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At least 19 recordsLinked to original sources

Targeted long-read genomic and epigenomic profiling enhances timely comprehensive variant discovery in hypotonia and muscle weakness.

BACKGROUND: Identifying the genetic basis of hypotonia and muscle weakness is critical for patient management and family counseling. However, diagnosis is often hindered by diverse genomic alterations, including repeat expansions, structural variants (SVs), and methylation defects. Standard-of-care testing, largely based on short-read sequencing, is limited in its ability to detect this heterogeneous variation landscape, leaving many patients undiagnosed or requiring lengthy sequential testing. Long-read sequencing represents a promising solution. However, its application as a first-tier diagnostic assay for hypotonia remains unexplored. METHODS: We retrospectively analyzed 227 patients with hypotonia to assess diagnostic yield, time-to-diagnosis, and costs associated with standard-of-care testing. A long-read whole-genome sequencing (LR-WGS) workflow with targeted analysis of hypotonia-associated genes was developed to detect and prioritize pathogenic SNVs, SVs, and CNVs, repeat expansions, and methylation changes at key disease loci. The workflow was validated in a reference-positive cohort with known diagnoses (n = 15) and applied to an unsolved cohort (n = 14). Variant interpretation followed ACMG guidelines and was confirmed with orthogonal methods. RESULTS: Standard-of-care testing achieved a diagnostic yield of 42% with an average time-to-diagnosis of 68.7 days; however, 30% of diagnosed patients experienced significant delays (average 169 days) due to sequential testing. The LR-WGS based approach identified all known pathogenic variants in the positive cohort, including SMN1 deletions, methylation defects at 15q11.2/Prader-Willi locus, FMR1 repeat expansions, and sequence and copy-number variants in > 100 genes underlying myopathies and muscular dystrophies. The targeted long-read pipeline reduced prioritized variant calls by 97.9-99.9% and, in the unsolved cohort, yielded one definitive diagnosis (de novo COL6A3 deletion) and one possible diagnosis (aberrant methylation and copy number at POMK), for an additional 14% yield. Among patients diagnosed after sequential testing (n = 29), LR-WGS is expected to reduce time-to-diagnosis by ~ 85% and decrease cumulative diagnostic delays, with projected healthcare cost savings of $396,000-439,000. Across the entire 227 patient cohort, LR-WGS is anticipated to reduce testing costs by 6.5%, yielding an average savings of $105 per patient. CONCLUSIONS: LR-WGS enables comprehensive discovery of genomic and epigenomic variants in hypotonia and muscle weakness, improving diagnostic yield, shortening diagnostic timelines, and reducing costs compared with current standard-of-care testing.

Humans

Nemaline (rod) myopathy: a possible cause of rapidly fatal infantile hypotonia.

Two infant siblings (male and female) manifested extreme hypotonia and flaccidity at birth and had a rapidly fatal course. In each, rod-like structures were demonstrated within a variety of skeletal muscles, and accumulations of thin filaments were seen in numerous muscle fibers. The possibility exists that this represents a severe and rapidly fatal form of nemaline myopathy that should be included in the differential diagnosis of infantile hypotonias.

Biopsy

[Central muscular hypotonia of early childhood (hypotonic form of infantile cerebral paralysis)].

A total of 64 children from 6 months to 2,5 years with a hypotonic syndrome were observed. Follow-up studies were performed twice: after 1--1,5 years and after 2--3 years. In most of the cases (52 patients) the hypotonic syndrome towards the age of 6 slowly regressed, up to its complete disappearance. In these cases other neurological syndromes could appear (dyskinetic, spastic, minimal brain dysfunction), in the structure of which cerebellar symptoms occupied an important place. The intellectual development of these children was subnormal. In a lesser part of the cases (12 patients) the indicated dynamics of hypotonia was not seen, or it increased, while the intellectual devleopment of the children was characterized by mental retardation. These cases were evaluated as desintegration of development. The practical significance of the study of hypotonia for the prognosis is discussed.

Age Factors

De novo missense variants in ZBTB47 are associated with developmental delays, hypotonia, seizures, gait abnormalities, and variable movement abnormalities.

