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Biomedical subjects

P G Bush

Publications and source records attributed to P G Bush.

12 recordsLinked to original sources

Regulatory volume decrease (RVD) by isolated and in situ bovine articular chondrocytes.

Articular chondrocytes in vivo are exposed to a changing osmotic environment under both physiological (static load) and pathological (osteoarthritis) conditions. Such changes to matrix hydration could alter cell volume in situ and influence matrix metabolism. However the ability of chondrocytes to regulate their volume in the face of osmotic perturbations have not been studied in detail. We have investigated the regulatory volume decrease (RVD) capacity of bovine articular chondrocytes within, and isolated from the matrix, before and following acute hypotonic challenge. Cell volumes were determined by visualising fluorescently-labelled chondrocytes using confocal laser scanning microscopy (CLSM) at 21 degrees C. Chondrocytes in situ were grouped into superficial (SZ), mid (MZ), and deep zones (DZ). When exposed to 180mOsm or 250mOsm hypotonic challenge, cells in situ swelled rapidly (within approximately 90 sec). Chondrocytes then exhibited rapid RVD (t(1/2) approximately 8 min), with cells from all zones returning to approximately 3% of their initial volume after 20 min. There was no significant difference in the rates of RVD between chondrocytes in the three zones. Similarly, no difference in the rate of RVD was observed for an osmotic shock from 280 to 250 or 180mOsm. Chondrocytes isolated from the matrix into medium of 380mOsm and then exposed to 280mOsm showed an identical RVD response to that of in situ cells. The RVD response of in situ cells was inhibited by REV 5901. The results suggested that the signalling pathways involved in RVD remained intact after chondrocyte isolation from cartilage and thus it was likely that there was no role for cell-matrix interactions in mediating RVD.

Animals↗

The role of a swelling-activated taurine transport pathway in the regulation of articular chondrocyte volume.

Swelling articular chondrocytes by reducing osmolarity stimulates a taurine transport pathway, which is implicated in regulatory volume decrease (RVD) in various cell types. The present study investigated factors controlling the activity of this pathway in chondrocytes, in particular (1) the effects of the acute (seconds) and chronic (hours) exposure of chondrocytes to anisotonic media, and (2) whether there is a role for metabolites from the arachidonic acid cascade in activating the taurine transport pathway. For in situ and isolated chondrocytes, the point at which swelling-activated [14C]taurine efflux was stimulated (the "set-point") corresponded closely to the osmolarity of the incubation medium (180, 280 or 380 mosmol/l). However, the volume of chondrocytes isolated into these media and measured by confocal microscopy was not different ( congruent with 645 microm3). Activity of the swelling-activated taurine transport pathway was inhibited by REV5901 (an inhibitor of steps of the arachidonic acid cascade; K0.5 8+/-4 microM), NDGA (a general lipoxygenase inhibitor; K0.5 28+/-5 microM), or MK886 (an inhibitor of the 5-lipoxygenase-activating protein; 91% inhibition at 10 microM), but weakly by the more potent 5-lipoxygenase inhibitor REV5901 para (K0.5 350+/-100 microM). Addition of the leukotriene (LT) B4 or D4 receptor antagonists, CP-105,696 and L660,711 respectively, or of the leukotrienes LTB4, LTC4, LTD4 and LTE4 or lipoxins (hepoxylin A3 or B3) had no effect on the activity of the pathway in isotonic or hypotonic media. The role of the pathway in RVD was determined in isolated calcein-loaded chondrocytes using fluorescence imaging. RVD was observed and inhibited by REV5901 (50 microM) and by NDGA (75 microM). The data show that despite chronic exposure of chondrocytes to anisotonic media, the cells maintain a pre-determined volume that is the "set-point" for the activation of the taurine transport pathway following acute hypotonic challenge. This pathway appears to play a role in chondrocyte RVD, but its activation does not involve metabolites of the arachidonic acid cascade.

Biological Transport↗

The osmotic sensitivity of isolated and in situ bovine articular chondrocytes.

