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Biomedical subjects

R C Sengers

Publications and source records attributed to R C Sengers.

At least 19 recordsLinked to original sources

Growth hormone (GH) secretion in children with Noonan syndrome: frequently abnormal without consequences for growth or response to GH treatment.

The role of GH insufficiency in the pathogenesis of short stature in Noonan syndrome is unclear. Cross-sectional study. Seventeen patients with Noonan syndrome (13 boys, 4 girls; aged 4.8-13.3 (mean 9.2) years) and short stature before start of GH treatment. Spontaneous 12-h overnight GH secretion by continuous sampling analysed using Pulsar, plasma IGF-I and IGFBP-3 levels, and 24-h urinary GH excretion were measured at start of GH treatment. A glucagon stimulation test was performed. Height and height velocity were monitored before and after 1 year of GH treatment. IGF-I and IGFBP-3 were remeasured after 1 year of GH treatment. Nine of the 17 children had a mean overnight GH concentration below the lower limit of the normal range. In six of the 17 patients, overnight GH profiles showed high trough GH concentrations. Glucagon stimulation tests were normal in 16 of the 17 patients. Mean IGF-I level was below normal (-0.4 SD). None of the parameters regarding GH secretion obtained from the overnight profile or provocative test was related to height or height velocity, nor to first year response to GH treatment. IGF-I and IGFBP-3 did not correlate with any of the GH secretion data. IGF-I and IGFBP-3 were related to height and height velocity at the start of GH treatment (r = 0.53 (P < 0.01) and r = 0.61 (P < 0.03) respectively). Rises in IGF-I and IGFBP-3 under GH treatment were related to the increment in height velocity (r = 0.70 (P < 0.01) and r = 0.71 (P < 0.02) respectively). Abnormalities in GH secretion are frequent in patients with Noonan syndrome and short stature. These abnormalities were not related to auxology at start of or response to GH treatment. Clinically GH insufficiency is not important in Noonan syndrome and monitoring spontaneous GH secretion is not necessary before the start of GH treatment.

Adolescent↗

Isolated complex I deficiency in children: clinical, biochemical and genetic aspects.

We retrospectively examined clinical and biochemical characteristics of 27 patients with isolated enzymatic complex I deficiency (established in cultured skin fibroblasts) in whom common pathogenic mtDNA point mutations and major rearrangements were absent. Clinical phenotypes present in this group are Leigh syndrome (n = 7), Leigh-like syndrome (n = 6), fatal infantile lactic acidosis (n = 3), neonatal cardiomyopathy with lactic acidosis (n = 3), macrocephaly with progressive leukodystrophy (n = 2), and a residual group of unspecified encephalomyopathy (n = 6) subdivided into progressive (n = 4) and stable (n = 2) variants. Isolated complex I deficiency is one of the most frequently observed disturbance of the OXPHOS system. Respiratory chain enzyme assays performed in cultured fibroblasts and skeletal muscle tissue in general reveal similar results, but for complete diagnostics we recommend enzyme measurements performed in at least two different tissues to minimize the possibility of overlooking the enzymatic diagnosis. Lactate levels in blood and CSF and cerebral CT/MRI studies are highly informative, although normal findings do not exclude complex I deficiency. With the discovery of mutations in nuclear encoded complex I subunits, adequate pre- and postnatal counseling becomes available. Finally, considering information currently available, isolated complex I deficiency in children seems to be caused in the majority by mutations in nuclear DNA.

Child↗

Clinical differences in patients with mitochondriocytopathies due to nuclear versus mitochondrial DNA mutations.

