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A Roberts

Publications and source records attributed to A Roberts.

At least 253 records · Page 14Linked to original sources

Development and characterization of commissural interneurones in the spinal cord of Xenopus laevis embryos revealed by antibodies to glycine.

By using an antibody to glutaraldehyde fixation products of glycine we have been able to observe the development of a defined population of spinal interneurones in the CNS of Xenopus laevis embryos. The first glycine immunoreactive (GLY) somata appeared at stage 22 in the caudal hindbrain within a few hours of neural tube closure. The population then increased by extending caudally into the spinal cord and by infill. It was followed up to the time of hatching, stage 37/38. By observing GLY cells at early stages in their differentiation, the normal sequence of cell process formation was deduced. A ventral axon is formed, extends dendrites laterally into the marginal zone and forms a commissure by growing through the ventral ependymal cell floor of the neural tube. On the opposite side, growth cones turn longitudinally and TEM observations show that they make en-passant synaptic contacts. All GLY cells have decussating axons and some grow secondary axons on the same side as the soma. To establish the identity of GLY cells, a detailed comparison was made with commissural and dorsolateral commissural interneurones defined by retrograde and intracellular HRP staining. The GLY cells are identified with the commissural interneurones which are known to serve a glycinergic reciprocal inhibitory function. By showing that these interneurones have a clearly defined group identity and programme of development, this study opens the way to further experiments on factors controlling spinal cord pathway determination.

Animals↗

Epitopes on human acetylcholine receptor defined by monoclonal antibodies and myasthenia gravis sera.

The mouse monoclonal antibody (m.ab) binding sites on human acetylcholine receptor have been mapped by inhibition by F(ab')2 m.ab fragments, by competition with a rat m.ab against the main immunogenic region (anti-m.i.r), and by their ability to protect the a-Bungarotoxin (a-BuTx) binding sites from inhibition by a myasthenia gravis (MG) plasma. Two m.abs (C3 and D6) that bind to two distinct but overlapping regions on the AChR, were inhibited by the anti-m.i.r. m.ab M35. M.abs binding to three other regions protected the a-BuTx sites by up to 50%. In further inhibition assays these m.abs were used to define the binding sites for MG anti-AChR antibodies. There was considerable heterogeneity in the antigenic specificity of the MG sera. The inhibition of MG anti-AChR by anti-m.i.r. M35 correlated highly with inhibition by mouse m.ab D6, but not with inhibition by m.ab C3. There was a correlation between inhibition by m.abs F8 and B3, although these m.abs bind to two non-overlapping regions. Some MG anti-AChR antibodies bound to epitopes that only partially overlapped those defined by m.abs. Inhibition of human antibody binding by m.abs raised against specific antigens is a useful approach that should help define the epitopes to which autoantibodies bind.

Antibodies, Monoclonal↗

Monoclonal anti-acetylcholine receptor antibodies as probes for human acetylcholine-receptor in myasthenia gravis.

Monoclonal antibodies have been shown to bind to five regions on human acetylcholine receptor, each probably consisting of a discrete epitope on the extracellular surface. Two of these regions are equivalent to the 'main immunogenic region', and the other three appear to be close to the a-Bungarotoxin binding sites. These antibodies have been used to probe differences in myasthenia gravis anti-acetylcholine receptor antibodies, to locate acetylcholine receptor in thymic tissue, and to look for naturally-occurring anti-idiotype antibodies. Anti-acetylcholine receptor antibody specificities differ between groups of patients defined by their age of onset, thymic pathology and HLA associations. Anti-AChR synthesised by the thymus in young onset patients has similar specificity to that found in the individual's serum, and may be stimulated by the presence of AChR on thymic myoid cells. However, myoid cells (defined by staining with anti-troponin and anti-myosin antibodies) do not appear to differ between control and myasthenia gravis patients and show no obvious involvement in an immunological reaction. There was no convincing evidence for the presence of anti-idiotype antibodies in myasthenia gravis patients.

Adult↗

Unmyelinated cutaneous afferent neurons activate two types of excitatory amino acid receptor in the spinal cord of Xenopus laevis embryos.