The collection of known genetic etiologies of neurodevelopmental disorders continues to increase, including several syndromes associated with defects in zinc finger protein transcription factors (ZNFs) that vary in clinical severity from mild learning disabilities and developmental delay to refractory seizures and severe autism spectrum disorder. Here we describe a new neurodevelopmental disorder associated with variants in ZBTB47 (also known as ZNF651), which encodes zinc finger and BTB domain-containing protein 47. Exome sequencing (ES) was performed for five unrelated patients with neurodevelopmental disorders. All five patients are heterozygous for a de novo missense variant in ZBTB47, with p.(Glu680Gly) (c.2039A>G) detected in one patient and p.(Glu477Lys) (c.1429G>A) identified in the other four patients. Both variants impact conserved amino acid residues. Bioinformatic analysis of each variant is consistent with pathogenicity. We present five unrelated patients with de novo missense variants in ZBTB47 and a phenotype characterized by developmental delay with intellectual disability, seizures, hypotonia, gait abnormalities, and variable movement abnormalities. We propose that these variants in ZBTB47 are the basis of a new neurodevelopmental disorder.

Child

Delay in the maturation of muscle fibers in infants with congenital hypotonia.

Muscle biopsies of hypotonic children have shown delayed maturation of a fetal type of muscle fibers: subsarcolemmal halo devoid of activity for mitochondrial dehydrogenases, type II predominance and in some cases abnormal dispersion of fiber diameter. Fiber subtypes within group II were also abnormal. One case has definite embryonic characteristics with presence of myoblasts. Not a single clinical pattern was present in these patients and a variety of associated disorders were recognized. Some patients had a clinical picture corresponding to congenital benign hypotonia as described by Walton.

Child, Preschool

The use of Pro-Banthine to induce gastrointestinal hypotonia.

Immediate and satisfactory gastrointestinal hypotonia was induced in 48 patients with 5--10 mg of intravenous Pro-Banthine during radiographic examination; side-effects were minimal. If given intravenously in small doses, Pro-Banthine is a satisfactory alternative when glucagon is contraindicated or not available.

Digestive System

[Double-contrast examination in hypotonia in the operated stomach (author's transl)].

The technique of examination, as well as the extent and quality of visualisation are described, basing on a selected case material of patients who had been subjected to stomach surgery; the extensive possibilities of diagnosis are studied. Hypotonia and double contrast offer considerable advantages over the conventional examination of the operated stomach. Assessment of mucosal conditions, especially in the anastomosis range, is facilitated, thus offering a chance to improve the method of diagnosis. Hypotonic double-contrast examination should always be performed if there are no possibilities of endoscopic examination.

Aged

Congenital hypotonia revisited.

The definition of neuromuscular diseases affecting infants has depended on factors as various as the rate of progression of the illness, the clinical picture, and, recently, the morphologic peculiarities in the muscle biopsy. A review of the literature suggests that there are discrepancies in the classification of such illnesses, no matter what system is used. In some instances, a single diagnosis seems to include patients with quite separate illnesses, whereas other patients with seemingly identical diseases have been given different diagnoses.

Adolescent

[Syndrome of congenital muscular hypotonia in children ("flabby child" syndrome)].

Clinico-electroneuromyographic examinations of 108 children with the "flabby child" syndrome of various genesis were carried out. A classification of diseases accompanied with muscular hypotonicity in early childhood is suggested. The electroneuromyographic examinations revealed an increase of the speed of impulse transmission along the peripheral nerves, this transmission being the most pronounced in the first two years of the life, and levelled down by the age of 3 to 7 years.

Child

Glucagon-induced small intestinal hypotonia demonstrating bleeding lymphoma.

While a patient was being evaluated for melena, a glucagon-induced hypotonic examination of the small intestine demonstrated a small ulcerated mass in the jejunum. The tubeless hypotonic examination was performed after multiple gastrointestinal series, small intestinal series, barium enemas, and visceral arteriography--including celiac and superior mesenteric arteriograms--failed to identify a bleeding site. Surgical exploration revealed three ulcerated lymphomatous lesions in the jejunum. The lack of side effects, rapidity of onset, and shortness of duration of intravenous glucagon suggest that this type of hypotonic examination of the small intestine may prove useful as an adjunct to the small intestinal series.

Gastrointestinal Motility