OBJECTIVE:Genomic sequencing leaves >50% of dystonia-affected individuals without a diagnosis. Where DNA-oriented approaches remain insufficient, integrating multiomics is essential to advance genome interpretation. Herein, we incorporated RNA sequencing (RNA-seq) data from 167 patients with dystonia across a range of ages and presentations. METHODS:We leveraged an RNA-seq analysis pipeline, focused on the identification of expression and splicing aberrations, on RNA-seq from skin biopsies. The recruited patients had early-onset dystonia in 85.0%, non-focal dystonia in 92.2%, and coexisting features in 76.0%. Thirty-six patient samples with pre-identified variants (36/167, 21.6%) and 131 samples with no previously prioritized diagnostic candidates from genomic sequencing (131/167, 78.4%) were evaluated. RESULTS:We found that >80% of dystonia-associated genes were detected by fibroblast RNA-seq. Expression and splicing aberration analyses produced a manageable number of significant RNA defects affecting dystonia-associated genes. The approach was especially successful in validating pathogenic effects of loss-of-function variants, with disease-relevant RNA-underexpression detected for 66.7% (10/15). Studying aberrant expression and splicing in the context of other pre-identified variant types yielded relevant results in 28.6% (6/21 samples). We obtained a 6.9% (9/131) diagnostic uplift for patients without prior candidates, all of whom exhibited combined dystonia with autosomal recessive inheritance. The new diagnoses from RNA-seq and genomic reanalysis were based on previously neglected splice-region (3/9) and deep(er) intronic (6/9) variants. For the observed events, integration of new machine-learning scores predicted corresponding aberrant gene expression in the brain. INTERPRETATION:Fibroblast-based RNA-seq in our selected cohort improved variant interpretation and offered a modest yield in patients without prior candidate variants. ANN NEUROL 2026;99:1363-1378.
Dystonia is a rare disease trait for which large-scale genomic investigations are still underrepresented. Genetic heterogeneity among patients with unexplained dystonia warrants interrogation of entire genome sequences, but this has not yet been systematically evaluated.To significantly enhance our understanding of the genetic contribution to dystonia, we (re)analysed 2874 whole-exome sequencing (WES), 564 whole-genome sequencing (WGS), as well as 80 fibroblast-derived proteomics datasets, representing the output of high-throughput analyses in 1990 patients and 973 unaffected relatives from 1877 families. Recruitment and precision-phenotyping procedures were driven by long-term collaborations of international experts with access to overlooked populations.By exploring WES data, we found that continuous scaling of sample sizes resulted in steady gains in the number of associated disease genes without plateauing. On average, every second diagnosis involved a gene not previously implicated in our cohort. Second-line WGS focused on a subcohort of undiagnosed individuals with high likelihood of having monogenic forms of dystonia, comprising large proportions of patients with early onset (81.3%), generalized symptom distribution (50.8%) and/or coexisting features (68.9%). We undertook extensive searches for variants in nuclear and mitochondrial genomes to uncover 38 (ultra)rare diagnostic-grade findings in 37 of 305 index patients (12.1%), many of which had remained undetected due to methodological inferiority of WES or pipeline limitations. WGS-identified elusive variations included alterations in exons poorly covered by WES, RNA-gene variants, mitochondrial-DNA mutations, small copy-number variants, complex rearranged genome structure and short tandem repeats. For improved variant interpretation in WGS-inconclusive cases, we employed systematic integration of quantitative proteomics. This aided in verifying diagnoses related to technically challenging variants and in upgrading a variant of uncertain significance (3 of 70 WGS-inconclusive index patients, 4.3%). Further, unsupervised proteomic outlier analysis supplemented with transcriptome sequencing revealed pathological gene underexpression induced by transcript disruptions in three more index patients with underlying (deep) intronic variants (3/70, 4.3%), highlighting the potential for targeted antisense-oligonucleotide therapy development. Finally, trio-WGS prioritized a de novo missense change in the candidate PRMT1, encoding a histone methyltransferase. Data-sharing strategies supported the discovery of three distinct PRMT1 de novo variants in four phenotypically similar patients, associated with loss-of-function effects in in vitro assays.This work underscores the importance of continually expanding sequencing cohorts to characterize the extensive spectrum of gene aberrations in dystonia. We show that a pool of unresolved cases is amenable to WGS and complementary multi-omic studies, directing advanced aetiopathological concepts and future diagnostic-practice workflows for dystonia. Using whole-genome sequencing and proteomics, Zech et al. have shown that many patients with suspected monogenic dystonia carry mutations that are undetectable with exome analysis alone. Complementary approaches, such as RNA sequencing and functional studies, can improve rates of diagnosis.
