Publications by authors named "Alessandro Aiuti"

Background: Inborn errors of immunity (IEIs) are more than 500 different rare congenital disorders of the immune system characterized by susceptibility to infections and immune dysregulation. The significant overlap of the clinical features among the different forms may lead to diagnostic delay. High throughput sequencing techniques may allow a timely genetic definition.

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  • Hematopoietic Stem Cell (HSC) gene therapy can potentially provide long-lasting treatment for various genetic blood disorders, but its effects in different patients are not fully understood.
  • A study involving 53 patients with conditions like metachromatic leukodystrophy and β-thalassemia showed that the success of HSC gene therapy varies based on disease type, age, and extent of correction.
  • The research identified that while half of the treated patients had stem cells with broad lineage potential, the other half showed specific preferences for producing certain types of blood cells based on their underlying conditions, indicating that HSC function adapts to disease circumstances.
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Patients heterozygous for germline CBL loss-of-function (LOF) variants can develop myeloid malignancy, autoinflammation, or both, if some or all of their leukocytes become homozygous for these variants through somatic loss of heterozygosity (LOH) via uniparental isodisomy. We observed an upregulation of the inflammatory gene expression signature in whole blood from these patients, mimicking monogenic inborn errors underlying autoinflammation. Remarkably, these patients had constitutively activated monocytes that secreted 10 to 100 times more inflammatory cytokines than those of healthy individuals and CBL LOF heterozygotes without LOH.

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Background: Deficiency of adenosine deaminase 2 (DADA2) is a complex monogenic disease caused by recessive mutations in the ADA2 gene. DADA2 exhibits a broad clinical spectrum encompassing vasculitis, immunodeficiency, and hematologic abnormalities. Yet, the impact of DADA2 on the bone marrow (BM) microenvironment is largely unexplored.

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Mucopolysaccharidosis type IVB (MPSIVB) is a lysosomal storage disorder caused by β-galactosidase (β-GAL) deficiency characterized by severe skeletal and neurological alterations without approved treatments. To develop hematopoietic stem progenitor cell (HSPC) gene therapy (GT) for MPSIVB, we designed lentiviral vectors (LVs) encoding human β-GAL to achieve supraphysiological release of the therapeutic enzyme in human HSPCs and metabolic correction of diseased cells. Transduced HSPCs displayed proper colony formation, proliferation, and differentiation capacity, but their progeny failed to release the enzyme at supraphysiological levels.

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Bone marrow-mesenchymal stromal cells (BM-MSCs) are key components of the BM niche, where they regulate hematopoietic stem progenitor cell (HSPC) homeostasis by direct contact and secreting soluble factors. BM-MSCs also protect the BM niche from excessive inflammation by releasing anti-inflammatory factors and modulating immune cell activity. Thanks to these properties, BM-MSCs were successfully employed in pre-clinical HSPC transplantation models, increasing the rate of HSPC engraftment, accelerating the hematological reconstitution, and reducing the risk of graft failure.

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Up to 70% of patients with Wiskott-Aldrich syndrome (WAS) develop autoimmune and inflammatory manifestations. Dysregulation of interleukin 1 (IL-1) may be involved in their pathogenesis, yet there is little evidence on treatment with anti-IL-1 agents in these patients. We conducted a multicenter retrospective analysis of 9 patients with WAS treated with anti-IL-1 agents (anakinra or canakinumab).

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  • The study examines a previously healthy patient who suffered two severe infections: West Nile Virus (WNV) and SARS-CoV-2, revealing factors that contributed to the severity of these illnesses.
  • During the hospital stay for COVID-19, the patient was diagnosed with a thymoma, a tumor of the thymus gland, which was present during the WNV infection.
  • Genetic factors, such as certain variants in the TLR3 and CCR5 genes, as well as the presence of auto-antibodies linked to the thymoma, were identified as increasing the patient's susceptibility to serious complications from both infections.
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  • Gain-of-function mutations in STING lead to STING-associated vasculopathy with onset in infancy (SAVI), which is marked by systemic inflammation, skin issues, and lung disease.
  • A new STING variant (F269S) was discovered in a SAVI patient; this variant causes abnormal activation of immune pathways and an increase in circulating naïve T cells in the patient's bone marrow.
  • The STING F269S variant enhances protein signaling and protects against viral infections but disrupts immune function, contributing to inflammation and damage in endothelial cells, thereby linking immune and lung diseases.
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  • Mucopolysaccharidosis type I Hurler (MPSIH) causes severe skeletal issues that aren't fully improved by traditional stem cell transplants (HSCT), but autologous gene therapy (HSPC-GT) shows promise for better metabolic outcomes.
  • In a clinical trial with eight young patients (average age 1.9 years), those who underwent HSPC-GT were evaluated over four years for various growth and skeletal measures, showing significant improvements compared to those treated with HSCT.
  • After nearly four years, HSPC-GT patients demonstrated better growth, joint mobility, and reduced signs of hip dysplasia, indicating early positive impacts on skeletal health, but more long-term data is needed for con
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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.

