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result(s) for
"leaky SCID"
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Correction: IL2RG-related immunodeficiencies: from SCID to atypical presentations
2026
[This corrects the article DOI: 10.3389/fimmu.2026.1703097.].
Journal Article
IL2RG-related immunodeficiencies: from SCID to atypical presentations
by
Spoulou, Vana
,
Marinakis, Nikolaos
,
Notarangelo, Luigi D.
in
Animals
,
atypical X-CID
,
Autoimmunity
2026
The interleukin-2 receptor gamma chain gene (
) encodes for the common γ chain (γ
) protein, that is a shared signaling component of multiple interleukin receptors, including IL-2, IL-4, IL-7, IL-9, IL-15, and IL-21, and plays a pivotal role in lymphocyte development, homeostasis, and function. Mutations in
cause X-linked severe combined immunodeficiency (X-SCID) and a broad spectrum of related phenotypes ranging from typical SCID to leaky or atypical presentations, sometimes mimicking common variable immunodeficiency or immune dysregulation syndromes. Over the last decade (2015-2025), advances in molecular diagnostics, next-generation sequencing, and functional immunology have expanded the known
mutational spectrum and refined genotype-phenotype correlations.
Recent research has uncovered novel hypomorphic variants, revealed the structural basis of receptor dysfunction, and elucidated the impact of specific mutations on JAK-STAT signaling. Longitudinal natural history studies have improved understanding of disease progression in partial loss-of-function cases, while expanded newborn screening for SCID has facilitated earlier diagnosis. Advances in preclinical and clinical gene therapy have addressed historical challenges such as insertional mutagenesis, with emerging protocols achieving stable multilineage immune reconstitution. Moreover, comparative HSCT outcome analyses have informed donor selection, conditioning strategies, and post-transplant care, particularly in resource-limited settings.
Improved molecular diagnostics have enabled precision diagnosis in patients with atypical presentations, allowing earlier initiation of curative therapies such as HSCT or gene therapy. Recognition of immune dysregulation, autoimmunity, and malignancy as part of the
-related spectrum has refined long-term follow-up protocols. Multidisciplinary care, integrating infectious disease, immunology, and genetics expertise, has become essential for optimizing patient outcomes.
Ongoing priorities include the expansion of gene therapy trials to cover hypomorphic and late-presenting cases, refinement of reduced-intensity conditioning regimens to minimize toxicity, and development of targeted molecular therapies to modulate downstream signaling in non-transplant candidates. Global initiatives for SCID newborn screening, coupled with collaborative registries, are expected to improve early diagnosis and equitable access to curative interventions.
Journal Article
Harmonizing TREC Thresholds in Newborn Screening for SCID: Insights From Russian Validation Cohort
2025
Background Newborn screening (NBS) for severe combined immunodeficiency (SCID) relies on the measurement of T‐cell receptor excision circle (TREC) for early diagnosis and intervention. However, considerable variation in TREC cutoff values across countries and testing platforms poses challenges for standardization and optimal screening performance. This study aimed to refine the TREC cutoff values in a large Russian pilot NBS cohort comprising 202,908 newborns, with a primary focus on improving SCID detection sensitivity. Methods A retrospective analysis of 202,908 newborns from a pilot NBS project assessed TREC and KREC levels. Confirmed PID diagnoses were compared with TREC measurements in a group of 66 false‐positive cases. The optimal TREC cutoff was established using ROC analysis, with validation across patients with SCID, 22q11.2 deletion syndrome (22q11.2DS), and syndromic forms of PID from an extended validation cohort of PID patients from the Dmitry Rogachev National Medical Research Center. Results Receiver operating characteristic (ROC) analysis based on true‐positive cases identified an optimal TREC cutoff of 150 copies/105 cells. Values between 150–200 copies/105 cells were found to identify high‐risk newborns who require closer monitoring. This threshold was validated in an independent cohort, reducing missed SCID cases while improving the detection of 22q11.2 deletion syndrome and other syndromic primary immunodeficiencies (PIDs). Notably, elevated TREC levels in some SCID patients reflected “leaky” SCID phenotypes, which nonetheless required curative intervention. Additionally, syndromic PIDs and cases of transient idiopathic lymphopenia (TIL) were also more accurately identified, enabling timely clinical management. Conclusion These findings emphasize the need for broader evaluation of TREC cutoff values across diverse assay systems to improve the effectiveness, comparability, and global harmonization of NBS programs. Refining TREC cutoff values in newborn screening (NBS) for SCID: ROC analysis of a large testing cohort supports increasing the TREC threshold from 100 to 150–200 copies/105 cells, improving assay sensitivity and enabling earlier detection of SCID and other immunodeficiencies. Findings are based on validation cohort analysis and support the harmonization of TREC thresholds in NBS programs.