Defects in oxidative phosphorylation (OXPHOS) are genetically unique because the different components involved in this process, respiratory chain enzyme complexes (I, III, and IV) and complex V, are encoded by nuclear and mitochondrial genome. The objective of the study was to assess whether there are clinical differences in patients suffering from OXPHOS defects caused by nuclear or mitochondrial DNA (mtDNA) mutations. We studied 16 families with > or = two siblings with a genetically established OXPHOS deficiency, four due to a nuclear gene mutation and 12 due to a mtDNA mutation. Siblings with a nuclear gene mutation showed very similar clinical pictures that became manifest in the first years (ranging from first months to early childhood). There was a severe progressive course. Seven of the eight children died in their first decade. Conversely, siblings with a mtDNA mutation had clinical pictures that varied from almost alike to very distinct. They became symptomatic at an older age (ranging from childhood to adulthood), with the exception of defects associated with Leigh or Leigh-like phenotype. The clinical course was more gradual and relatively less severe; four of the 26 patients died, one in his second year, another in her second decade and two in their sixth decade. There are differences in age at onset, severity of clinical course, outcome, and intrafamilial variability in patients affected of an OXPHOS defect due to nuclear or mtDNA mutations. Patients with nuclear mutations become symptomatic at a young age, and have a severe clinical course. Patients with mtDNA mutations show a wider clinical spectrum of age at onset and severity. These differences may be of importance regarding the choice of which genome to study in affected patients as well as with respect to genetic counseling.

Adolescent↗

Nuclear genes and oxidative phosphorylation disorders: a review.

UNLABELLED: Knowledge concerning the approximately 70 human nuclear genes creating the essential building-blocks of the five multi-protein subunit complexes of the oxidative phosphorylation (OXPHOS) system has been expanded greatly in the past few years. However, knowledge concerning the numerous human genes involved in the regulation of transcription, translation, post-translational modification, mitochondrial signalling, import, quality control, folding and assembly of the OXPHOS system is still rather scanty. It may be expected that this scenario, by the application of direct (candidate gene identification by comparison between known genes in lower species and the human expressed sequence tag database) and indirect genetic strategies (the chromosome transfer technique, linkage analysis and positional cloning) will rapidly change. By now, a limited number of structural and non-structural nuclear gene defects have been found. CONCLUSION: This review summarises the state of our current knowledge of nuclear gene mutations in oxidative phosphorylation disorders.

DNA↗

A prognostic index as diagnostic strategy in children suspected of mitochondriocytopathy.

The aim of this study was to assess an optimal screening for paediatric patients suspected of mitochondriocytopathy to justify a muscle biopsy. Forty-five patients were included. Medical history, physical examination, cardiac and ophthalmologic evaluation, clinical chemical investigations, in vivo function tests, neuroimaging and a skeletal muscle biopsy were performed in all patients. The results of the biochemical muscle studies were compared with the results of the other investigations. First, parameters with a statistical relationship with the result in muscle, normal or deficient, were selected. Secondly, a prognostic index was constructed using these parameters. Five parameters were selected: age <4 years, elevated fasting lactate to pyruvate ratio, elevated thrombocyte count, elevated lactate, and elevated alanine. Each parameter was scored 0 (not present) or 1 (present). The chance of a normal biopsy with a given value of this index (sum of the scores) was calculated: logit (Pr) = alpha + beta x index; alpha: -0.8167 and beta: 0.8331. (Pr: probability of normal biopsy.) The chance of a normal biopsy with an index value of 5 is 0.03, 4 is 0.07, 3 is 0.16, 2 is 0.30, 1 is 0.50 and 0 is 0.69. This prognostic index is a valuable instrument in deciding whether the suspicion of mitochondriocytopathy is strong enough to merit a muscle biopsy.

Adolescent↗

Simvastatin. A new therapeutic approach for Smith-Lemli-Opitz syndrome.

