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Biomedical subjects

Fiona Stewart

Publications and source records attributed to Fiona Stewart.

10 recordsLinked to original sources

Twenty-six novel EFNB1 mutations in familial and sporadic craniofrontonasal syndrome (CFNS).

Craniofrontonasal syndrome (CFNS) is an X-linked disorder characterized by a more severe manifestation in heterozygous females than in hemizygous males. Heterozygous females have craniofrontonasal dysplasia (CFND) and occasionally extracranial manifestations including midline defects and skeletal abnormalities, whereas hemizygous males show no or only mild features such as hypertelorism and rarely show cleft lip or palate. Mutations in the EFNB1 gene in Xq12 are responsible for familial and sporadic CFNS. The EFNB1 gene encodes ephrin-B1, a transmembrane ligand that also exhibits receptor-like effects. We performed mutation analysis in nine unrelated families and 29 sporadic patients with CFNS. DNA sequencing revealed mutations in 33 (86.8%) cases including 26 distinct novel mutations. A recurrent nonsense mutation, c.196C>T/R66X, was detected in one family and four sporadic patients. The majority of mutations (26/33) were located in exons 2 and 3 of the EFNB1 gene encoding the extracellular ephrin domain. The mutation spectrum includes frameshift, nonsense, missense, and splice site mutations, with a predominance of frameshift and nonsense mutations resulting in premature truncation codons. For the first time we describe mutations in exons 4 and 5 of EFNB1. Of particular interest are the frameshift mutations located in the last 25 codons of EFNB1 encoding the carboxyterminal end of ephrin-B1. They result in an extension by 44 residues. These mutations disrupt the intracellular binding sites for Grb4 and PDZ-effector proteins involved in reverse signaling. We conclude that the major causes of familial as well as sporadic CFNS are loss of function mutations in the EFNB1 gene that comprise premature termination or abrogate receptor-ligand interaction, oligomerization, and ephrin-B1 reverse signaling.

Amino Acid Sequence↗

Assertiveness: making yourself heard in district nursing.

Being assertive is not the same as being aggressive. Assertiveness is a tool for expressing ourselves confidently, and a way of saying 'yes' and 'no' in an appropriate way. This article explores issues concerned with assertiveness in district nurse settings. It outlines helpful techniques to develop assertiveness, such as the broken record, fogging, negative assertion and negative inquiry.

Assertiveness↗

Clinical, MRI, and pathological features of polymicrogyria in chromosome 22q11 deletion syndrome.

Polymicrogyria is a brain malformation due to abnormal cortical organization. Two histological types, unlayered or four-layered can be distinguished. Polymicrogyria is a rare manifestation of chromosome 22q11 deletion syndrome. We report two boys with chromosome 22q11 deletion syndrome and polymicrogyria, and describe the neuropathological features of the malformation in one of them. Clinical examinations, EEG, brain MRI, chromosomal analysis with FISH, and neuropathological studies of surgically resected cortical tissue were performed. Both patients showed severe developmental delay with cardiovascular malformations and one of them had drug resistant epilepsy. Polymicrogyria was found in the frontal, parietal, and temporal areas, unilaterally in one patient and bilaterally in the other. Histology revealed four-layered polymicrogyria. The pathogenesis of polymicrogyria in 22q11 deletion syndrome is discussed.

Brain↗

Mutations of ARX are associated with striking pleiotropy and consistent genotype-phenotype correlation.

We recently identified mutations of ARX in nine genotypic males with X-linked lissencephaly with abnormal genitalia (XLAG), and in several female relatives with isolated agenesis of the corpus callosum (ACC). We now report 13 novel and two recurrent mutations of ARX, and one nucleotide change of uncertain significance in 20 genotypic males from 16 families. Most had XLAG, but two had hydranencephaly and abnormal genitalia, and three males from one family had Proud syndrome or ACC with abnormal genitalia. We obtained detailed clinical information on all 29 affected males, including the nine previously reported subjects. Premature termination mutations consisting of large deletions, frameshifts, nonsense mutations, and splice site mutations in exons 1 to 4 caused XLAG or hydranencephaly with abnormal genitalia. Nonconservative missense mutations within the homeobox caused less severe XLAG, while conservative substitution in the homeodomain caused Proud syndrome. A nonconservative missense mutation near the C-terminal aristaless domain caused unusually severe XLAG with microcephaly and mild cerebellar hypoplasia. In addition, several less severe phenotypes without malformations have been reported, including mental retardation with cryptogenic infantile spasms (West syndrome), other seizure types, dystonia or autism, and nonsyndromic mental retardation. The ARX mutations associated with these phenotypes have included polyalanine expansions or duplications, missense mutations, and one deletion of exon 5. Together, the group of phenotypes associated with ARX mutations demonstrates remarkable pleiotropy, but also comprises a nearly continuous series of developmental disorders that begins with hydranencephaly, lissencephaly, and agenesis of the corpus callosum, and ends with a series of overlapping syndromes with apparently normal brain structure.

Abnormalities, Multiple↗

Homozygous loss of a cysteine residue in the glucocerebrosidase gene results in Gaucher's disease with a hydropic phenotype.

