PubMed HealthSearch

SEARCH · PubMed Health

Results for “FXN”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

3 recordsLinked to original sources

Frataxin deficiency drives cardiac dysfunction and transcriptional dysregulation in Friedreich ataxia iPSC model.

Friedreich ataxia (FRDA) is a progressive neuromuscular degenerative disorder caused by GAA repeat expansions in the FXN gene, leading to frataxin deficiency and multisystem pathology. Cardiomyopathy is the leading cause of mortality in individuals with FRDA. To investigate the cellular and molecular mechanisms underlying FRDA-associated cardiac dysfunction, we employed induced pluripotent stem cell (iPSC) lines derived from three individuals with FRDA, each paired with an isogenic control line generated through CRISPR/Cas9-mediated excision of the pathogenic GAA repeat expansion. Correction of the mutation restored FXN expression to levels comparable to healthy donor iPSCs, and all lines differentiated efficiently into cardiomyocytes. Functional analysis revealed significant contractile abnormalities in FRDA cardiomyocytes and multicellular cardiac microtissues, including prolonged contraction and relaxation times and faster beating rates, consistent with clinical observations of cardiac contractile dysfunction. FRDA cardiomyocytes also exhibited pathological features such as increased cell size, irregular calcium transients, elevated mitochondrial reactive oxygen species levels, increased mitochondrial fission and increased cell death. These phenotypes were exacerbated by pathological levels of iron supplementation in culture media, highlighting the heightened sensitivity of frataxin-deficient cardiomyocytes to iron-induced metabolic stress. RNA sequencing revealed a distinct transcriptional profile associated with frataxin deficiency. MEG3 and PCDHGA10 were consistently dysregulated across all three FRDA-iPSC lines and may represent early molecular markers of FRDA cardiomyopathy. Functional interrogation of these candidates demonstrated that targeted silencing of MEG3 or PCDHGA10 in FRDA cardiomyocytes significantly reduced disease‑associated cell death without affecting FXN expression. Notably, PCDHGA10 silencing also normalized elevated mitochondrial reactive oxygen species, whereas MEG3 silencing did not, highlighting gene‑specific contributions to FRDA cardiomyocyte survival. Collectively, these findings identify MEG3 and PCDHGA10 as functionally relevant regulators of FRDA cardiomyocyte pathology.

Friedreich Ataxia

Pancreas rejection. Significance of histopathologic findings with implications for classification of rejection.

To determine the significance of various histopathologic features of pancreatic rejection, we reviewed the pathology of 53 biopsies taken to rule out rejection [32 bladder drained, (BD); 18 non-BD]. Twenty-six biopsies from 23 patients with allografts which ultimately failed (FLD) (7 BD, 16 non-BD) were compared with 27 biopsies from 27 patients with allografts which continue to function (FXN) (25 BD, 2 non-BD). The groups are similar in regard to age, sex, and time after transplant to biopsy. The mean follow-up is 13 months for FLD grafts versus 35 months for FXN grafts (p < 0.0001). In BD grafts, decreases in urine amylase usually led to biopsy, while in non-BD grafts, hyperglycemia usually prompted biopsy. More patients with ultimately FLD organs (17 of 26) presented with elevated blood glucose (BG) than patients with FXN grafts (2 of 27) (p < 0.0001). Multiple histologic features were examined related to the acinar tissue, pancreatic ducts, islets, vessels, and nerves. Features which strongly correlated with a negative outcome included moderate to severe inflammation of acinar tissue (p < 0.0001), acinar tissue loss and fibrosis (p < 0.0087) and vascular luminal narrowing due to chronic rejection (p < 0.003). Twenty-one pancreases showed chronic rejection and were treated with OKT3 or anti-lymphocytic globulin (ALG), six of these continue to function 1.6-9 years after biopsy, including two who presented with elevated BG levels. A normal biopsy was found in nine pancreases, all of which continue to function. Vasculitis was only seen in biopsies with moderate to severe inflammation, whereas endothelialitis was also seen in association with mild inflammation, suggesting that vasculitis is a more aggressive lesion. A rejection classification is proposed with endothelialitis partly defining mild rejection and vasculitis defining severe rejection. We conclude that several biopsy features and elevation of BG are strongly correlated with a high probability of failure; however, antirejection therapy is justified because recovery of function occurs in some cases. A normal biopsy obviates the need for therapy and predicts a good outcome, as do mild histological findings of rejection.

Adolescent

Type and position of repeat interruptions as determinants of disease severity and expansion size in Friedreich ataxia.

PURPOSE: In Friedreich ataxia (FRDA) the size of the smaller GAA expansion is a major determinant of disease severity; interruption motifs were identified after the discovery of the pathogenic expansions; however, their impact is only recently investigated. METHODS: 164 patients with FRDA with biallelic expansions and 15 patients without FRDA were analyzed for interruption(s) number, position, and motif. Expansion size and age at onset of ataxia (AAO) were determined for patients with FRDA. RESULTS: Three groups of patients with FRDA were identified by the simultaneous analysis of the precise distance ("depth") between the interruptions (mostly nontriplet) and the 3' end of the expansion (P < .001), the smaller expansion size (P < .001), and AAO (P < .001). Classical FRDA corresponds to absence of interruption or interruption depth < 8 repeats, with AAO often <15 years (area under the curve [AUC] = 0.90; 95% CI, 0.84-0.96); LOFA to interruption depth of 8 to 18 repeats (AUC = 0.97; 95% CI, 0.94-1), with AAO 15 to 34 years (AUC = 1; 95% CI, 1-1); and vLOFA to interruption depth > 18 (AUC = 0.97; 95% CI, 0.92-1), with AAO > 34 years. Multiple (>5) triplet interruptions hamper further expansion. CONCLUSION: This study provides the molecular basis for a novel classification of FRDA that should be recommended for correct diagnosis.

Humans