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S M Harrison

Publications and source records attributed to S M Harrison.

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[Ca2+] and [Na+] in rat ventricular myocytes showing negative and positive force frequency relationships.

Ventricular cells that show a positive force-frequency relationship show graded changes of intracellular [Ca2+] (Cai), [Na+] (Nai) and sarcoplasmic reticulum Ca2+ content with changes of stimulation frequency. Cells that show a negative force-frequency relationship show smaller changes of Nai and no change in the Ca2+ load of the sarcoplasmic reticulum as stimulation frequency is changed.

Animals

Protein phosphorylation in bovine adrenal medullary chromaffin cells: histamine-stimulated phosphorylation of tyrosine hydroxylase.

Histamine can cause the release of catecholamines from bovine adrenal medullary chromaffin cells by a mechanism distinct from that of the depolarizing agents nicotine or high K+ buffer. It was the aim of this study to determine the protein phosphorylation responses to histamine in these cells and to compare them with those induced by depolarization. A number of proteins showed increases in phosphorylation in response to histamine especially when analyzed on two-dimensional polyacrylamide gel electrophoresis or by phosphopeptide mapping; one protein of 20,000 daltons was markedly dephosphorylated. Emphasis was given to the effects of histamine on tyrosine hydroxylase (TOH) phosphorylation, because this protein showed the most prominent changes on one-dimensional gels. Histamine acted via H1 receptors to increase TOH phosphorylation; the response was blocked by the H1 antagonist mepyramine and could be mimicked by the H1 agonist thiazolylethylamine, but not by the H2 agonist dimaprit. The H3 agonist (R) alpha-methylhistamine increased TOH phosphorylation at high concentrations, but the response was blocked entirely by mepyramine. Histamine rapidly increased the phosphorylation of TOH, with a maximum reached within 5 s and maintained for at least 30 min. This was in marked contrast to nicotine-stimulated protein phosphorylation of TOH, which was rapidly desensitized. The initial phosphorylation response to histamine was independent of extracellular Ca2+ for at least 3 min, but the sustained response required extracellular Ca2+. This was in contrast to the situation with both nicotine and high K+ buffer, which under the conditions used here caused a response which was dependent on extracellular Ca2+ at all times investigated. In the presence of histamine, the phosphopeptide profiles for TOH were essentially the same with or without Ca2+, suggesting that the same protein kinases were involved, but at longer times there was evidence of new phosphorylation sites. The mechanism or mechanisms whereby histamine modulates TOH phosphorylation are discussed with emphasis on the differences from depolarizing agents.

Adrenal Medulla

The non-peptide NK1 receptor antagonist, (+/-)-CP-96,345, produces antinociceptive and anti-oedema effects in the rat.

The non-peptide NK1 receptor antagonist, (+/-)-CP-96,345, has been evaluated for antinociceptive activity in two well-characterized inflammatory pain models in the rat. (+/-)-CP-96,345 abolished carrageenin-induced mechanical hyperalgesia, significantly reduced carrageenin-induced paw oedema and attenuated the second phase of the formalin response. The results suggest that NK1 receptor activation occurs during the induction of inflammatory pain states in the rat.

Analgesics

GR94839, a kappa-opioid agonist with limited access to the central nervous system, has antinociceptive activity.

