A 38-year-old female developed pain in the right leg in 2006. In 2007, the diagnosis of femoral head necrosis was made based on MR images, and femoral head prosthetic replacement was performed. In April 2009, she visited a local hospital for low back pain, and was referred to our department due to electrolyte abnormalities on hemanalysis. Since marked hypokalemia (K=2.5 mEq/L), hypophosphatemia, hyperchloric metabolic acidosis, proteinuria, and urinary blood sugar suggested Fanconi syndrome, she was admitted for close examination. Bone survey showed a marked decrease in the amount of bone particularly in the four limbs and fracture at the proximal 1/3 of the left ulnar bone. In the lumbar spine, scoliosis and vertebral deformity were observed. Since impaired P re-absorption and unselected aminoaciduria and osteomalacia were also present, the diagnosis of Fanconi syndrome was made. On admission, ventricular tachycardia developed due to hypokalemia, requiring immediate electrolyte correction. For differentiation from acquired Fanconi syndrome, various examinations were performed. No apparent cause was found except for the positive antimitochondrial antibody-M2 (anti-M2). In this case, no data suggested liver dysfunction, and subsequent liver biopsy also showed no significant pathological findings pointing to PBC. We encountered a patient with Fanconi syndrome positive for anti-M2. This case may attract interest, particularly in the mechanism of nephropathy due to anti-M2, and therefore, this case is reported with a literature review.
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Pediatr Nephrol
January 2025
Pediatric Nephrology Services, Department of Pediatrics, Jawaharlal Institute of Postgraduate Medical Education and Research (JIPMER), Pondicherry, 605006, India.
Background: Limited research exists regarding the genetic profile, clinical characteristics, and outcomes of refractory rickets in children from India.
Methods: Patients with refractory rickets aged ≤ 18 years were enrolled. Data regarding clinical features, etiology, genotype-phenotype correlation, and estimated glomerular filtration rate (eGFR) were recorded.
Rev Med Chil
September 2024
Hospital de Niños Dr. Roberto del Río, Santiago, Chile.
Hereditary tyrosinemia type 1 (HT-1) is an inborn error of metabolism caused by a defect in tyrosine (tyr) degradation. This defect results in the accumulation of succinylacetone (SA), causing liver failure with a high risk of hepatocarcinoma and kidney injury, leading in turn to Fanconi syndrome with urine loss of phosphate and secondary hypophosphatemic rickets (HR). HT-1 diagnosis is usually made in infants with acute or chronic liver failure or by neonatal screening programs.
View Article and Find Full Text PDFRegen Ther
March 2025
Pediatric Cell and Gene Therapy Research Center, Gene, Cell & Tissue Research Institute, Tehran University of Medical Science, Tehran, Iran.
Gene therapy (GT) as a groundbreaking approach holds promise for treating many diseases including immune deficiencies and blood disorders. GT can benefit patients suffering from these diseases, especially those without matched donors or who are at risk after hematopoietic stem cell transplantation (HSCT). Due to all the advances in the field of GT, its main challenge is still gene delivery.
View Article and Find Full Text PDFGenet Test Mol Biomarkers
January 2025
Department of Biology, University of Sistan and Baluchestan, Zahedan, Iran.
Fanconi anemia (FA) is a rare genetic disorder that affects multiple systems in the body and is the most prevalent congenital syndrome, leading to bone marrow failure. Twenty-two genes have been identified as contributors to the disease. Significant advancements have been made in the past 2 decades in understanding the genetic and pathophysiological processes involved.
View Article and Find Full Text PDFBreast Cancer Res
January 2025
Servicio de Oncología, Centro Universitario Contra el Cáncer (CUCC), Hospital Universitario "Dr. José Eleuterio González", Universidad Autónoma de Nuevo León, 66451, Monterrey, Nuevo León, México.
Background: Hereditary predisposition to breast and ovarian cancer syndrome (HBOC) is a pathological condition with increased cancer risk, including breast (BC), ovarian cancer (OC), and others. HBOC pathogenesis is caused mainly by germline pathogenic variants (GPV) in BRCA1 and BRCA2 genes. However, other relevant genes are related to this syndrome diagnosis, prognosis, and treatment, including TP53, PALB2, CHEK2, ATM, etc.
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