in the level of expression of the estrogen receptor (ER) gene and/or the neurotensin/neuromedin-N (NT/N) gene in the preoptic area (POA) of female rats. We have used in situ hybridization histochemistry and quantitative autoradiography to compare ER gene expression and NT/N gene expression in the POA of ovariectomized and ovariectomized/estradiol-treated female rats at 3, 11, and 20 months of age. We found no evidence for an age-related impairment of either ER or NT/N gene expression in two subdivisions of the POA: the anterior medial preoptic nucleus and the medial preoptic nucleus. Likewise, estrogenic regulation of both ER messenger RNA levels and NT/N messenger RNA levels did not differ across age groups. These results indicate that transcription of the ER gene within the POA is not reduced with age and suggest that the receptor translated within the POA functions normally in old female rats. Our observations do not support a role for impaired expression of the ER gene or impaired estrogenic induction of NT/N gene expression by preoptic neurons in the development of reproductive acyclicity with aging.

Aging↗

Neurobiologic bases of noncognitive behavioral problems in Alzheimer disease.

Abnormalities of neurochemical systems in Alzheimer disease, which are potentially relevant to the pathophysiology of such noncognitive problems as agitation and depression, have been demonstrated. However, the role of these abnormalities in the etiology of noncognitive problem behaviors remains poorly understood. Such abnormalities in brain noradrenergic and serotonergic systems are of particular interest because of their apparent involvement in normal regulation of mood, arousal, and aggressive behavior. The nature of the noradrenergic abnormalities in Alzheimer disease is particularly complex, with evidence suggesting both structural damage and compensatory increased norepinephrine release from remaining noradrenergic neurons. Currently available drugs that alter brain noradrenergic or serotonergic activity should be evaluated for efficacy in the management of noncognitive behavioral disorders complicating Alzheimer disease.

Acetylcholine↗

Testosterone regulates galanin gene expression in the bed nucleus of the stria terminalis.

The regulation of galanin (GAL) gene expression in the bed nucleus of the stria terminalis (BNST) by testosterone (T) was investigated using in situ hybridization histochemistry. Castration of adult male rats significantly reduced both the number of cells which expressed GAL mRNA and the average number of grains per cell. These effects were reversed by testosterone treatment. Testosterone stimulates GAL gene expression in the same neurons that have previously been shown to exhibit steroid regulation of vasopressin gene expression.

Animals↗

Extra-hypothalamic vasopressin neurons coexpress galanin messenger RNA as shown by double in situ hybridization histochemistry.

Vasopressin (VP) neurons in the bed nucleus of the stria terminalis (BNST) and medial amygdala (AMe) exhibit sexual dimorphism and steroid dependency. VP neurons in the supraoptic nucleus and paraventricular nucleus have been shown to coexpress other transmitters including galanin (GAL). However, little is known about what other neurotransmitters may be colocalized with VP in the BNST and AMe. Here, we have used radio-labeled and digoxigenin-labeled cRNA probes to perform double in situ hybridization histochemistry for VP and GAL in the BNST and AMe of intact, adult male rats. We provide evidence that in the basal state, the majority of VP-synthesizing cells in the BNST and AMe of the adult male rat also express galanin mRNA. Likewise, the majority of GAL-expressing neurons in these regions also contain VP mRNA. These findings give further evidence for the similarity of the BNST and AMe and provide a rationale for studies investigating the role of GAL in functions involving extrahypothalamic VP pathways.

Amygdala↗

Hypertonic saline infusion increases plasma norepinephrine concentrations in normal men.

We recently demonstrated in patients with panic disorder that hypertonic saline infusion induces acute panic with the same frequency and intensity as the standard hypertonic sodium lactate infusion. We now report the effects in normal men of hypertonic saline infusion on neuroendocrine systems possibly relevant to panic and anxiety. We administered a 150-min infusion of hypertonic saline (5% sodium chloride) which increased plasma osmolality from 288 +/- 1 to 303 +/- 2 mOsm/kg and produced the appropriate increase of plasma arginine vasopressin (AVP). Plasma norepinephrine (NE) increased substantially during hypertonic saline infusion compared to a normal saline infusion of equal volume and duration. Mean arterial pressure (MAP) also increased and there were significant positive correlations between MAP and NE, but not between MAP and AVP during hypertonic saline infusion. Plasma epinephrine and cortisol did not differ between conditions. Although the pattern of plasma adrenocorticotrophic hormone (ACTH) response differed between hypertonic saline and normal saline conditions, ACTH concentrations did not increase compared to baseline in either condition. These data suggest that hypertonic saline infusion increases sympathetic nervous system activity in normal men.

Adrenocorticotropic Hormone↗

A method for simultaneous detection of multiple mRNAs using digoxigenin and radioisotopic cRNA probes.

We present a simple, reliable method for simultaneous detection of two distinct mRNAs within the same tissue sample by double in situ hybridization histochemistry. Sections are hybridized with a cocktail of radiolabeled and digoxigenin-labeled cRNA probes. The digoxigenin-labeled probe is detected with an alkaline phosphatase (AP)-dependent chromogen reaction and then the radiolabeled probe is detected by conventional autoradiography. The sensitivities of the two detection methods are comparable and demonstrate the feasibility of using double in situ hybridization histochemistry to investigate the co-localization and co-regulation of mRNAs that are expressed at relatively low levels.

Animals↗