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Biomedical subjects

R O Morgan

Publications and source records attributed to R O Morgan.

At least 19 recordsLinked to original sources

Immune function and anti-HTLV-I/II status in anti-HIV-1-negative intravenous drug users receiving methadone.

PURPOSE: The study objective was to evaluate the effects of long-term methadone use and human T-cell leukemia virus (HTLV) types I and II seropositivity on the distribution of lymphocyte subsets and on lymphocyte function as measured in vitro in intravenous drug users seronegative for human immunodeficiency virus type 1 (HIV-1). PATIENTS AND METHODS: Anti-HIV-1-negative intravenous drug users receiving methadone maintenance therapy (n = 24) were studied in a Veterans Administration drug abuse treatment center. These subjects were compared to 38 age- and sex-matched control subjects who did not abuse drugs. HIV-1 and HTLV serostatus was determined by repetitive enzyme-linked immunosorbent assay and confirmed by immunoblot. Lymphocyte subsets were determined by two-color flow cytometry. Lymphocyte function was measured by proliferative response to plant mitogens and by natural killer (NK) cell-mediated cytotoxicity to a tumor cell target. RESULTS: Significant differences were seen in lymphocyte phenotype in the methadone-treated group, with elevations in the T-cell helper subset CD4+CD26+; in CD8 and CD8+I2+ cells, suppressor/cytotoxic T lymphocytes, and activated suppressor/cytotoxic T cells; and in CD2+CD26+ cells and activated total T lymphocytes. Lymphocyte function was suppressed in the methadone group, with poor responses to pokeweed mitogen and phytohemagglutinin in culture. Moreover, NK-cell cytotoxicity was significantly reduced in the methadone group. None of these immunologic differences were attributable to HTLV serostatus. CONCLUSION: The immune abnormalities seen suggest that a clinically significant degree of immune impairment exists in methadone-treated intravenous drug users. However, these abnormalities could not be explained by the presence of other retroviruses in this HIV-1-negative study group, as there was no significant difference in immune function when HTLV-seropositive patients were compared to HTLV-seronegative subjects treated with methadone.

Adult

Hormonal effects on the regulation of hepatic heme biosynthesis.

Drug-induced porphyrin accumulation occurs in chick embryo liver cells maintained in serum-free Waymouth MD 705/1 medium. Addition of insulin and thyroxine to the medium results in a marked enhancement of porphyrin accumulation. The addition of hydrocortisone results in a further enhancement of porphyrine accumulation. Several agents which are reported to increase intracellular adenosine 3':5'-monophosphate (cAMP) levels, viz. glucagon, sodium fluoride, cAMP or its dibutyryl derivative, 3-isobutyl-1-methylxanthine and papaverine enhanced drug-induced porphyrin biosynthesis. On the other have, agents which are reported to decrease intra-cellular cAMP levels, viz. alloxan and imidazole, diminished drug-induced porphyrin accumulation. cAMP appears to enhance, but not to function as a "second messenger" in drug-induced porphyrin biosynthesis. Drug-induced porphyrin accumulation in chick embryo liver cells depend upon the insulin to glucagon ratio. A low level of porphyrin accumulation occurs at insulin to glucagon ratios similar to those found following glucose administration in vivo, suggesting a possible explanation for the therapeutic effect of glucose in hepatic porphyria. The 5 alpha A(A:B trans) and 5 beta H(A:Bcis) steroids are equipotent in inducing delta-aminolevulinic acid synthetase and porphyrin accumulation in chick embryo liver cells maintained in serum-free culture medium. Thus, there is no specific steric requirement for porphyrin-inducing activity in steroids.

1-Methyl-3-isobutylxanthine

The nutritional regulation of T lymphocyte function.

Prostaglandin (PG) E1 plays a major role in the regulation of thymus development and T lymphocyte function and the evidence for this is reviewed. The production of PGE1 is dependent on nutritional factors with linoleic acid, gamma-linolenic acid, pyridoxine, zinc and vitamin C playing key roles. Inadequate intake of any one of these will lead to inadequate PGE1 formation and defective T lymphocyte function. Megadoses of any one are likely to be only minimally effective in the absence of adequate intakes of the others. By careful attention to diet it should be possible to activate T lymphocyte function in the large number of diseases including rheumatoid arthritis, various auto-immune diseases, multiple sclerosis, and cancer in which such function is defective. It is possible that T lymphocytes may require both endogenous and exogenous PGE1 in order to function adequately. It is therefore of particular interest that many cancer cells and virally infected cells are unable to make PGE1 because they cannot convert linoleic acid to gamma-linolenic acid. The direct provision of gamma-linolenic or dihomo-gammalinolenic acids in these situations is worthy of full investigation.

