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Biomedical subjects

R Hume

Publications and source records attributed to R Hume.

At least 73 records · Page 4Linked to original sources

Early detection of metabolic abnormalities in preterm infants impaired by disorders of blood glucose concentrations.

We recently reported (Acta Paediatr Scand 1992;8: 580-4) three preterm infants with severe respiratory distress syndrome and abnormal glucose profiles for the first 5 days of life who subsequently died in infancy; only at autopsy were they shown to have abnormal glucose-6-phosphatase activity. We have therefore studied retrospectively in a matched cohort of 109 infants the blood glucose profiles correlated with the severity of respiratory distress syndrome (expressed as the fraction of inspired oxygen, FiO2): group A, mild, FiO2 < 0.25; group B, moderate, FiO2 0.26-0.50; group C, severe, FiO2 > 0.51. All groups had a similar frequency of low blood glucose values (15% < or = 2.2 mmol/L; 29% < or = 2.6 mmol/L), but high blood glucose values and greater variability in glucose values were more common in groups B and C despite lower caloric intakes (A, 4.3%; B, 9.3%; C, 9.6% > or = 7 mmol/L). We conclude that the early blood glucose patterns in those three previously described preterm infants with abnormal hepatic glucose-6-phosphatase activity at autopsy cannot be viewed as abnormal when considered against a matched cohort of infants. Preterm infants at risk of genetic or developmental delays in blood glucose homeostasis should be reassessed after recovery from their acute illnesses.

Blood Glucose↗

Insulin requirements during pregnancy in women with type I diabetes.

OBJECTIVES: To document individual variations in the rise in insulin requirements during type I diabetic pregnancies, to relate the degree of increase to maternal characteristics and fetal outcome, and to examine these factors in a subgroup of patients experiencing a large fall in insulin requirement in the third trimester. METHODS: Insulin dose was documented in 237 pregnancies in women with type I diabetes. Multiple regression analysis was performed to identify significant associations with maternal and fetal characteristics. Eighteen pregnancies with a fall in insulin requirement of 30% or more in the third trimester were considered in detail. RESULTS: The mean absolute increase in insulin requirement was 52 units. The degree of rise was significantly related to maternal weight gain between 20-29 weeks and maternal weight at booking, and was inversely related to duration of diabetes. It was not related to the degree of diabetes control, complications of pregnancy, White class, or outcome of pregnancy. In the 18 women experiencing a large fall in insulin requirement, there was no relation with maternal characteristics or fetal outcome. CONCLUSION: There is a wide individual variation in the change in insulin requirements in type I diabetic pregnancy. The degree of increase is related only to maternal weight gain during weeks 20-29 and maternal weight at booking, and is inversely related to duration of diabetes. Large falls in insulin requirement remain unexplained and may not be associated with placental failure.

Diabetes Mellitus, Type 1↗

Immunochemical characterisation of a dehydroepiandrosterone sulfotransferase in rats and humans.

A member of the rat liver hydroxysteroid sulfotransferase (ST) enzyme family metabolising dehydroepiandrosterone (DHEA) was purified from female rats and used to raise rabbit polyclonal antibodies. Characterisation of this antibody preparation demonstrated that it was specific for DHEA ST, and recognised a single 30-kDa protein on immunoblot analysis of rat liver cytosol which was expressed preferentially in female rat liver, and immunohistochemical localisation of the protein in female rat liver determined that DHEA ST was distributed homogeneously in the cytoplasm of hepatocytes. Examination of the extrahepatic expression of this protein showed it to be located predominantly in the liver, although a small amount of enzyme activity was found in the kidney which was not apparently subject to the same sex difference as the hepatic activity. Immunological analysis suggested that this activity was not due to the action of DHEA ST, but to another, unidentified ST isozyme. The antibody cross-reacted strongly with adult human liver DHEA ST, recognising a protein of 35 kDa on immunoblotting. Using this antibody preparation, the distribution of DHEA ST in mid-trimester human fetal tissues was examined, and it was shown that the enzyme is expressed in the adrenal and liver, but not to any significant extent in the kidney or lung. This antibody therefore provides a powerful tool for investigating the function of DHEA ST.

Adrenal Glands↗

Development of human fetal lung in organ culture compared with in utero ontogeny.