Articular chondrocytes experience changes to matrix hydration during both physiological (static load) and pathophysiological (osteoarthrosis, OA) conditions. Such changes should alter chondrocytes' volume, which has been shown to modify matrix metabolism. However, the osmometric behaviour of chondrocytes is not well understood. Here, using confocal laser scanning microscopy (CLSM), we have investigated the 'passive' osmotic responses of fluorescent-labelled chondrocytes within, and isolated from, the matrix. The volume-regulatory pathways normally activated by cell shrinkage/swelling, were blocked by bumetanide/REV5901, respectively. Chondrocytes in situ were broadly grouped into superficial (SZ), mid (MZ) and deep (DZ) zones, and there was a significant increase in resting cell volume with depth into the cartilage. Variation in medium osmolarity (range 0-530 mOsm; corresponding to an extracellular osmolarity of approximately 150 to approximately 600 mOsm) caused a rapid and sustained change to in situ MZ chondrocytes' volume. Over the range 180-380 mOsm, the change to in situ or isolated chondrocytes' volume was similar. For MZ chondrocytes. ideal osmometric (Boyle-van't Hoff) behaviour was apparent over the extracellular osmolarity range of approximately 250 to approximately 600 mOsm. Chondrocytes within the SZ appeared to be more sensitive to reduced osmolarity, swelling more for a given reduction in osmolarity, than MZ or DZ chondrocytes. These data show that over wide variations in osmolarity, articular chondrocytes in situ were osmotically sensitive, and for MZ chondrocytes behaved as perfect osmometers with the extracellular matrix (ECM) not restraining cell volume changes. Changes to matrix hydration may therefore alter passive chondrocytes' volume and unless compensated by volume-regulatory pathways, could lead to changes in cell volume, and hence matrix metabolism.

Animals↗

Maternal cigarette smoking and oxygen diffusion across the placenta.

The aim of this study was to test whether or not adaptations in partial, total and specific oxygen diffusive conductances occur in the placentae of women who smoke cigarettes during pregnancy and help to compensate for intrauterine fetal hypoxic stress. Tissue sections were randomly sampled from human term placentae divided into two groups (non-smokers and smokers) according to maternal smoking status. In smokers, status was expressed as either declared smoking rate or level of plasma cotinine (the major metabolite of nicotine). Sections were analysed stereologically to estimate key structural quantities (vascular volumes, exchange surface areas, tissue diffusion distances). These were combined with previously-published physicochemical quantities (oxygen-haemoglobin reaction rates and tissue oxygen diffusion coefficients) in order to estimate the partial conductances of six tissue compartments of the oxygen pathway: maternal erythrocytes and plasma, villous trophoblast, villous stroma (including fetal capillary wall), fetal plasma and erythrocytes. From partial conductances and birthweights, total and specific conductances were calculated for each placenta. Results were assessed statistically by analyses of variance and t -tests. Despite apparent improvements in the partial conductances of the maternal erythrocytes and plasma, total and specific conductances did not alter significantly in smoking groups. However, the relative biases affecting these estimates may be different in smokers and non-smokers. We conclude that total conductance does not increase in placentae associated with maternal smoking. However, given that the fetus suffers chronic hypoxic stress as a consequence of smoking (evidenced here by elevated haematocrits), even a constant diffusive conductance implies a reduced transplacental partial pressure gradient. This could be a contributory factor to the reduced birthweight.

Adult↗

Human placental cytochrome P450 and quinone reductase enzyme induction in relation to maternal smoking.

Components of cigarette smoke such as cadmium and polycyclic aromatic hydrocarbons have been shown to induce quinone reductase (QR) activity in placental explants. This study examines the relationship of maternal smoking habit and maternal plasma cotinine concentration with the activities in vitro of both QR and the cytochrome P450 (CYP1A) marker ethoxyresorufin O-deethylase (EROD) in placental tissue. Maternal plasma samples were taken at Week 34 of gestation, and placental tissues were obtained at term. Plasma cotinine concentrations were determined by high-performance liquid chromatography. Trophoblast cytosolic QR and microsomal EROD activities were measured by resazurin reduction and ethoxyresorufin O-dealkylation respectively. QR activity was inhibited 70% by a mixture of dicoumarol (1 microM) and rutin (20 microM). Plasma cotinine concentrations correlated significantly (P < 0.001) with both declared smoking rate (r = 0.67, N = 37) and placental EROD activity (r = 0.63, N = 36), but not with QR activity, whether measured as total QR activity or specifically as either DT-diaphorase or carbonyl reductase. It is concluded that smoking up to 40 cigarettes per day induces EROD but does not affect QR activity in the placenta at term.

Cotinine↗

Comprehension and production of idioms in dysphasia.

The comprehension and production of idioms was investigated in 10 dysphasic adults. Two different tasks, one comprehension and the other production, were developed. The production task required the subject to verbally explain 15 idioms. The comprehension task necessitated the selection of the correct figurative representation of the idiom from four illustrations: a literal, a literal variation, a figurative, and an unrelated picture. Results indicated no significant correlation between overall comprehension and production performances. No significant difference was found between the comprehension or the production of idioms when type or severity of dysphasia was considered. A significant difference was found, however, in the type of incorrect response, in that subjects selected the literal depiction more often than other foil representations for the comprehension.