1. The pharmacological profile of GR94839, a kappa-opioid agonist with limited access to the central nervous system, has been investigated. Its antinociceptive activity has been compared with that of GR103545, a centrally-penetrating kappa-agonist and ICI204448, the previously described peripherally-selective kappa-agonist. 2. GR94839 was a potent agonist in the rabbit vas deferens in vitro assay for kappa-opioid receptors (IC50: 1.4 +/- 0.3 nM; n = 6), but had limited activity at mu- or delta-opioid receptors. 3. In the mouse abdominal constriction test, GR94839 was 238 fold more potent when given i.c.v. (ED50: 0.008 (0.004-0.029) mg kg-1; n = 18) than when s.c. (ED50: 1.9 (0.7-3.1) mg kg-1; n = 30). In comparison, GR103545 was equipotent when given i.c.v. or s.c. 4. After intravenous administration, the maximum plasma to brain concentration-ratio attained by GR94839 was 18 compared with 2 for GR85571, a structurally-related kappa-agonist that is centrally-penetrating. 5. GR94839 inhibited the 2nd phase of the rat formalin response at doses 7 fold lower than those required to inhibit the 1st phase (ED50 vs 1st phase: 10.2 (6.7-17.1) mg kg-1, s.c.; ED50 vs 2nd phase: 1.4 (1.0-1.8) mg kg-1, s.c.; n = 18). GR103545 was equipotent against the two phases. 6. Intraplantar administration of the opioid antagonists, norbinaltorphimine (100 micrograms) or naltrexone (1 microgram), reversed the antinociceptive effect of systemic GR94839 (3 mg kg-1, s.c.) against the 2nd phase of the formalin response and intraplantar injection of GR94839 (30-100 micrograms) selectively inhibited the 2nd phase.7. GR94839 and IC1204448 reversed the hyperalgesia in the zymosan-inflamed rat paw at doses (ED50 GR94839: 2.0 (1.1-3.2) mg kg-', s.c.; ED50 IC1204448: 1.2 (0.8-1.7) mg kg-', s.c.), lower than those required to raise the noxious pressure threshold in the non-inflamed paw (EDSO GR94839: 16.4 (8.6-46.7) mg kg', s.c.; ED50 IC1204448: 68.0 (22.1-32000) mg kg', s.c.). GR103545 raised the noxious presure threshold in the inflamed and non-inflamed paws at the same doses.8. GR94839 was sedative in the rat rotarod test (ED50: 35 (12-245) mg kg-', s.c.) at doses higher than those required to inhibit the 2nd phase of the formalin response or reverse hyperalgesia in the zymosan-inflamed rat paw. The doses were comparable to those that inhibited the 1st phase of the formalin response and raised the noxious pressure threshold in the non-inflamed paw.9. The results suggest that GR94839 is a selective kappa-agonist which has antinociceptive activity against inflammatory pain at doses that produce limited central effects. These antinociceptive effects are probably mediated at peripheral opioid receptors.

Analgesics

The relationship between contraction and intracellular sodium in rat and guinea-pig ventricular myocytes.

1. The contraction, measured optically, and the intracellular Na+ activity (aNai), measured with the Na(+)-sensitive fluorescent dye SBFI, have been recorded simultaneously in rat and guinea-pig ventricular myocytes. 2. In rat and guinea-pig ventricular myocytes at rest, aNai was 7.8 +/- 0.3 mM (n = 4) and 5.1 +/- 0.3 mM (n = 16), respectively. 3. When both rat and guinea-pig ventricular myocytes were stimulated at 1 Hz after a rest there was usually a gradual increase in twitch shortening (referred to as a 'staircase') over several minutes accompanied by an increase in aNai over a similar time course. Twitch shortening increased by 21 +/- 3% (n = 6) and 20 +/- 4% (n = 16) (of steady-state twitch shortening during 1 Hz stimulation) per millimolar rise in aNai in rat and guinea-pig ventricular myocytes, respectively. 4. When rat and guinea-pig ventricular myocytes were exposed to strophanthidin to block the Na(+)-K+ pump, there were increases in twitch shortening and aNai over similar time courses. Twitch shortening increased by 24 +/- 4% (n = 5) and 20 +/- 3% (n = 10) (of control twitch shortening) per millimolar rise in aNai in rat and guinea-pig ventricular myocytes respectively. 5. The inotropic effect of cardiac glycosides, such as strophanthidin, is widely regarded to be principally the result of the rise in aNai. The similarity of the relation between twitch shortening and aNai during the staircase and on application of strophanthidin suggests that the progressive increase in the strength of contraction during the staircase was also linked to the rise in aNai. 6. In guinea-pig, but not rat, ventricular myocytes there was hysteresis in the relation between twitch shortening and aNai on application and wash-off of strophanthidin. This indicates that strophanthidin has another inotropic action in guinea-pig ventricular myocytes. 7. A computer model of excitation-contraction coupling has been developed to simulate the staircase and the action of cardiac glycoside and to account for the relation between contraction and intracellular Na+.

Animals

Contraction and intracellular Ca2+, Na+, and H+ during acidosis in rat ventricular myocytes.