The trunk and tail skin of Xenopus laevis embryos near the time of hatching is innervated by the mechanoreceptive free nerve endings of Rohon-Beard neurons, a homogeneous class of cutaneous primary afferent fibers. Rohon-Beard neurons have cell bodies and axons in the dorsal spinal cord, where they monosynaptically excite a population of dorsolaterally situated interneurons (Clarke and Roberts, 1984). EPSPs can be recorded in these dorsolateral interneurons following electrical stimulation of the unmyelinated neurites of Rohon-Beard neurons in the skin. The EPSPs are dual component, consisting of separate fast and slow potentials that are usually evoked synchronously and that closely resemble those described previously in Xenopus and lamprey motoneurons (Dale and Roberts, 1985; Dale and Grillner, 1986). The excitation of dorsolateral interneurons by Rohon-Beard neurons is reduced by the bath application of excitatory amino acid antagonists. Kynurenic acid suppresses both the fast and slow components of the EPSPs, while both (+/-)-2-amino-5-phosphonovaleric acid (APV) and 1 mM magnesium reduce the slow component but have little or no effect on the peak amplitude of the EPSPs. These data suggest that Rohon-Beard neurons release an excitatory amino acid neurotransmitter, which acts simultaneously at both N-methyl-D-aspartate (NMDA) and non-NMDA receptor types. This is the first direct demonstration of dual-component excitatory amino acid-mediated synaptic transmission from cutaneous primary afferent neurons in the vertebrate spinal cord. The bath application of the agonists NMDA, kainate, or quisqualate in salines containing 1 microM TTX depolarized the interneurons and reduced their input resistance, which suggests that the interneurons possess all 3 types of excitatory amino acid receptor. Kynurenic acid strongly inhibits responses to NMDA and kainate, but is relatively less effective against the larger responses of quisqualate in this system.

2-Amino-5-phosphonovalerate↗

Human excimer laser corneal surgery: preliminary report.

The first human trial utilizing the argon fluoride excimer laser at 193 nm to produce a superficial keratectomy in ten human eyes has been described with the histopathological evaluation of four eyes and the longer gross appearance of six eyes at intervals extending to 10 months post-excimer laser treatment. The process of laser superficial keratectomy has proved to be one of the promising areas of surgical intervention for reconstructive or refractive keratoplasty in the future. Intensive investigations need to be undertaken on the corneal wound healing process following laser ablation as well as the nature, and long-term stability of the corneal excisions or induced refractive corrections. It is essential that the optimal laser parameters be established for the various refractive corrections and other corneal surgical techniques, and that pathophysiologic and histopathologic changes that have been induced by the excimer laser-corneal tissue interaction in animals and humans be critically and extensively analyzed.

Adult↗

The morphology and distribution of 'Kolmer-Agduhr cells', a class of cerebrospinal-fluid-contacting neurons revealed in the frog embryo spinal cord by GABA immunocytochemistry.

An immunocytochemical method that localizes GABA in glutaraldehyde-fixed tissue has been applied to the study of the Xenopus embryo spinal cord. This procedure stained an anatomical class of neuron, which had somata forming two more or less continuous rows, one on either side of the central canal, in the ventral part of the spinal cord. The total number of stained neurons in the stage 37-38 embryo spinal cord was about 300. The medial surface on the soma protruded into the central canal and had a brush border which electron microscope studies showed to consist of many microvilli or stereocilia and one or two cilia. The external end of the neuron soma had an ipsilateral ascending axon. The axon of many of these neurons had a growth cone which was also clearly stained. We propose calling these neurons 'Kolmer-Agduhr cells' after W. Kolmer and E. Agduhr who described them in the spinal cords of many vertebrate classes. Their early embryonic origin, GABA-like immunoreactivity, axonal projections and distribution as a whole population have not previously been known.

Animals↗

The development of a population of spinal cord neurons and their axonal projections revealed by GABA immunocytochemistry in frog embryos.

