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Biomedical subjects

J M Simard

Publications and source records attributed to J M Simard.

At least 19 recordsLinked to original sources

Acetyl-L-carnitine arginyl amide (ST857) increases calcium channel density in rat pheochromocytoma (PC12) cells.

We used the patch clamp technique to study the effect of acetyl-L-carnitine arginyl amide (ALCAA) and of nerve growth factor (NGF) on availability of L-type Ca2+ channels in rat pheochromocytoma (PC12) cells maintained in defined medium. Channel availability was measured as number of channels in the patch x the probability of opening (n.Po). In patches from control cells, cells exposed to NGF (10 ng/ml) for six days, and cells exposed to ALCAA (1 mM) for six days, n.Po, measured during 200-240 ms pulses to -10 mV (holding potential, -60 mV), was 0.102 +/- 0.089 (5 cells), 0.173 +/- 0.083 (5 cells), and 0.443 +/- 0.261 (7 cells), respectively. The 4.3-fold increase for the ALCAA-treated cells was significantly different from control (P < 0.05), whereas that for the NGF-treated cells was not. For the same conditions, the maximum number of superimposed openings at -10 mV was 1.3 +/- 0.5 (6 cells), 1.6 +/- 0.5 (8 cells), and 3.3 +/- 1.8 (8 cells), with the value for the ALCAA-treated cells being significantly different from control (P < 0.001). Additional analysis showed that the distribution of channel open times, the time constants, and the voltage dependence of activation were not changed by prolonged exposure to ALCAA. Short-term exposure to both ALCAA as well as to the parent compound, acetyl-L-carnitine (ALCAR), did not cause an increase but rather a decrease in n.Po, and this short-term effect of both compounds was blocked by neomycin, an inhibitor of phospholipase C.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

The patch clamp technique.

The introduction of the patch clamp technique less than two decades ago revolutionized the study of cellular physiology by providing a high-resolution method of observing the function of individual ionic channels in a variety of normal and pathological cell types. By the use of variations of the basic recording methodology, cellular function and regulation can be studied at a molecular level by observing currents through individual ionic channels. At a cellular level, processes such as signaling, secretion, and synaptic transmission can be examined. In addition, by combining the information from high-resolution electrophysiological recordings obtained by the patch clamp method with modern molecular biological techniques, further insight can be gained into the gene expression and protein structure of ionic channels. Given the ubiquity and importance of ionic channels, it is not surprising that their study has led to a new understanding of the mechanisms of certain disease processes and has given insight into treatments for these diseases. This review gives an historical perspective of the development of the patch clamp technique and an overview of the methodologies currently in use. Examples are shown to illustrate typical uses of the patch clamp technique with emphasis on the variety of recording configurations available and the advantages and drawbacks of each method.

Animals

Intraarterial papaverine infusion for cerebral vasospasm after subarachnoid hemorrhage.

PURPOSE: To evaluate the techniques and efficacy of intracranial intraarterial papaverine infusion for symptomatic vasospasm after subarachnoid hemorrhage caused by aneurysm rupture. METHODS: Papaverine was infused on 19 occasions in 14 patients, 6 hours to 2 days after spasm became apparent clinically. Sixty vascular territories were treated. Infusion was made into the supraclinoid internal carotid artery 20 times, cavernous internal carotid artery once, selective A1 anterior cerebral artery 8 times, M1 middle cerebral artery 7 times, and basilar artery 3 times. Papaverine doses ranged from 150 to 600 mg and exceeded 400 mg on 8 occasions. RESULTS: Angiographic improvement occurred in 18 (95%) of the 19 treatment sessions: results were excellent in 3 sessions, moderate in 8, and mild in 7. The best angiographic results often were obtained with superselective infusion, although angiographic results did not always correlate with clinical response. Seven (50%) of the 14 treated patients showed dramatic acute clinical improvement within 24 hours of papaverine therapy, and there was no clinical evidence of recurrent vasospasm in these patients. Recurrence of angiographic vasoconstriction was demonstrated in three patients; one showed marked clinical improvement after a second treatment. There were no episodes of systemic hypotension in any of the cases. Monocular blindness developed in one patient because of papaverine infusion near the ophthalmic artery. CONCLUSIONS: Papaverine was effective in dilating narrowed arteries in most patients with symptomatic vasospasm caused by subarachnoid hemorrhage. This series showed encouraging clinical results with no recurrence of neurologic deterioration in those patients who responded well to papaverine. Superselective infusion appears to be indicated in some cases for adequate papaverine delivery.

