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1.
Brain ; 146(10): 4233-4246, 2023 10 03.
Article in English | MEDLINE | ID: mdl-37186601

ABSTRACT

In utero exposure to maternal antibodies targeting the fetal acetylcholine receptor isoform (fAChR) can impair fetal movement, leading to arthrogryposis multiplex congenita (AMC). Fetal AChR antibodies have also been implicated in apparently rare, milder myopathic presentations termed fetal acetylcholine receptor inactivation syndrome (FARIS). The full spectrum associated with fAChR antibodies is still poorly understood. Moreover, since some mothers have no myasthenic symptoms, the condition is likely underreported, resulting in failure to implement effective preventive strategies. Here we report clinical and immunological data from a multicentre cohort (n = 46 cases) associated with maternal fAChR antibodies, including 29 novel and 17 previously reported with novel follow-up data. Remarkably, in 50% of mothers there was no previously established myasthenia gravis (MG) diagnosis. All mothers (n = 30) had AChR antibodies and, when tested, binding to fAChR was often much greater than that to the adult AChR isoform. Offspring death occurred in 11/46 (23.9%) cases, mainly antenatally due to termination of pregnancy prompted by severe AMC (7/46, 15.2%), or during early infancy, mainly from respiratory failure (4/46, 8.7%). Weakness, contractures, bulbar and respiratory involvement were prominent early in life, but improved gradually over time. Facial (25/34; 73.5%) and variable peripheral weakness (14/32; 43.8%), velopharyngeal insufficiency (18/24; 75%) and feeding difficulties (16/36; 44.4%) were the most common sequelae in long-term survivors. Other unexpected features included hearing loss (12/32; 37.5%), diaphragmatic paresis (5/35; 14.3%), CNS involvement (7/40; 17.5%) and pyloric stenosis (3/37; 8.1%). Oral salbutamol used empirically in 16/37 (43.2%) offspring resulted in symptom improvement in 13/16 (81.3%). Combining our series with all previously published cases, we identified 21/85 mothers treated with variable combinations of immunotherapies (corticosteroids/intravenous immunoglobulin/plasmapheresis) during pregnancy either for maternal MG symptom control (12/21 cases) or for fetal protection (9/21 cases). Compared to untreated pregnancies (64/85), maternal treatment resulted in a significant reduction in offspring deaths (P < 0.05) and other complications, with treatment approaches involving intravenous immunoglobulin/ plasmapheresis administered early in pregnancy most effective. We conclude that presentations due to in utero exposure to maternal (fetal) AChR antibodies are more common than currently recognized and may mimic a wide range of neuromuscular disorders. Considering the wide clinical spectrum and likely diversity of underlying mechanisms, we propose 'fetal acetylcholine receptor antibody-related disorders' (FARAD) as the most accurate term for these presentations. FARAD is vitally important to recognize, to institute appropriate management strategies for affected offspring and to improve outcomes in future pregnancies. Oral salbutamol is a symptomatic treatment option in survivors.


Subject(s)
Arthrogryposis , Myasthenia Gravis , Neuromuscular Diseases , Pregnancy , Female , Adult , Humans , Immunoglobulins, Intravenous , Receptors, Cholinergic , Myasthenia Gravis/therapy , Myasthenia Gravis/complications , Autoantibodies , Arthrogryposis/complications
2.
Acta Neuropathol ; 141(3): 431-453, 2021 03.
Article in English | MEDLINE | ID: mdl-33449170

ABSTRACT

Mutations in the sarcomeric protein titin, encoded by TTN, are emerging as a common cause of myopathies. The diagnosis of a TTN-related myopathy is, however, often not straightforward due to clinico-pathological overlap with other myopathies and the prevalence of TTN variants in control populations. Here, we present a combined clinico-pathological, genetic and biophysical approach to the diagnosis of TTN-related myopathies and the pathogenicity ascertainment of TTN missense variants. We identified 30 patients with a primary TTN-related congenital myopathy (CM) and two truncating variants, or one truncating and one missense TTN variant, or homozygous for one TTN missense variant. We found that TTN-related myopathies show considerable overlap with other myopathies but are strongly suggested by a combination of certain clinico-pathological features. Presentation was typically at birth with the clinical course characterized by variable progression of weakness, contractures, scoliosis and respiratory symptoms but sparing of extraocular muscles. Cardiac involvement depended on the variant position. Our biophysical analyses demonstrated that missense mutations associated with CMs are strongly destabilizing and exert their effect when expressed on a truncating background or in homozygosity. We hypothesise that destabilizing TTN missense mutations phenocopy truncating variants and are a key pathogenic feature of recessive titinopathies that might be amenable to therapeutic intervention.


