Search results for "FANCA"

showing 3 items of 3 documents

Lentiviral-Mediated Gene Therapy in Fanconi Anemia-A Mice Reveals Long-Term Engraftment and Continuous Turnover of Corrected HSCs

2015

International audience; Fanconi anemia is a DNA repair-deficiency syndrome mainly characterized by cancer predisposition and bone marrow failure. Trying to restore the hematopoietic function in these patients, lentiviral vector-mediated gene therapy trials have recently been proposed. However, because no insertional oncogenesis studies have been conducted so far in DNA repair-deficiency syndromes such as Fanconi anemia, we have carried out a genome-wide screening of lentiviral insertion sites after the gene correction of Fanca-/- hematopoietic stem cells (HSCs), using LAM-PCR and 454-pyrosequencing. Our studies first demonstrated that transduction of Fanca-/- HSCs with a lentiviral vector d…

DNA RepairDNA repair[SDV]Life Sciences [q-bio]Genetic enhancementGenetic VectorsBiologymedicine.disease_causePolymerase Chain ReactionViral vectorCell LineMiceFanconi anemiaTransduction Genetichemic and lymphatic diseasesDrug DiscoveryGeneticsmedicineAnimalsMolecular BiologyGenetics (clinical)Mice KnockoutFanconi Anemia Complementation Group A ProteinLentivirusBone marrow failureGenetic Therapymedicine.diseaseHematopoietic Stem CellsFANCA3. Good health[SDV] Life Sciences [q-bio]Fanconi AnemiaCancer researchMolecular MedicineStem cellCarcinogenesis
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Identification of a genetic signature enriching for response to ibrutinib in relapsed/refractory follicular lymphoma in the DAWN phase 2 trial.

2021

Abstract Background The single‐arm DAWN trial (NCT01779791) of ibrutinib monotherapy in patients with relapsed/refractory follicular lymphoma (FL) showed an overall response rate (ORR) of 20.9% and a median response duration of 19.4 months. This biomarker analysis of the DAWN dataset sought to determine genetic classifiers for prediction of response to ibrutinib treatment. Methods Whole exome sequencing was performed on baseline tumor samples. Potential germline variants were excluded; a custom set of 1216 cancer‐related genes was examined. Responder‐ versus nonresponder‐associated variants were identified using Fisher's exact test. Classifiers with increasing numbers of genes were created …

OncologyCancer ResearchFollicular lymphomaBiochemistrychemistry.chemical_compoundGenetic signaturePiperidinesRecurrenceMedicineExomeLymphoma FollicularExome sequencingRC254-282Research ArticlesNeoplasms. Tumors. Oncology. Including cancer and carcinogensHematologyDNA-Binding ProteinsExact testOncologyIbrutinibRefractory Follicular LymphomaClin oncolResearch ArticleGenetic Markersmedicine.medical_specialtyImmunologyAntineoplastic AgentslymphomaBiologyGermline mutationInternal medicinePartial responseExome SequencingHumansRadiology Nuclear Medicine and imagingIn patientbusiness.industryAdeninegenetic variantsClinical Cancer ResearchbiomarkersCell Biologymedicine.diseasemutationsFANCAMutational analysisCARD Signaling Adaptor ProteinschemistryGuanylate CyclaseFamily medicineRelapsed refractoryMutationbusinessCancer medicine
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Oxidative stress in Fanconi anaemia: from cells and molecules towards prospects in clinical management.

2011

Abstract Fanconi anaemia (FA) is a genetic disease featuring bone marrow failure, proneness to malignancies, and chromosomal instability. A line of studies has related FA to oxidative stress (OS). This review attempts to evaluate the evidence for FA-associated redox abnormalities in the literature from 1981 to 2010. Among 2170 journal articles on FA evaluated, 162 related FA with OS. Early studies reported excess oxygen toxicity in FA cells that accumulated oxidative DNA damage. Prooxidant states were found in white blood cells and body fluids from FA patients as excess luminol-dependent chemiluminescence, 8-hydroxy-deoxyguanosine, reduced glutathione/oxidized glutathione imbalance, and tum…

DNA damageClinical BiochemistryBRIP1MitochondrionBiologymedicine.disease_causeBiochemistryFANCAPRDX3Oxidative StressFanconi AnemiaBiochemistryFANCGFANCD2Cancer researchmedicineAnimalsHumansMolecular BiologyOxidative stressBiological chemistry
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