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result(s) for
"Six, Emmanuelle"
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Gene therapy targeting haematopoietic stem cells for inherited diseases: progress and challenges
by
Miccio Annarita
,
Six Emmanuelle
,
André-Schmutz, Isabelle
in
Blood diseases
,
Gene therapy
,
Genetic engineering
2019
Pioneering gene therapy trials have shown that the genetic engineering of haematopoietic stem and progenitor cells can be an alternative to allogeneic transplantation in the treatment of primary immunodeficiencies. Early trials also highlighted the risk of insertional mutagenesis and oncogene transactivation associated with the first generation of gammaretroviral vectors. These events prompted the development of safer, self-inactivating lentiviral or gammaretroviral vectors. These lentiviral vectors have been successfully used to treat over 200 patients with 10 different haematological disorders (including primary immunodeficiencies, haemoglobinopathies and metabolic disorders) and for the generation of chimeric antigen receptor-T cells for cancer therapy. However, several challenges, such as effective reconstitution during inflammation, remain if gene therapy is to be extended to more complex diseases in which haematopoietic stem and progenitor cells can be altered by the disease environment. We discuss the progress made and future challenges for gene therapy and contrast gene therapy with gene-editing strategies.Advances in the design of vectors based on retroviruses, such as lentiviruses and gammaretroviruses, have led to improvements in the safety and stability of gene therapies directed at haematopoietic stem and progenitor cells. In this Review, Cavazzana and colleagues discuss the results from recent clinical trials of retroviral vectors for the treatment of genetic disorders, including severe combined immunodeficiencies and β-haemoglobinopathies (β-thalassaemia and sickle cell disease). They highlight the progress made and the remaining challenges in applying gene therapies more broadly.
Journal Article
Gene signature extraction and cell identity recognition at the single-cell level with Cell-ID
2021
Because of the stochasticity associated with high-throughput single-cell sequencing, current methods for exploring cell-type diversity rely on clustering-based computational approaches in which heterogeneity is characterized at cell subpopulation rather than at full single-cell resolution. Here we present Cell-ID, a clustering-free multivariate statistical method for the robust extraction of per-cell gene signatures from single-cell sequencing data. We applied Cell-ID to data from multiple human and mouse samples, including blood cells, pancreatic islets and airway, intestinal and olfactory epithelium, as well as to comprehensive mouse cell atlas datasets. We demonstrate that Cell-ID signatures are reproducible across different donors, tissues of origin, species and single-cell omics technologies, and can be used for automatic cell-type annotation and cell matching across datasets. Cell-ID improves biological interpretation at individual cell level, enabling discovery of previously uncharacterized rare cell types or cell states. Cell-ID is distributed as an open-source R software package.
Cell-ID facilitates the analysis of cell-type heterogeneity and cell identity across multiple samples at the single-cell level.
Journal Article
Transient mTOR inhibition rescues 4-1BB CAR-Tregs from tonic signal-induced dysfunction
2021
The use of chimeric antigen receptor (CAR)-engineered regulatory T cells (Tregs) has emerged as a promising strategy to promote immune tolerance. However, in conventional T cells (Tconvs), CAR expression is often associated with tonic signaling, which can induce CAR-T cell dysfunction. The extent and effects of CAR tonic signaling vary greatly according to the expression intensity and intrinsic properties of the CAR. Here, we show that the 4-1BB CSD-associated tonic signal yields a more dramatic effect in CAR-Tregs than in CAR-Tconvs with respect to activation and proliferation. Compared to CD28 CAR-Tregs, 4-1BB CAR-Tregs exhibit decreased lineage stability and reduced in vivo suppressive capacities. Transient exposure of 4-1BB CAR-Tregs to a Treg stabilizing cocktail, including an mTOR inhibitor and vitamin C, during ex vivo expansion sharply improves their in vivo function and expansion after adoptive transfer. This study demonstrates that the negative effects of 4-1BB tonic signaling in Tregs can be mitigated by transient mTOR inhibition.