Adult↗

Incidence of the Robin Anomalad (Pierre Robin syndrome).

Reliable estimates of the incidence of the Robin Anomalad (Pierre Robin Syndrome) are not readily available in standard texts. An analysis of admissions to the Mersey Regional Cleft Palate Unit (Alder Hey Children's Hospital, Liverpool and the Royal Liverpool Children's Hospital, Heswall) over a 23-year period suggests an incidence of 1:8500 live births.

England↗

The Robin anomalad (Pierre Robin syndrome)--a follow up study.

During a 10-year period 55 patients with the Robin anomalad were admitted to the Liverpool Regional Cleft Palate Units. Fourteen (25%) children died. All deaths were within 3 months of birth. Congenital abnormalities other than mandibular retrognathia and cleft palate were present in 14 (26%) children. Peripheral limb defects were particularly common. Thirty children were recalled and reviewed to assess speech, hearing, growth, and educational achievement. There was a clear association between severe nasal escape of air in speech and atypical articulatory patterns. Almost half the children tested had abnormal articulation. Only 4 (13%) of 30 children showed delayed language development. Half the children tested audiometrically showed a binaural handicap but in only one patient was this sufficiently severe to warrant amplification. There was no trend towards abnormalities of growth and only 2 children could be firmly classified as educationally subnormal.

Child Development↗

Detection and cellular localization of plasma membrane-associated and cytoplasmic fatty acid-binding proteins in human placenta.

The aim of this study was to investigate location and the types of membrane-associated and cytoplasmic fatty acid-binding proteins in human placental trophoblasts using monospecific polyclonal antibodies. Western blot analysis demonstrated the presence of multiple membrane and cytoplasmic fatty acid transport/binding proteins in human placenta. In addition to previously reported placental membrane fatty acid-binding (p-FABPpm, 40 kDa), fatty acid translocase (FAT, 88 kDa) and fatty acid transport protein (FATP, 62 kDa) were detected in both microvillous and basal membranes of the human placenta. Among the cytoplasmic proteins, heart (H) and liver (L) type FABP were detected in the cytosol of the human placental primary trophoblasts as well as in human placental choriocarcinoma (BeWo) cells. The immunoreactivity of epidermal type (E)-FABP was not detected in trophoblasts or BeWo cells despite its presence in human placental cytosol. Location of FAT and FATP on the both sides of the bipolar placental cells may favour transport of free fatty acids (FFA) pool in both directions i.e. from the mother to the fetus and vice versa. However, p-FABPpm, because of its exclusive location on the microvillous membranes, may favour the unidirectional flow of maternal plasma long-chain polyunsaturated fatty acids present in the FFA pool to the fetus, due to binding specificity for these fatty acids. Although the roles of these proteins in placental fatty acid uptake and metabolism are yet to be understood fully, their complex interaction may be involved in the uptake of maternal FFA by the placenta for delivery to the fetus.

Adult↗

A quantitative study on the effects of maternal smoking on placental morphology and cadmium concentration.

The aim of this study was to quantify the effects of maternal cigarette smoking on placental morphology, paying particular attention to variables known to be influential in facilitating oxygen diffusion. Structural quantities were estimated by stereological analyses of placental samples drawn from non-smoking and smoking women whose smoking habits were assessed both subjectively (from volunteered cigarette consumption) and objectively (by determining levels of plasma cotinine, a major metabolite of nicotine). Concentrations of placental cadmium were also measured. In the smoking group, maternal and fetal haematocrits were elevated and mean birthweight was reduced. Within placentae, the most significant alterations were increases in cadmium levels, the relative volumes of maternal intervillous space, the relative surface areas of fetal capillaries and decreases in the relative and absolute volumes of fetal capillaries. Findings indicate that changes in capillary volume are the result of a decrease in mean capillary diameter rather than total length. The mean thickness of the trophoblast component of the villous membrane was also increased in the smoking group. Although increased haematocrits suggest that fetuses of smoking mothers suffer hypoxic stress, these morphological changes are likely to compromise, rather than assist, transplacental oxygen transfer. This is in marked contrast to the adaptive changes seen in pregnancies associated with preplacental hypoxia and suggests that other factors might be compromising the fetoplacental unit. Finally, although the morphological changes associated with maternal smoking seem to be the result of an all-or-none, rather than dose-dependent, effect, the available evidence is not conclusive.

Cadmium↗