Animals

Erythrocyte protoporphyrin levels in patients with Friedreich's and other ataxias.

Of 13 patients with Friedreich's ataxia (Type Ia) and 17 with type IIa recessive ataxias, all were found to have levels of "free erythrocyte protoporphyrin" (FEP) above the normal range. The rise in FEP in Friedreich's ataxia correlated well with the age of the individual and thus appears to be related to the course of the disease. Subjects with olivo-ponto-cerebellar atrophy, Charlevoix syndrome, Duchenne muscular dystrophy, and Parkinson's disease were also found to have significantly elevated FEP, although the distribution overlapped with the normal range. The finding of elevated FEP may indicate a relative heme deficiency in ataxia due to inhibition of ferrochelatase leading to a state of ineffective, persistent erythropoiesis. The possibility of a prostaglandin abnormality being related to this defect and to the pathogenesis of ataxia is considered.

Adolescent

Thymic changes in muscular dystrophy and evidence for an abnormality related to prostaglandin synthesis or action.

In Bar Harbor 129 dystrophic mice, thymic development is abnormal. Before weaning, the thymus is slightly smaller than in phenotypically normal littermates; after weaning, however, the lymphoid elements undergo rapid atrophy. The epithelial elements, in contrast, display hyperlasia. Thymectomy has no influence on the course of the disease, and it is possible that the thymic changes are a reflection of a fundamental metabolic abnormality. Thymic lymphoid tissue development seems to require normal levels of PGE1. Levels that are either too high or too low both result in abnormalities. We have investigated the effects of PGE1 in smooth muscle and have demonstrated that while some PGE1 is required for both calcium release and calcium removal, high levels of PGE1 block both processes. We propose that the muscular dystrophies are related to defects in PG synthesis and action. Myotonic dystrophy may be due to PGE11 excess, whereas Duchenne dystrophy may in part be due to PGE1 deficiency.

Aging

Copper inhibits pressor responses to noradrenaline but not potassium. Interactions with prostaglandins E1, E2, and I2 and penicillamine.

Low concentrations of copper inhibited responses to norepinephrine and angiotensin (IC50 3 X 10(-6) M) but not to potassium in rat mesenteric vascular preparations perfused either with buffer or indomethacin and prostaglandin (PGE2). The dose-response curve was not shifted by indomethacin, imidazole, or PGE2 but was moved to the right by 2.8 X 10(-11) M PGE1 and to the left by 2.8 X 10(-7) M PGE1. These effects of copper are similar to the effects of PGI2 in the preparation. Copper moved the PGI2 dose-response curve against noradrenaline in parallel to the left, suggesting that the two were interacting at some point. Penicillamine, which may stimulate PGE1 synthesis, had PGE1-like interactions with the copper effect, suggesting that its value in Wilson's disease may be partly due to antagonism of the biological action of copper as well as to its copper-chelating properties.

Animals

Low prostaglandin concentrations cause cardiac rhythm disturbances. Effect reversed by low levels of copper or chloroquine.

In perfused male rat hearts concentrations of prostaglandins (PGs) E2 and F2alpha in the range 1 pg/ml to 10 ng/ml (2.8 X 10(-12) to 2.8 X 10(-8)M) consistently caused rhythm irregularities. Higher concentrations had no effect themselves and stabilized rhythm in hearts made unstable by lower concentrations. Copper ions (as the sulphate) at 2 X 10(-6)M stabilized hearts made unstable by PGs and when present prior to the PGs prevented PG induced disturbances. Chloroquine also reversed PG-induced rhythm changes.

Animals

A defect in thromboxane A2 synthesis may be a factor predisposing to cancer.

A failure of thromboxane (TX) A2 synthesis may be a factor in cancer. Such a loss could explain the susceptibility to mutation, the excess prostaglandin production, the glycolytic mode of metabolism and the deranged calcium pumping characteristic of cancers. Ionising radiation and phorbols both have actions similar to inhibitors of TXA2 synthesis whereas colchicine and oxygen have actions consistent with stimulation of TXA2 synthesis. The concept accounts logically for hitherto unexplained features of cancer and suggests new strategies for the prevention and treatment of cancer.

Animals

Ultra-violet radiation and 8-methoxypsoralen have actions similar to those of known inhibitors of thromboxane A2 synthesis in rat mesenteric blood vessels.