Acute neuronopathic Gaucher's disease is classically considered to be a disease of late infancy, but also includes a spectrum of variant phenotypes such as perinatal lethal hydrops, or the collodian baby phenotype in the newborn period. These extreme phenotypes are frequently associated with recombinant alleles, nonsense mutations and rare missense mutations. In this report, we present a family with multiple incidence of a hydrops where Gaucher's disease was confirmed. Mutational analysis revealed the homozygosity for the missense mutation C16S, which is located in exon 3 and results in the loss of a cysteine residue. This genotype would be predicted to result in virtually zero enzyme activity.

Consanguinity↗

Competency-based training of basic trainees using human cadavers.

BACKGROUND: Increasing constraints on operative training in the clinical setting provide impetus for the development of alternative training models. Anatomy dissection courses utilizing human cadavers have been useful in imparting knowledge of human anatomy for surgical trainees. The present study evaluates the impact of competency-based technical skills instruction as an adjunct to cadaveric dissection courses on the procedural skills of basic surgical trainees (BST). METHODS: A single cohort of BST was prospectively evaluated regarding their self-reported confidence and competency in performing saphenous vein cutdowns immediately before and after an anatomy dissection course. RESULTS: Nine BST were evaluated (66% were male). One subject withdrew from the study, leaving eight BST for final analysis. Mean number of years since graduation from medical school was 2.5 years (range: 2-4 years). Seven BST were in their first year of training. All subjects had completed an early management of severe trauma (EMST) course. Total prior experience of saphenous vein cutdowns for all subjects was a single attempt on a sheep cadaver at the EMST course. The percentage of BST expressing little or no confidence in performing cutdowns decreased after the dissection course (50% vs 0, P < 0.05). Mean time taken for completion of cutdown decreased after the dissection course. (5 min 52 s vs 3 min 52 s, P < 0.05). Mean size of incision used to perform cutdown decreased after the course. (4.5 cm vs 3.4 cm, P < 0.05). The percentage of subjects experiencing complications during cutdown decreased after the course (38% vs 0, P < 0.05). CONCLUSIONS: Anatomy dissection courses using human cadavers may contribute to improving the confidence and competency of BST in performing saphenous vein cutdowns. Technical training components should be considered as an adjunct to future anatomy dissection courses involving surgical trainees.

Anatomy↗

Association of mutation position in polycystic kidney disease 1 (PKD1) gene and development of a vascular phenotype.

BACKGROUND: Patients with autosomal dominant polycystic kidney disease (ADPKD) are at risk of developing intracranial aneurysms, and subarachnoid haemorrhage is a major cause of death and disability. Familial clustering of intracranial aneurysms suggests that genetic factors are important in the aetiology. We tested whether the germline mutation predisposes to this vascular phenotype. METHODS: DNA samples from patients with ADPKD and vascular complications were screened for mutations throughout the PKD1 and PKD2 genes. Comparisons were made between the PKD1 and PKD2 populations and with a control PKD1 cohort (without the vascular phenotype). FINDINGS: Mutations were characterised in 58 ADPKD families with vascular complications; 51 were PKD1 (88%) and seven PKD2 (12%). The median position of the PKD1 mutation was significantly further 59 in the vascular population than in the 87 control pedigrees (aminoacid position 2163 vs 2773, p=0.0034). Subsets of the vascular population with aneurysmal rupture, early rupture, or families with more than one vascular case had median mutation locations further 59 (aminoacid position 1811, p=0.0018; 1671, p=0.0052; and 1587, p=0.0003). INTERPRETATION: Patients with PKD2, as well as those with PKD1, are at risk of intracranial aneurysm. The position of the mutation in PKD1 is predictive for development of intracranial aneurysms (59 mutations are more commonly associated with vascular disease) and is therefore of prognostic importance. Since the PKD1 phenotype is associated with mutation position, the disease is not simply due to loss of all disease allele products.

Adult↗

Microgastria-limb reduction anomaly with total amelia.

The Microgastria-limb reduction anomaly is a rare disorder of unknown aetiology in which microgastria is associated with limb defects, along with splenic and other variable congenital abnormalities. In 15 previously reported cases, none have had the most extreme form of amelia. We report the clinical progress of a 3-year-old girl with severe microgastria and total amelia who has been managed conservatively with minimal surgical intervention.

Abnormalities, Multiple↗

Evaluating the clinical effectiveness and cost-effectiveness of foot orthoses in the treatment of plantar heel pain: a feasibility study.

This study evaluated the clinical effectiveness and cost-effectiveness of two different types of foot orthoses used to treat plantar heel pain. Forty-eight patients were randomly assigned to receive either a functional or an accommodative orthosis. General (EuroQol) and specific (Foot Health Status Questionnaire) health-status measures were used. Data were also collected using economic questionnaires relating to National Health Service costs for podiatry, other health-service costs, and patient costs. Data were measured at baseline and at 4- and 8-week intervals. Thirty-five patients completed the study. The results demonstrated a significant decrease in foot pain and a significant increase in foot function with the functional foot orthoses over the 8-week trial. The accommodative foot orthoses demonstrated a significant reduction in foot pain only at 4 weeks. The cost-effectiveness analysis demonstrated that functional orthoses, although initially more expensive, result in a better quality of life. Use of functional orthoses resulted in an increased cost of pound 17.99 (32.74 dollars) per patient, leading to an incremental cost per quality-adjusted life year of pound 1,650 (3,003 dollars) for functional orthoses.

Adult↗