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  • 1
    Publication Date: 2019-11-13
    Description: Nine Fanconi anemia patients complementation group A (FA-A), age 2-6 years, have been infused with autologous hematopoietic cells after genetic correction with the therapeutic PGK-FANCA.Wpre* lentiviral vector. In all instances patients underwent CD34+ cell mobilization with G-CSF and plerixafor and were subsequently infused in the absence of any pre-conditioning regimen, in order to avoid genotoxic side effects in a population characterized by DNA repair defects and cancer predisposition. The first four patients were treated between January 2016 and March 2017 and were infused with an estimated number of 170,000 and 410,000 transduced CD34+ cells/Kg. The other five patients were treated more recently with cell numbers that ranged between 50,000 to 1.6x106 corrected CD34+ cells/kg. The analyses of the first four patients showed the presence of corrected cells both in BM and PB after six months post-infusion and progressive increases of gene marking were observed thereafter in all these patients until the most recent follow-up (2 to 〉3 years post-infusion). Gene marking in BM CD34+ cells correlated with the survival of the CFCs to mitomycin-C, with levels up to 70% at 3 years post-infusion. Additionally, progressive decreases in the percentage of PB T cells with diepoxybutane-induced chromosomal breaks were observed in the patients with higher levels of gene marking. Similarly, stabilized PB cell counts have been observed in patients with higher percentages of gene corrected cells. Insertion site analyses revealed the absence of genotoxic events, and demonstrated the engraftment of pluripotent HSCs and a pattern of oligoclonal reconstitution, consistent with the number of infused corrected CD34+ cells and the absence of conditioning. In the five additional patients treated more recently, the presence of gene corrected PB cells has been confirmed; levels of gene marking have been consistent with data observed in the first four treated patients and with the number of infused CD34+ cells. Our results confirm the engraftment of gene corrected HSCs in non-conditioned FA-A patients, in some cases through more than 3 years of follow-up, suggesting the relevance of this therapeutic approach in FA. Disclosures Rio: Rocket Pharmaceuticals, Inc.: Equity Ownership, Patents & Royalties: Inventor on patents on lentiviral vectors filled by CIEMAT, CIBERER and F.J.D and may be entitled to receive financial benefits from the licensing of such patents, Research Funding. Navarro:Rocket Pharmaceuticals, Inc.: Patents & Royalties: Inventor on patents on lentiviral vectors filled by CIEMAT, CIBERER and F.J.D and may be entitled to receive financial benefits from the licensing of such patents. Segovia:Rocket Pharmaceuticals, Inc.: Equity Ownership, Honoraria, Patents & Royalties: Inventor on patents on lentiviral vectors filled by CIEMAT, CIBERER and F.J.D and may be entitled to receive financial benefits from the licensing of such patents, Research Funding. Wang:GeneWerk: Employment. Casado:Rocket Pharmaceuticals, Inc.: Patents & Royalties: Inventor on patents on lentiviral vectors filled by CIEMAT, CIBERER and F.J.D and may be entitled to receive financial benefits from the licensing of such patents. Galy:Genethon: Employment. Cavazzana:SmartImmune: Other: Founder. Schwartz:Rocket Pharmaceuticals: Employment, Equity Ownership. Schmidt:GeneWerk GmbH, Heidelberg, Gemrany: Equity Ownership; German Cancer Research Center, Heidelberg, Germany: Employment. Díaz de Heredia:Novartis: Membership on an entity's Board of Directors or advisory committees, Speakers Bureau. Sevilla:Rocket Pharmaceuticals, Inc.: Honoraria, Patents & Royalties: Inventor on patents on lentiviral vectors filled by CIEMAT, CIBERER and F.J.D and may be entitled to receive financial benefits from the licensing of such patents; NOVARTIS: Honoraria, Membership on an entity's Board of Directors or advisory committees; Rocket: Membership on an entity's Board of Directors or advisory committees; Amgen: Honoraria, Membership on an entity's Board of Directors or advisory committees; Sobi: Membership on an entity's Board of Directors or advisory committees; Miltenyi Biotech: Honoraria. Bueren:Rocket Pharmaceuticals, Inc.: Consultancy, Equity Ownership, Patents & Royalties: Inventor on patents on lentiviral vectors filled by CIEMAT, CIBERER and F.J.D and may be entitled to receive financial benefits from the licensing of such patents, Research Funding.
    Print ISSN: 0006-4971
    Electronic ISSN: 1528-0020
    Topics: Biology , Medicine
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  • 2
    Publication Date: 2004-01-01
    Description: Fanconi anemia (FA) is an autosomal recessive cancer susceptibility syndrome characterized by cellular sensitivity to genotoxic agents. In recent years, FA proteins have been associated with different molecules involved in signal transduction, which has raised the interest in FA-dependent signaling pathways. Here, we report that the c-Jun N-terminal kinase (JNK) fails to phosphorylate in response to UV radiation and treatment with mitomycin C in FA lymphoblast cells derived from type A patients (FA-A). Furthermore, defective kinase activity seems to be specific for JNK, because extracellular signal-regulated kinase (ERK) responded to the proper stimuli in FA-A cells. We also demonstrate that the early growth-response factor-1 (Egr-1), a JNK downstream target gene that is normally induced by genotoxic stress, is not upregulated in UV-treated FA-A cells. Moreover, FA-A cells are more sensitive to apoptosis than control lymphoblasts. Both JNK and Egr-1 may be part of a pathway triggered by FA proteins, because functional correction of FA-A cells by gene transfer restores, at least in part, JNK activation and Egr-1 expression after UV exposure. Together, our data suggest that activation of JNK and expression of Egr-1 gene in B lymphoblasts mediate a cellular response to genotoxic agents that may be induced by FA proteins.
    Print ISSN: 0006-4971
    Electronic ISSN: 1528-0020
    Topics: Biology , Medicine
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  • 3
    Publication Date: 2021-04-09
    Description: Fanconi anemia (FA) patients have an exacerbated risk of head and neck squamous cell carcinoma (HNSCC). Treatment is challenging as FA patients display enhanced toxicity to standard treatments, including radio/chemotherapy. Therefore, better therapies as well as new disease models are urgently needed. We have used CRISPR/Cas9 editing tools in order to interrupt the human FANCA gene by the generation of insertions/deletions (indels) in exon 4 in two cancer cell lines from sporadic HNSCC having no mutation in FA-genes: CAL27 and CAL33 cells. Our approach allowed efficient editing, subsequent purification of single-cell clones, and Sanger sequencing validation at the edited locus. Clones having frameshift indels in homozygosis did not express FANCA protein and were selected for further analysis. When compared with parental CAL27 and CAL33, FANCA-mutant cell clones displayed a FA-phenotype as they (i) are highly sensitive to DNA interstrand crosslink (ICL) agents such as mitomycin C (MMC) or cisplatin, (ii) do not monoubiquitinate FANCD2 upon MMC treatment and therefore (iii) do not form FANCD2 nuclear foci, and (iv) they display increased chromosome fragility and G2 arrest after diepoxybutane (DEB) treatment. These FANCA-mutant clones display similar growth rates as their parental cells. Interestingly, mutant cells acquire phenotypes associated with more aggressive disease, such as increased migration in wound healing assays. Therefore, CAL27 and CAL33 cells with FANCA mutations are phenocopies of FA-HNSCC cells.
    Electronic ISSN: 2073-4425
    Topics: Biology
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