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M English

Publications and source records attributed to M English.

At least 19 recordsLinked to original sources

Two N-terminal self-association domains are required for the dominant negative transcriptional activity of WT1 Denys-Drash mutant proteins.

Patients with Denys-Drash syndrome (DDS) have been shown to be constitutionally heterozygous for mutations of the WT1 gene. Almost all DDS mutations inactivate or remove the DNA-binding zinc finger region of WT1 and the resulting mutant proteins appear to act in a dominant negative manner. This may occur via WT1 self-association, which has been shown to involve the first 180 amino acids. By creating a series of N-terminal deletions, we have further investigated WT1 self-association using a yeast di-hybrid system and an in vitro protein binding assay. Our results suggest that there are two distinct domains within the N-terminal region facilitating self-association, residing from amino acids 1-45 and 157-253. Co-transfection of WT1 with progressively shorter N-terminal constructs demonstrates that both of these sites are required for a dominant negative activity as assessed by activation of a reporter construct.

Base Sequence

Acidosis in severe childhood malaria.

Data were prospectively collected on 306 Kenyan children, including blood gases in 258 (75%). Severe malaria caused a predominantly high-anion-gap metabolic acidosis in at least 43% of children. Children with coma and respiratory distress (CM + RD) had greater evidence of renal dysfunction, lower mean pH and higher mean plasma osmolality than those with respiratory distress (RD) or coma (CM) as isolated findings (mean urea 10.7 vs. 6.0 vs. 4.3 mmol/l; mean creatinine 97 vs. 74 vs. 58 mumol/l; mean osmolality 301 vs. 288 vs. 283 mosmol/l; and mean pH 7.16 vs. 7.29 vs. 7.39, respectively, p < 0.001 for each comparison of CM + RD vs. RD or CM). In addition, children with CM + RD had a higher mean blood lactate (6.7 vs. 3.3 mmol/l, p < 0.001), a lower mean haemoglobin (5.5 vs. 7.0 g/dl, p = 0.002) and a lower mean age (26.4 vs. 41.9 months, p < 0.001) than children with CM and accounted for 15/24 (63%) of all deaths. These and previous data implicate hypovolaemia and renal impairment in the pathogenesis of metabolic acidosis in severe childhood malaria. In children who are acidotic, anaemia is strongly associated with lactic acidaemia and may therefore contribute to its pathogenesis. These data also imply that coma in acidotic children (CM + RD) and those with an isolated encephalopathy (CM) may result from quite different pathophysiological mechanisms.

Acidosis

Lactic acidosis and oxygen debt in African children with severe anaemia.

A syndrome of severe anaemia (Hb < or = 5 g/dl), particularly severe malarial anaemia (SMA), remains a major cause of childhood mortality in sub-Saharan Africa. We hypothesized that the lactic acidosis which identifies those at the greatest risk of death often represents an oxygen debt incurred as a result of inadequate tissue perfusion. To examine this hypothesis, we measured oxygen consumption (VO2) using a portable metabolic monitor. Blood lactate and acid-base status were also determined. Pre-transfusion data on 44 children (28 with mild symptoms, 7 with respiratory distress and 9 controls) demonstrated very close dependence of VO2 on body surface area (BSA, R2 = 0.86, p < 0.001). After correcting for BSA, no significant differences were observed in mean VO2 values of the three clinical groups, indicating that a critical reduction in oxygen delivery is not the sole explanation for the development of a lactic acidosis and severe symptoms. Nine children (including five of the original 44) were monitored during transfusion. In four of the five with SMA, severe symptoms and severe lactic acidosis, transfusion produced a marked, transient increase in VO2 (maximum 30-41%), with a marked fall in blood lactate and clinical improvement. These data suggest that some children with SMA and respiratory distress accumulate an oxygen debt when a relatively high oxygen demand outstrips supply, this debt being repaid when supply is increased during transfusion. However, in the remaining one of these five children, an increase in VO2 (maximum 20%), was accompanied by a rise in blood lactate and clinical deterioration, suggesting that more pathophysiologically complex mechanisms, which may predominate in some children.

Acidosis, Lactic

Intracranial hypertension in Africans with cerebral malaria.

