Infantile hyaline fibromatosis syndrome (HFS) is an ultra-rare genetic condition characterized by the deposition of hyaline material in the skin, muscle, and viscera. Potential complications include debilitating joint contractures, coarse facial features, recurrent infections, failure to thrive, and death. Here, we present the case of a six-month-old infant with a history of painful extremity contractures, global developmental delay, neck hemangioma, and feeding intolerance presenting to our institution with abdominal distension. The multi-systemic, rapidly progressing, severe nature of her symptoms prompted consultation with inpatient pediatric genetics. Per their recommendation, rapid whole-genome sequencing (rWGS) was done with Fabric GEM®-assisted artificial intelligence (Fabric Genomics, Oakland, California, United States) at Rady Children's Hospital Institute for Genomic Medicine (San Diego, California, United States), revealing homozygous pathogenic variant c.652T>C; P.Cys218Arg in the gene consistent with HFS. This case was significant not only for its rarity, but also its early manifestation of symptoms, wide range of affected body systems, and severity of symptoms, which together present a fascinating diagnostic dilemma for future clinicians that should be taken into consideration. It also highlights the increasing utility of AI-assisted rWGS as a diagnostic tool for medically complex patients with unknown multisystemic hereditary conditions.
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http://dx.doi.org/10.7759/cureus.62037 | DOI Listing |
Infantile hyaline fibromatosis syndrome (HFS) is an ultra-rare genetic condition characterized by the deposition of hyaline material in the skin, muscle, and viscera. Potential complications include debilitating joint contractures, coarse facial features, recurrent infections, failure to thrive, and death. Here, we present the case of a six-month-old infant with a history of painful extremity contractures, global developmental delay, neck hemangioma, and feeding intolerance presenting to our institution with abdominal distension.
View Article and Find Full Text PDFDermatologie (Heidelb)
October 2024
Klinik und Poliklinik für Kinder- und Jugendmedizin, Universitätsmedizin Leipzig, Leipzig, Deutschland.
Cureus
June 2024
Neurophysiotherapy, Ravi Nair Physiotherapy College, Datta Meghe Institute of Higher Education and Research, Wardha, IND.
Infantile systemic hyalinosis (ISH) is a very rare autosomal recessive disorder, which is characterized by a systemic build-up of hyaline material that causes extensive tissue destruction and functional impairment. The signs of this debilitating illness, which can involve organs, skin anomalies, and joint contractures, frequently appear in infancy. The paucity of available research on ISH emphasizes the need for all-encompassing management approaches to address the wide range of symptoms and enhance the overall quality of life for impacted babies.
View Article and Find Full Text PDFJ Craniofac Surg
July 2024
Division of Medical Genetics, Department of Pediatrics, Faculty of Medicine, Siriraj Hospital, Mahidol University, Bangkok, Thailand.
Hyaline fibromatosis syndrome (HFS) is a rare congenital disorder characterized by abnormal hyaline deposition within soft tissues. Hyaline fibromatosis syndrome manifests in 2 distinct forms: (1) infantile systemic hyalinosis and (2) juvenile hyaline fibromatosis. Infantile systemic hyalinosis, the more severe form, typically emerges in early childhood with extensive systemic involvement.
View Article and Find Full Text PDFCureus
May 2024
Pathology, Jawaharlal Nehru Medical College, Datta Meghe Institute of Higher Education and Research, Wardha, IND.
A rare autosomal recessive condition called infantile systemic hyalinosis (ISH) is characterized by early-onset skin lesions that progress to the formation of numerous contractures. The underlying disease is the progressive accumulation of hyaline substances in many tissues. We are presenting the case of a male infant who was referred for evaluation and management at the age of six months.
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