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Biomedical subjects

S A Rees

Publications and source records attributed to S A Rees.

At least 19 recordsLinked to original sources

Mutation analysis of POUF-1, PROP-1 and HESX-1 show low frequency of mutations in children with sporadic forms of combined pituitary hormone deficiency and septo-optic dysplasia.

OBJECTIVES: Mutations in the genes encoding the transcription factors PROP1 and POUF-1 (Pit-1) have been reported as common causes of combined pituitary hormone deficiency (CPHD), and HESX1 mutations have been identified in children with septo-optic dysplasia (SOD). There are few data on UK children. We have performed mutation analysis in a large cohort of affected children within the West Midlands region to assess the feasibility of a screening strategy for molecular diagnosis in CPHD and SOD. DESIGN AND PATIENTS: The three coding exons of PROP1, and six exons of POUF-1 in 27 children from 26 families with CPHD, and three exons of HESX1 in 23 children from 22 families with SOD were directly sequenced from a well-characterized regional cohort. RESULTS: We identified a C to T transition in exon 6 of POUF-1, resulting in a known missense mutation (R271W) in a mother and daughter from one family with CPHD. We also found a novel homozygous T to C transition in exon 6 of POUF-1, resulting in a missense mutation (F233L) in a twin with CPHD. This mutation was excluded in 100 ethnically matched control alleles. We did not identify any mutations in the PROP1 gene or HESX1. The median maternal age at delivery for the CPHD children was 27 years, compared to 21 years for the mothers of SOD children (P = 0.04). CONCLUSIONS: Mutations in POUF-1, PROP1 and HESX1 are rare causes of CPHD and SOD, respectively, in children from the West Midlands. In particular, we did not confirm the reported 'hotspot' in PROP1. A screening strategy that targets familial cases is highly likely to increase the mutation yield. The young maternal age at conception of children with SOD and potential teratogen exposure indicate the predominance of environmental factors in this condition compared with CPHD.

Child↗

Height screening at school: ineffective without high standards and adequate resources.

BACKGROUND: The Coventry Consensus in 1998 recommended a single height measurement of all children at school entry or around the age of 5 years and prompt referral of children with height <0.4th centile for further assessment, in order to identify undetected and treatable asymptomatic growth disorders. AIM: To determine adherence and practicalities of following the Coventry Consensus recommendations in a community setting and the cost implications. METHODS: Anthropometric data of all children born between September 1992 and August 1993 in the Rhondda and Taff Ely area and measured in school year September 1998 to August 1999 were obtained from the National Child Health System (NCHS) and analysed in July 2000. RESULTS: Only 1592 (67.6%) of 2354 eligible children had their height measured. The NCHS could only flag up height data <2nd centile. Only five of the 15 children with height <0.4th centile were referred initially. Height measurements were not transcribed onto centiles in 75% of the case notes reviewed. When initially recalled, six of the 15 eligible children failed to attend the referral clinic. No new growth disorder was identified in any of these children. A conservative estimate of the cost to the health authority was pound 14 550 (US23 300 dollars; 20 500 euro) per annum. CONCLUSION: The study shows poor coverage and compliance together with a lack of parental awareness that short stature could be a potential health problem even in asymptomatic children. For a low yield programme to be successful and cost effective at the national level, a near 100% coverage is required. Further training of professionals in growth measurement and interpretation along with a campaign to raise both public and professional awareness is needed.

Anthropometry↗

Molecular cytogenetic characterization of two non-MYCN amplified neuroblastoma cell lines with complex t(11;17).

The pediatric tumor neuroblastoma is characterized by a very variable, and at times unpredictable, pattern of clinical behavior, ranging from a benign localized tumor to an aggressive malignancy with poor prognosis. Standard clinical and pathological assessments do not always differentiate reliably between tumor subtypes and, therefore, genetic markers are now playing an increasingly important role in treatment decisions. MYCN oncogene amplification, for example, provides a useful marker of poor prognosis. However, less than one-half of all patients who present with, or who later develop, metastatic disease show MYCN amplification. Consequently, the identification of characteristic patterns of genetic alteration in the remaining tumors is of importance. In this report, we describe two new cell lines that we have established from metastatic, non-MYCN amplified, advanced stage neuroblastomas. These cell lines show a number of features in common, including unbalanced translocation between 11q and 17q, loss of 3p, 4p and 11q and gain of 17q. Therefore, they provide a valuable resource for the characterization of genetic pathways leading to aggressive tumor growth in non-MYCN amplified neuroblastomas.