Subject(s)
Connectin/genetics , Myotonia Congenita/diagnosis , Myotonia Congenita/genetics , Myotonia Congenita/pathology , Adolescent , Adult , Aged , Child , Child, Preschool , Female , Humans , Infant , Male , Middle Aged , Mutation, Missense , Young Adult
3.
Child Care Health Dev ; 45(1): 89-95, 2019 01.
Article in English | MEDLINE | ID: mdl-30255632

ABSTRACT

BACKGROUND: Incidence of paediatric stroke has been estimated to range from 1.2 to 13 per 100,000 children under 18 years of age. It is a significant cause of long-term morbidity in children with long-term impacts on physical, cognitive, psychological, and social outcomes. However, little is known about the experiences of parents caring for a child with stroke. Such information is needed to inform the development of child- and family-centred care. METHODS: We conducted in-depth interviews with parents of children with stroke. Participants were purposively sampled from three regional specialist services in England, based on the age of the child at stroke onset and time since first stroke. Interviews used a topic guide and were audio recorded and transcribed in full. Thematic analysis was conducted to develop an account that reflected patients' experiences from their own perspectives. RESULTS: Twelve parents participated with five children classified as having no to mild deficits and seven with moderate to severe deficits. Parents were concerned about the effects of stroke on the child's psychological, cognitive, and social well-being. Significant impacts on parents own well-being and on the family were reported. Although most experienced good quality acute care, meeting the child's needs after hospital discharge was problematic, with low levels of awareness of paediatric stroke among professionals and difficulties accessing relevant information and services. Meeting special education needs was variable. Parents were proactive in seeking to establish a sense of normality for the child and themselves. CONCLUSIONS: The findings illuminate a wider picture of paediatric stroke than indicated by clinical outcomes alone. Parents' experiences varied according to the child's needs but also family's situation and geographical location. Particular attention should be paid to co-ordinating services to meet multiple needs after discharge from hospital.


Subject(s)
Continuity of Patient Care/statistics & numerical data , Disabled Children/psychology , Parents/psychology , School Health Services/statistics & numerical data , Stroke Rehabilitation/psychology , Stroke/psychology , Access to Information , Activities of Daily Living , Adolescent , Adult , Child , Child, Preschool , Disabled Children/rehabilitation , England/epidemiology , Female , Health Knowledge, Attitudes, Practice , Health Services Needs and Demand , Health Surveys , Humans , Infant , Infant, Newborn , Male , Middle Aged , Parents/education , Physical Therapy Modalities/statistics & numerical data , Qualitative Research , Quality of Life , School Teachers , Social Support , Stroke/epidemiology , Stroke/physiopathology
4.
J Neurol Neurosurg Psychiatry ; 89(7): 762-768, 2018 07.
Article in English | MEDLINE | ID: mdl-29437916

ABSTRACT

BACKGROUND: Defects in glycosylation of alpha-dystroglycan (α-DG) cause autosomal-recessive disorders with wide clinical and genetic heterogeneity, with phenotypes ranging from congenital muscular dystrophies to milder limb girdle muscular dystrophies. Patients show variable reduction of immunoreactivity to antibodies specific for glycoepitopes of α-DG on a muscle biopsy. Recessive mutations in 18 genes, including guanosine diphosphate mannose pyrophosphorylase B (GMPPB), have been reported to date. With no specific clinical and pathological handles, diagnosis requires parallel or sequential analysis of all known genes. METHODS: We describe clinical, genetic and biochemical findings of 21 patients with GMPPB-associated dystroglycanopathy. RESULTS: We report eight novel mutations and further expand current knowledge on clinical and muscle MRI features of this condition. In addition, we report a consistent shift in the mobility of beta-dystroglycan (ß-DG) on Western blot analysis of all patients analysed by this mean. This was only observed in patients with GMPPB in our large dystroglycanopathy cohort. We further demonstrate that this mobility shift in patients with GMPPB was due to abnormal N-linked glycosylation of ß-DG. CONCLUSIONS: Our data demonstrate that a change in ß-DG electrophoretic mobility in patients with dystroglycanopathy is a distinctive marker of the molecular defect in GMPPB.


Subject(s)
Dystroglycans/metabolism , Guanosine Diphosphate Mannose/genetics , Muscular Dystrophies/genetics , Muscular Dystrophies/metabolism , Mutation/genetics , Nucleotidyltransferases/genetics , Adolescent , Aged , Biomarkers/metabolism , Child , Child, Preschool , Cohort Studies , Female , Humans , Male , Middle Aged , Muscular Dystrophies/pathology
6.
J Biol Chem ; 291(29): 14939-53, 2016 07 15.
Article in English | MEDLINE | ID: mdl-27226619