Exome and genome sequencing leave >50% of dystonia-affected individuals without a molecular diagnosis. Where DNA-oriented approaches remain insufficient, integrating multiomics methods and bioinformatics is essential to advance genome interpretation. Herein, we incorporated RNA sequencing (RNA-seq) from a collection of 167 fibroblast samples from individuals affected with dystonic diseases. We leveraged an RNA-seq analysis pipeline, focused on the identification of expression and splicing aberrations, on RNA-seq from skin biopsies. We evaluated a “variant-positive” group of patient samples with preexisting information on variants (36/167, 21.6%), and a “variant-negative” group in which genomic sequencing alone had been unsuccessful in yielding a diagnostic candidate (78.4%). We found that at least 80% of dystonia-associated genes from databases were sufficiently detected by RNA-seq in fibroblasts, highlighting broad applicability. Expression and splicing aberration analyses then produced a manageable number of statistically significant RNA defects affecting dystonia-associated genes for effective case-by-case review. Our approach successfully detected RNA underexpression and mis-splicing for different types of pre-identified dystonia-related variants, providing both benchmarks and insights into mutational mechanisms. Applied to 131 samples from patients without candidate variants from exome and genome sequencing, RNA-seq aided the identification of previously unprioritized causative intronic alterations on reanalysis, providing an added diagnostic yield of 6.9% (9/131). For observed events, we also report the integration of new machine-learning scores predicting corresponding aberrant gene expression in the brain. Fibroblast-based RNA-seq in our selected cohort improved variant interpretation and enabled diagnoses missed by genomic analysis alone, suggesting this framework could be generalized to other dystonias.
In diesem Kapitel werden Bewegungsstörungen vom Typ Dystonie, Parkinsonismus und Chorea bezüglich ihrer pädiatrischen Differenzialdiagnosen dargestellt. Myoklonien, Tremor, Tics und zerebelläre Symptome werden nur als Teilaspekte von beschriebenen Erkrankungen behandelt. Spastische und neuromuskulär bedingte Bewegungsstörungen sind nicht Gegenstand des Kapitels. Die dargestellten Neurotransmitterdefekte betreffen genetisch bedingte Störungen von Synthese, Abbau und Transport der biogenen Amine Dopamin und Serotonin (und damit auch der Katecholamine), nicht jedoch von GABA und anderen Transmittersubstanzen. Die Auswahl der Erkrankungen, die Ausführlichkeit der Darstellung und die Anzahl der Literaturzitate sind nicht nach akademischen Gesichtspunkten, sondern nach pragmatischen Gesichtspunkten für die pädiatrische klinische Praxis zusammengestellt. Seltene und insbesondere relativ neu gefundene behandelbare Erkrankungen werden z. B. überproportional detailliert beschrieben.
Tyrosine hydroxylase (TH) catalyses the rate-limiting step in dopamine biosynthesis. Autosomal recessive tyrosine hydroxylase deficiency (THD) leads to clinical phenotypes reflecting the deficiency of dopamine, norepinephrine, or epinephrine in the central nervous system (CNS), presenting along a continuous spectrum from mild to severe forms of the disease. The diagnosis is suggested by the detection of low CSF homovanillic acid (HVA) and confirmed by identifying biallelic pathogenic variants in the TH gene. L-dopa/decarboxylase inhibitor (DCI) supplementation is often the first-line treatment, and most patients have a good therapeutic response. However, initiation of therapy can be challenging in patients with severe disease forms who develop L-dopa/DCI-induced dyskinesia. Therefore, alternative treatment options, such as monoamine oxidase (MAO) inhibitors, must be evaluated to optimize motor symptom control. Clinical experience suggests that early diagnosis and treatment initiation may improve the outcome. Additionally, a multidisciplinary treatment approach should be utilized to monitor neurocognitive development and other comorbidities that may occur in THD. In this consensus guideline, representatives of the International Working Group on Neurotransmitter related Disorders (iNTD) and patient advocates evaluated all the evidence available in the literature on the diagnosis and management of THD and developed recommendations using the SIGN and GRADE methodologies. Based on the limited evidence, practical recommendations have been developed to support clinical diagnosis, laboratory testing, neuroimaging, medical treatment, and non-medical interventions. Research topics for further development were identified. This guideline aims to improve the care of patients with THD worldwide and raise general awareness of this rare disease.