In utero, at around 23 wk gestation, the progenitor epithelium of distal airway differentiates into type I and type II pneumatocytes. Human fetal lung organ cultures, as early as 12 wk gestation, have the competence to self-differentiate. Distal airway epithelial immunoreactivity to cytokeratins CK 7, 8, and 18 decreases with differentiation both in utero and in organ culture, whereas reactivity to epithelial membrane antigen remains constant in both. As distal airways dilate, the mean percentage airspace of fetal lungs in organ culture increases to 58%, equivalent to lung of gestation 26.0 +/- 7.3 wk. In organ culture, capillary blood vessels, visualized by vimentin immunoreactivity, remodel and more closely approximate the epithelium but without direct invasion. In utero, at 23 wk gestation, elastin appears as condensation around airways and forms a basis for secondary crests which, by 29 wk gestation, evolve into alveolar septae. In organ culture, no elastin is deposited, no secondary or alveolar crests form, and the lung retains a simple saccular structure. Differentiation of the terminal airway epithelium and mesodermal maturational events to facilitate gas exchange, such as capillary invasion or secondary-alveolar crest formation, are almost synchronous in human lung in utero but clearly dissociate in organ culture.

Analysis of Variance↗

The effects of mifepristone (RU486) on prostaglandin dehydrogenase in decidual and chorionic tissue in early pregnancy.

Prostaglandin dehydrogenase is the main inactivating enzyme for prostaglandins and therefore controls local levels of prostaglandins. Since there is some evidence that the expression of this enzyme is under progesterone control it is reasonable that one of the effects of antiprogestin is to reduce the concentration of this enzyme and thus increase the effective concentration of prostaglandin within tissue. We have investigated the amount of enzyme activity within decidua and chorionic villi from women receiving the antigestagen mifepristone (RU486) 12, 24 and 36 h prior to surgical abortion, and examined the effect on tissue concentrations of prostaglandin dehydrogenase. Women receiving mifepristone in all groups had a significant reduction in concentration of prostaglandin dehydrogenase enzyme in decidual tissue. There was also a marked reduction in prostaglandin dehydrogenase in decidual cells following RU486, as demonstrated by immunochemical methods. At this stage of pregnancy, prostaglandin dehydrogenase was present in abundance in cytotrophoblast cells of chorionic villi but virtually absent from syncytiotrophoblast. In chorionic villi after RU486 administration in vivo, there were no obvious differences in prostaglandin dehydrogenase distribution or reactivity in the majority of cases.

Abortion, Induced↗

Immunocytochemical detection of the microsomal glucose-6-phosphatase in human brain astrocytes.

Using an antibody raised against the catalytic subunit of glucose-6-phosphatase, this enzyme was immunolocalized in many astrocytes in 20 normal human brains. Double immunofluorescence studies showed co-localization of glial fibrillary acidic protein (GFAP) with glucose-6-phosphatase in astrocytes. However, not all GFAP-positive cells were also glucose-6-phosphatase positive, indicating that some astrocytes do not contain demonstrable expression of this enzyme. Reactive astrocytes in a variety of abnormal brains were strongly glucose-6-phosphatase positive, but neoplastic astrocytes were often only weakly positive. Expression of the enzyme could not be demonstrated in radial glia, neurons or oligodendroglia. Astrocytes normally contain glycogen and the demonstration that some astrocytes also contain glucose-6-phosphatase indicates that they are competent for both glycogenolysis and gluconeogenesis, which may be critical for neuronal welfare.

Adult↗

Plasma protein levels in normal human fetuses: 13 to 41 weeks' gestation.

OBJECTIVES: To establish reference ranges for the levels of alpha-fetoprotein, albumin, prealbumin (transthyretin) alpha-1-antitrypsin, transferrin, ceruloplasmin and total protein in the plasma of normal human fetuses and newborn babies. DESIGN: Prospective study of individual normal cases to fulfil objectives. SETTING: Pathology laboratories of the University of Edinburgh and the biochemistry laboratories of the University of Keele. SUBJECTS: Twenty-two normal fetuses 13 to 22 weeks of gestation and 66 babies born between 24 and 41 weeks gestation. RESULTS: Albumin is the predominant plasma protein throughout gestation. The levels of alpha-fetoprotein and prealbumin fell significantly with increasing gestation, whereas the concentrations of the other proteins studied increased. The ratios of individual proteins to total protein demonstrated similar trends. CONCLUSIONS: This study provides developmental profiles of normal human fetal plasma proteins to serve as possible reference data for abnormal fetuses. Declining levels of prealbumin (transthyretin) were unexpected and suggest a functional role for this protein in early pregnancy.

Blood Proteins↗

Abnormal expression of glucose-6-phosphatase in preterm infants.

