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Biomedical subjects

A Heller

Publications and source records attributed to A Heller.

At least 19 recordsLinked to original sources

Elimination of electrooxidizable interferant-produced currents in amperometric biosensors.

Electrooxidizable ascorbate, urate, and acetaminophen that interfere with amperometric glucose assays are completely and rapidly oxidized by hydrogen peroxide in a multilayer electrode. The multilayer electrode is composed of an immobilized, but not electrically "wired", horseradish peroxidase (HRP) film coated onto a film of electrically "wired" glucose oxidase (GO). The "wired" enzyme is connected by a redox epoxy network to a vitreous carbon electrode. The current from the electrooxidizable interferants is decreased by their peroxidase-catalyzed preoxidation by a factor of 2500, and the glucose/interferant current ratio is increased 10(3)-fold. Undesired electroreduction of hydrogen peroxide can result when HRP is also "wired" to the electrode. Such unwanted "wiring" is prevented by incorporating an electrically insulating barrier layer between the wired GO film and the HRP film. The hydrogen peroxide necessary for elimination of interferants can be added externally, or when this is not possible, it can be generated in situ by means of a coupled enzyme reaction.

Acetaminophen

Specific modulation of dopamine expression in neuronal hybrid cells by primary cells from different brain regions.

MN9D is an immortalized dopamine-containing neuronal hybrid cell line. When MN9D cells were coaggregated with primary embryonic cells of optic tectum, a brain region that does not receive a dopaminergic innervation, there was a marked reduction in their dopamine content, tyrosine hydroxylase immunoreactivity, and tyrosine hydroxylase mRNA. Similar reductions in dopamine content were produced by coaggregation with cells from embryonic thalamus, another brain region devoid of dopaminergic innervation. Coaggregation of MN9D cells with dopaminoceptive cells from the corpus striatum or the cortex did not have a demonstrable stimulatory effect on the dopamine content of MN9D cells. The decrease in MN9D dopamine content produced by optic tectum cells was not reversed by addition of corpus striatum cells. Thus, the MN9D hybrid cells are able to respond to an inhibitory factor(s) from cells derived from brain areas that are not targets for dopaminergic neurons. Catecholamine-producing PC12 cells did not respond in a similar manner, suggesting that the response of MN9D cells is a function of their mesencephalic origin. Given the selective response of MN9D cells to different brain cell populations, this hybrid cell line should facilitate investigations of cell-cell interactions in the central nervous system that may be involved in the expression of neurotransmitter phenotype and establishment of specific neuronal connections.

Animals

L-alpha-glycerophosphate and L-lactate electrodes based on the electrochemical "wiring" of oxidases.

The title electrodes were constructed by coimmobilizing the respective FAD oxidases on solid electrode surfaces with a poly(vinyl pyridine) polymer which was N-derivatized with bromoethylamine and Os(bpy)2Cl2. The redox-polymer-enzyme hydrogels were cross-linked on the electrode surface using poly(ethylene glycol) diglycidyl ether. As in the case of glucose oxidase, the redox polymer acts as an electron relaying "wire" transferring electrons directly from the enzymes' FADH2 centers to the electrode. This transfer competes with the natural process of reoxidation of FADH2 by molecular oxygen. The variation of the response of these electrodes with the atmosphere (N2 or air), pH, and substrate concentration was determined. The pH profile of the electrocatalytic current differs from that of the activity of the free enzymes, exhibiting a broader maximum, shifted to higher pH values. The observed sensitivities and linear ranges are respectively 2 x 10(-2) A M-1 cm-2 and 2.7 mM for L-alpha-glycerophosphate, and 0.3 A M-1 cm-2 and 0.2 mM for L-lactate that may be compared to 2 x 10(-2) A M-1 cm-2 and 10 mM for glucose. The 0-90% response time for all electrodes is 1 s or less.

Diffusion

Acute and persistent effects of methamphetamine on developing monoaminergic neurons in reaggregate tissue culture.