We have investigated the effect of a CO2-induced (respiratory) acidosis on contraction and on intracellular Ca2+, Na+, and pH (measured using the fluorescent dyes fura-2, sodium-binding benzofuran isophthalate, and 2',7'-bis(carboxyethyl)-5,6-carboxyfluorescein, respectively) in ventricular myocytes isolated from rat hearts. Initial exposure to acidosis led to a rapid decrease in intracellular pH that was accompanied by an abrupt decline in contractility. There were no consistent changes of intracellular Na+ or Ca2+ during this period. The rapid decline of contractility was followed by a slower partial recovery, which was accompanied by increases in intracellular Na+, systolic and diastolic Ca2+, and an increase in the Ca2+ content of the sarcoplasmic reticulum (estimated using caffeine). Intracellular pH did not change during this slow recovery. The slow rise of intracellular Na+ and the recovery of the twitch were blocked by the Na(+)-H+ exchange inhibitor amiloride. The sarcoplasmic reticulum inhibitor ryanodine blocked the recovery of the twitch but had no effect on the rise of intracellular Na+ induced during acidosis. It is concluded that a major cause of the initial decline of the twitch during acidosis is a decrease in the response of the contractile proteins to Ca2+ due to the decrease of intracellular pH. The subsequent slow recovery of the twitch is due to the decrease of intracellular pH activating the Na(+)-H+ exchange mechanism. This elevates intracellular Na+ and presumably, via the Na(+)-Ca2+ exchange mechanism, intracellular Ca2+. This in turn may lead to increased Ca2+ loading of, and hence release from, the sarcoplasmic reticulum, and it is this that underlies the partial recovery of contraction during acidosis in this preparation.

Acidosis

Prevalence of serum antibody to the type-specific glycopeptidolipid antigens of Mycobacterium avium in human immunodeficiency virus-positive and -negative individuals.

An enzyme-linked immunosorbent assay was constructed by using as antigens the type-specific immunodominant glycopeptidolipids of selected serotypes of Mycobacterium avium. This assay system was used to determine the prevalence of raised antibody levels to these antigens in groups of controls, human immunodeficiency (HIV)-negative and -positive homosexual men, and HIV-negative patients with active M. avium infections as a possible indicator of potential exposure and/or colonization by M. avium in these individuals. The results indicate that while antibody levels were raised in only 2.4% of control individuals, 33% of HIV-negative homosexual men and 44% of HIV-positive patients exhibited raised levels. Moreover, further examination of the HIV-positive group revealed no correlation between antiglycopeptidolipid antibody activity and helper T cell numbers. These data indicate that exposure to M. avium is prevalent among the homosexual male population, regardless of their HIV status. Moreover, the data are suggestive that the emergence of disseminated M. avium disease in HIV-positive patients may sometimes arise from earlier colonization, rather than as a newly acquired infection during terminal immunodeficiency.

Adult

Citrate decreases contraction and Ca current in cardiac muscle independent of its buffering action.

Extracellular Ca (Cao) depletions that occur during cardiac muscle contractions are indicative of net Ca entry. Buffering Cao concentration ([Ca]o) with citrate can limit the magnitude of these Cao depletions [e.g., Shattock and Bers. Am. J. Physiol. 256 (Cell Physiol. 25): C813-C822, 1989] which theoretically would allow more Ca entry and consequently greater force at the same free [Ca]o. However, Shimoni and Ginsburg [Am. J. Physiol. 252 (Cell Physiol. 21): C248-C252, 1987] have shown that citrate inhibits cardiac contractions and suggested that this was due to its Ca-buffering action (i.e., dissipating a local elevation of [Ca] at the outer sarcolemmal surface and thereby decreasing Ca influx). To examine the effects of Ca buffering per se, we compared the effects of four low-affinity Ca buffers [citrate, nitrilotriacetic acid (NTA), dipicolinic acid (DPA), and acetamidoiminodiacetic acid (ADA)] on several cardiac preparations. In Mg-free medium with 2 mM free Ca (measured using murexide), citrate, DPA, and ADA (10 mM) decreased the force of twitch contractions in rabbit ventricle to 76 +/- 2, 60 +/- 2, and 85 +/- 2%, respectively, but 10 mM NTA increased force slightly to 105 +/- 2%. No simple correlation was observed between the Ca affinity of the buffer and its effect on tension. These effects were not due to changes in sarcoplasmic reticulum (SR) Ca loading because rapid cooling contractures were not affected and similar results were observed in the presence of caffeine or ryanodine. The depressant effects of citrate and ADA on tension were greater at pH 5.5-6 and ADA had no effect at pH 8.5. Thus the depressant effect is stronger with more protonated forms of citrate and ADA, which are also poorer Ca buffers. Citrate (but not NTA) decreased Ca current in whole cell voltage clamp and shifted the current-voltage relationship and reversal potential to more negative potentials. Citrate decreased Ca current more effectively at higher citrate and lower Ca concentrations. We conclude that citrate (and some other weak Ca buffers) may directly decrease Ca current and contraction in a manner independent of Ca buffering ability.

Action Potentials

Ca2+ and Na+ in rat myocytes showing different force-frequency relationships.