The development of a population of cerebrospinal-fluid-contacting neurons in the spinal cord of the Xenopus embryo ('Kolmer-Agduhr' cells) has been followed by using an immunocytochemical procedure that identifies GABA in fixed nervous tissue. Stained Kolmer-Agduhr cells containing GABA first appeared at stage 25 and their numbers increased steadily with the developmental age of the embryo. The Kolmer-Agduhr neurons had ascending ipsilateral axons that often terminated in growth cones. These axons and growth cones could be stained by the GABA antiserum from the earliest stages of outgrowth from the Kolmer-Agduhr cell body. We measured the angle of the earliest axons' outgrowth relative to the rostrocaudal axis of the spinal cord. The initial outgrowth of axons was always rostral over a narrow range of angles. This observation is inconsistent with the hypothesis of random initial outgrowth followed by later selection of the correct orientation, which would predict that axons would initially grow out over a wide range of angles. Instead, it suggests that, even from the earliest moments, axon outgrowth from the Kolmer-Agduhr cells is directed rostrally in a specific stereotyped manner.

Animals↗

The early development of neurons with GABA immunoreactivity in the CNS of Xenopus laevis embryos.

We have used an antibody to glutaraldehyde fixation complexes of gamma-amino butyric acid (GABA) to stain the developing central nervous system of Xenopus laevis embryos. Neuronal somata, growth cones, axons, and dendrites were found with GABA-like immunoreactivity. Transmission electron microscope (TEM) observations were made of axons and synapses. By observation of the earliest stages of differentiation of neurons, seven classes of putative GABAergic interneurons were discerned. 1) Ascending neurons are first stained in the hindbrain at stage 26 and later extend caudally in the spinal cord. They have ascending ipsilateral axons. 2) Midhindbrain reticulospinal neurons are first stained at stage 25 and develop as a compact group with descending ipsilateral and contralateral axons. 3) Vestibular complex commissural neurons are first stained at stage 29/30 in a dorsal position near the entry of the seventh and eighth cranial nerves. They have ventral commissural axons that descend contralaterally and their somata form a compact mass. 4) Rostral hindbrain commissural neurons are first stained at stage 33/34 just rostral to the entry of the trigeminal nerve. They each have a decussating projection. 5) Rostral midbrain neurons are first stained in the midbrain at stage 29/30 and are later associated with prominent dorsal and ventral commissures. 6) Optic tract and 7) rostral forebrain neurons are found in the forebrain associated with strongly stained axon tracts. The direction of axonal growth from its earliest stages was distinct for each class of hindbrain and spinal cord neuron.

Animals↗

Lack of sampling site variation in chorion villus biopsy as assessed by DNA, enzymatic, morphological and cytogenetical analyses.

A study of villus samples from eight random sites on five electively aborted chorion sacs was performed to determine any significant differences in yield, quality and composition of DNA, iduronate sulphate sulphatase activity and karyotype status. The villi were also examined for their histological characteristics (e.g. stem, intermediate or terminal villi) and for HCG and BGP immuno-reactivities. The overall findings indicated no significant site to site variations in any of the parameters studied. It is therefore proposed that any villus should be equally suitable for prenatal diagnosis.

Chorion↗

Antibody heterogeneity and specificity in myasthenia gravis.

Anti-AChR is heterogeneous within individuals and between individuals. Anti-AChR idiotypes are not shared to any large extent. Ten monoclonal antibodies raised against human AChR: (a) bind to five partially overlapping regions; (b) are not idiotypically identical even within a region; (c) do not all bind to the main immunogenic region; (d) four distinguish between normal and denervated human AChR; (e) can be used to define the antigenic determinants in MG. Antigenic specificities vary in different clinical groups. Antigenic specificities can change during the course of the disease, but some remain relatively constant. Thymus cultures make antibodies with the same specificity as those present in the serum of the individual. All monoclonal antibodies bind to myoid cells of normal and MG thymus. We find no convincing evidence of naturally occurring antiidiotype antibodies in MG sera.

Antibodies, Monoclonal↗

Effects of repetitive activity on developed force and intracellular sodium in isolated sheep and dog Purkinje fibres.