Three-dimensional, rotation-mediated reaggregate tissue cultures composed of rostral mesencephalic cells and corpus striatal cells were used to examine the short-term and persistent effects of methamphetamine on developing monoamine-containing neurons. Reaggregates were exposed to drug for one week. Reductions in reaggregate endogenous dopamine and serotonin levels occurred following treatment with methamphetamine during days 15-22 of culture over the concentration range 10(-7) to 10(-4) M. The highest methamphetamine concentration reduced dopamine and serotonin levels to 29 and 33%, respectively, of control values. Monoamine levels were reduced from control values after 3 days of exposure to 10(-4) M methamphetamine. No further reduction resulted from 4 additional days of drug treatment. In order to determine whether monoaminergic neurons would recover from the drug-induced deficit, reaggregates were exposed to 10(-4) M methamphetamine for 7 days and then grown in drug-free media for an additional 20 days. During the 20 day recovery period, monoamine levels in the control group increased with time in culture. After an initial rapid increase (recovery days 0-9), the level of monoamines in the recovery group remained at a constant proportion to the level in the control group suggesting that the monoaminergic neurons return to a rate of development similar to that seen in untreated cultures. However, this rate was not sufficient to overcome the reduction in monoamine levels produced by 7 days of methamphetamine treatment. The results indicate that the effects of methamphetamine on developing monoaminergic neurons are marked and persistent.

Animals

Thermal and sweating responses in normal and atopic subjects under internal and moderate external heat stress.

To compare the thermoregulatory responses of normal subjects and patients with atopic dermatitis, the effect of exercise under moderate heat stress was examined in two groups of subjects. Each group of eight subjects (controls or clinical atopics) underwent a 90-min experiment after being equipped with probes for measurement of core and skin temperatures, heart rate and overall and local sweating rates. Sweat surface tension was determined from sweat collection made at the end of the session. The experimental procedure was as follows: 30 min rest at thermoneutrality, 30 min cycling at 90 W at 36 degrees C, followed by 30 min recovery sitting at rest at 36 degrees C on the cycloergometer. None of the registered variables differed significantly between the normal and atopic subjects except for variations in mean skin temperature, core-to-skin temperature difference and sweat surface tension. Since local sweating on non-affected skin under a controlled thermal clamp was not altered by atopy, it can be concluded that the thermoregulatory modifications under heat stress is of vasomotor origin, the benefit of which, in terms of heat dissipation capacity, remains uncertain. There may be alterations in the constituents of sweat, but not in its excretion rate. Local, rather than central, factors are probably involved in this qualitative change, which remains to be investigated.

Adult

Growth and academic achievement in inner-city kindergarten children. The relationship of height, weight, cognitive ability, and neurodevelopmental level.

Measures of height, weight, nonverbal cognitive ability (Ravens progressive matrix), visual-motor-perceptual ability (Beery-Buktenica test of Visual Motor Integration [VMI]), the imitation-of-gestures technique, and academic achievement (Stanford Early Achievement) were obtained for a sample of 82 children from a poor inner-city community. In contrast to prior reports from the United States and about other developed countries, anthropometric measures were related both to academic achievement and to these measures of neurodevelopment. They were not consistently related to measures of nonverbal cognitive ability. Regression analyses revealed that general cognitive ability contributed more variance (39%) to predictions of achievement than all other variables, including weight for age (13%) and VMI (6%). Children with reduced somatic growth were likely to do poorly in school, but the data do not show that undernutrition causes learning failure. Rather, they suggest that environmental problems affecting the development of thought processes and nutrient intake precede both growth and learning failure.

Achievement

Amperometric glucose microelectrodes prepared through immobilization of glucose oxidase in redox hydrogels.

Glucose microelectrodes have been formed with glucose oxidase immobilized in poly[(vinylpyridine)Os(bipyridine)2Cl] derivative-based redox hydrogels on beveled carbon-fiber microdisk (7 microns diameter) electrodes. In the resulting microelectrode, the steady-state glucose electrooxidation current density is 0.3 mA cm-2 and the sensitivity is 20 mA cm-2 M-1. The current density and sensitivity are 10 times higher than in macroelectrodes made with the same hydrogel. Furthermore, the current is less affected by a change in the partial pressure of oxygen. The higher current density and lower oxygen sensitivity point to the efficient collection of electrons through their diffusion in the redox hydrogel to the electrode surface. These results contrast with those observed for enzyme electrodes based on diffusing mediators, where loss of the enzyme-reduced mediator by radial diffusion to the solution decreases the current densities of microelectrodes relative to similar macroelectrodes.

Enzymes, Immobilized

Survival of developing dopaminergic neurons in reaggregate tissue culture following treatment with methamphetamine.