ABSTRACT

Mutations of HSPB5 (also known as CRYAB or αB-crystallin), a bona fide heat shock protein and molecular chaperone encoded by the HSPB5 (crystallin, alpha B) gene, are linked to multisystem disorders featuring variable combinations of cataracts, cardiomyopathy, and skeletal myopathy. This study aimed to investigate the pathological mechanisms involved in an early-onset myofibrillar myopathy manifesting in a child harboring a homozygous recessive mutation in HSPB5, 343delT. To study HSPB5 343delT protein dynamics, we utilize model cell culture systems including induced pluripotent stem cells derived from the 343delT patient (343delT/343delT) along with isogenic, heterozygous, gene-corrected control cells (WT KI/343delT) and BHK21 cells, a cell line lacking endogenous HSPB5 expression. 343delT/343delT and WT KI/343delT-induced pluripotent stem cell-derived skeletal myotubes and cardiomyocytes did not express detectable levels of 343delT protein, contributable to the extreme insolubility of the mutant protein. Overexpression of HSPB5 343delT resulted in insoluble mutant protein aggregates and induction of a cellular stress response. Co-expression of 343delT with WT prevented visible aggregation of 343delT and improved its solubility. Additionally, in vitro refolding of 343delT in the presence of WT rescued its solubility. We demonstrate an interaction between WT and 343delT both in vitro and within cells. These data support a loss-of-function model for the myopathy observed in the patient because the insoluble mutant would be unavailable to perform normal functions of HSPB5, although additional gain-of-function effects of the mutant protein cannot be excluded. Additionally, our data highlight the solubilization of 343delT by WT, concordant with the recessive inheritance of the disease and absence of symptoms in carrier individuals.


Subject(s)
Cardiomyopathies/genetics , Cardiomyopathies/metabolism , Cataract/genetics , Cataract/metabolism , Muscular Diseases/genetics , Muscular Diseases/metabolism , alpha-Crystallin B Chain/genetics , alpha-Crystallin B Chain/metabolism , Cardiomyopathies/etiology , Cataract/etiology , Female , Homozygote , Humans , Induced Pluripotent Stem Cells/metabolism , Male , Models, Biological , Muscle Fibers, Skeletal/metabolism , Muscular Diseases/etiology , Mutant Proteins/chemistry , Mutant Proteins/genetics , Mutant Proteins/metabolism , Myocytes, Cardiac/metabolism , Pedigree , Protein Aggregation, Pathological/genetics , Protein Aggregation, Pathological/metabolism , RNA, Messenger/genetics , RNA, Messenger/metabolism , Recombinant Proteins/chemistry , Recombinant Proteins/genetics , Recombinant Proteins/metabolism , Sequence Deletion , Solubility , alpha-Crystallin B Chain/chemistry
7.
Ann Neurol ; 79(5): 784-793, 2016 May.
Article in English | MEDLINE | ID: mdl-26928665

ABSTRACT

OBJECTIVE: Arterial ischemic stroke (AIS) is an important cause of acquired brain injury in children. Few prospective population-based studies of childhood AIS have been completed. We aimed to investigate the outcome of childhood AIS 12 months after the event in a population-based cohort. METHODS: Children aged 29 days to < 16 years with radiologically confirmed AIS occurring over a 1-year period residing in southern England (population = 5.99 million children) were eligible for inclusion. Outcome was assessed during a home visit using the Pediatric Stroke Outcome Measure (PSOM). Parental impressions of recovery were assessed using the Pediatric Stroke Recurrence and Recovery Questionnaire. PSOM score was estimated via telephone interview or clinician interview whenever home visit was not possible. RESULTS: Ninety-six children with AIS were identified. Two children were lost to follow-up. Nine of 94 (10%) children died before the 12-month follow-up. One child had an AIS recurrence. PSOM scores were available for 78 of 85 living children at follow-up. Thirty-nine of 78 (50%) had a good outcome (total PSOM score < 1), and 39 of 78 (50%) had a poor outcome. Seizures at onset of AIS were associated with a poor outcome (odds ratio = 3.5, 95% confidence interval = 1.16-10.6). Twenty-eight of 73 (38%) children were judged by their carers to have fully recovered. Ten of 84 (12%) children had recurrent seizures, and 17 of 84 (20%) reported recurrent headaches. INTERPRETATION: AIS carries a significant risk of mortality and long-term neurological deficit. However, the rates of mortality, recurrence, and neurological impairment were markedly lower in this study than previously published figures in the United Kingdom. Ann Neurol 2016;79:784-793.

8.
Am J Hum Genet ; 93(1): 29-41, 2013 Jul 11.
Article in English | MEDLINE | ID: mdl-23768512

ABSTRACT

Congenital muscular dystrophies with hypoglycosylation of α-dystroglycan (α-DG) are a heterogeneous group of disorders often associated with brain and eye defects in addition to muscular dystrophy. Causative variants in 14 genes thought to be involved in the glycosylation of α-DG have been identified thus far. Allelic mutations in these genes might also cause milder limb-girdle muscular dystrophy phenotypes. Using a combination of exome and Sanger sequencing in eight unrelated individuals, we present evidence that mutations in guanosine diphosphate mannose (GDP-mannose) pyrophosphorylase B (GMPPB) can result in muscular dystrophy variants with hypoglycosylated α-DG. GMPPB catalyzes the formation of GDP-mannose from GTP and mannose-1-phosphate. GDP-mannose is required for O-mannosylation of proteins, including α-DG, and it is the substrate of cytosolic mannosyltransferases. We found reduced α-DG glycosylation in the muscle biopsies of affected individuals and in available fibroblasts. Overexpression of wild-type GMPPB in fibroblasts from an affected individual partially restored glycosylation of α-DG. Whereas wild-type GMPPB localized to the cytoplasm, five of the identified missense mutations caused formation of aggregates in the cytoplasm or near membrane protrusions. Additionally, knockdown of the GMPPB ortholog in zebrafish caused structural muscle defects with decreased motility, eye abnormalities, and reduced glycosylation of α-DG. Together, these data indicate that GMPPB mutations are responsible for congenital and limb-girdle muscular dystrophies with hypoglycosylation of α-DG.