The hepatic microsomal glucose-6-phosphatase enzyme was studied in liver samples from 76 premature infants including 15 victims of sudden infant death syndrome. The data obtained were compared with glucose-6-phosphatase activity in liver samples from 95 term infants. In the majority of preterm infants up to 350 days of age the activity of the glucose-6-phosphatase enzyme was at or below the extreme low limit of the normal range in term infants. The premature infants with the lowest hepatic microsomal glucose-6-phosphatase activities are likely to be at risk of hypoglycaemic episodes during periods of relative starvation or stress.

Glucose-6-Phosphatase↗

The effect of mifepristone (RU486) on the immunohistochemical distribution of prostaglandin E and its metabolite in decidual and chorionic tissue in early pregnancy.

The widespread tissue distribution of prostaglandin dehydrogenase (PGDH), the main enzyme for the metabolism and deactivation of prostaglandin (PG), suggests that local effective levels of PG are controlled by catabolism. Previous reports have suggested that after the administration of mifepristone (RU486) in vivo, the levels of PGDH in uterine tissues fall, such results support earlier suggestions that PGDH is under progesterone control in reproductive tissues. In this study we have used immunohistochemistry to assess tissue concentrations of PGE and its main metabolite 13,14-dihydro-15-keto-PGE in chorionic villi and decidua from women treated with RU486 12, 24, and 36 h previously. In control villous tissue, PGE and 13,14-dihydro-15-keto-PGE2 (PGEM) are prominent in the syncytiotrophoblastic layer, whereas PGE stains only weakly in cytotrophoblasts, due to the presence of PGDH in this region; treatment with RU486 in vivo causes little change in distribution or intensity in villi. However, in decidua, staining for PGE2 was intense in the glands after RU486 and localized in the supranuclear region of the cells. Small blood vessels that were PGE negative and PGEM positive in the controls were PGE positive and PGEM negative in treated tissue. These findings show that PG stimulation by antiprogestin is by means of a direct effect on PGDH, and secondly, that the prominent rise in PGE in blood vessels may be a major mode of action of this steroid in causing abortion, as PGs may synergize with leukocyte chemotactic agents to stimulate neutrophil ingress and tissue destruction.

Chorionic Villi↗

Analysis of human hepatic microsomal glucose-6-phosphatase in clinical conditions where the T2 pyrophosphate/phosphate transport protein is absent.

The availability of a rare set of human hepatic microsomes in which T2, a pyrophosphate/phosphate transport protein of the glucose-6-phosphatase system, has been shown immunologically to be completely absent, has permitted further characterization of multicomponent glucose-6-phosphatase (EC 3.1.3.9). Pyrophosphatase activity in intact microsomes was found to be totally absent, but was normal in disrupted microsomes. However, Pi did not accumulate within the lumen of the microsomes when glucose 6-phosphate was the substrate. This was not as predicted if there is only one transport protein in the endoplasmic reticulum capable of transporting Pi, produced by glucose-6-phosphatase, out of the lumen. The results suggest that the pyrophosphate/phosphate transport system of human hepatic endoplasmic reticulum must be more complex than previously thought, as it must comprise at least two protein components.

Adult↗

Estrogen and phenol sulfotransferase activities in human fetal lung.

The sulfation of steroid hormones and xenobiotics by human fetal lung cytosol was examined. 1-Naphthol and estrone were extensively sulfated, whereas paracetamol and dehydroepiandrosterone were not good substrates for the pulmonary enzyme. Investigation of the thermostability and inhibition by 2,6-dichloro-4-nitrophenol (DCNP) of the 1-naphthol and estrone sulfotransferase (ST) activities revealed that the estrone ST activity was more thermolabile and more readily inhibited by DCNP than was the 1-naphthol ST activity. Anion exchange chromatography by FPLC resulted in the resolution of two 1-naphthol ST activities, with the estrone ST activity co-eluting with the more basic 1-naphthol ST activity. When human fetal lung cytosol was subjected to gel filtration FPLC, both the 1-naphthol and estrone ST activities had the same native molecular weight of 63,000 Da. this is the first demonstration of estrogen ST activity in human fetal lung. These results suggest that there are at least two forms of sulfotransferase in human fetal lung and that this tissue is capable of sulfating both xenobiotics and endogenous compounds.

Arylsulfotransferase↗

Impairment of the activity of the hepatic microsomal glucose-6-phosphatase system in three preterm infants.