Developing central dopamine (DA)-containing neurons in rotation-mediated reaggregate tissue culture exposed to 10(-4) M methamphetamine for 1 week (at a time corresponding to the 2nd week of postnatal development) exhibit decreased DA levels. DA neurons were visualized either by a histofluorescent method after 'loading' with exogenous DA, or by tyrosine hydroxylase (TH) immunocytochemistry. An apparent loss of histofluorescent DA cell bodies was observed due to a methamphetamine-induced reduction in exogenous DA accumulation. No decrease in the number of TH-immunoreactive neurons was observed. Thus, developing DA neurons when visualized by TH immunocytochemistry survive despite methamphetamine-induced reductions in DA levels.

Animals

Immortalization of embryonic mesencephalic dopaminergic neurons by somatic cell fusion.

To facilitate the study of trophic interactions between mesencephalic dopaminergic neurons and their target cells, clonal hybrid cell lines have been developed from rostral mesencephalic tegmentum (RMT) of the 14-day-old embryonic mouse employing somatic cell fusion techniques. Among the hybrid cell lines obtained, one contains a high level of dopamine (DA), another predominantly 3,4-dihydroxyphenylalanine (DOPA), and a third no detectable catecholamines. The hybrid nature of the cell lines is supported by karyotype analysis and by the expression of adhesion molecules as assessed by aggregation in rotation-mediated cell culture. The DA cell line shows neuronal properties including catecholamine-specific histofluorescence, neurite formation with immunoreactivity to neurofilament proteins, and large voltage-sensitive sodium currents with the generation of action potentials. In contrast to the pheochromocytoma cell line (PC12), the dopamine content of the DA hybrid cell line is depleted by low concentrations of N-methyl-4-phenylpyridinium ion (MPP+), the active metabolite of the neurotoxin N-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP).

1-Methyl-4-phenylpyridinium

Cross-linked redox gels containing glucose oxidase for amperometric biosensor applications.

Oxidoreductases, such as glucose oxidase, can be electrically "wired" to electrodes by electrostatic complexing or by covalent binding of redox polymers so that the electrons flow from the enzyme, through the polymer, to the electrode. We describe two materials for amperometric biosensors based on a cross-linkable poly(vinylpyridine) complex of [Os-(bpy)2Cl]+2+ that communicates electrically with flavin adenine dinucleotide redox centers of enzymes such as glucose oxidase. The uncomplexed pyridines of the poly(vinylpyridine) are quaternized with two types of groups, one promoting hydrophilicity (2-bromoethanol or 3-bromopropionic acid), the other containing an active ester (N-hydroxysuccinimide) that forms amide bonds with both lysines on the enzyme surface and with an added polyamine cross-linking agent (triethylenetetraamine, trien). In the presence of glucose oxidase and trien this polymer forms rugged, cross-linked, electroactive films on the surface of electrodes, thereby eliminating the requirement for a membrane for containing the enzyme and redox couple. The glucose response time of the resulting electrodes is less than 10 s. The glucose response under N2 shows an apparent Michaelis constant, Km' = 7.3 mM, and limiting current densities, jmax, between 100 and 800 microA/cm2. Currents are decreased by 30-50% in air-saturated solutions because of competition between O2 and the Os(III) complex for electrons from the reduced enzyme. Rotating ring desk experiments in air-saturated solutions containing 10 mM glucose show that about 20% of the active enzyme is electrooxidized via the Os(III) complex, while the rest is oxidized by O2. These results suggest that only part of the active enzyme is in electrical contact with the electrode.

Biosensing Techniques

Influence of co-dergocrine mesilate/nifedipine compared to mefruside/nifedipine on circadian blood pressure in patients with essential hypertension.

This randomised, parallel group study was designed to compare the efficacy of nifedipine (40 mg once daily) combined with either the dopamine agonist, co-dergocrine mesilate (4 mg once daily) or the diuretic mefruside (25 mg once daily) in 40 patients with essential arterial hypertension and a diastolic blood pressure greater than 105 mmHg. Circadian blood pressure and heart rate were measured over 24 h every 15 min from 6 a.m. to 6 p.m. and every 30 min from 6 p.m. to 6 a.m. with an automatic, portable instrument (ICR 5300, Squibb) before and after a three-week treatment period. At the end of the three-week treatment period the mean value of all 24 h blood pressure measurements reflected highly significant decreases (2P less than 0.001), from 148/92 +/- 16/12 before treatment to 131/83 +/- 12/12 mmHg after treatment in the co-dergocrine mesilate/nifedipine group and from 145/92 +/- 16/10 before treatment to 129/84 +/- 10/6 mmHg after treatment in the mefruside/nifedipine group. Blood pressure reduction was still significant in both groups during the early morning hours at the end of the dosage interval. The efficacies of nifedipine combined with co-dergocrine mesilate or mefruside were comparable but side-effects were rated as more severe in the mefruside group. Therefore, the combination co-dergocrine mesilate/nifedipine may be preferable to the combination mefruside/nifedipine.