Subject(s)
Dystroglycans/metabolism , Muscular Dystrophies, Limb-Girdle/genetics , Mutation, Missense , Nucleotidyltransferases/metabolism , Animals , Child, Preschool , DNA Mutational Analysis/methods , Dystroglycans/genetics , Eye Abnormalities/pathology , Female , Fibroblasts/enzymology , Fibroblasts/pathology , Genetic Association Studies/methods , Glycosylation , Guanosine Diphosphate Mannose/metabolism , Heterozygote , Humans , Infant , Infant, Newborn , Male , Muscle, Skeletal/enzymology , Muscle, Skeletal/pathology , Muscular Dystrophies, Limb-Girdle/enzymology , Nucleotidyltransferases/genetics , Zebrafish/genetics , Zebrafish/metabolism
9.
Am J Hum Genet ; 90(1): 25-39, 2012 Jan 13.
Article in English | MEDLINE | ID: mdl-22209248

ABSTRACT

Spontaneous pathologic arterial calcifications in childhood can occur in generalized arterial calcification of infancy (GACI) or in pseudoxanthoma elasticum (PXE). GACI is associated with biallelic mutations in ENPP1 in the majority of cases, whereas mutations in ABCC6 are known to cause PXE. However, the genetic basis in subsets of both disease phenotypes remains elusive. We hypothesized that GACI and PXE are in a closely related spectrum of disease. We used a standardized questionnaire to retrospectively evaluate the phenotype of 92 probands with a clinical history of GACI. We obtained the ENPP1 genotype by conventional sequencing. In those patients with less than two disease-causing ENPP1 mutations, we sequenced ABCC6. We observed that three GACI patients who carried biallelic ENPP1 mutations developed typical signs of PXE between 5 and 8 years of age; these signs included angioid streaks and pseudoxanthomatous skin lesions. In 28 patients, no disease-causing ENPP1 mutation was found. In 14 of these patients, we detected pathogenic ABCC6 mutations (biallelic mutations in eight patients, monoallelic mutations in six patients). Thus, ABCC6 mutations account for a significant subset of GACI patients, and ENPP1 mutations can also be associated with PXE lesions in school-aged children. Based on the considerable overlap of genotype and phenotype of GACI and PXE, both entities appear to reflect two ends of a clinical spectrum of ectopic calcification and other organ pathologies, rather than two distinct disorders. ABCC6 and ENPP1 mutations might lead to alterations of the same physiological pathways in tissues beyond the artery.


Subject(s)
Multidrug Resistance-Associated Proteins/genetics , Mutation , Phosphoric Diester Hydrolases/genetics , Pseudoxanthoma Elasticum/genetics , Pyrophosphatases/genetics , Vascular Calcification/genetics , Angioid Streaks/genetics , Base Sequence , Child , Child, Preschool , Female , Humans , Infant , Male , Molecular Sequence Data , Pseudoxanthoma Elasticum/pathology , Retrospective Studies , Surveys and Questionnaires , Vascular Calcification/pathology
10.
J Neurol Neurosurg Psychiatry ; 86(8): 917-21, 2015 Aug.
Article in English | MEDLINE | ID: mdl-25342203

ABSTRACT

BACKGROUND: Stroke is a major cause of mortality in children. Conditions that mimic stroke also cause severe morbidity and require prompt diagnosis and treatment. We have investigated the time to diagnosis in a cohort of children with stroke. METHODS: A population-based cohort of children with stroke was prospectively identified in the south of England. Case notes, electronic hospital admission databases and radiology records were reviewed. Timing of symptom onset, presentation to hospital, first neuroimaging, first diagnostic neuroimaging and presenting clinical features were recorded. RESULTS: Ninety-six children with an arterial ischaemic stroke (AIS) and 43 with a haemorrhagic stroke (HS) were identified. The median time from symptom onset to diagnostic neuroimaging was 24.3 h in AIS and 2.9 h in HS. The initial imaging modality was CT in 68% of cases of AIS. CT was diagnostic of AIS in 66% of cases. MRI was diagnostic in 100%. If initial neuroimaging was non-diagnostic in AIS, then median time to diagnosis was 44 h. CT was diagnostic in 95% of HS cases. Presentation outside normal working hours resulted in delayed neuroimaging in AIS (13 vs 3 h, p=0.032). Diffuse neurological signs or a Glasgow Coma Scale <9 resulted in more expeditious neuroimaging in both HS and AIS. CONCLUSIONS: The diagnosis of AIS in children is delayed at every stage of the pathway but most profoundly when the first neuroimaging is CT scanning, which is non-diagnostic. MRI should be the initial imaging modality of choice in any suspected case of childhood AIS.