The Smith-Lemli-Opitz syndrome (SLOS) is caused by deficient Delta(7)-dehydrocholesterol reductase, which catalyzes the final step of the cholesterol biosynthetic pathway, resulting in low cholesterol and high concentrations of its direct precursors 7-dehydrocholesterol (7DHC) and 8DHC. We hypothesized that i) 7DHC and 8DHC accumulation contributes to the poor outcome of SLOS patients and ii) blood exchange transfusions with hydroxymethylglutaryl (HMG)-CoA reductase inhibition would improve the precursor-to-cholesterol ratio and may improve the clinical outcome of SLO patients. First, an in vitro study was performed to study sterol exchange between plasma and erythrocyte membranes. Second, several exchange transfusions were carried out in vivo in two SLOS patients. Third, simvastatin was given for 23 and 14 months to two patients. The in vitro results illustrated rapid sterol exchange between plasma and erythrocyte membranes. The effect of exchange transfusion was impressive and prompt but the effect on plasma sterol levels lasted only for 3 days. In contrast, simvastatin treatment for several months demonstrated a lasting improvement of the precursor-to-cholesterol ratio in plasma, erythrocyte membranes, and cerebrospinal fluid (CSF). Plasma precursor concentrations decreased to 28 and 33% of the initial level, respectively, whereas the cholesterol concentration normalized by a more than twofold increase. During the follow-up period all morphometric parameters improved. The therapy was well tolerated and no unwanted clinical side effects occurred. This is the first study in which the blood cholesterol level in SLOS patients is normalized with a simultaneous significant decrease in precursor levels. There was a lasting biochemical improvement with encouraging clinical improvement. Statin therapy is a promising novel approach in SLOS that deserves further studies in larger series of patients.

Cholestadienols↗

Spinal muscular atrophy-like picture, cardiomyopathy, and cytochrome c oxidase deficiency.

The authors report a child with a spinal muscular atrophy (SMA)-like picture, cardiomyopathy, and cytochrome c oxidase (COX) deficiency. Electromyography and muscle biopsy showed findings typical of SMA. However, COX staining of the muscle was negative. DNA analysis did not detect deletions in the survival motor neuron (SMN) gene. The lactate and lactate-to-pyruvate ratios were increased in blood and CSF. COX activity was decreased in muscle and fibroblasts. Western blot analysis showed reduced contents for all COX subunits. Patients with clinical features resembling SMA but with an intact SMN gene should be screened for a mitochondrial disorder.

Blotting, Western↗

Preterm birth in Sjögren-Larsson syndrome.

Sjögren-Larsson syndrome (SLS) was originally described as a triad of spasticity, mental retardation and congenital ichthyosis. The syndrome reflects an underlying deficiency of microsomal fatty aldehyde dehydrogenase (FALDH). We report on clinical data concerning pregnancy, labor and neonatal period in 15 patients. Pregnancies were uncomplicated, except for preterm rupture of membranes in three pregnancies, and the occurrence of preterm birth. Mean gestational age was 35.3 weeks (S.D. 2.4 weeks), and preterm birth was found in 73% of the children, while all children were born before or in the 38th week of gestation. Birth weight was normal for gestational age in all patients. The neonatal period was free from serious complications, apart from hemolytic disease in two patients. Preterm birth was found in 7% of the healthy siblings, reflecting the normal population. Prematurity and spasticity are intrinsic and concurrent parts of SLS, without causal relation. SLS should be considered in every neonate with congenital ichthyosis, especially if the child is born preterm. A possible explanation for preterm birth in SLS could be the defective inactivation of leukotriene B4 (LTB4), which recently has been demonstrated in patients with SLS.

Aldehyde Dehydrogenase↗

Infantile motor neuron disease with autonomic dysfunction and bunina bodies.

A 2-month-old girl developed motor neuron disease (MND) with autonomic disturbances and died at the age of 5 months. Neuropathological examination revealed Bunina bodies (BBs) in the lower motor neurons of the lumbar spinal cord. The significance of the presence of BBs and the classification of the MND in this child are discussed.

Autonomic Nervous System Diseases↗

Laminin-alpha2 (merosin), beta-dystroglycan, alpha-sarcoglycan (adhalin), and dystrophin expression in congenital muscular dystrophies: an immunohistochemical study.

Muscle biopsies of 13 congenital muscular dystrophy (CMD) patients were investigated for the expression of laminin-alpha2 (merosin), beta-dystroglycan, alpha-sarcoglycan (adhalin) and dystrophin. Expression of these proteins was normal in six out of eight patients with pure-CMD, in three non-Japanese patients clinically resembling Fukuyama-CMD (F-CMD), and in two patients with Walker-Warburg syndrome (WWS). The two 'pure'-CMD patients with white matter hypodensity showed severely decreased laminin-alpha2 expression and normal expression of the other proteins. Our findings in the non-Japanese patients, clinically resembling F-CMD, are different from those in Japanese cases with F-CMD in the literature. Consequently, our patients suffer from WWS or from another yet undetermined form of CMD.