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Wiskott-Aldrich syndrome (WAS) is a multifaceted monogenic disorder with a broad disease spectrum and variable disease severity and a variety of treatment options including allogeneic hematopoietic stem cell transplantation (HSCT) and gene therapy (GT). No reliable biomarker exists to predict disease course and outcome for individual patients. A total of 577 patients with a WAS variant from 26 countries and a median follow-up of 8.

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In physiological conditions, few circulating hematopoietic stem/progenitor cells (cHSPCs) are present in the peripheral blood, but their contribution to human hematopoiesis remain unsolved. By integrating advanced immunophenotyping, single-cell transcriptional and functional profiling, and integration site (IS) clonal tracking, we unveiled the biological properties and the transcriptional features of human cHSPC subpopulations in relationship to their bone marrow (BM) counterpart. We found that cHSPCs reduced in cell count over aging and are enriched for primitive, lymphoid, and erythroid subpopulations, showing preactivated transcriptional and functional state.

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Adenosine deaminase (ADA) deficiency leads to severe combined immunodeficiency (SCID). Previous clinical trials showed that autologous CD34 cell gene therapy (GT) following busulfan reduced-intensity conditioning is a promising therapeutic approach for ADA-SCID, but long-term data are warranted. Here we report an analysis on long-term safety and efficacy data of 43 patients with ADA-SCID who received retroviral ex vivo bone marrow-derived hematopoietic stem cell GT.

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Fernando Aiuti (Figure 1), born in Urbino on 8 June 1935, suddenly died on 9 January 2019, leaving a great void not only among his family members and those who knew him and appreciated his great humanity and acute intelligence, but in the entire immunological scientific community [...

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Rare and ultrarare diseases have been central to the field of gene therapy since its earliest stage, and we are now witnessing more and more effective treatments entering the clinical realm for patients in need. However, despite promising results across a range of rare diseases, transformative gene therapies may not be available and accessible to patients for nonmedical reasons. Traditional regulatory and commercialization pathways to licensed products seem to be prohibitive for ultrasmall patient populations.

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Vaccination with Bacillus Calmette-Guérin (BCG) can be harmful to patients with combined primary immunodeficiencies. We report the outcome of BCG vaccination in a series of twelve patients affected by adenosine deaminase deficiency (ADA-SCID). BCG vaccination resulted in a very high incidence of complications due to uncontrolled replication of the mycobacterium.

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Hemophagocytic inflammatory syndrome (HIS) is a rare form of secondary hemophagocytic lymphohistiocytosis caused by an impaired equilibrium between natural killer and cytotoxic T-cell activity, evolving in hypercytokinemia and multiorgan failure. In the context of inborn errors of immunity, HIS occurrence has been reported in severe combined immunodeficiency (SCID) patients, including two cases of adenosine deaminase deficient-SCID (ADA-SCID). Here we describe two additional pediatric cases of ADA-SCID patients who developed HIS.

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Background: Activated phosphoinositide-3-kinase δ syndrome (APDS) is an inborn error of immunity (IEI) with infection susceptibility and immune dysregulation, clinically overlapping with other conditions. Management depends on disease evolution, but predictors of severe disease are lacking.

Objectives: This study sought to report the extended spectrum of disease manifestations in APDS1 versus APDS2; compare these to CTLA4 deficiency, NFKB1 deficiency, and STAT3 gain-of-function (GOF) disease; and identify predictors of severity in APDS.

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Mosquito-borne West Nile virus (WNV) infection is benign in most individuals but can cause encephalitis in <1% of infected individuals. We show that ∼35% of patients hospitalized for WNV disease (WNVD) in six independent cohorts from the EU and USA carry auto-Abs neutralizing IFN-α and/or -ω. The prevalence of these antibodies is highest in patients with encephalitis (∼40%), and that in individuals with silent WNV infection is as low as that in the general population.

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Dysregulation of the interleukin-1 (IL-1) pathway leads to immune diseases that can result in chronic tissue and organ inflammation. Although IL-1 blockade has shown promise in ameliorating these symptoms and improving patients' quality of life, there is an urgent need for more effective, long-lasting treatments. We developed a lentivirus (LV)-mediated gene transfer strategy using transplanted autologous hematopoietic stem/progenitor cells (HSPCs) as a source of IL-1 receptor antagonist (IL-1RA) for systemic delivery to tissues and organs.

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