Chimeric antigen receptor engineering in T cells has been shown to be of great potential therapeutic benefit in a range of immune pathologies, although the functionality of such cell therapies can be limited due to tonic signalling and the induction of dysfunction. Here the authors show transient inhibition of mTOR can rescue their 41-BB-CAR-Tregs from tonic signalling-induced dysfunction.
Journal Article
Single-cell analysis reveals the continuum of human lympho-myeloid progenitor cells
2018
The hierarchy of human hemopoietic progenitor cells that produce lymphoid and granulocytic–monocytic (myeloid) lineages is unclear. Multiple progenitor populations produce lymphoid and myeloid cells, but they remain incompletely characterized. Here we demonstrated that lympho-myeloid progenitor populations in cord blood — lymphoid-primed multi-potential progenitors (LMPPs), granulocyte-macrophage progenitors (GMPs) and multi-lymphoid progenitors (MLPs) — were functionally and transcriptionally distinct and heterogeneous at the clonal level, with progenitors of many different functional potentials present. Although most progenitors had the potential to develop into only one mature cell type (‘uni-lineage potential’), bi- and rarer multi-lineage progenitors were present among LMPPs, GMPs and MLPs. Those findings, coupled with single-cell expression analyses, suggest that a continuum of progenitors execute lymphoid and myeloid differentiation, rather than only uni-lineage progenitors’ being present downstream of stem cells.
Vyas and colleagues show that a continuum of hemopoietic progenitor cells from human cord blood execute lymphoid and myeloid differentiation.
Journal Article
Long-term outcomes of lentiviral gene therapy for the β-hemoglobinopathies: the HGB-205 trial
by
El Nemer, Wassim
,
Miccio, Annarita
,
Gabrion, Aurélie
in
631/61/201
,
692/308/153
,
692/699/1541
2022
Sickle cell disease (SCD) and transfusion-dependent β-thalassemia (TDT) are the most prevalent monogenic disorders worldwide. Trial HGB-205 (
NCT02151526
) aimed at evaluating gene therapy by autologous CD34
+
cells transduced ex vivo with lentiviral vector BB305 that encodes the anti-sickling β
A-T87Q
-globin expressed in the erythroid lineage. HGB-205 is a phase 1/2, open-label, single-arm, non-randomized interventional study of 2-year duration at a single center, followed by observation in long-term follow-up studies LTF-303 (
NCT02633943
) and LTF-307 (
NCT04628585
) for TDT and SCD, respectively. Inclusion and exclusion criteria were similar to those for allogeneic transplantation but restricted to patients lacking geno-identical, histocompatible donors. Four patients with TDT and three patients with SCD, ages 13–21 years, were treated after busulfan myeloablation 4.6–7.9 years ago, with a median follow-up of 4.5 years. Key primary endpoints included mortality, engraftment, replication-competent lentivirus and clonal dominance. No adverse events related to the drug product were observed. Clinical remission and remediation of biological hallmarks of the disease have been sustained in two of the three patients with SCD, and frequency of transfusions was reduced in the third. The patients with TDT are all transfusion free with improvement of dyserythropoiesis and iron overload.
The final report of the phase 1/2 lentiviral gene therapy trial in severe β-hemoglobinopathies, HGB-205, shows a long-term safety profile and sustained reduction of transfusion requirements in patients with β-thalassemia and of sickle cell crises in patients with sickle cell disease.
Journal Article
Single-cell analysis of FOXP3 deficiencies in humans and mice unmasks intrinsic and extrinsic CD4+ T cell perturbations
by
Garcia-Lloret, Maria I.