Background: Through the agnostic screening of patients with uncharacterised disease phenotypes for an upregulation of type I interferon (IFN) signalling, we identified a cohort of individuals heterozygous for mutations in PTPN1, encoding the protein-tyrosine phosphatase 1B (PTP1B). We aimed to describe the clinical phenotype and molecular and cellular pathology of this new disease. Methods: In this case series, we identified patients and collected clinical and neuroradiological data through collaboration with paediatric neurology and clinical genetics colleagues across Europe (Czechia, France, Germany, Italy, Slovenia, and the UK) and Israel. Variants in PTPN1 were identified by exome and directed Sanger sequencing. The expression of IFN-stimulated genes was determined by quantitative (q) PCR or NanoString technology. Experiments to assess RNA and protein expression and to investigate type 1 IFN signalling were undertaken in patient fibroblasts, hTERT-immortalised BJ-5ta fibroblasts, and RPE-1 cells using CRISPR-Cas9 editing and standard cell biology techniques. Findings: Between Dec 20, 2013, and Jan 11, 2023, we identified 12 patients from 11 families who were heterozygous for mutations in PTPN1. We found ten novel or very rare variants in PTPN1 (frequency on gnomAD version 4.1.0 of <125 x 10:sup>-6). Six variants were predicted as STOP mutations, two involved canonical splice-site nucleotides, and two were missense substitutions. In three patients, the variant occurred de novo, whereas in nine affected individuals, the variant was inherited from an asymptomatic parent. The clinical phenotype was characterised by the subacute onset (age range 1-8 years) of loss of motor and language skills in the absence of seizures after initially normal development, leading to spastic dystonia and bulbar involvement. Neuroimaging variably demonstrated cerebral atrophy (sometimes unilateral initially) or high T2 white matter signal. Neopterin in CSF was elevated in all ten patients who were tested, and all probands demonstrated an upregulation of IFN-stimulated genes in whole blood. Although clinical stabilisation and neuroradiological improvement was seen in both treated and untreated patients, in six of eight treated patients, high-dose corticosteroids were judged clinically to result in an improvement in neurological status. Of the four asymptomatic parents tested, IFN signalling in blood was normal (three patients) or minimally elevated (one patient). Analysis of patient blood and fibroblasts showed that tested PTPN1 variants led to reduced levels of PTPN1 mRNA and PTP1B protein, and in-vitro assays demonstrated that loss of PTP1B function was associated with impaired negative regulation of type 1 IFN signalling. Interpretation: PTPN1 haploinsufficiency causes a type 1 IFN-driven autoinflammatory encephalopathy. Notably, some patients demonstrated stabilisation, and even recovery, of neurological function in the absence of treatment, whereas in others, the disease appeared to be responsive to immune suppression. Prospective studies are needed to investigate the safety and efficacy of specific immune suppression approaches in this disease population.
The objective of the study is to evaluate the evolving phenotype and genetic spectrum of patients with succinic semialdehyde dehydrogenase deficiency (SSADHD) in long-term follow-up. Longitudinal clinical and biochemical data of 22 pediatric and 9 adult individuals with SSADHD from the patient registry of the International Working Group on Neurotransmitter related Disorders (iNTD) were studied with in silico analyses, pathogenicity scores and molecular modeling of ALDH5A1 variants. Leading initial symptoms, with onset in infancy, were developmental delay and hypotonia. Year of birth and specific initial symptoms influenced the diagnostic delay. Clinical phenotype of 26 individuals (median 12 years, range 1.8-33.4 years) showed a diversifying course in follow-up: 77% behavioral problems, 76% coordination problems, 73% speech disorders, 58% epileptic seizures and 40% movement disorders. After ataxia, dystonia (19%), chorea (11%) and hypokinesia (15%) were the most frequent movement disorders. Involvement of the dentate nucleus in brain imaging was observed together with movement disorders or coordination problems. Short attention span (78.6%) and distractibility (71.4%) were the most frequently behavior traits mentioned by parents while impulsiveness, problems communicating wishes or needs and compulsive behavior were addressed as strongly interfering with family life. Treatment was mainly aimed to control epileptic seizures and psychiatric symptoms. Four new pathogenic variants were identified. In silico scoring system, protein activity and pathogenicity score revealed a high correlation. A genotype/phenotype correlation was not observed, even in siblings. This study presents the diversifying characteristics of disease phenotype during the disease course, highlighting movement disorders, widens the knowledge on the genotypic spectrum of SSADHD and emphasizes a reliable application of in silico approaches.