Adrenal Gland Neoplasms↗

Neuroblastomas with chromosome 11q loss and single copy MYCN comprise a biologically distinct group of tumours with adverse prognosis.

Neuroblastoma is a heterogeneous tumour and its effective clinical management is dependent on accurate prognostic evaluation. In approximately 25% of patients amplification of the MYCN oncogene is known to be associated with a poor outcome. In order to identify additional molecular markers with prognostic potential in non-MYCN-amplified neuroblastomas, we looked for a correlation between clinical outcome and loss of heterozygosity (LOH) on four chromosomes that frequently show alteration in neuroblastoma (chromosomes 3, 4, 11 and 14). Chromosome 11q loss (with frequent parallel loss of chromosomes 3p, 4p and/or 14q) was found exclusively in tumours without MYCN amplification and was significantly associated with poor event-free survival. The 2-year event-free survival rate for 11q LOH cases was 30%, compared to 34% for MYCN-amplified cases and 100% for cases without these abnormalities. While 11q LOH was associated predominantly with advanced-stage disease, 2 cases with low-stage disease and 11q LOH both suffered relapses. We conclude that chromosome 11q loss defines a biologically distinct group of tumours without MYCN amplification that appear to have potential for aggressive metastatic growth. Thus this genetic alteration may be an important new prognostic marker in neuroblastoma.

Biomarkers, Tumor↗

Exclusion of candidate genes and chromosomal regions in familial neuroblastoma.

Two families with recurrence of neuroblastoma one Italian and one British with three and two affected children respectively were genotyped using polymorphic markers on chromosome 1 spanning the p32-p36 region frequently deleted in neuroblastoma tumor cells. Linkage to this region was excluded by haplotype inspection and negative lod scores. Furthermore, the exclusion of genes involved in neurocristopathies sometimes associated with neuroblastoma was carried out by typing the Italian family with polymorphic markers located in or near the corresponding genes. Finally, linkage analysis in the two families showed negative lod scores for markers spanning the 16p12-13 chromosomal region where a locus for familial neuroblastoma has been recently mapped. Our findings indicate that different genes are involved in the pathogenesis of familial neuroblastoma.

Chromosome Mapping↗

Cardiac cell volume: crystal clear or murky waters? A comparison with other cell types.

The osmolarity of bodily fluids is strictly controlled so that most cells do not experience changes in osmotic pressure under normal conditions, but osmotic changes can occur in pathological states such as ischemia, septic shock, and diabetic coma. The primary effect of a change in osmolarity is to acutely alter cell volume. If the osmolarity around a cell is decreased, the cell swells, and if increased, it shrinks. In order to tolerate changes in osmolarity, cells have evolved volume regulatory mechanisms activated by osmotic challenge to normalise cell volume and maintain normal function. In the heart, osmotic stress is encountered during a period of myocardial ischemia when metabolites such as lactate accumulate intracellularly and to a certain degree extracellularly, and cause cell swelling. This swelling may be exacerbated further on reperfusion when the hyperosmotic extracellular milieu is replaced by normosmotic blood. In this review, we describe the theory and mechanisms of volume regulation, and draw on findings in extracardiac tissues, such as kidney, whose responses to osmotic change are well characterised. We then describe cell volume regulation in the heart, with particular emphasis on the effect of myocardial ischemia. Finally, we describe the consequences of osmotic cell swelling for the cell and for the heart, and discuss the implications for antiarrhythmic drug efficacy. Using computer modelling, we have summated the changes induced by cell swelling, and predict that swelling will shorten the action potential. This finding indicates that cell swelling is an important component of the response to ischemia, a component modulating the excitability of the heart.

Animals↗

Substituted 4-aminopiperidines having high in vitro affinity and selectivity for the cloned human dopamine D4 receptor.