1. When cardiac muscle is stimulated after a rest there is a gradual increase in force development over several minutes. The origin of this 'force staircase' was investigated in experiments on sheep and dog Purkinje fibres. Particular attention was paid to the possible role of changes in the intracellular Na+ activity (aNAi). 2. The first line of evidence for a role for aiNa came from a comparison of sheep and dog Purkinje fibres generating action potentials: after a change in the stimulus rate the slow changes of both aNai and force were monophasic in sheep but biphasic in dog preparations. 3. In the remaining experiments changes in aNai and force in sheep preparations were measured during 4 min trains of voltage-clamp pulses at a frequency of 2.5 Hz. 4. A number of these voltage-clamp experiments also indicated that changes in aNai are involved. Depending on the preparation and the duration of the pulses aNai rose or fell during a train-a rise in aNai was always associated with a gradual rise in force, whereas a fall in aNai was usually accompanied by a gradual fall in force. The addition of tetrodotoxin (TTX) or the use of a low holding potential reduced the progressive rises of both aNai and force, whereas the inclusion of a 10 mV hyperpolarization between pulses potentiated the progressive rises of both. 5. The effect of TTX on the staircase was more marked the longer the pulses during the train; this possibly indicates that the effect of aNai on the force staircase is complex and is more marked with longer pulses. 6. A rise in aNai was shown not to be the only factor underlying the progressive increase in force, because in many preparations a gradual rise in force occurred in spite of no change or even a fall of aNai. 7. It is concluded that an increase in aNai is involved in the slow increase in force during the staircase accompanying a train of action potentials, and that other factors are also involved; various possibilities are discussed.

Action Potentials↗

The fade of the response to acetylcholine at the rabbit isolated sino-atrial node.

1. The effect of acetylcholine (ACh) on the frequency of spontaneous action potentials, recorded with glass microelectrodes from small preparations of the sino-atrial node of the rabbit, has been investigated. 2. On application of ACh there was a rapid increase in cycle length (the interval between successive action potentials) but then, despite the continued presence of the ACh, cycle length decreased once again; i.e. the response to ACh 'faded' in the presence of ACh. This fade of the chronotropic response to ACh has been characterized. 3. To observe fade it was found to be important to use a fast flow bath in order to increase the ACh concentration at the preparation abruptly. In other words, the response to ACh was sensitive to the rate of increase in the ACh concentration at the tissue. This may explain why in one study of the sino-atrial node of the guinea-pig the authors failed to observe fade. 4. The concentration dependence of fade was studied in two ways: either as the fade in the response with different doses of ACh, or as the decrease in the response to a fixed test dose applied after a variable conditioning dose. Both methods indicated that fade increased with concentration over the range of roughly 10(-7) to 10(-5) M-ACh. 5. The onset of fade, i.e. the decline in cycle length during an exposure to ACh, was monophasic with low doses of ACh and biphasic (with fast and slow phases) with higher doses. The mean half-times of the fast and slow phases of fade were 10 +/- 2 s and 240 +/- 30 s (mean +/- S.E.M.; n = 5). However, in some preparations, rather than a smooth decrease in cycle length, there were discontinuities and cycle length could decrease in a stepwise fashion or even transiently alternate between two distinct states. 6. Time was required for recovery from fade because a response to a test dose applied soon after a conditioning dose was depressed. Recovery was studied by applying test doses at different times after conditioning doses. Recovery occurred with a half-time of 40 +/- 8 s (mean +/- S.D.; n = 8) after a short exposure (30 s) to ACh, but was slower (half-time, 250 +/- 20 s; n = 6) after a longer exposure (5 min). 7. Immediately after washing off ACh, cycle length decreased below its original value, although it then returned to this value over several minutes.(ABSTRACT TRUNCATED AT 400 WORDS)

Acetylcholine↗

Fluorometric quantification of low-dose fluorescein delivery to predict amputation site healing.