In the field of hereditary spastic paraplegia (HSP), progress in molecular diagnostics needs to be translated into robust phenotyping studies to understand genetic and phenotypic heterogeneity and to support interventional trials. ZFYVE26-associated hereditary spastic paraplegia (HSP-ZFYVE26, SPG15) is a rare, early-onset complex HSP, characterized by progressive spasticity and a variety of other neurological symptoms. While prior reports, often in populations with high rates of consanguinity, have established a general phenotype, there is a lack of systematic investigations and a limited understanding of age-dependent manifestation of symptoms. Here we delineate the clinical, neuroimaging and molecular features of 44 individuals from 36 families, the largest cohort assembled to date. Median age at last follow-up was 23.8 years covering a wide age range (11-61 years). While symptom onset often occurred in early childhood [median: 24 months, interquartile range (IQR) = 24], a molecular diagnosis was reached at a median age of 18.8 years (IQR = 8), indicating significant diagnostic delay. We demonstrate that most patients present with motor and/or speech delay or learning disabilities. Importantly, these developmental symptoms preceded the onset of motor symptoms by several years. Progressive spasticity in the lower extremities, the hallmark feature of HSP-ZFYVE26, typically presents in adolescence and involves the distal lower limbs before progressing proximally. Spasticity in the upper extremities was seen in 64%. We found a high prevalence of extrapyramidal movement disorders including cerebellar ataxia (64%) and dystonia (11%). Parkinsonism (16%) was present in a subset and showed no sustained response to levodopa. Cognitive decline and neurogenic bladder dysfunction progressed over time in most patients. A systematic analysis of brain MRI features revealed a common diagnostic signature consisting of thinning of the anterior corpus callosum, signal changes of the anterior forceps and non-specific cortical and cerebellar atrophy. The molecular spectrum included 45 distinct variants, distributed across the protein structure without mutational hotspots. Spastic Paraplegia Rating Scale scores, SPATAX Disability Scores and the Four Stage Functional Mobility Score showed moderate strength in representing the proportion of variation between disease duration and motor dysfunction. Plasma neurofilament light chain levels were significantly elevated in all patients (Mann-Whitney U-test, P < 0.0001) and were correlated inversely with age (Spearman's rank correlation coefficient r = -0.65, P = 0.01). In summary, our systematic cross-sectional analysis of HSP-ZFYVE26 patients across a wide age-range, delineates core clinical, neuroimaging and molecular features and identifies markers of disease severity. These results raise awareness to this rare disease, facilitate an early diagnosis and create clinical trial readiness.
BACKGROUND:Patients carrying pathogenic variants in GNAO1 often present with early-onset central hypotonia and global developmental delay, with or without epilepsy. As the disorder progresses, a complex hypertonic and hyperkinetic movement disorder is a common phenotype. A genotype-phenotype correlation has not yet been described and there are no evidence-based therapeutic recommendations. METHODS:To improve understanding of the clinical course and pathophysiology of this ultra-rare disorder, we built up a registry for GNAO1 patients in Germany. In this retrospective, multicentre cohort study, we collected detailed clinical data, treatment effects and genetic data for 25 affected patients. RESULTS:The main clinical features were symptom onset within the first months of life, with central hypotonia or seizures. Within the first year of life, nearly all patients developed a movement disorder comprising dystonia (84%) and choreoathetosis (52%). Twelve (48%) patients suffered life-threatening hyperkinetic crises. Fifteen (60%) patients had epilepsy with poor treatment response. Two patients showed an atypical phenotype and seven novel pathogenic variants in GNAO1 were identified. Nine (38%) patients were treated with bilateral deep brain stimulation of the globus pallidus internus. Deep brain stimulation reduced hyperkinetic symptoms and prevented further hyperkinetic crises. The in silico prediction programmes did not predict the phenotype by the genotype. CONCLUSION:The broad clinical spectrum and genetic findings expand the phenotypical spectrum of GNAO1-associated disorder and therefore disprove the assumption that there are only two main phenotypes. No specific overall genotype-phenotype correlation was identified. We highlight deep brain stimulation as a useful treatment option in this disorder.