We have discovered two substituted 4-aminopiperidine compounds having high in vitro affinity and selectivity for the human dopamine D1 receptor. Both compounds, 3-ethoxy-N-methyl-N-[1-(phenylmethyl)-4-piperidinyl]-2-pyridinylamine (U-99363E), and its 3-isopropoxy analog (U-101958), were found through a routine receptor binding screen. The determined affinities (Ki) of these compounds for the cloned human dopamine D4 receptor were 2.2 and 1.4 nM, respectively. They exhibited at least 100-fold lower affinities for dopamine D2 and for other dopaminergic, serotonergic and adrenergic receptors. Both compounds were found to antagonize quinpirole-induced mitogenesis in Chinese hamster ovary cells expressing the human dopamine D4 receptor. In spite of their poor metabolic stability and low bioavailability. U-99363E and U-101958 appear to be among the first high-affinity, highly selective dopamine D4 receptor antagonists reported, and may have utility in in vitro investigations requiring selective tagging or blockade of dopamine D4 sites.

Aminopyridines↗

Targeting ischaemia--cell swelling and drug efficacy.

Myocardial ischaemia can precipitate fatal arrhythmia, the leading cause of mortality in the western world. During ischaemia, cardiac myocytes swell rapidly. Such changes in cell volume radically alter the electrophysiology of these cells. Ischaemia also alters the potency of antiarrhythmic drugs, with the effectiveness of some antiarrhythmics being diminished. Conversely, the ideal antiarrhythmic would be 'switched on' by ischaemia. As well as making the drug more potent, this would minimize unwanted side-effects by targeting diseased tissue alone. In this article, Anthony Wright and Siân Rees discuss possible strategies for developing 'ischaemia-selective' antiarrhythmics. To date, research has focused on potentiation of antiarrhythmic action by membrane depolarization, as occurs during ischaemia. The authors suggest that cell swelling alters drug efficacy and propose that this could represent a new way of targeting ischaemia.

Anti-Arrhythmia Agents↗

Determination of U-89968E, a 5HT1a agonist in rat plasma using solid-phase extraction, precolumn derivatization and reversed-phase high-performance liquid chromatography.

A selective and sensitive HPLC method was developed for the determination of U-39968E in rat plasma. The assay involved solid-phase extraction of the analyte and the internal standard and precolumn derivatization with cyclohexane-1,3-dione reagent before injection on to the HPLC column. The samples were chromatographed on a Spherisorb S5 CN column (25 cm x 4.6 mm i.d.) with a mobile phase containing acetonitrile-trifluoroacetic acid-water (17:0.2:83, v/v/v) at a flow rate of 1.5 ml min-1. The column eluent was monitored by flourescence detection with excitation at 272 nm and emission at 320 nm. The assay is linear over the range 4-759 ng ml-1. The relative standard deviation at the limit of quantification, 4 ng ml-1, was 7.1%. This method was successfully applied to the determination of U-89968E in rat plasma during pharmacokinetic studies.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Regulatory volume decrease of cardiac myocytes induced by beta-adrenergic activation of the Cl- channel in guinea pig.

A new method was developed to automatically measure the thickness of a single ventricular myocyte of guinea-pig heart. A fine marker was attached on the cell's upper surface and changes in its vertical position were measured by focusing it under the microscope. When the osmolarity of the bath solution was varied, the cell thickness reached a new steady level without any obvious regulatory volume change within the period of observation up to 15 min. The cell thickness was 7.8 +/- 0.2 microns (n = 94) in the control Tyrode solution and was varied to 130.4 +/- 3.1% (n = 10), 119.1 +/- 1.1% (n = 50), 87.2 +/- 1.9% (n = 9), and 75.6 +/- 3.2% (n = 5) of control at 50, 70, 130, and 200% osmolarity, respectively. The application of a Cl- channel blocker, 500 microM anthracene-9-carboxylic acid (9AC) did not modify these osmotic volume changes. We discovered that the application of isoprenaline induced a regulatory volume decrease (RVD) in cells inflated by hypotonic solutions. This isoprenaline-induced RVD was inhibited by antagonizing beta-adrenergic stimulation with acetylcholine. The isoprenaline-induced RVD was mimicked by the external application of 8-bromoadenosine 3':5'-cyclic monophosphate. The RVD was inhibited by blocking the cAMP-dependent Cl- channel (ICl, rAMP) with 9AC but was insensitive to 4,4'-diisothiocyanostilbene-2,2'-dissulphonate (DIDS). Taken together these data suggest an involvement of ICl, cAMP activation in the RVD. Whole cell voltage clamp experiments revealed activation of ICl, cAMP by isoprenaline under the comparable conditions. The cardiac cell volume may be regulated by the autonomic nervous activity.

Adrenergic beta-Agonists↗

Bioanalytical strategies to support a discovery research programme.