Basement Membrane↗

Effects of naso-gastric tube feeding on the nutritional status of children with cancer.

OBJECTIVE: To study the effect of sufficient energy intake, by means of the protocolized administration of naso-gastric tube feeding, on the nutritional status of a child with cancer. DESIGN: A comparative experimental study. SETTING: Tertiary care at the Centre for Pediatric Oncology, South East Netherlands, University Hospital, Nijmegen. SUBJECTS: Seven children, newly diagnosed with cancer, were included in the experimental study and all completed the trial period. Fourteen patients were included in the retrospective study. They were randomly chosen from a group of patients previously treated for a malignancy at our department and who had received naso-gastric tube feeding for at least 16 weeks. INTERVENTION: Protocolized (experimental group) vs non-protocolized (retrospective group) administration of naso-gastric tube feeding over a period of 16 weeks. The main difference was the amount of tube feeding administered. In addition to energy from other foods, children in the experimental group received 106+/-13% of their total daily energy requirements (TDER) by means of tube feeding, whereas children in the retrospective group had received 75+/-24%. MAIN OUTCOME MEASURES: Weight as a percentage of weight for height according to the 50th percentile of a healthy reference population=ideal weight. RESULTS: Weight, expressed as a percentage of the ideal weight, increased significantly in the experimental group (18.2 8.4; P=0.01) and the retrospective study group (5.2 7.3; P=0.001). However, the increase was statistically significant in favour of the experimental group (P=0.003), in which all the children reached their ideal weight, compared to 21% in the retrospective group. CONCLUSION: Aggressive protocolized nutritional intervention during the intensive phase of anti-cancer treatment, in the form of naso-gastric tube feeding that provides the child's total daily energy requirements, results in considerable improvement in the nutritional status.

Adolescent↗

Systemic infantile complex I deficiency with fatal outcome in two brothers.

A male infant presented at 5 months of age with vomiting, developmental stagnation and convulsions. Complex I activity was in skeletal muscle 0.025 mU/mU CS (N 0.044-0.265) and in fibroblasts 0.046 mU/mU CS (N 0.100-0.307). Despite riboflavine supplementation progressive neurological deterioration occurred and he died at 14 months of age. During the mother's following pregnancy complex I activity was measured in chorionic villi and found mildly reduced, pregnancy was continued. A male infant was born who presented at 7 months of age with vomiting, developmental stagnation and hypotonia. Complex I activity was in skeletal muscle 0.031 mU/mU CS and in fibroblasts 0.100 mU/mU CS. There was progressive neurological deterioration and he died at 17 months of age. Complex I activity in autopsy liver of both patients was normal. Apparently, complex I deficiency presenting in infancy can have a fatal outcome despite only mild reduction of enzyme activity in skeletal muscle and/or fibroblasts, and chorionic villi and normal activity in liver.

Chorionic Villi↗

[Malignant hyperthermia as a complication of anesthesia: predisposition is hereditary].

The frequency of malignant hyperthermia in the Netherlands is about 1 in 200,000 anaesthesias. Five times a year, an anaesthetic procedure will be complicated by a malignant hyperthermic metabolic disturbance, which can cause death if treatment is not instituted rapidly, by the administration of dantrolene. Suxamethonium and all the anaesthetic vapours can trigger such a reaction. Malignant hyperthermia patients are healthy patients who have a mutation of the ryanodine receptor gene RYR. Predisposition to malignant hyperthermia is inherited as an autosomal dominant condition. So far a genetic malignant hyperthermia test is not available because of genetic heterogeneity. The in-vitro contracture test in skeletal muscle is currently used as a diagnostic test for malignant hyperthermia. Patients who are likely to be at risk based on a clinical grading score, and family members with at least a 25% chance of inheriting malignant hyperthermia, are eligible for this test.