Adult

Protein kinase A increases availability of calcium channels in smooth muscle cells from guinea pig basilar artery.

We studied single Ca2+ channels in smooth muscle cells from the basilar artery of the guinea pig using conventional patch-clamp techniques. With 40 mM or 90 mM Ba2+ as the charge carrier, a 23-pS inward current channel was observed in 46/187 cell-attached patches studied without the dihydropyridine, BAY K8644, in the pipette solution. At 0 mV, this channel exhibited short and long openings with time constants of 1.03 and 3.65 ms, respectively. The probability of channel opening was voltage dependent with half-activation occurring at +9.9 mV. In 14/26 patches tested, addition of 8-bromo-cyclic adenosine monophosphate (8-Br-cAMP) to the bath increased the probability of opening at -10 mV by a factor of 2.6, from 0.0272 +/- 0.0429 to 0.0695 +/- 0.0788 (P < 0.01, paired t-test). Mean data from five patches fit to a Boltzmann function indicated that at positive potentials, the probability of opening increased by a factor of 1.7, from 0.352 to 0.600, whereas the voltage dependence, the number of channels, the number of open states, the time constants of the open states, and the proportion of time spent in each open state were unchanged. When BAY K8644 was added to the pipette solution, the 23-pS channel was observed in nearly all patches (62/66), but the voltage dependence of activation was shifted -15.3 mV compared to control. In some patches studied with 90 mM Ba2+, a 9-pS inward current channel also was observed and its activity also was increased significantly by 8-Br-cAMP.(ABSTRACT TRUNCATED AT 250 WORDS)

3-Pyridinecarboxylic acid, 1,4-dihydro-2,6-dimethy

Ionic channel currents in cultured neurons from human cortex.

Ionic channels in human cortical neurons have not been studied extensively. HCN-1 and HCN-1A cells, which recently were established as continuous cultures from human cortical tissue, have been shown by histochemical and immunochemical methods to exhibit a neuronal phenotype, but expression of functional ionic channels was not demonstrated. For the present study, HCN-1 and HCN-1A cells were cultured in Dulbecco's modified Eagle's medium with 15% fetal calf serum, in some cases supplemented with 10 ng/ml nerve growth factor, 10 microM forskolin, and 1 mM dibutyryl cyclic adenosine monophosphate to promote differentiation. Cells or membrane patches were voltage clamped using conventional patch clamp techniques. In HCN-1A cells, we identified a tetrodotoxin-sensitive Na+ current, two types of Ca2+ channel current, including L-type current and a second type that in some respects resembled N-type current, and four types of K+ current, including a delayed outward rectifier that showed voltage-dependent inactivation, two types of noninactivating Ca(2+)-activated K+ channels with slope conductances of 146 and 23 pS (K+i/K+o 145 mM/5 mM), and less frequently, a noninactivating, intermediate conductance channel that was not sensitive to internal Ca2+. When HCN-1A cells were examined after 3 days of exposure to differentiating agents, pronounced morphological changes were evident but no differences in ionic currents were apparent. HCN-1 cells also exhibited K+ and Ca2+ channel currents, but Na+ currents were not detected in these cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Calcium Channels

Calcium channels and nifedipine inhibition of serotonin-induced [3H]thymidine incorporation in cultured cerebral smooth muscle cells.