β-Ureidopropionase is the third enzyme of the pyrimidine degradation pathway and catalyses the conversion of N-carbamyl-β-alanine and N-carbamyl-β-aminoisobutyric acid to β-alanine and β-aminoisobutyric acid, ammonia and CO2. To date, only a limited number of genetically confirmed patients with a complete β-ureidopropionase deficiency have been reported. Here, we report on the clinical, biochemical and molecular findings of 10 newly identified β-ureidopropionase deficient individuals. Patients presented mainly with neurological abnormalities and markedly elevated levels of N-carbamyl-β-alanine and N-carbamyl-β-aminoisobutyric acid in urine. Analysis of UPB1, encoding β-ureidopropionase, showed 5 novel missense variants and two novel splice-site variants. Functional expression of the UPB1 variants in mammalian cells showed that recombinant ß-ureidopropionase carrying the p.Ala120Ser, p.Thr129Met, p.Ser300Leu and p.Asn345Ile variant yielded no or significantly decreased β-ureidopropionase activity. Analysis of the crystal structure of human ß-ureidopropionase indicated that the point mutations affect substrate binding or prevent the proper subunit association to larger oligomers and thus a fully functional β-ureidopropionase. A minigene approach showed that the intronic variants c.[364 + 6 T > G] and c.[916 + 1_916 + 2dup] led to skipping of exon 3 and 8, respectively, in the process of UPB1 pre-mRNA splicing. The c.[899C > T] (p.Ser300Leu) variant was identified in two unrelated Swedish β-ureidopropionase patients, indicating that β-ureidopropionase deficiency may be more common than anticipated.
We report on the intensive collaboration in the diagnosis and treatment of a 7-year-old boy with multiple movement disorders, high impulsivity, and affect dysregulation. The interdisciplinary exchange about different qualities of the facial and leg-stressed symptoms, the extremely heterogeneous intelligence profile, the marked hyperactivity, and the alternating aggressive and anxious-depressive mood, which could not be clearly assigned to all disciplines involved, led to the hypothesis of an ADCY5-associated movement disorder, which has been confirmed by molecular genetics. For the treatment, which is now based on hypotheses, close cooperation between the disciplines was required when recording the effects of drug therapy in everyday life and supporting the child and family in the adaptation process.
Inherited disorders of neurotransmitter metabolism are rare neurodevelopmental diseases presenting with movement disorders and global developmental delay. This study presents the results of the first standardized deep phenotyping approach and describes the clinical and biochemical presentation at disease onset as well as diagnostic approaches of 275 patients from the registry of the International Working Group on Neurotransmitter related Disorders. The results reveal an increased rate of prematurity, a high risk for being small for gestational age and for congenital microcephaly in some disorders. Age at diagnosis and the diagnostic delay are influenced by the diagnostic methods applied and by disease-specific symptoms. The timepoint of investigation was also a significant factor: delay to diagnosis has decreased in recent years, possibly due to novel diagnostic approaches or raised awareness. Although each disorder has a specific biochemical pattern, we observed confounding exceptions to the rule. The data provide comprehensive insights into the phenotypic spectrum of neurotransmitter disorders.
Background: The autosomal recessive defect of aromatic L-amino acid decarboxylase (AADC) causes a severe combined deficiency of dopamine, serotonin and catecholamines. The clinical picture is characterized by truncal hypotonia, delayed or absent achievement of motor milestones, and oculogyric crises from infancy onwards. The response to conventional drug treatment is very limited, especially in severe cases. The intracerebral application of eladocagene exuparvovec, an AAV2-based gene therapy, which is expected to be approved in mid-2021, is the first available causal therapeutic approach. Aim: In collaboration with the German Society of Neuropediatrics (GNP), the Working Group of Pediatric Metabolic Disorders (APS), the German Society of Neurosurgery (DGNC) and the German Society of Pediatrics and Adolescent Medicine (DGKJ), the structural requirements and practical aspects in the preparation, implementation and follow-up of the treatment with eladocagene exuparvovec were elaborated. Discussion: The present statement compiles the necessary framework conditions for a quality-assured administration of eladocagene exuparvovec. The treatment requires prehospital, inpatient and posthospital care by a multiprofessional team in a specialized and qualified treatment center. Patient follow-up is intended to contribute to knowledge-generating care. Due to lack of data on the therapeutic (long-term) effect as well as on advantages and disadvantages of the different stereotactic approaches, a structured follow-up plan and documentation in an appropriate, industry-independent registry are necessary.