Intracellular [Ca2+] ([Ca2+]i), intracellular Na+ activity (aiNa), and contraction have been monitored in single myocytes isolated from the ventricles of rat hearts. Some of these cells showed an increase in the size of the twitch as stimulation frequency was increased (positive force-frequency relationship), while others showed a decrease in the strength of contraction as the frequency of stimulation was increased (negative force-frequency relationship). In cells that showed a positive force-frequency relationship, increasing stimulation frequency resulted in increases in aiNa, diastolic [Ca2+]i, systolic [Ca2+]i, and the amount of Ca2+ that could be released from the sarcoplasmic reticulum by caffeine. The rate of decline of the [Ca2+]i transient and the twitch also increased as stimulation frequency was increased. In cells that showed a negative force-frequency relationship, increasing stimulation frequency had less effect on aiNa and had either no effect or decreased systolic [Ca2+]i with no change in the amount of Ca2+ that could be released from the sarcoplasmic reticulum using caffeine. The rate of relaxation of the [Ca2+]i transient and the twitch again increased as stimulation frequency increased. The pattern and time course of mechanical restitution was the same in both cell types. Although these data are essentially descriptive, it is consistent with the hypothesis that the final contractile response observed during changes of stimulation frequency may be dependent on how the Ca2+ loading of the preparation varies with stimulation frequency.

Animals

Autophosphorylation of calmodulin-stimulated protein kinase II in intact synaptosomes.

The major phosphoproteins observed after lysis of synaptosomes and incubation in the presence of [gamma-32P]ATP and calmodulin are the autophosphorylated 50-kDa and 60-kDa subunits of calmodulin-stimulated protein kinase II (CMK II). However, when intact synaptosomes are preincubated with 32Pi, these subunits are hardly labeled even after depolarization. The aim of this study was to determine the extent to which methodological factors contribute to this discrepancy. The distribution of CMK II between the outside and the inside of synaptosomes was determined by incubating intact and lysed synaptosomes with [gamma-32P]ATP. Some 38% of the 50-kDa subunit was found on the inside of synaptosomes, and at this location it would be accessible to ATP generated within synaptosomes during the preincubation with 32Pi and could be autophosphorylated. The rest (62%) was on the outside of the synaptosomes, presumably associated with postsynaptic densities, where it could not be autophosphorylated. The effect of preincubation at 37 degrees C on CMK II autophosphorylation was determined by incubating intact synaptosomes for 45 min. This reduced calmodulin-stimulated autophosphorylation of the 50-kDa subunit in lysed synaptosomes by 38% and in intact synaptosomes by 29%. Thus, 9% of the 50-kDa autophosphorylation activity within synaptosomes was lost by thermal inactivation during preincubation. The extent of this loss of activity depended on the synaptosomal protein concentration during preincubation. CMK II activity against its major endogenous substrate synapsin I and an exogenous peptide substrate was also decreased by preincubation. The effect of the ionic environment on CMK II autophosphorylation was determined by incubating lysed synaptosomes with [gamma-32P]ATP in the absence or presence of ions at concentrations that mimic the extra or intracellular environment.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Triphosphate

Evidence of endocrine involvement early in the course of human immunodeficiency virus infection.

Adrenal, gonadal, and thyroid function were assessed in 40 asymptomatic subjects in whom infection with the human immunodeficiency virus (HIV) had recently been documented. None of the patients had historical or clinical evidence of endocrine dysfunction. Their mean serum hormone levels were also within the expected ranges, but several differences were noted compared to those of seronegative controls. Basal cortisol, basal aldosterone, and ACTH-stimulated cortisol were significantly lower in the HIV group. One subject (2.5%) had a subnormal cortisol response, and two (5%) had abnormal aldosterone responses to ACTH. PRA tended to be higher, and serum angiotensin-converting enzyme levels somewhat lower in the HIV group. Serum free testosterone was markedly elevated in the HIV patients and was associated with an exaggerated LH response to GnRH, but PRL, estradiol, and basal and peak GnRH-stimulated FSH did not differ between groups. Three subjects (8%) had subclinical hypothyroidism. Serum thyroid hormone levels were normal, but basal T3 was lower in the HIV group compared to control values. While of little immediate clinical importance, many subtle endocrine aberrations are evident very early in the course of HIV infection. These findings obtained in HIV-seropositive subjects without infections or tumors and who were not receiving medical therapy suggest an effect of HIV on each of the endocrine systems examined.

Adrenal Cortex Function Tests

A new diagnostic unit for corneal ulcers.

A self-contained microbiologic unit has been presented as an expedient to facilitate the diagnosis of corneal ulcers in an office or emergency room. In addition, rationale for its contents are indicated. Although the commonly isolated bacteria and fungi, as well as many of the rare forms, can be cultured on the intact media included in this unit, growth of strict anaerobes may not be supported without additional processing of the media.

Bacteriological Techniques