Cultures of smooth muscle cells were prepared from the basilar artery of adult guinea pigs. Passaged cultures (10-30 passages) that expressed serotonin receptors were studied using [3H]thymidine incorporation. When tested in quiescent medium, serotonin potently stimulated [3H]thymidine incorporation (EC50 of 31 nM) by as much as 400% at 24 h. The number of cells was not significantly increased at 24 or 48 h. At concentrations of 10(-8)-10(-5) M 5-HT, [3H]thymidine uptake was reduced 40-50% by the dihydropyridine Ca2+ channel blocker, nifedipine (1 microM). To demonstrate a possible mechanism for the sensitivity to nifedipine, Ca2+ currents were measured using the whole cell patch clamp technique. The cells expressed dihydropyridine-sensitive L-type Ca2+ channels, but not other subtypes of Ca2+ channels, as indicated by the kinetic and voltage-dependent characteristics of the current and by the stimulatory effect of Bay K 8644. The magnitude of the Ca2+ currents was related exponentially to the membrane surface area, measured as cell capacitance. These data support the association of dihydropyridine-sensitive Ca2+ channels with mitogenesis in vascular smooth muscle, and suggest an alternate mechanism of action for the beneficial effect of dihydropyridines in prophylaxis of cerebral vasospasm.

Animals

Effects of external pH on ionic currents in smooth muscle cells from the basilar artery of the guinea pig.

pHo is an important determinant of vascular tone in cerebral blood vessels. We investigated the effects of changes in pHo on isolated smooth muscle cells from the basilar artery of the guinea pig. Single cells contracted rapidly in response to an elevation in pHo (constant CO2), and contraction was blocked by nifedipine, suggesting a role for dihydropyridine-sensitive Ca2+ channels. In whole-cell patch-clamp experiments, changes in pHo (pHo 5.7-8.1, pHi 7.2 with 10 mM HEPES) strongly affected the amplitude of the peak Ca2+ channel current (10 mM Ba2+, +15 mV, holding potential of -55 mV), with an apparent pK of 6.9. The current-voltage curves were minimally shifted, indicating no important effect of surface charge. To separate the slowly inactivating L-type Ca2+ channel current from the more rapidly inactivating B-type current, the decaying portions of inward currents from cells studied with repetitive 1-second pulses (+15 mV, holding potential of -55 mV) were fit to a two-component model. Titration curves for the L-type and B-type currents indicated maximum increases by factors of 3.65 and 1.28 at alkaline pHo and gave apparent pK values of 7.71 and 6.47 (Hill coefficient unity). The time constant of inactivation for the B-type current at +15 mV was little affected by pHo, whereas that for the L-type current increased somewhat with increasing pHo. Additional experiments showed no significant effect of pHo on holding current or on voltage-activated outward currents (pCai 7 with 11 mM EGTA). Our results provide additional evidence for participation of Ca2+ channels in regulating basal tone in cerebral smooth muscle and indicate that pHo regulates current through slowly inactivating, dihydropyridine-sensitive L-type Ca2+ channels.

Animals

Isolation of arteriolar microvessels and culture of smooth muscle cells from cerebral cortex of guinea pig.

Published methods for the isolation of cerebral microvessels primarily yield terminal resistance vessels and capillary networks, not the more proximal, subpial penetrating arterioles desired for certain studies. We report a novel method for isolating microvessels from the cerebral cortex of a single guinea-pig brain that yields large arteriolar complexes that are up to 50% intact. Instead of using homogenization to disperse brain parenchyma, we digested cortical fragments with trypsin, gently dispersed the parenchyma mechanically, and recovered microvascular complexes by sieving. Phase-contrast and electron microscopy showed primary (penetrating) arterioles, secondary arterioles, and capillary networks that frequently were in continuity as intact microvascular units. Culture of microvascular cells was carried out by enzymatic dissociation followed by an overnight incubation in a recovery medium at 4 degrees C before plating onto fibronectin-modified surfaces. Viability of isolated cells was demonstrated by good cell attachment and prompt proliferation that resulted in confluent cultures after 10 days. Confluent secondary cultures demonstrated characteristic features of smooth muscle cells, including a "hill-and-valley" growth pattern and expression of alpha-actin. Less than 1% of cells were endothelial or astrocytic cells by immunocytochemical and morphologic criteria. Ultrastructural studies demonstrated evidence of a synthetic phenotype of smooth muscle cell and absence of a significant number of fibroblasts. This method demonstrates that viable smooth muscle cells from the cerebral parenchymal microvasculature can be isolated in bulk quantities for study in vitro.