Zusammenfassung Hintergrund Der autosomal-rezessiv vererbte Defekt der aromatischen L‑Aminosäure-Decarboxylase (AADC) führt zu einem ausgeprägten, kombinierten Mangel an Dopamin, Serotonin und Katecholaminen. Das klinische Bild ist charakterisiert durch eine rumpfbetonte, muskuläre Hypotonie, verzögertes oder fehlendes Erreichen der motorischen Meilensteine und okulogyre Krisen ab dem Säuglingsalter. Der Erfolg der konventionellen, medikamentösen Behandlung ist besonders bei schweren Verläufen sehr limitiert. Mit der intrazerebralen Applikation von Eladocagene exuparvovec (Upstaza®), einer AAV2-basierten Gentherapie, deren Zulassung für Mitte 2021 erwartet wird, steht erstmals ein kausaler Therapieansatz zur Verfügung. Ziel In Zusammenarbeit mit der Gesellschaft für Neuropädiatrie (GNP), der Arbeitsgemeinschaft pädiatrischer Stoffwechselstörungen (APS), der Gesellschaft für Neurochirurgie (DGNC) und der Deutschen Gesellschaft für Kinder- und Jugendmedizin (DGKJ) wurden die Strukturvoraussetzungen und die praktischen Aspekte in der Vorbereitung, Durchführung und Nachsorge der Therapie mit Eladocagene exuparvovec erarbeitet. Diskussion Die vorliegende Stellungnahme stellt die notwendigen Rahmenbedingungen für eine qualitätsgesicherte Anwendung von Eladocagene exuparvovec zusammen. Die Behandlung erfordert eine prästationäre, stationäre und poststationäre Betreuung durch ein multiprofessionelles Team in einem spezialisierten und qualifizierten Therapiezentrum. Die Nachsorge der Patienten soll zu einer wissensgenerierenden Versorgung beitragen. Aufgrund von fehlenden Daten zur therapeutischen (Langzeit‑)Wirkung sowie zu Vor- und Nachteilen der verschiedenen stereotaktischen Prozeduren sind ein strukturierter Nachsorgeplan und die Erfassung in einem geeigneten, industrieunabhängigen Register notwendig.
We would like to reply to Neuray et al. who report a series of five new patients from four unrelated families with bi-allelic mutations of GRN. Their work nicely completes the few existing reports of similar cases, and refers to our recent publication describing six homozygous GRN pathogenic variant carriers with divergent phenotypes and ages at onset (Huin et al., 2020). In summary, the Letter from Neuray et al., reports valuable findings that lead to better define CLN11 due to bi-allelic GRN pathogenic variants. Despite the small sample number that does not allow statistical analysis, the authors underlined the occurrence of cognitive deterioration and epilepsy. Further study of the CLN11 families with functional brain imaging and neuropsychological examinations may be highly informative for the understanding and the clinical characterization of this rare disease.
In diesem Kapitel werden Bewegungsstörungen vom Typ Dystonie, Parkinsonismus und Chorea bezüglich ihrer pädiatrischen Differenzialdiagnosen dargestellt. Myoklonien, Tremor, Tics und zerebelläre Symptome werden nur als Teilaspekte von beschriebenen Erkrankungen behandelt. Spastische und neuromuskulär bedingte Bewegungsstörungen sind nicht Gegenstand des Kapitels. Die dargestellten Neurotransmitterdefekte betreffen genetisch bedingte Störungen von Synthese, Abbau und Transport der biogenen Amine Dopamin und Serotonin (und damit auch der Katecholamine), nicht jedoch von GABA und anderen Transmittersubstanzen. Die Auswahl der Erkrankungen, die Ausführlichkeit der Darstellung und die Anzahl der Literaturzitate sind nicht nach akademischen Gesichtspunkten, sondern nach pragmatischen Gesichtspunkten für die pädiatrische klinische Praxis zusammengestellt. Seltene und insbesondere relativ neu gefundene behandelbare Erkrankungen werden z. B. überproportional detailliert beschrieben.
An amendment to this paper has been published and can be accessed via the original article.