,
Leon, Juliette
,
Keles, Sevgi
in
631/250/2502
,
631/250/38
,
Adolescent
2021
FOXP3
deficiency in mice and in patients with immune dysregulation polyendocrinopathy enteropathy X-linked (IPEX) syndrome results in fatal autoimmunity by altering regulatory T (T
reg
) cells. CD4
+
T cells in patients with IPEX syndrome and
Foxp3
-deficient mice were analyzed by single-cell cytometry and RNA-sequencing, revealing heterogeneous T
reg
-like cells, some very similar to normal T
reg
cells, others more distant. Conventional T cells showed no widespread activation or helper T cell bias, but a monomorphic disease signature affected all CD4
+
T cells. This signature proved to be cell extrinsic since it was extinguished in mixed bone marrow chimeric mice and heterozygous mothers of patients with IPEX syndrome. Normal T
reg
cells exerted dominant suppression, quenching the disease signature and revealing in mutant T
reg
-like cells a small cluster of genes regulated cell-intrinsically by FOXP3, including key homeostatic regulators. We propose a two-step pathogenesis model: cell-intrinsic downregulation of core FOXP3-dependent genes destabilizes T
reg
cells, de-repressing systemic mediators that imprint the disease signature on all T cells, furthering T
reg
cell dysfunction. Accordingly, interleukin-2 treatment improved the T
reg
-like compartment and survival.
FOXP3 deficiency leads to dramatic loss of immune homeostasis. This multicenter collaborative group finds that loss of FOXP3 function only disrupts a few core genes, but this unmasks a degree of systemic inflammation, and it is this environment that then strongly perturbs T
reg
cells.
Journal Article
Retrieval of vector integration sites from cell-free DNA
by
Schiroli, Giulia
,
Naldini, Luigi
,
Benedicenti, Fabrizio
in
631/61/2300/1514
,
692/308/575
,
Biomedical and Life Sciences
2021
Gene therapy (GT) has rapidly attracted renewed interest as a treatment for otherwise incurable diseases, with several GT products already on the market and many more entering clinical testing for selected indications. Clonal tracking techniques based on vector integration enable monitoring of the fate of engineered cells in the blood of patients receiving GT and allow assessment of the safety and efficacy of these procedures. However, owing to the limited number of cells that can be tested and the impracticality of studying cells residing in peripheral organs without performing invasive biopsies, this approach provides only a partial snapshot of the clonal repertoire and dynamics of genetically modified cells and reduces the predictive power as a safety readout. In this study, we developed liquid biopsy integration site sequencing, or LiBIS-seq, a polymerase chain reaction technique optimized to quantitatively retrieve vector integration sites from cell-free DNA released into the bloodstream by dying cells residing in several tissues. This approach enabled longitudinal monitoring of in vivo liver-directed GT and clonal tracking in patients receiving hematopoietic stem cell GT, improving our understanding of the clonal composition and turnover of genetically modified cells in solid tissues and, in contrast to conventional analyses based only on circulating blood cells, enabling earlier detection of vector-marked clones that are aberrantly expanding in peripheral tissues.
A new approach called liquid biopsy integration site sequencing enables monitoring of genetically modified cells in solid tissues of patients receiving gene therapy.
Journal Article
A case of T-cell acute lymphoblastic leukemia in retroviral gene therapy for ADA-SCID
2024
Hematopoietic stem cell gene therapy (GT) using a γ-retroviral vector (γ-RV) is an effective treatment for Severe Combined Immunodeficiency due to Adenosine Deaminase deficiency. Here, we describe a case of GT-related T-cell acute lymphoblastic leukemia (T-ALL) that developed 4.7 years after treatment. The patient underwent chemotherapy and haploidentical transplantation and is currently in remission. Blast cells contain a single vector insertion activating the LIM-only protein 2 (
LMO2)
proto-oncogene, confirmed by physical interaction, and low Adenosine Deaminase (ADA) activity resulting from methylation of viral promoter. The insertion is detected years before T-ALL in multiple lineages, suggesting that further hits occurred in a thymic progenitor. Blast cells contain known and novel somatic mutations as well as germline mutations which may have contributed to transformation. Before T-ALL onset, the insertion profile is similar to those of other ADA-deficient patients. The limited incidence of vector-related adverse events in ADA-deficiency compared to other γ-RV GT trials could be explained by differences in transgenes, background disease and patient’s specific factors.