Actins

Calcium channel currents in isolated smooth muscle cells from the basilar artery of the guinea pig.

Ca2+ channel currents were studied in smooth muscle cells from the basilar artery of the guinea pig using the whole-cell patch-clamp technique. 10 mM Ba2+ as the charge carrier and strong buffering of intracellular Ca2+ with EGTA (pCai = 8). Cell capacitance was 18.8 +/- 6.6 pF (n = 96) and maximum current density at +10 to +20 mV (holding potential less than -55 mV), measured early in dialysis, was -14.8 +/- 4.9 pA/pF (n = 83). Currents reversed at approximately +95 mV and, at more positive potentials, outward Cs+ currents were recorded that were blocked by either external Cd2+ or Ca2+. One component of current was identified that had properties consistent with L-type channels. On the basis of measurements of tail currents, its threshold for activation was -15 mV, its voltage dependence of activation was steep and it was half-activated at +8.5 mV. It inactivated very slowly at +15 mV (2787 +/- 511 ms) and it deactivated rapidly (251 +/- 55 microseconds) at -55 mV. It was quickly lost during dialysis and was largely blocked by 1 nM nifedipine (1-s pulses, holding potential = -55 mV). A second component, termed B-type current, was identified that had properties inconsistent with those of T-type channels. On the basis of tail currents, its threshold for activation was -30 mV, its voltage dependence of activation was less steep and it was half-activated at +33.7 mV.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Systemic arterial hypertension in head trauma.

The importance of maintaining adequate cerebral perfusion pressure to prevent cerebral ischemia is a well accepted concept in the management of patients with head injury. The potentially deleterious effects of too great a perfusion pressure, however, are generally less well appreciated. The occurrence of a hyperadrenergic state after head injury, and the effects of elevated blood pressure on the injured brain are reviewed, with emphasis placed on the pathophysiologic implications of a disturbance of the blood-brain barrier and of autoregulation in promoting brain swelling and formation of edema.

Animals

Effects of toxins VI and VII from the scorpion Centruroides sculpturatus on the Na currents of the frog node of Ranvier.

New toxins, VI and VII, were purified from the venom of the North American scorpion, Centruroides sculpturatus, and studied in the voltage-clamped frog node of Ranvier. These toxins reduced peak inward Na currents and caused a transient, depolarization-induced shift in the voltage dependence of Na activation. Their effects were indistinguishable from those of toxins I, III and IV, as previously described by Meves et al. (1982). Toxin VII, 0.2 microgram/ml, shifted the voltage dependence of steady-state inactivation (h infinity). In four fibers, the mean shift of the h infinity (E) curve was -17 mV, compared to a mean shift of -28 mV in the descending branch of the INa(E) curve. The h infinity (E) curve with toxin VII was monotonic and inactivation was incomplete at positive potentials. Decreasing the pH from 7.4 to 5.7 increased the shift in the voltage dependence of activation with toxin. The increase with toxin VI at pH 5.7 was reversible on returning to pH 7.4, but the increase with toxin VII was not. The lack of reversibility of the effect of pH with toxin VII was quantified in two ways: the mean value of INa (measured at -62 mV with a conditioning pulse) at pH 7.4 was 5.1 times larger after treatment than before treatment with 0.1 microgram/ml of toxin VII at pH 5.7; the average concentration of toxin VII required for a shift of -30 mV at pH 7.4 was decreased by a factor of 4.3, to 0.19 microgram/ml (26 nM), by pretreatment at pH 5.7.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Interactions of scorpion toxins with the sodium channel.

It is evident from the data reviewed that scorpion toxins can be distinguished on the basis of three properties: their effects on Na currents, their specific binding to excitable membranes, and the effects of depolarization and pH on binding and on effect. Additional work with other scorpion toxins is required to establish the degree of correlation between the three properties for each class of toxin. Further investigations with this family of homologous proteins will undoubtedly contribute not only to our understanding of the toxins themselves but also to our understanding of the structure and function of the Na channel.