This retrospective study evaluated quantification of skin fluorescein delivery by fiberoptic fluorometry as a means of predicting the healing potential of an amputation site. Fluorometry uses a dual-channel fiberoptic light guide--one channel transmits blue light to excite the fluorescein in the skin under study, and the other transmits emitted fluorescence from the skin to a photomultiplier tube where it is measured. Ten minutes after intravenous administration of sodium fluorescein (4 to 8 mg/kg), fluorometric readings were obtained at more than 100 reading sites. In the 86 cases without preoperative cellulitis at the site of amputation, preoperative fluorometry clearly distinguished between healing and nonhealing sites. Healing sites averaged 79% of the fluorescence of a healthy reference area (dye fluorescence index [DFI] = 79), while failing sites averaged only 27% (p less than 0.01 by ANOVA). In all but one case where the DFI was greater than 42, the amputation healed. In all cases where the DFI was less than 38, the amputation failed. In general, uncertainty was limited to sites with values between these limits. The technique maintained its high accuracy in patients with diabetes and for distal amputations. However, it was not accurate at sites of active cellulitis (12 cases). There were no significant adverse effects from the slow injection of the low dose of fluorescein used for this technique. We conclude that fluorometry is an effective means of predicting healing in patients undergoing amputation.

Amputation, Surgical↗

Descending projections and excitation during fictive swimming in Xenopus embryos: neuroanatomy and lesion experiments.

We describe the distribution of "descending" interneurons in late Xenopus laevis embryos after retrograde filling with horseradish peroxidaze via their ipsilateral, descending axons in the spinal cord. These multipolar neurons, with dendrites spread throughout the marginal zone, form a longitudinal column extending from midtrunk spinal cord into the brainstem to the level of the vagus. In the hindbrain these neurons are part of the uncrossed reticulospinal projection. They are most numerous in the caudal brainstem, their density falling by half at the eighth postotic segment. To examine their possible role in swimming we reduced the population of descending interneurons by making progressive transections of the brainstem or spinal cord at the first to fifth postotic segments. These led to progressive reduction in the initial frequency of fictive swimming in immobilized embryos, even when the brainstem was divided sagittally. Transecting the spinal cord at the fourth postotic segment did not reduce initial frequency rostral to the lesion. The effects of these lesions on the duration of fictive swimming episodes were similar. The results suggest that descending interneurons could provide excitatory drive during swimming and that some reticulospinal and spinal interneurons may form single homogeneous populations.

Animals↗

The pharmacokinetics of dichloromethane. I. Disposition in B6C3F1 mice following intravenous and oral administration.

The tissue distribution and metabolism of dichloromethane (DCM; CH2Cl2) was investigated in B6C3F1 mice following iv or oral administration. The route of exposure and the composition of the dosing solution were found to have a significant effect on the pharmacokinetics. Following single iv doses of 10 or 50 mg [14C]DCM/kg dose-dependent metabolism to 14CO2 and 14CO and rapid pulmonary clearance of unchanged 14CH2Cl2 characterized the elimination of DCM from the body. The highest concentrations of 14CH2Cl2 were found in the liver, lung and kidney, with more than 50% of the total radioactivity in these tissues represented by the parent compound. When DCM was administered orally in single gavage doses for 14 consecutive days at treatment levels of 50 mg/kg in water or 500 and 1000 mg/kg in corn oil, rapid absorption and elimination of DCM characterized the treatment in water while distinctly slower trends were found for the doses in corn oil. No observable pharmacokinetic or metabolic effect resulted from repeated oral dosing over the 2-wk treatment period.

Administration, Oral↗

The pharmacokinetics of dichloromethane. II. Disposition in Fischer 344 rats following intravenous and oral administration.

The tissue distribution and metabolism of dichloromethane (DCM; CH2Cl2) was investigated in Fischer 344 rats following iv or oral administration. The route and level of exposure were found to have a significant effect on the disposition characteristics. A two-compartment model was used to describe the elimination of DCM from blood following single iv doses. The estimates of t1/2,beta were 11.9 and 23.5 min for doses of 10 and 50 mg/kg, respectively, and the disposition rate constants, beta were found to differ significantly at P less than 0.05. When DCM was administered orally (by gavage) in a daily dose of 50 or 200 mg/kg for 14 consecutive days, rapid absorption and distribution to the tissues characterized the disposition. Dose-dependent metabolism to 14CO2 and 14CO and rapid pulmonary clearance of unchanged 14CH2Cl2 were the dominant routes of elimination of DCM from the body following both iv and oral doses. No observable pharmacokinetic or metabolic effect resulted from repeated oral dosing.

Administration, Oral↗