Leukaemia development has been reported as an associated risk of haematopoietic stem cell gene therapy (HSPC-GT) using retroviral vectors in different diseases. Here, the authors show a case of T-cell acute lymphoid leukaemia in a patient with Adenosine Deaminase-deficient Severe Combined Immunodeficiency (ADA-SCID) treated with retroviral gene therapy.
Journal Article
Severe inflammation and lineage skewing are associated with poor engraftment of engineered hematopoietic stem cells in patients with sickle cell disease
2025
In sickle cell disease (SCD), the β6
Glu→Val
substitution in the β-globin leads to red blood cell sickling. The transplantation of autologous, genetically modified hematopoietic stem and progenitor cells (HSPCs) is a promising treatment option for patients with SCD. We completed a Phase I/II open-label clinical trial (NCT03964792) for patients with SCD using a lentiviral vector (DREPAGLOBE) expressing a potent anti-sickling β-globin. The primary endpoint was to evaluate the short-term safety and secondary endpoints included the efficacy and the long-term safety. We report on the results after 18 to 36 months of follow-up. No drug-related adverse events or signs of clonal hematopoiesis were observed. Despite similar vector copy numbers in the drug product, gene-marking in peripheral blood mononuclear cells and correction of the clinical phenotype varied from one patient to another. Single-cell transcriptome analyses show that in the patients with poor engraftment, the most immature HSCs display an exacerbated inflammatory signature (via IL-1 or TNF-α and interferon signaling pathways). This signature is accompanied by a lineage bias in the HSCs. Our clinical data indicates that the DREPAGLOBE-based gene therapy (GT) is safe. However, its efficacy is variable and probably depends on the number of infused HSCs and intrinsic, engraftment-impairing inflammatory alterations in HSCs. Trial: NCT03964792
The DREPAGLOBE lentiviral-based gene therapy for sickle cell disease is safe. However, its efficacy depends on the number of infused hematopoietic stem cells (HSCs) and intrinsic, engraftment impairing inflammatory alterations in HSCs.
Journal Article
Human adenylate kinase 2 deficiency causes a profound hematopoietic defect associated with sensorineural deafness
by
Morillon, Estelle
,
Candotti, Fabio
,
Petit, Christine
in
Adenylate kinase
,
Adenylate Kinase - deficiency
,
Adenylate Kinase - genetics
2009
Marina Cavazzana-Calvo and colleagues report mutations in the gene encoding mitochondrial adenylate kinase 2 in reticular dysgenesis, the most severe form of inborn combined immunodeficiency, characterized by the absence of granulocytes and almost complete deficiency of lymphocytes in peripheral blood.
Reticular dysgenesis is an autosomal recessive form of human severe combined immunodeficiency characterized by an early differentiation arrest in the myeloid lineage and impaired lymphoid maturation. In addition, affected newborns have bilateral sensorineural deafness. Here we identify biallelic mutations in
AK2
(adenylate kinase 2) in seven individuals affected with reticular dysgenesis. These mutations result in absent or strongly decreased protein expression. We then demonstrate that restoration of AK2 expression in the bone marrow cells of individuals with reticular dysgenesis overcomes the neutrophil differentiation arrest, underlining its specific requirement in the development of a restricted set of hematopoietic lineages. Last, we establish that AK2 is specifically expressed in the stria vascularis region of the inner ear, which provides an explanation of the sensorineural deafness in these individuals. These results identify a previously unknown mechanism involved in regulation of hematopoietic cell differentiation and in one of the most severe human immunodeficiency syndromes.
Journal Article