The causes of death and neurological sequelae in African children with cerebral malaria are obscure. Intracranial pressure (ICP) was monitored and cerebral perfusion pressure (CPP) calculated in 23 Kenyan children with cerebral malaria. Four children had severe intracranial hypertension (ICP > 40 mm Hg, CPP < 40 mm Hg): two died, one with an ICP of 158 mm Hg and signs of transtentorial herniation, the other one with an ICP of 42 mm Hg and cardiorespiratory arrest. The other two survived with severe neurological sequelae. Nine had intermediate intracranial hypertension (ICP > 20 mm Hg, CPP < 50 mm Hg) and 10 had mild intracranial hypertension (maximum ICP 10-20 mm Hg); all survived without severe sequelae. Mannitol controlled the ICP in children with intermediate intracranial hypertension, but it did not prevent the development of intractable intracranial hypertension in children with severe intracranial hypertension. Intracranial hypertension is a feature of Kenyan children with cerebral malaria and severe intracranial hypertension is associated with a poor outcome.

Child

Chronic salicylate poisoning and severe malaria.

BACKGROUND Salicylates continue to be marketed and to be used in developing countries as over-the-counter (OTC) antipyretics in children, whereas in developed countries they are no longer used in children because of safety concerns. The presenting signs of salicylate poisoning, especially chronic (repeated administration of therapeutic or excessive doses for longer than 12 h), can include metabolic acidosis, hypoglycaemia, lethargy, and coma and fits. These signs are also common in severe malaria in African children. Admission of two probable cases of chronic salicylate poisoning prompted us to look for other cases among children presenting to our hospital in Kenya, apparently with severe malaria. METHODS All children admitted to Kilifi District Hospital between July and September, 1994, who had a positive blood film for Plasmodium falciparum, and one or more of coma, prostration, or respiratory distress were eligible. As well as routine tests for malaria and routine biochemistry, salicylate concentrations were measured. Management of children (aged 6 months to 10 years) in the community was assessed by a cross-sectional survey of 463 households and by interviews with mothers 2 days after they had bought OTC drugs for a child with fever. FINDINGS Data were available for 143 of 154 children with initial primary diagnoses of severe malaria. 129 (90 percent) had detectable (>l mg/dL) salicylate. Six of these had salicylate concentrations of 20 mg/dL or higher. All six had neurological impairment and metabolic acidosis and four were, or became, hypoglycaemic. OTC drugs were the first-line treatment in 188 (74 percent) of 254 fever episodes during the 2 weeks before the cross-sectional survey. Of 250 mothers who bought drugs for a febrile child, 236 (94 percent) bought a preparation containing salicylates and 50 (21 percent) gave a dose higher than the manufacturer's recommended maximum. INTERPRETATION These cases suggest that in some children salicylate poisoning may cause or contribute to the development of metabolic acidosis and hypoglycaemia, complications of severe malaria associated with high mortality.

Acidosis

The effect of treatment with high dose melphalan, cisplatin or carboplatin on levels of glutathione in plasma, erythrocytes, mononuclear cells and urine.

Glutathione(GSH) has been implicated as an important factor in the detoxification of many electrophilic xenobiotics, including agents used in cytotoxic chemotherapy. Maintenance of high levels of GSH in normal tissues is believed to be important in the prevention of drug-induced toxicity. Previous studies have indicated that exposure of cells to some toxic electrophiles both in vitro and in vivo can cause a temporary decrease in intracellular levels of GSH. In this paper we report that in a series of 22 children and young adults treated with high dose melphalan (ten courses studied, all 200 mg/m2), cisplatin (eight courses, 80-104 mg/m2) or carboplatin (seven courses, 507-750 mg/m2) there was no significant alteration in the level of plasma, erythrocyte or urine GSH in the period immediately following drug administration. Fluctuations in the level of GSH in mononuclear cells were observed in some patients but did not follow any consistent pattern and were similar to those observed in a series of nine normal adult controls over the same time course. These results suggest that for melphalan, cisplatin and carboplatin, drug-GSH adduct formation is insufficient to cause a measurable decrease in intracellular GSH levels in normal peripheral haematopoietic cells during the course of treatment.

Adolescent

Ifosfamide nephrotoxicity: limited influence of metabolism and mode of administration during repeated therapy in paediatrics.