Subject(s)
Delayed Diagnosis/statistics & numerical data , Stroke/diagnosis , Adolescent , Child , Child, Preschool , Female , Humans , Infant , Infant, Newborn , Magnetic Resonance Imaging , Male , Neuroimaging/statistics & numerical data , Prospective Studies , Time Factors , Tomography, X-Ray Computed
11.
Cochrane Database Syst Rev ; (10): CD005375, 2015 Oct 01.
Article in English | MEDLINE | ID: mdl-26423318

ABSTRACT

BACKGROUND: Scoliosis in patients with Duchenne muscular dystrophy (DMD) is usually progressive and is treated with surgery. However, it is unclear whether the existing evidence is sufficiently scientifically rigorous to support a recommendation for spinal surgery for most patients with DMD and scoliosis. This is an updated review, and an updated search was undertaken in which no new studies were found for inclusion. OBJECTIVES: To determine the effectiveness and safety of spinal surgery in patients with DMD with scoliosis. We intended to test whether spinal surgery is effective in increasing survival and improving respiratory function, quality of life, and overall functioning, and whether spinal surgery is associated with severe adverse effects. SEARCH METHODS: On 16 June 2015 we searched the Cochrane Neuromuscular Disease Group Specialized Register, the Cochrane Central Register of Controlled Trials (CENTRAL), MEDLINE, EMBASE, and CINAHL Plus. We also searched ProQuest Dissertation and Thesis database (January 1980 to June 2015), the National Institutes of Health Clinical Trials Database (6 January 2015), and the WHO International Clinical Trials Registry Platform (17 June 2015), and checked references. We imposed no language restrictions. SELECTION CRITERIA: We planned to include controlled clinical trials using random or quasi-random allocation of treatment evaluating all forms of spinal surgery for scoliosis in patients with DMD in the review. The control interventions would have been no treatment, non-operative treatment, or a different form of spinal surgery. DATA COLLECTION AND ANALYSIS: We used standard methodological procedures expected by The Cochrane Collaboration. Two review authors independently examined the search results and evaluated the study characteristics against inclusion criteria in order to decide which studies to include in the review. MAIN RESULTS: Of the 49 relevant studies we found, none met the inclusion criteria for the review because they were not clinical trials, but prospective or retrospective reviews of case series. AUTHORS' CONCLUSIONS: Since no randomized controlled clinical trials were available to evaluate the effectiveness of scoliosis surgery in patients with DMD, we can make no good evidence-based conclusion to guide clinical practice. Patients with scoliosis should be informed as to the uncertainty of benefits and potential risks of surgery for scoliosis. Randomized controlled trials are needed to investigate the effectiveness of scoliosis surgery, in terms of quality of life, functional status, respiratory function, and life expectancy.


Subject(s)
Muscular Dystrophy, Duchenne/complications , Scoliosis/surgery , Humans , Scoliosis/complications , Spine/surgery
12.
Hum Mutat ; 35(7): 868-79, 2014 Jul.
Article in English | MEDLINE | ID: mdl-24664454

ABSTRACT

Laing early onset distal myopathy and myosin storage myopathy are caused by mutations of slow skeletal/ß-cardiac myosin heavy chain encoded by the gene MYH7, as is a common form of familial hypertrophic/dilated cardiomyopathy. The mechanisms by which different phenotypes are produced by mutations in MYH7, even in the same region of the gene, are not known. To explore the clinical spectrum and pathobiology, we screened the MYH7 gene in 88 patients from 21 previously unpublished families presenting with distal or generalized skeletal muscle weakness, with or without cardiac involvement. Twelve novel mutations have been identified in thirteen families. In one of these families, the father of the proband was found to be a mosaic for the MYH7 mutation. In eight cases, de novo mutation appeared to have occurred, which was proven in four. The presenting complaint was footdrop, sometimes leading to delayed walking or tripping, in members of 17 families (81%), with other presentations including cardiomyopathy in infancy, generalized floppiness, and scoliosis. Cardiac involvement as well as skeletal muscle weakness was identified in nine of 21 families. Spinal involvement such as scoliosis or rigidity was identified in 12 (57%). This report widens the clinical and pathological phenotypes, and the genetics of MYH7 mutations leading to skeletal muscle diseases.


Subject(s)
Cardiac Myosins/genetics , Distal Myopathies/diagnosis , Distal Myopathies/genetics , Mutation , Myosin Heavy Chains/genetics , Phenotype , Adolescent , Adult , Aged , Biopsy , Cardiac Myosins/metabolism , Child , Child, Preschool , DNA Mutational Analysis , Female , Humans , Immunohistochemistry , Infant , Infant, Newborn , Male , Middle Aged , Muscle, Skeletal/pathology , Myosin Heavy Chains/metabolism , Young Adult
13.
J Peripher Nerv Syst ; 19(3): 246-9, 2014 Sep.
Article in English | MEDLINE | ID: mdl-25413786

ABSTRACT

The pathogenesis of Guillain-Barré syndrome (GBS) is considered to be, at least in part, mediated by autoantibodies directed against neuronal antigens. Antibodies to contactin-associated protein-like 2 (CASPR2), part of the voltage-gated potassium channel complex (VGKC-complex), are associated with neurological disease predominantly affecting the peripheral nervous system but are not known to be associated with GBS. We report two cases of ganglioside antibody-negative paediatric GBS associated with CASPR2 antibodies. Both patients made a complete clinical recovery. The tissue distribution and function of CASPR2 make it a biologically plausible autoimmune target in GBS and its clinical relevance in GBS should be determined in further studies.