Journal Article
From variant of uncertain significance to likely pathogenic in two siblings with atypical RAG2 Deficiency: a case report and review of the literature
by
Abolhassani, Hassan
,
Shokri, Sima
,
Fallahpour, Morteza
in
B-Lymphocytes
,
Case Report
,
Case reports
2024
Background
Severe combined immunodeficiencies (SCIDs) are hereditary disorders characterized by impaired T and B cell function, resulting in significant immune system dysfunction. Recombination-activating gene (
RAG
) mutations account for a substantial proportion of SCID cases. Here, we present two sibling cases of SCID caused by a novel
RAG2
gene mutation.
Case Presentation
The index case was an 8-year-old boy who had a history of recurring infections. After a comprehensive immunological workup, the initial diagnosis of agammaglobulinemia was revised to combined immunodeficiency (CID). The patient underwent hematopoietic stem cell transplantation (HSCT) but succumbed to cytomegalovirus (CMV) infection. His brother, a 4-month-old boy, presented with CMV chorioretinitis. Leaky SCID was diagnosed based on genetic tests and immunological findings. The patient received appropriate treatment and was considered for HSCT. Both siblings had a homozygous
RAG2
gene variant, with the first case classified as a variant of uncertain significance (VUS). The presence of the same mutation in the second brother, and the clinical phenotype, supports considering the mutation as likely pathogenic.
Conclusions
This case report highlights a novel
RAG2
gene mutation associated with CID. The classification of a VUS may evolve with accumulating evidence, and additional studies are warranted to establish its pathogenicity. Proper communication between genetic counselors and immunologists, accurate documentation of patient information, increased public awareness, and precise utilization of genetic techniques are essential for optimal patient management.
Journal Article
A Unique Comprehensive Model to Screen Newborns for Severe Combined Immunodeficiency—An Ontario Single-Centre Experience Spanning 2013–2023
by
Al Ghamdi, Abdulrahman
,
Kim, Vy H. D.
,
Pachul, Jessica Willett
in
B cells
,
Catchment areas
,
early diagnosis
2024
Background: Severe combined immunodeficiency (SCID) is a life-threatening genetic disorder caused by critical defects of the immune system. Almost all cases are lethal if not treated within the first two years of life. Early diagnosis and intervention are thus essential for improving patient outcomes. In 2013, Ontario became the first Canadian province to perform newborn screening (NBS) for SCID by T cell receptor excision circles (TRECs) analysis, a surrogate marker of thymic function and lymphocyte maturation. Methods: This retrospective study reports on nearly 10 years of NBS for SCID at a quaternary referral centre. Results: From August 2013 to April 2023, our centre’s densely populated catchment area flagged 162 newborns with low TRECs levels, including 10 cases with SCID. Follow-up revealed other causes of low TRECs, including non-SCID T cell lymphopenia (secondary/reversible or idiopathic causes, and syndromic conditions) and prematurity. A small number of cases with normal repeat TRECs levels and/or T cell subsets were also flagged. Province-wide data from around this period revealed at least 24 diagnosed cases of SCID or Leaky SCID. Conclusions: This is the first report of NBS outcomes in a Canadian province describing the causative genetic defects, and the non-SCID causes of a positive NBS for SCID.
Journal Article
Partial correction of immunodeficiency by lentiviral vector gene therapy in mouse models carrying Rag1 hypomorphic mutations
by
Castiello, Maria Carmina
,
Sereni, Lucia
,
Zecchillo, Alessandra
in
Animal models
,
Animals
,
Antibodies
2023
Recombination activating genes (
) 1 and 2 defects are the most frequent form of severe combined immunodeficiency (SCID). Patients with residual RAG activity have a spectrum of clinical manifestations ranging from Omenn syndrome to delayed-onset combined immunodeficiency, often associated with granulomas and/or autoimmunity (CID-G/AI). Lentiviral vector (LV) gene therapy (GT) has been proposed as an alternative treatment to the standard hematopoietic stem cell transplant and a clinical trial for RAG1 SCID patients recently started. However, GT in patients with hypomorphic RAG mutations poses additional risks, because of the residual endogenous RAG1 expression and the general state of immune dysregulation and associated inflammation.
In this study, we assessed the efficacy of GT in 2 hypomorphic Rag1 murine models (Rag1
and Rag1
), exploiting the same LV used in the clinical trial encoding RAG1 under control of the MND promoter.
Starting 6 weeks after transplant, GT-treated mice showed a decrease in proportion of myeloid cells and a concomitant increase of B, T and total white blood cells. However, counts remained lower than in mice transplanted with WT Lin- cells. At euthanasia, we observed a general redistribution of immune subsets in tissues, with the appearance of mature recirculating B cells in the bone marrow. In the thymus, we demonstrated correction of the block at double negative stage, with a modest improvement in the cortical/medullary ratio. Analysis of antigenspecific IgM and IgG serum levels after
challenge showed an amelioration of antibody responses, suggesting that the partial immune correction could confer a clinical benefit. Notably, no overt signs of autoimmunity were detected, with B-cell activating factor decreasing to normal levels and autoantibodies remaining stable after GT. On the other hand, thymic enlargement was frequently observed, although not due to vector integration and insertional mutagenesis. In conclusion, our work shows that GT could partially alleviate the combined immunodeficiency of hypomorphic RAG1 patients and that extensive efficacy and safety studies with alternative models are required before commencing RAG gene therapy in thesehighly complex patients.