Adult

Correlated light and electron microscopic study of dopaminergic neurons and their synaptic junctions with DARPP-32-containing cells in three-dimensional reaggregate tissue culture.

An antibody to tyrosine hydroxylase has been used in a correlated light and electron microscopic study to characterize dopaminergic neurons and synaptic junctions in three-dimensional reaggregate cell culture. Dissociated fetal mesencephalic cells containing dopamine neurons were coaggregated with dissociated fetal striatal cells in rotatory culture for 21 days. Sections of the coaggregates were stained by the peroxidase anti-peroxidase technique to reveal tyrosine hydroxylase-immunoreactive structures. Clusters of immunoreactive perikarya as well as dendrites and axons were observed. Immunolabeled perikarya were round or oval and approximately 20 microns in diameter. Boutons immunoreactive for tyrosine hydroxylase formed symmetric synapses, primarily with unlabeled dendritic shafts. Symmetric membrane specializations were also observed between tyrosine hydroxylase-positive boutons and unlabeled dendritic spines as well as with the perikaryon of an unlabeled medium-size neuron possessing a slightly indented nucleus. To characterize the neurochemical nature of the neurons postsynaptic to tyrosine hydroxylase-positive boutons in the reaggregates, an antibody against DARPP-32 (a dopamine and adenosine 3':5'-monophosphate-regulated phosphoprotein) and an antibody against tyrosine hydroxylase were employed to visualize striatal dopaminoceptive neurons and dopaminergic structures, respectively, in the same section. Examination of reaggregate sections at the light microscopic level demonstrated that DARPP-32-immunoreactive cells were distributed into discrete clusters that were associated with patches of tyrosine hydroxylase-positive axonal varicosities. Ultrastructural analysis of tyrosine hydroxylase-positive boutons in such clusters revealed that dopaminergic axons synaptically contacted DARPP-32-immunoreactive neurons as well as unlabeled neuronal structures.

Animals

Selective association of dopamine axons with their striatal target cells in vitro.

The purpose of the present study was to examine the distribution of dopamine (DA) axons after simultaneously confronting DA cells with both target cells of the corpus striatum (CS) and with non-target cells of the tectum (T). Dissociated fetal cells of rostral mesencephalic tegmentum (RMT) containing DA neurons and dissociated non-target tectal cells were exposed to wheat germ agglutinin conjugated to the fluorescent dye, rhodamine, prior to reaggregation in rotatory culture in order to distinguish these cells from non-dyed CS cells in the resulting reaggregates. After 9 days in culture, RMT-T-CS reaggregates were exposed to 10(-5)M DA and processed for DA-fluorescence histochemistry. Single reaggregates were serially sectioned and color photomicrographs prepared from each section. It was found that non-target cells (red rhodamine fluorescence) segregated from the undyed target cells, forming discrete areas containing the two cell types. DA nerve cell bodies and their processes could be distinguished by their green fluorescence. Since it is not possible to distinguish axonal from dendritic processes in a single section, the extent of neuronal dendritic arborization was estimated from reaggregates prepared from cells of the RMT and non-target T cells, in which there is no extensive proliferation of DA axons and fluorescent DA processes (presumably dendrites) are confined to the area near the cell body. Following exclusion of DA dendritic fluorescence, it was found that 85.2% of the presumed axonal fibers were present in the non-dyed areas containing striatal target cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

The effects of nerve growth factor on the development of septal cholinergic neurons in reaggregate cell cultures.