Subject(s)
Guillain-Barre Syndrome/immunology , Membrane Proteins/immunology , Nerve Tissue Proteins/immunology , Autoantibodies , Child , Child, Preschool , Humans , Male
14.
J Neuromuscul Dis ; 11(2): 361-368, 2024.
Article in English | MEDLINE | ID: mdl-38189761

ABSTRACT

Background: Spinal muscular atrophy (SMA) is a progressive neuromuscular disease caused by mutations in Survival motor neuron 1 (SMN1) gene, leading to reduction in survival motor neuron protein (SMN), key for motor neuron survival and function in the brainstem and spinal cord. Risdiplam is an orally administered SMN2-splicing modifier which increases production of functional SMN protein. Risdiplam was offered in the UK under early access to medicines scheme (EAMS) to SMA type 1 and 2 patients aged 2 months and older, not suitable for authorised treatments from September 2020 to December 2021. Objective: To describe the largest paediatric European real-world set of data on patients' characteristics and short-term safety for risdiplam in Great Britain through EAMS. Methods: We collated data from SMA REACH UK a national clinical and research network for all patients enrolled onto EAMS and assessed all submitted adverse events. Results: Of the 92 patients; 78% were Type 2 SMA, mean age 10.9 years, range 0-17 years. 56 were treatment naïve, 33 previously treated; of these 25 had received nusinersen, 3 previous treatment unknown. Sixty adverse events (AEs) were reported occurring in 34 patients. The commonest were respiratory tract infections and gastrointestinal disturbance. Four life-threatening events were reported with 2 deaths and permanent cessation of risdiplam in 3 patients.Overall, 38/60 AEs were considered unrelated to risdiplam, 10/60 related to risdiplam and for 12/60 causality not specified. Conclusions: This study found a safety profile similar to clinical trials with no new safety concerns identified. With the restricted eligibility of onasemnogene abeparvovec and complications of nusinersen administration, EAMS allowed access or continued treatment to naïve patients or patients no longer suitable for approved medications. Collection of longitudinal data for this complex population is needed, to provide greater insights into risdiplam's role in addressing patients' needs into the future.


Subject(s)
Azo Compounds , Muscular Atrophy, Spinal , Spinal Muscular Atrophies of Childhood , Humans , Child , Infant, Newborn , Infant , Child, Preschool , Adolescent , United Kingdom , Muscular Atrophy, Spinal/drug therapy , Muscular Atrophy, Spinal/genetics , Spinal Muscular Atrophies of Childhood/drug therapy , Pyrimidines/adverse effects
15.
Lancet Reg Health Eur ; 37: 100817, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38169987

ABSTRACT

Background: Real-world data on the efficacy and safety of onasemnogene abeparvovec (OA) in spinal muscular atrophy (SMA) are needed, especially to overcome uncertainties around its use in older and heavier children. This study evaluated the efficacy and safety of OA in patients with SMA type 1 in the UK, including patients ≥2 years old and weighing ≥13.5 kg. Methods: This observational cohort study used data from patients with genetically confirmed SMA type 1 treated with OA between May 2021 and January 2023, at 6 infusion centres in the United Kingdom. Functional outcomes were assessed using age-appropriate functional scales. Safety analyses included review of liver function, platelet count, cardiac assessments, and steroid requirements. Findings: Ninety-nine patients (45 SMA therapy-naïve) were treated with OA (median age at infusion: 10 [range, 0.6-89] months; median weight: 7.86 [range, 3.2-20.2] kg; duration of follow-up: 3-22 months). After OA infusion, mean ± SD change in CHOP-INTEND score was 11.0 ± 10.3 with increased score in 66/78 patients (84.6%); patients aged <6 months had a 13.9 points higher gain in CHOP-INTEND score than patients ≥2 years (95% CI, 6.8-21.0; P < 0.001). Asymptomatic thrombocytopenia (71/99 patients; 71.7%), asymptomatic troponin-I elevation (30/89 patients; 33.7%) and transaminitis (87/99 patients; 87.9%) were reported. No thrombotic microangiopathy was observed. Median steroid treatment duration was 97 (range, 28-548) days with dose doubled in 35/99 patients (35.4%). There were 22.5-fold increased odds of having a transaminase peak >100 U/L (95% CI, 2.3-223.7; P = 0.008) and 21.2-fold increased odds of steroid doubling, as per treatment protocol (95% CI, 2.2-209.2; P = 0.009) in patients weighing ≥13.5 kg versus <8.5 kg. Weight at infusion was positively correlated with steroid treatment duration (r = 0.43; P < 0.001). Worsening transaminitis, despite doubling of oral prednisolone, led to treatment with intravenous methylprednisolone in 5 children. Steroid-sparing immunosuppressants were used in 5 children to enable steroid weaning. Two deaths apparently unrelated to OA were reported. Interpretation: OA led to functional improvements and was well tolerated with no persistent clinical complications, including in older and heavier patients. Funding: Novartis Innovative Therapies AG provided a grant for independent medical writing services.