This study investigated the relationship between both acute and chronic nephrotoxic effects of ifosfamide (IFO) and its metabolism. 15 paediatric patients (4 girls) were investigated. Each received 6-9 g/m2 IFO over 15 days, repeated every 3 weeks for up to 16 courses. The pharmacokinetics and metabolism of IFO were measured during its administration, either as a continuous 72 h infusion or as three bolus doses of 3 g/m2 on consecutive days. In 8 patients, the metabolism of IFO was investigated during one early course and one late course to determine the magnitude of any changes following repeated administration. Acute measures of renal toxicity were not correlated with any of the IFO pharmacokinetic or metabolic parameters in the same course, whether the drug was administered as a bolus or by continuous infusion. Chronic renal toxicity, determined 1 month (n = 13) or 6 months (n = 8) after treatment, did not correlate with any of the IFO pharmacokinetic or metabolic parameters in any individual course of treatment. The overall degree of nephrotoxicity, however, was correlated with the changes in metabolism between late and early courses (n = 8). There was a negative correlation between the change in area under the curve of the dechloroethylated metabolites of IFO and the overall nephrotoxicity at 1 month or 6 months after treatment (both r2 = 0.66, P = 0.014). The results imply that patients in whom metabolism via dechloroethylation decreases are at a greater risk of chronic nephrotoxicity. This is contrary to the hypothesis that the systemic production of chloroacetaldehyde is the mechanism by which IFO causes nephrotoxicity. The importance of acute and chronic changes in renal function for long-term outcome remains to be determined.

Acute Disease

The pathogenesis of severe malaria in African children.

The pathogenesis of severe, Plasmodium falciparum malaria in African children is considered in the context of its two major clinical syndromes: malaria with respiratory distress; and malaria with neurological disturbance. Respiratory distress is an important prognostic marker in children with P. falciparum infections. In the majority of cases it reflects an underlying metabolic acidosis, usually associated with lactic acidaemia. Hypovolaemia and anaemia are important underlying factors. The syndrome of malaria with neurological impairment is not a homogenous condition. Four distinct groups of children fulfilling the WHO definition of cerebral malaria may be distinguished: (1) prolonged post-ictal state; (2) covert status epilepticus; (3) severe metabolic derangement (particularly hypoglycaemia and metabolic acidosis); and (4) children with a primary neurological syndrome. These distinctions are important from a therapeutic point of view, as well as for their implications for studies on underlying pathogenic factors. A simple framework is presented to summarize how three major processes, anaemia, the acute phase response and sequestration of infected cells, may interact to lead to reduced tissue oxygenation as a unifying process in the pathogenesis of both major clinical syndromes of severe malaria.

Acute Disease

Deep breathing in children with severe malaria: indicator of metabolic acidosis and poor outcome.

Despite the frequent association of respiratory symptoms and signs with malarial morbidity and mortality in sub-Saharan Africa, the value of individual symptoms and signs has rarely been assessed. We have prospectively examined the association of individual clinical findings with the summary diagnosis of respiratory distress, outcome, and the presence of metabolic acidosis in children admitted with severe malaria to a Kenyan district hospital. Respiratory distress was present in 119 of the 350 children included in the study and in 23 of the 30 deaths (relative risk = 6.5, 95% confidence interval = 2.8-14.4). The features of a history of dyspnea, nasal flaring, and indrawing or deep breathing (Kussmaul's respiration) were individually most closely associated with the summary diagnosis of respiratory distress. Of these, deep breathing, which was sensitive (91%) and specific (83%) for the presence of severe metabolic acidosis (base excess < or = -12), is the best candidate sign to represent the prognostically important syndrome of malarial respiratory distress. Therefore, it warrants further prospective evaluation in different clinical settings and areas of different malaria endemicity.

Acidosis

Transfusion for respiratory distress in life-threatening childhood malaria.