Journal Article
Innovative Cell-Based Therapies and Conditioning to Cure RAG Deficiency
2020
Genetic defects in recombination activating genes (RAG) 1 and 2 cause a broad spectrum of severe immune defects ranging from early severe and repeated infections to inflammation and autoimmune manifestations. A correlation between in vitro recombination activity and immune phenotype has been described. Hematopoietic cell transplantation is the treatment of care; however, the availability of next generation sequencing and whole genome sequencing has allowed the identification of novel genetic RAG variants in immunodeficient patients at various ages, raising therapeutic questions. This review addresses the recent advances of novel therapeutic approaches for RAG deficiency. As conventional myeloablative conditioning regimens are associated with acute toxicities and transplanted-related mortality, innovative minimal conditioning regimens based on the use of monoclonal antibodies are now emerging and show promising results. To overcome shortage of compatible donors, gene therapy has been developed in various RAG preclinical models. Overall, the transplantation of autologous gene corrected hematopoietic precursors and the use of non-genotoxic conditioning will open a new era, offering a cure to an increasing number of RAG patients regardless of donor availability and severity of clinical conditions.
Journal Article
Long-Term Outcomes of Hematopoietic Stem Cell Transplantation for ZAP70 Deficiency
by
Schroeder, Marlis L.
,
Cuvelier, Geoffrey D. E.
,
Rubin, Tamar S.
in
Biomarkers
,
Biomedical and Life Sciences
,
Biomedicine
2016
ZAP70 deficiency is a rare T + B + NK+ combined immunodeficiency with limited outcome data to help guide decisions around hematopoietic stem cell transplant (HSCT). We sought to understand the long-term clinical and immunologic outcomes of both conditioned and unconditioned HSCT for ZAP70 deficiency following transplant from a variety of graft sources. We performed a retrospective, single center review of all cases of HSCT for genetically confirmed ZAP70 deficiency since 1992. At a median of 13.5-year post-HSCT, 8/8 (100 %) patients are alive. Three received unconditioned bone marrow transplants from human leukocyte antigen (HLA)-matched siblings and achieved stable mixed donor-recipient T cell chimerism but low B cell (4–9 %) and absent to near-absent myeloid donor engraftment. Despite this, all three have normal immunoglobulin levels, have developed specific protective antibody responses to post-HSCT vaccinations, and have discontinued immunoglobulin replacement. Five patients received myeloablative conditioning (three T cell-depleted haploidentical and two unrelated cord blood) and have full donor chimerism for T and B cells and myeloid lineages. One patient experienced primary graft failure after serotherapy only. CD8 T cell count is normal in 5/8, high in 1/8, and low in 2/8. Infectious complications in 5/5 and autoimmune thrombocytopenia in one patient resolved post-HSCT. Mitogen proliferation to phytohemagglutinin was normal after HSCT in 8/8 patients. In total, seven have discontinued immunoglobulin replacement. In conclusion, HSCT using a variety of graft sources and approaches, including unconditioned matched sibling donor transplant, is a life-saving therapy for ZAP70 deficiency, providing excellent long-term immune function and resolution of clinical problems.
Journal Article
Natural Clearance of Prolonged VDPV Infection in a Child With Primary Immunodeficiency Disorder
2019
The emergence of immunodeficiency-associated vaccine-derived polioviruses (iVDPV) from children with primary immunodeficiency disorders poses a threat to the eradication program. Herein, we report a patient with severe combined immunodeficiency (SCID), identified as a prolonged serotype 3 iVDPV (iVDPV3) excreter with 13 VDPV3 isolates and a maximum of 10.33% nucleotide divergence, who abruptly cleared infection after a period of 2 years. Occurrence of an episode of norovirus diarrhea associated with increased activated oligoclonal cytotoxic T cells, inverse CD4:CD8 ratio, significantly elevated pro-inflammatory cytokines, and subsequent clearance of the poliovirus suggests a possible link between inflammatory diarrheal illness and clearance of iVDPV. Our findings suggest that in the absence of B cells and sufficiently activated T/NK cells, macrophages and other T cells may produce auto-inflammatory conditions by TLR/RLR ligands expressed by previous/ongoing bacterial or viral infections to clear VDPV infection. The study highlights the need to screen all the patients with combined immunodeficiency for poliovirus excretion and intermittent follow-up of their immune parameters if found positive, in order to manage the risk of iVDPV excretion in the polio eradication endgame strategy.
Journal Article