16.
Dev Med Child Neurol ; 55(10): 959-62, 2013 Oct.
Article in English | MEDLINE | ID: mdl-23909822

ABSTRACT

Episodic ataxia type 1 (EA1) is caused by mutations in the KCNA1 gene encoding the fast potassium channel Kv1.1 and is characterized clinically by brief episodes of ataxia and continuous and spontaneous motor unit activity. Atypical presentations, in which the predominant manifestation is related to the peripheral nervous system, may lead to the diagnosis being missed or delayed, with the potential risk of individuals receiving inappropriate or unnecessary investigations and treatment. We present a case of a 15-year-old female with EA1 who had never had episodes of ataxia, and whose hand movements were initially thought to represent a tremor. Genetic screening for KCNA1 mutations was precipitated by the results of the nerve excitability studies (TROND protocol), which showed changes typical of reduced fast potassium channel conductance. This case highlights the utility of nerve excitability studies in identifying individuals with KCNA1 mutations.


Subject(s)
Kv1.1 Potassium Channel/genetics , Mutation/genetics , Spinocerebellar Ataxias/diagnosis , Spinocerebellar Ataxias/genetics , Action Potentials/physiology , Adolescent , Female , Humans , Muscle, Skeletal/physiopathology , Neural Conduction/physiology , Spinocerebellar Ataxias/pathology
17.
Cochrane Database Syst Rev ; (2): CD005375, 2013 Feb 28.
Article in English | MEDLINE | ID: mdl-23450561

ABSTRACT

BACKGROUND: Scoliosis in people with Duchenne muscular dystrophy is usually progressive and treated with surgery. However, it is unclear whether the existing evidence is sufficiently scientifically rigorous to support a recommendation for spinal surgery for most people with Duchenne muscular dystrophy and scoliosis. This is an updated review and an updated search was undertaken in which no new studies were found. OBJECTIVES: To determine the effectiveness and safety of spinal surgery in people with Duchenne muscular dystrophy with scoliosis. We intended to test whether spinal surgery is effective in increasing survival, improving respiratory function, improving quality of life and overall functioning; and whether spinal surgery is associated with severe adverse effects. SEARCH METHODS: We searched the specialized registers of the Cochrane Neuromuscular Disease Group (31 July 2012), MEDLINE (January 1966 to July 2012), EMBASE (January 1947 to July 2012), CENTRAL (2012, Issue 7 in the Cochrane Library), CINAHL Plus(January 1937 to July 2012), Proquest Dissertation and Thesis Database (January 1980 to July 2012), and the National Institute of Health Clinical Trials Database (July 2012). No language restrictions were imposed. SELECTION CRITERIA: We planned to include controlled clinical trials using random or quasi-random allocation of treatment evaluating all forms of spinal surgery for scoliosis in people with Duchenne muscular dystrophy in the review. The control interventions would have been no treatment, non-operative treatment, or a different form of spinal surgery. DATA COLLECTION AND ANALYSIS: Two authors independently examined the search results and evaluated the study characteristics against inclusion criteria to decide which ones would be included in the review. MAIN RESULTS: On searching, 47 studies were relevant but none met the inclusion criteria for the review, because they were not clinical trials but prospective or retrospective reviews of case series. AUTHORS' CONCLUSIONS: Since there were no randomized controlled clinical trials available to evaluate the effectiveness of scoliosis surgery in people with Duchenne muscular dystrophy, no evidence-based recommendation can be made for clinical practice. People with scoliosis should be informed about the uncertainty of benefits and potential risks of surgery for scoliosis. Randomized controlled trials are needed to investigate the effectiveness of scoliosis surgery, in terms of quality of life, functional status, respiratory function and life expectancy.


Subject(s)
Muscular Dystrophy, Duchenne/complications , Scoliosis/surgery , Humans , Scoliosis/complications , Spine/surgery
18.
Arch Dis Child ; 108(7): 511-517, 2023 07.
Article in English | MEDLINE | ID: mdl-36316089

ABSTRACT

Spinal muscular atrophy (SMA) is a severe neurodegenerative condition due to recessive mutations in the SMN1 gene resulting in insufficiency of survival motor neuron (SMN) protein. Lack of SMN protein results in irreversible degeneration of lower motor neurons and consequential muscle atrophy and weakness. SMN2, a SMN1 homologue, produces low levels of functional SMN protein with the potential to partially compensate SMN1 loss. Several compounds have been shown to successfully restore SMN protein production in motor neurons, either by enhancing SMN2 gene function or by direct replacement of the SMN1 gene. Clinical trials of these compounds have demonstrated the potential to substantially alter the natural history of SMA and have led to their implementation into clinical practice. To date, 3 novel drugs, nusinersen, onasemnogene aberparvovec and risdiplam, have received marketing authorisation for SMA treatment by several authorities including Food and Drug Administration and European Medicines Agency. While implementing these drugs into daily clinical practice, clinicians face a number of new challenges, including identifying the most advantageous treatment for any individual, optimisation of outcomes and management of a modified SMA phenotype. Considering that treatment initiation at the pre-symptomatic or paucisymptomatic stage appears to be associated with better outcomes, health services need to support early diagnosis for this now treatable condition. This review aims to give an overview of the current therapeutic landscape of SMA, to provide an understanding of current practice of SMA management and to help increase awareness of the imminent need for urgent early diagnosis at the pre-symptomatic stage.