Calcium Channels↗

Favourable clinical course in an infant with severe deficiency of complex III of the respiratory chain combined with less severe deficiencies of complexes I, II and IV.

UNLABELLED: An infant with severe deficiency of complex III combined with less severe deficiencies of complexes I, II and IV of the mitochondrial respiratory chain in skeletal muscle tissue presented with intra-uterine growth retardation, generalized hypotonia and delayed motor development. In the following 3.5 years muscle tone and motor development gradually normalized whereas the lactic acidosis and enzyme activities did not improve. CONCLUSION: This report documents a favourable clinical course in a child with combined respiratory chain deficiency despite persistent biochemical abnormalities.

Child, Preschool↗

Clinical heterogeneity in respiratory chain complex III deficiency in childhood.

Six children are presented with an isolated complex III deficiency in muscle tissue. More specifically, oxidation rates and ATP+CrP production rates from both pyruvate and succinate as substrates and/or the activity of decylubiquinol:cytochrome c oxidoreductase were all markedly reduced. Complex III deficiency was also present in liver of two patients tested, but could not be demonstrated in cultured fibroblasts of four patients tested. Mitochondrial DNA, extracted from muscle, was analyzed; no deletions or common point mutations were found. Four patients presented with a multi-organ disorder. Among these patients three presented at neonatal age with neurological signs and lactate elevation in blood and CSF, of whom two had severe neonatal Fanconi syndrome. One child, aged seven years, had encephalomyopathy, ophthalmoplegia, retinopathy and Wolff-Parkinson-White syndrome. The remaining two patients exhibited myopathy only, within the first year of life. Thus, like in other respiratory chain disorders, patients with complex III deficiency may present at any age and show variable symptoms and outcome, ranging from neonatal death to failure to thrive only. Apparently there are no clinical findings which are specific for complex III deficiency.

Abnormalities, Multiple↗

Does impaired growth of PKU patients correlate with the strictness of dietary treatment? National Dutch PKU Steering Committee.

To assess whether growth retardation in patients with phenylketonuria (PKU) is related to the strictness of their dietary treatment, the relationship between Z scores for height up to 3 y of age and different indices of dietary control in 103 early treated Dutch PKU patients was studied. As indices of dietary control, the mean phenylalanine (Phe) concentration, the frequency of plasma Phe concentrations < 200 and < 120 micromol/l, and the standard deviation of the individual plasma Phe concentrations were studied. These measures of the dietary control were divided into quartiles. The mean Z score of the studied patients showed a decrease of 0.18/y (SD 0.36). No statistically significant difference between any of the quartiles of the studied indices with growth retardation was found. None of the used indices of dietary control based on plasma Phe concentrations showed a relationship between different degrees of the strictness of dietary treatment with growth retardation in Dutch PKU patients.

Body Height↗

Multicore myopathy with restrictive cardiomyopathy.

A 10-y-old girl is presented who suffered mild muscular weakness and exercise intolerance from the age of 1 y onwards, with progression appearing from the age of about 8 y. Multicore myopathy and restrictive cardiomyopathy were diagnosed. Literature concerning the coexistence of multicore myopathy and cardiomyopathy is reviewed.

Cardiomyopathy, Restrictive↗

Defects in the mitochondrial energy metabolism outside the respiratory chain and the pyruvate dehydrogenase complex.

Disturbances in substrate oxidations in muscle mitochondria from patients with a suspicion of a mitochondrial myopathy may arise from a deficiency of one or more of the complexes of the respiratory chain or of the pyruvate dehydrogenase complex. However, we found no clear-cut defect in a substantial part of such patients. In this report we discuss some of the other possibilities which could account for the disturbed substrate oxidation rates. Special attention will be paid to defects which are localized outside the respiratory chain, such as defects in post-respiratory chain enzymes, defects in transport mechanisms of the mitochondrial inner or outer membrane, deficiency of cofactors and deficiency of heat-shock protein.

Electron Transport↗