Three preterm infants born at 26-30 weeks' gestation who died between 103 and 266 days after birth were found to have elevated hepatic glycogen levels. Kinetic analysis of the hepatic microsomal glucose-6-phosphatase system demonstrated that one infant had abnormally low levels of activity of the glucose-6-phosphatase enzyme (partial type 1a glycogen storage disease) and two had deficiencies of T2, a microsomal phosphate/pyrophosphate transport protein (type 1c glycogen storage disease). In all three cases glycogen storage disease was not suspected prior to death even though both hypo- and hyperglycaemic episodes were recorded in the first 15 days after birth indicating that they had somewhat disordered blood glucose regulation. In the infant with low glucose-6-phosphatase enzyme activity, abnormal development of the glucose-6-phosphatase enzyme cannot be ruled out. This is the first description of abnormalities in the glucose-6-phosphatase system in preterm infants.

Biopsy↗

Sarcoidosis: association with small bowel disease and folate deficiency.

A 30 year old woman with recurrent anaemia due to folate deficiency had evidence of sarcoid granuloma on small bowel biopsy but was presumed to have Crohn's disease. The diagnosis of small bowel sarcoidosis was not seriously considered until she developed systemic manifestations of sarcoidosis (cutaneous and pulmonary lesions) over the following 20 years. Sarcoidosis of the gastrointestinal tract, particularly the small bowel, is rare and this case is unusual because bowel pathology preceded more generalised lesions. As far as is known it is also the first case to be described presenting with malabsorption of folic acid.

Adult↗

Seasonal and climatic variation in cholesterol and vitamin C: effect of vitamin C supplementation.

Vitamin C (ascorbic acid) is an important anti-oxidant which may help to reduce free radical damage and atheroma formation in blood vessels. In a study in which a group of healthy volunteer subjects were followed up for 12 months and a group of patients with vascular disease taking Vitamin C supplements were followed for 23 months, we confirmed previous findings of seasonal variations in ascorbic acid and cholesterol and have shown an inverse relationship between leucocyte ascorbic acid and serum cholesterol levels. In healthy control subjects the increase in ascorbate and fall in cholesterol during the summer months was reversed when the weather changed to a more winter pattern, presumably due to dietary alterations. We found that ascorbic acid levels were lower in patients with peripheral vascular disease and that although normal ascorbic acid levels were achieved with Vitamin C supplementation, when supplements were stopped at the height of a normal summer, there was a fall in ascorbic acid and a rise in serum cholesterol to winter levels. Given these findings we suggest that patients with vascular disease should have Vitamin C supplements throughout the year.

Adult↗

Glucose metabolism and hypoglycaemia in SIDS.

Once a child is born its survival depends on the maturation of the blood glucose homeostatic control mechanisms. When this fails or where there is an inborn error of metabolism the infant is susceptible to potentially fatal hypoglycaemic episodes. A variety of environmental stresses, either singly or in combination, such as inappropriate or low caloric intake, acute infections of childhood, endotoxaemia, fever, xenobiotic exposure, oxidative stress or anaphylaxis, can greatly exacerbate the deficiency of the normal homeostatic compensatory mechanism and result in the onset of hypoglycaemia. Various inborn errors have been found in infants who died of SIDS. Our approach to this problem has been to use the six microsomal glucose-6-phosphatase proteins as a model system to study defects in carbohydrate metabolism in cases of SIDS. Initial studies determined the ontogeny of the glucose-6-phosphatase proteins and showed that intact microsomes isolated from unfrozen liver samples can be used to study glucose-6-phosphatase in cases of SIDS that were presumably due to the low concentrations of liver lipid peroxidation. More recently we have used a combination of techniques to demonstrate the abnormalities of glucose-6-phosphatase in cases of SIDS. Classic gross pathology and histology have now clearly defined the various subgroups of sudden and unexpected deaths of infancy. This now enables us to develop new molecular approaches to predict and prevent hypoglycaemia in infants who are at risk of SIDS.

Blood Glucose↗

Self-differentiation of human fetal lung organ culture: the role of prostaglandins PGE2 and PGF2 alpha.

Addition of PGE2, but not PGF2 alpha, to fetal lung organ cultures accelerates the process of self-differentiation with increased dilatation of terminal airsacs and differentiation of the epithelial lining. Indomethacin reduces the endogenous production by organ cultures of PGE2, PGF2 alpha, 13,14-dihydro-15-keto-PGE2, and 13,14-dihydro-15-keto-PGF2 alpha and retards the process of self-differentiation. Prolonged exposure of cultures to indomethacin results in cell necrosis. Indomethacin inhibition of self-differentiation can be reversed and accelerated by the addition of PGE2. Addition of PGF2 alpha in the presence of indomethacin prevents indomethacin-associated cell necrosis but does not accelerate dilatation or differentiation beyond that of cultures in sera-free media without additions. We propose that the endogenous production of PGE2 is a key process in the mechanism of self-differentiation of human fetal lung in organ culture.

Cell Differentiation↗