Subject(s)
Muscular Atrophy, Spinal , United States , Humans , Muscular Atrophy, Spinal/diagnosis , Muscular Atrophy, Spinal/drug therapy , Muscular Atrophy, Spinal/genetics , Mutation , Phenotype
19.
Neurology ; 101(15): e1495-e1508, 2023 10 10.
Article in English | MEDLINE | ID: mdl-37643885

ABSTRACT

BACKGROUND AND OBJECTIVES: RYR1-related myopathies are the most common congenital myopathies, but long-term natural history data are still scarce. We aim to describe the natural history of dominant and recessive RYR1-related myopathies. METHODS: A cross-sectional and longitudinal retrospective data analysis of pediatric cases with RYR1-related myopathies seen between 1992-2019 in 2 large UK centers. Patients were identified, and data were collected from individual medical records. RESULTS: Sixty-nine patients were included in the study, 63 in both cross-sectional and longitudinal studies and 6 in the cross-sectional analysis only. Onset ranged from birth to 7 years. Twenty-nine patients had an autosomal dominant RYR1-related myopathy, 31 recessive, 6 de novo dominant, and 3 uncertain inheritance. Median age at the first and last appointment was 4.0 and 10.8 years, respectively. Fifteen% of patients older than 2 years never walked (5 recessive, 4 de novo dominant, and 1 dominant patient) and 7% lost ambulation during follow-up. Scoliosis and spinal rigidity were present in 30% and 17% of patients, respectively. Respiratory involvement was observed in 22% of patients, and 12% needed ventilatory support from a median age of 7 years. Feeding difficulties were present in 30% of patients, and 57% of those needed gastrostomy or tube feeding. There were no anesthetic-induced malignant hyperthermia episodes reported in this cohort. We observed a higher prevalence of prenatal/neonatal features in recessive patients, in particular hypotonia and respiratory difficulties. Clinical presentation, respiratory outcomes, and feeding outcomes were consistently more severe at presentation and in the recessive group. Conversely, longitudinal analysis suggested a less progressive course for motor and respiratory function in recessive patients. Annual change in forced vital capacity was -0.2%/year in recessive vs -1.4%/year in dominant patients. DISCUSSION: This clinical study provides long-term data on disease progression in RYR1-related myopathies that may inform management and provide essential milestones for future therapeutic interventions.


Subject(s)
Muscular Diseases , Ryanodine Receptor Calcium Release Channel , Infant, Newborn , Child , Humans , Ryanodine Receptor Calcium Release Channel/genetics , Retrospective Studies , Cross-Sectional Studies , Muscular Diseases/epidemiology , Muscular Diseases/genetics , Muscle Hypotonia/pathology , Muscle, Skeletal/pathology , Mutation/genetics
20.
Hum Mutat ; 33(6): 981-8, 2012 Jun.
Article in English | MEDLINE | ID: mdl-22473935

ABSTRACT

Ryanodine receptor 1 (RYR1) mutations are a common cause of congenital myopathies associated with both dominant and recessive inheritance. Histopathological findings frequently feature central cores or multi-minicores, more rarely, type 1 predominance/uniformity, fiber-type disproportion, increased internal nucleation, and fatty and connective tissue. We describe 71 families, 35 associated with dominant RYR1 mutations and 36 with recessive inheritance. Five of the dominant mutations and 35 of the 55 recessive mutations have not been previously reported. Dominant mutations, typically missense, were frequently located in recognized mutational hotspot regions, while recessive mutations were distributed throughout the entire coding sequence. Recessive mutations included nonsense and splice mutations expected to result in reduced RyR1 protein. There was wide clinical variability. As a group, dominant mutations were associated with milder phenotypes; patients with recessive inheritance had earlier onset, more weakness, and functional limitations. Extraocular and bulbar muscle involvement was almost exclusively observed in the recessive group. In conclusion, our study reports a large number of novel RYR1 mutations and indicates that recessive variants are at least as frequent as the dominant ones. Assigning pathogenicity to novel mutations is often difficult, and interpretation of genetic results in the context of clinical, histological, and muscle magnetic resonance imaging findings is essential.


Subject(s)
Mutation , Myopathies, Structural, Congenital/genetics , Ryanodine Receptor Calcium Release Channel/genetics , Child , Child, Preschool , Female , Genes, Dominant , Genes, Recessive , Genotype , Humans , Infant , Infant, Newborn , Male , Pedigree
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