Recent studies suggest that nerve growth factor is present within the central nervous system where it may exert selective trophic effects on cholinergic neurons. We have measured the effects of nerve growth factor on septal cholinergic neurons in three-dimensional reaggregating cell cultures, a system which closely simulates the cellular environment in situ. Septal cells obtained from 15-day-old mouse embryos were dissociated into a single cell suspension and then allowed to reaggregate in culture in a rotary incubator shaker. After 17 days in culture, half of the reaggregates from a flask were sonicated for measurement of choline acetyltransferase activity, and the remaining reaggregates were processed for acetylcholinesterase histochemistry. Addition of nerve growth factor to medium containing septal reaggregates resulted in greater than a three-fold increase in choline acetyltransferase activity and in the number of acetylcholinesterase-positive cells, as well as an enhancement in the staining of acetylcholinesterase-positive fibers. All of these effects of nerve growth factor could be neutralized by antibodies to nerve growth factor. In order to evaluate the possible role of endogenous hippocampal-derived nerve growth factor, antiserum to nerve growth factor was added to the culture media containing septal-hippocampal coaggregates. After 21 days in culture, the presence of nerve growth factor antibodies did not qualitatively affect the pattern or density of cholinergic fibers observed. Synapse formation between cholinergic axons and hippocampal target cells was still in evidence as revealed by electron microscopy. However, there was a modest decrease in choline acetyltransferase activity (20%) and cholinergic cell number (30%) when compared with coaggregates grown in culture medium either without nerve growth factor antiserum or with non-immune serum. The magnitude of these effects was markedly less than the effects observed when exogenous nerve growth factor was added to septal cells grown alone in reaggregate culture. These results suggest that nerve growth factor may play a role during central cholinergic development, but that additional trophic mechanisms are likely to be required.

Animals

Longitudinal study of progestins, mineralocorticoids, and glucocorticoids throughout human pregnancy.

The maternal adrenal cortex seems to be involved in the adaptation to pregnancy. To study in detail adrenocortical secretion during pregnancy, we measured plasma aldosterone, corticosterone, 11-deoxycorticosterone, progesterone, 17-hydroxyprogesterone, 11-deoxycortisol, cortisol, and cortisone simultaneously by RIA after extraction and automated Sephadex LH-20 chromatography of 10 normal pregnant women longitudinally throughout pregnancy at weeks 8-10, 14-17, 21-24, 28-32, and 38 as well as at the time of admission to the delivery room. The mean plasma progesterone and 17-hydroxy-progesterone concentrations increased from 37.2 +/- 6.5 (+/- SE) and 8.2 +/- 1.0 nmol/L, respectively, in early gestation to maximum levels of 138.0 +/- 25.7 and 22.8 +/- 2.2 nmol/L at week 38 (P less than 0.01). Plasma glucocorticoid levels rose 2- to 3-fold (P less than 0.01) from weeks 8-10 (corticosterone, 18.5 +/- 5.4; 11-deoxycortisol, 1.9 +/- 0.2; cortisone, 24.2 +/- 4.2; cortisol, 195.5 +/- 37.6 nmol/L) to week 38 (corticosterone, 42.9 +/- 11.2; 11-deoxycortisol, 4.6 +/- 0.5; cortisone, 71.5 +/- 13.6; cortisol, 420 +/- 63 nmol/L). Similarly, plasma mineralocorticoid levels increased 5- to 7-fold (P less than 0.01) from weeks 8-10 (11-deoxycorticosterone, 0.69 +/- 0.12; aldosterone, 0.41 +/- 0.08 nmol/L) to maximum levels at week 38 (5.3 +/- 0.9 and 2.1 +/- 0.3 nmol/L, respectively). At the time of admission to the delivery room, plasma 11-deoxycortisol, corticosterone, and cortisol concentrations were higher (P less than 0.02) than at 38 weeks, but plasma progestin and mineralocorticoid concentrations were not. We conclude that the source of the elevated maternal corticosteroid levels in pregnancy in addition to the estrogen-mediated rise in corticosteroid-binding globulin is the maternal adrenal cortex itself. The peak glucocorticoid levels at admission to the delivery room reflect increased maternal and fetal stress with the onset of labor.

17-alpha-Hydroxyprogesterone

The inheritance of Alzheimer's disease: a new interpretation.

Ninety-one families of Alzheimer patients were studied to determine the proportion of familial cases, to obtain pedigrees for the analysis of the mode of inheritance, and to look for clinical differences between the familial and the nonfamilial cases. The diagnosis was confirmed by autopsy in 26 cases. Thirty-nine cases (43%) were familial, which is defined as more than one case in the family. Our interpretation of the pedigree data is that Alzheimer's disease is etiologically heterogeneous: it may be genetic or sporadic. In the familial type we think that the disease is inherited as an autosomal dominant, with a wide range of age of onset within a family. In one-third of these families the gene is not expressed until over age 70. No clinical differences were found between the familial and the sporadic groups.

Age Factors