Amino Acid Sequence

Cavernous angioma: a review of 126 collected and 12 new clinical cases.

The histopathological, clinical, and radiological features of the intracranial cavernous angioma are reviewed, based on an analysis of 138 symptomatic, histologically verified cases. Twelve of the cases are from our own series and 126 were collected from appropriately documented reports in the modern literature. The analysis indicated that, at the time of diagnosis, one-third of the patients (49 cases) were being evaluated for seizures, one-third (40 cases) for clinical evidence of hemorrhage, and one-third (49 cases) for mass lesions. Unlike the other two groups, the group presenting with clinical evidence of hemorrhage was distinguished by a dominant age at the time of diagnosis (41% were diagnosed during the 4th decade of life), by a high incidence of prior neurological evaluation (43%), by a higher rate of diagnosis at autopsy (28%) than at operation, and by the absence of microscopic calcification within the lesion.

Adolescent

Automatic artifact rejection during intraoperative recording of somatosensory evoked potentials. Technical note.

A device is described that performs automatic artifact rejection for somatosensory evoked response analysis in intraoperative and other electrically noisy environments. Although based on amplitude discrimination, rejection is not triggered by the large stimulus-dependent voltage transients associated with somatosensory evoked potentials. The device readily interfaces with commercially available evoked potential equipment.

Electrophysiology

Biochemical and electrophysiological characteristics of toxins isolated from the venom of the scorpion Centruroides sculpturatus.

Recent progress in biochemical, structural and physiological studies has revealed several interesting properties of the toxins from the American scorpion, Centruroides sculpturatus. These toxins, together with similar toxins from other species of scorpions, comprise a unique family of homologous proteins with phylogenetically related structural differences. There is now evidence from both binding and electrophysiological studies that two distinct classes of toxins are present in the venom of C. sculpturatus. One class of toxins markedly slows inactivation of the sodium permeability but has no demonstrable effect on activation, whereas the second class induces a transient shift in the voltage-dependence of activation. Both groups make inactivation incomplete.

Amino Acid Sequence

Spontaneous, rhythmic myoelectric activity induced by scorpion neurotoxin, reduced [calcium]0 and cadmium in chick striated muscle.

The cellular electrical activity accompanying the very slow resting-tension oscillation (period 4-13 min) in chick skeletal muscle caused by scorpion neurotoxin, reduced [Ca2+]0 and Cd2+ was investigated. All three oscillogenic treatments were found to induce spontaneous, periodically recurring, electrical activation of muscle cells, including periodic bursting activity of individual cells. The period of the recurrent electrical activation approximated the period of the resting-tension oscillation. The data suggest that the three oscillogenic treatments act by way of a common mechanism, possibly a critical Ca2+ moiety, to effect the periodic electrical activation of the cells. Analysis of single cell and group discharge activity suggests that the cells are coupled by non-specific, electrotonic interactions, resulting in the integration of their individual periodic activities into a resting-tension oscillation of the whole muscle.

Action Potentials

Oscillation in resting tension of chick skeletal muscle treated with toxin V from scorpion venom, reduced [calcium]o and cadmium.

1. An oscillation in resting tension of the chick biventer cervicis muscle is induced by scorpion toxin (CsT-V), reduced [Ca]o and by Cd2+. Other chick muscles, e.g. semispinalis cervicis, anterior and posterior latissimus dorsi, also oscillate with the same treatments. The period of the oscillation in the biventer cervicis muscle is uniform, averaging 5-6 min. 2. The oscillation and the period are very sensitive to changes in temperature, [Ca]o, [K]o, ouabain and tetrodotoxin [TTX]. The oscillation is resistant to twitch blocking dosages of nicotinic antagonists. 3. The period of the oscillation varies inversely as the temperature (26-37 degrees C), log [K]o and [ouabain] and directly as the log [Ca]o and [TTX]. 4. These data support the inference that the oscillator is postjunctional and results from fluctuation in the electrochemical gradient of ions across the muscle cell membrane. The role, if any, of the Na+, K+ pump in the primary oscillogenic mechanism is not evident from our data.

Animals