We have prospectively collected information during resuscitation in 24 children with life-threatening malaria. All had clinical respiratory distress and 16 were severely anemic (hemoglobin < or = 5 g/dL) on admission. Central venous pressure (CVP) measurements were normal (< or = 5 cm of water) prior to treatment but all had a metabolic acidosis. The geometric mean lactate level was significantly higher in children admitted with severe anemia than in those without severe anemia (11.2 mmol/l versus 4.2 mmol/l; P = 0.009). Hypovolemia (a CVP on admission < 0 cm of water) was associated, although not significantly, with a higher admission plasma creatinine concentration (94 mumol/l versus 64 mumol/l; P = 0.06) and probably contributed to the severely reduced creatinine clearances (0-39 ml/min/1.73 ml2) found in 12 of the 13 children in whom this was assessed in the first 24 hr. Treatment resulted in a rapid decrease in blood lactate in 16 of the 13 children in whom this was assessed in the first 24 hr. Treatment resulted in a rapid decrease in blood lactate in 16 of the 20 children transfused, which was most dramatic in severely anemic children, who were rapidly resuscitated. In nonanemic children, early and rapid administration of normal saline usually resulted in both metabolic and clinical improvement. However, in three children, two of whom died, acidosis persisted despite resuscitation. Metabolic acidosis often accounts for respiratory distress in life-threatening childhood malaria. Severe anemia and hypovolemia appear to play major roles in its pathogenesis, are readily treatable, and there appears to be little risk of congestive cardiac failure even with an aggressive approach to fluid replacement.

Acidosis

Hybrid time-frequency adaptive filtering for the recovery of ventricular late potentials.

Ventricular late potentials are small ECG components that have significant diagnostic importance. Temporal averaging is used to recover these signals from high levels of background noise, but is not the optimum approach. A new form of hybrid time-frequency adaptive filtering is introduced that is based on signal division into a series of frequency bands. This technique is able to process the averaged data further and to reduce significantly the noise levels beyond that achieved by simple averaging. Examples of the processing are shown and its applicability is discussed.

Algorithms

Interobserver variation in respiratory signs of severe malaria.

Respiratory abnormalities are common presentations of malaria and acute respiratory tract infection, both of which are major causes of childhood mortality and morbidity in sub-Saharan Africa. Appropriate management depends on accurate assessment of disease severity which for the majority of children must be based on clinical signs alone. Choosing which signs best serve this purpose remains a considerable problem particularly in malaria endemic areas. As part of a prospective study to define clinical signs indicative of life threatening malaria video recordings were used to examine the level of agreement between clinicians for potentially important respiratory signs in 51 children. Overall agreement was good for recession, severe recession, and nasal flaring (kappa = 0.57, 0.50, and 0.60 respectively) and substantial for deep breathing and the summary impression of respiratory distress (kappa = 0.70 and 0.69 respectively). However, within this substantial variation in interpretation was apparent between individual observers from slight to almost perfect agreement (kappa values 0.10-0.92). Video is a useful tool to demonstrate interobserver variation and it may also allow training in recognition of signs and a means of standardising clinical signs between centres.

Child

The management of severe malaria in children: a review.

We have attempted to summarise an approach to management of severe malaria from our experience and that of others from published data in this review. This represents our current state of knowledge and practices which may change as research continues in this field. It also represents what we feel should be the minimum aim in treating severe malaria even at district hospital level. It focuses on practical issues encountered when admitting such patients: initial assessment, immediate supportive management, use of transfusion, appropriate anti-malarial treatment and ongoing management.

Child

Chemical composition of baboon plant foods: implications for the interpretation of intra- and interspecific differences in diet.

Information on the chemical composition of baboon foods from the Laikipia Plateau, Kenya, is presented. Despite some differences in methods, results of analyses performed on the same foods at different sites were found to be extremely consistent, encouraging the view that meaningful intra- and interspecific comparisons of diet selection are feasible. Contrary to assumptions in the literature, no relationship between the abundance of food types and their chemical composition was found, nor was the foliage eaten by the baboons found to be a low-quality or high-fibre item in comparison with fruits and storage organs. Emphasis is placed on the need for caution in the use of simplistic dietary taxonomies which imply phytochemical and ecological homogeneity within broad food categories. Comparisons between three species revealed marked differences in the chemical composition of their diets; in particular, baboon diets were found to be higher in protein and lower in fibre than those of either lowland gorillas or Malaysian leaf monkeys, and differences in condensed tannin levels were also found. The relationship between these differences and the socio-ecology of the three species is discussed.

Alkaloids