In the rat mesenteric vascular bed three structurally different agents (imidazole, benzydamine and N-0164) which have been reported to be inhibitors of thromboxane (TX) A2 synthesis at certain concentrations, all have a characteristic spectrum of action. They inhibit pressor responses to noradrenaline and angiotensin with equal potency and the inhibition can be reversed by exogenous PGE2: they do not inhibit responses to potassium. Ultra-violet (UV) radiation has a similar spectrum of action. The main difference between the action of imidazole and that of UV radiation is that the former is rapidly reversible while the latter is not. However, irradiation administered to preparations inhibited by imidazole has no irreversible effect provided that the radiation is switched off before the imidazole is removed. The imidazole protects against radiation damage suggesting that the drug may stabilize the site affected by UV light. 8-methoxypsoralen, a light sensitizing agent used in treatment of psoriasis also inhibited noradrenaline and angiotensin but not potassium responses and seemed to make the preparation more sensitive to radiation damage. It is possible that UV radiation and 8-methoxypsoralen may inhibit TXA2 synthesis but this requires confirmation by direct methods.

Angiotensin II

Influence of agents which modulate thromboxane A2 synthesis or action on R3230AC mammary carcinoma.

The effects of agents which modulate thromboxane A2 synthesis or action, were tested in the R3230AC transplanted mammary tumour. Three different inhibitors of thromboxane A2 synthesis or action (copper, dipyridamole and diazepam) all caused an increase in tumour growth. Colchicine and melatonin, both stimulators of thromboxane A2 synthesis, inhibited the growth of the tumour significantly.

Animals

Prostaglandins and schizophrenia: further discussion of the evidence.

It has been proposed that schizophrenia is a prostaglandin-deficiency disease and also that it is a disease of prostaglandin excess. New evidence is reviewed which suggests that 'classic' schizophrenia is due to a specific deficiency of prostaglandin E1 while certain toxic and vitamin-deficiency psychoses may be due to a broader spectrum of prostaglandin deficiency. There is also good evidence that a particular schizophrenic subgroup, which includes catatonic schizophrenia but may not be confirmed to it, is associated with an excess of prostaglandins. Part of the explanation may be that prostaglandin E1 has a 'bell-shaped' dose-response curve with high concentrations having effects similar to those of prostaglandin deficiency.

Animals

Dantrolene blocks intracellular calcium release in smooth muscle: competitive antagonism of thromboxane A2.

Dantrolene sodium has been shown to block the release of intracellular calcium in skeletal muscle. It has been proposed that dantrolene blocks the movement and (or) action of a natural calcium ionophore. In a rat vascular preparation dantrolene was found to inhibit pressor responses to noradrenaline and angiotensin but not those to potassium with an IC50 concentration within the therapeutic levels in man. Imidazole, an inhibitor of thromboxane A2 (TXA2) synthesis, had similar actions to dantrolene. Interactions between imidazole and dantrolene suggested that dantrolene may be a competitive antagonist of TXA2 in muscle. We report the first demonstration of an effect of dantrolene sodium on smooth muscle contractility and suggest that TXA2 is an essential modulator of vascular reactivity. A similar role has been shown for TXA2 in platelets.

Angiotensin II

Regulation of cytoplasmic calcium: interactions between prostaglandins, prostacyclin, thromboxane A2, zinc, copper and taurine.

The regulation of cytoplasmic calcium is a key process in nerve tissue. Using a smooth muscle model we have shown that prostaglandin (PG) E2 probably regulates entry from extracellular fluid, whereas the release from intracellular stores depends on the interplay between thromboxane (TX) A2, PGEI and prostacyclin. Hormones and other agents interact with this system in the following ways: vasopressin, angiotensin and inositol mobilize arachidonic acid from membrane phospholipids and increase synthesis of PGE2 and TXA2, cortisol blocks this action. Prolactin and zinc mobilize dihomo-gamma-linolenic acid and increase synthesis of PGEI. These effects can be blocked by cortisol, lithium and taurine, three agents which on their own have no effect on basal PG production. Epileptogenic agents like penicillin and picrotoxin also stimulate PG synthesis, while diphenylhydantoin is a PG antagonist and diazepam is a TXA2 antagonist. The effects of all these agents occur at concentrations which are physiological in the case of the natural ones, and readily attained in human plasma in the case of the drgus. In view of recent evidence that calcium may be important in demyelination and considering the established role it plays in nerve conduction and synaptic transmission, we suggest that these observations may be of significance in understanding Friedreich's ataxia.

Animals