To facilitate the selection of drug candidates from a discovery research programme, a strategy was developed to assess the preliminary metabolism and pharmacokinetics of numerous chemical entities. A three-level "screening funnel" was set up, using both in-vitro and in-vivo techniques, requiring bioanalytical methods for the determination of parent compound. Simple high performance liquid chromatography (HPLC)/UV assays with minimal sample workup were adequate for the initial high throughput in-vitro screen used to assess in-vitro metabolic stability but a more selective sample extraction method was required for the second level of the screen. Here, rats were infused with drug to steady-state concentrations and whole blood, plasma, and brain tissue homogenate were analysed to assess clearance and to investigate blood/brain barrier penetration. Generally, HPLC/UV was adequate as only moderate sensitivities were required. However, the final level of the screen, a rat PO/IV bioavailability study, needed far more sensitive assays and often presented significant analytical challenges.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Extracellular osmotic pressure modulates sodium-calcium exchange in isolated guinea-pig ventricular myocytes.

1. The sensitivity of the cardiac Na(+)-Ca2+ exchange current to changes in osmotic pressure was investigated in guinea-pig ventricular myocytes, using the whole-cell patch-clamp technique. 2. A hyposmotic challenge applied by removal of sucrose from the standard bathing solution reduced exchanger current, measured as the Ni(2+)-sensitive component of whole-cell transsarcolemmal current. These changes were fully reversible. 3. No response of whole-cell current to hyposmosis was observed when Ca2+ was removed from the bathing solution by chelation with 1 mM EGTA. 4. Inclusion of 25 microM exchanger inhibitory peptide (XIP) in the pipette solution caused a marked reduction in the Ni(2+)-sensitive component of membrane current, but the percentage change in Ni(2+)-sensitive membrane slope conductance evoked by hyposmosis was the same as when XIP was omitted from the pipette solution. 5. Exposure of cells to hyperosmotic solutions produced variable responses. In a majority of cells, solutions 30% hyperosmotic compared with control evoked a persistent increase in exchanger current, whereas for solutions 50% hyperosmotic, a larger but transient increase in current was observed. 6. Over a wide range of osmolalities (50-130% of isosmotic) the changes in Ni(2+)-sensitive membrane slope conductance were linearly related to the changes in extracellular osmotic pressure. 7. We propose that one consequence of exposing ventricular myocytes to anisosmotic solutions is modulation of Na(+)-Ca2+ exchange current.

Animals↗

High-performance liquid chromatographic determination of spectinomycin in swine, calf and chicken plasma using post-column derivatization.

An HPLC method for the determination of spectinomycin in swine, calf and chicken plasma at 0.1 microgram/ml or higher is described. The clean-up is based upon ion-pair solid-phase extraction on a High Hydrophobic C18 column treated with sodium dioctyl sulfosuccinate. After elution with methanol, spectinomycin is chromatographed on a Spherisorb SCX column using 0.1 M sodium sulphate solution (pH 2.6)-acetonitrile (80:20, v/v) as mobile phase. Fluorescence detection is at an excitation wavelength of 340 nm and an emission wavelength of 460 nm after post-column oxidation with sodium hypochlorite followed by derivatization with o-phthaldialdehyde. Mean recoveries were 99 +/- 2% (n = 6), 99 +/- 2% (n = 7) and 104 +/- 2% (n = 6) for swine, calf and chicken plasma, respectively, at the 0.1 microgram/ml level.

Animals↗

Further investigations into the mechanism of antifibrillatory action of the specific IK1 blocker, RP58866, assessed using the rat dual coronary perfusion model.

RP58866 (1-[-2-(3,4-dihydro-2H-1-benzopyran-4-yl)ethyl]-4- (3,4-dimethoxyphenyl)-piperidine), a specific blocker of the inwardly rectifying K+ current (IK1), is an extremely effective antiarrhythmic agent in rat, rabbit and primate (marmoset) isolated hearts in the settings of acute ischaemia and reperfusion (Rees and Curtis, 1993a). In the present study we further examined the mechanism of action of RP58866. We used the new dual coronary perfusion cannula that allows left and right sides of the heart to be perfused independently. The model has not previously been used for pharmacological investigations. Isolated rat hearts (n = 112) were randomized to one of four groups: perfusion of the left and right coronary beds with drug-free solution (n = 28), perfusion of the left coronary bed with 3 mumol/l RP58866 (n = 28), perfusion of the right coronary bed with 3 mumol/l RP58866 (n = 28) or perfusion of left and right coronary beds with 3 mumol/l RP58866 (n = 28). After 5 min perfusion, left regional ischaemia was induced and maintained for 30 min. Regional coronary flow was measured by in-line flowmeters. Epicardial monophasic action potentials (MAP) were recorded from the left (n = 15/group) and right (n = 13/group) perfusion regions using a suction electrode. Delivery of RP58866 to the uninvolved zone (right perfusion bed) suppressed ischaemia-induced ventricular fibrillation (VF): incidences (%) of VF were 80, 60, 33 (P < 0.05) and 27% (P < 0.05) in groups with no drug, with RP58866 delivered to the left bed, with RP58866 to the right bed and with RP58866 to the left plus right beds, respectively. Protection correlated with widening of MAP duration in the uninvolved zone which at 100% repolarization was 130.6 +/- 8.0, 129.1 +/- 7.0, 155.8 +/- 6.5 (P < 0.05 versus control) and 155.3 +/- 8.7 (P < 0.05) in the four groups, respectively after 5 min of ischaemia (just prior to the onset of ventricular arrhythmias). Corresponding values recorded from the involved zone (left perfusion bed) were 102.6 +/- 7.8, 131.2 +/- 11.1 (P < 0.05), 138.2 +/- 11.6 (P < 0.05) and 147.1 +/- 8.9 ms (P < 0.05), suggesting that RP58866 may gain access to ischaemic tissue via collatoral flow from the right perfusion bed. In order to suppress ischaemia-induced VF, it appears that the IK1 blocker RP58866 must widen APD in uninvolved tissue. APD widening activity restricted to the involved tissue alone is insufficient to prevent VF. However, caution should be exercised when using the dual coronary perfusion model to assess pharmacological activity since, even in rat, a species with extremely low collateral flow, there is evidence of cross-flow between the left and right ventricles.

Animals↗

Cell swelling has differential effects on the rapid and slow components of delayed rectifier potassium current in guinea pig cardiac myocytes.

Cell swelling has been shown to cause activation of a variety of cardiac sarcolemmal ionic conductances including potassium channels. The aim of this study was to investigate the effect of swelling on the two subtypes of delayed rectifier potassium current (IKr and IKs) in single guinea pig myocytes using the whole-cell configuration of the patch clamp technique. When the holding potential was set at -40 mV and stepped to +40 mV for 1 s under isoosmotic conditions (300 mOsm) a delayed rectifier current (IK) was activated (0.86 +/- 0.05 nA; n = 43). Switching to a hypoosmotic solution (200 mOsm) caused a rapid increase in IK to a mean value of 1.43 +/- 0.10 nA (p < 0.05; n = 43). The effect of swelling on the two subtypes of IK was studied by analysis of deactivating tail currents using an envelope of tails protocol (stepping from -40 to +40 mV for 18 different pulse durations between 50 ms and 2.9 s; n = 16). Swelling caused a decrease in current amplitude measured at the end of the pulse (and IKtail) at short durations (< or = 150 ms) however, when the pulse duration was > 1 s swelling caused a significant increase in current. Using a pulse protocol to measure IKr with minimal contamination by IKs (voltage step from -40 to -10 mV for 250 ms) a 50-100 pA current was elicited which could be completely blocked by dofetilide (0.2 microM; n = 3). Introduction of hypoosmotic solution caused a significant decrease in IKr and when dofetilide (0.2 or 1.0 microM) was introduced the current remaining was decreased further (p < 0.05; n = 5), but was not completely blocked, thus suggesting that swelling had decreased the ability of dofetilide to block IKr. Similar results were obtained over a range of dofetilide concentrations and with a second IKr blocker, La3+. In Ca(2+)-free external solutions, pulsing to -10 mV for 500 ms to measure IKr in the absence of IKs, and to +60 mV for 5 s (with 0.2 microM dofetilide) to evoke only IKs, it was clear that swelling significantly increased IKs (pulse and tail currents) and decreased IKr. In addition, when measured using the perforated patch method, swelling modulated IKt and IKs in a similar fashion. We conclude that swelling has differential effects on the subtypes of the classical cardiac IK, which may have important implications in our understanding of the mechanisms underlying ischaemia- and reperfusion-induced arrhythmogenesis.

Animals↗