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עמוד בית
Fri, 07.08.26

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August 2026
Oded Shamriz MD PhD, Raz Somech MD PhD

Inborn errors of immunity (IEI) result from pathogenic germline variants. These disorders are clinically characterized by increased susceptibility to infections and immune dysregulation, often leading to reduced survival [1]. By linking specific monogenic defects to immune phenotypes, IEI serve as experiments of nature that provide powerful models for dissecting human immunology [2]. The International Union of Immunological Societies (IUIS) currently classifies IEI into 10 major categories with overlapping phenotypes [3]: combined T- and B-cell immunodeficiencies, combined immunodeficiencies with syndromic features, predominantly antibody deficiencies, diseases of immune dysregulation, congenital defects of phagocytes, defects in intrinsic and innate immunity, autoinflammatory diseases, complement deficiencies, bone marrow failure, and phenocopies of IEIs. The recent 2024 IUIS update was designed to serve clinicians and researchers and to inform the design of targeted sequencing panels that facilitate the genetic diagnosis of IEI. It lists 508 genes underlying 559 conditions [3]. Of note, molecular, cellular, and clinical investigations of IEI have transformed our understanding of disease pathogenesis and enabled effective targeted therapies.

Raz Somech MD PhD, Eyal Grunebaum MD

The field of inborn errors of immunity (IEI), previously known as primary immune deficiencies, includes susceptibility to infections, autoimmunity, uncontrolled inflammation and malignancy is rapidly expanding. Novel scientific discoveries together with artificial intelligence and machine learning are transformed into advances in the diagnosis and treatment of affected patients. These changes require adjustments in the knowledge, skills and attitudes of health care providers, and particularly expert clinicians managing patients with IEI. In this perspective, we highlighted some of the educational needs that should be adapted to ensure that the next generation of physicians provide best care for those affected by IEI.

Lior Keren David MD, Ilan Dalal MD, Adi Ovadia MD

Agammaglobulinemia was the first primary immunodeficiency identified in humans. It is characterized by an absent or significantly reduced number of mature B cells, decreased serum immunoglobulins, and recurrent infections beginning in infancy. The entity was first described in 1952 by Colonel Ogden Bruton at the Walter Reed Army Hospital in the United States. Bruton reported on an 8-year-old boy who had experienced 19 episodes of pneumonia over 4 years and was found to have a complete absence of antibody-containing γ-globulins in his serum [1].

Over time, through improvement in the immune and genetic investigations, our understanding of agammaglobulinemia has expanded enabling earlier diagnosis and treatment resulting in a change of the disease course.

Ori Toker MD, Rachel Eisenberg MD

Inborn errors of immunity (IEI), formerly referred to as primary immunodeficiencies, is a growing spectrum of over 550 genetically defined disorders of the immune system. As our understanding of the mechanisms of these disorders grows, immune dysregulation syndromes, autoimmunity, malignancy, bone marrow failure with immunodeficiency, and phenocopies are recognized as part of the clinical spectrum of IEI. Early recognition and accurate classification are critical as many IEI conditions have specific therapeutic implications, including targeted immune modulation, immunoglobulin replacement therapy, hematopoietic stem cell transplantation, and gene therapy. In this review, we present recent changes in classification, updated laboratory workup strategies, and therapeutic advances.

Sigal Matza-Porges PhD, Oded Shamriz MD PhD

Inborn errors of immunity (IEI) are a heterogeneous group of monogenic disorders affecting immune function, associated with a broad clinical spectrum including recurrent infections and immune dysregulation consisting of poly-autoimmunity, multiple allergies, and malignancies. To date, more than 550 causative genes have been identified, with inheritance patterns that may be autosomal dominant, autosomal recessive, or X-linked. Pathogenic variants may result in loss-of-function, dominant-negative, or gain-of-function effects, leading to variable phenotypic presentations and, at times, incomplete penetrance. Despite advances in genomic technologies, a definitive molecular diagnosis is reached in only 30–35% of cases. Early and accurate genetic diagnosis is crucial for guiding targeted therapy and providing effective genetic counseling. This review presents an updated overview of IEI from the geneticist's perspective and offers a practical approach to the genetic evaluation and diagnosis of these conditions.

Shirly Frizinsky MD, Amarilla B. Mandola MD, Erez Rechavi MD, Ido Somekh MD, Raz Somech MD PhD

Neutrophils serve as a cornerstone of innate immunity. Beyond their classical antimicrobial repertoire, these cells are versatile and capable of shaping the adaptive immune response through direct interactions with dendritic cells and lymphocytes in addition to cytokine-mediated effects. Additional functional phenotypes have also been described with regard to cancer and chronic inflammation. The clinical importance of neutrophils in host defense is perhaps best illustrated by the spectrum of inborn neutrophil disorders, ranging from congenital neutropenia to defects of adhesion and phagocytosis. We present a patient with clinical and laboratory features of hemophagocytic lymphohistiocytosis with a bacterial infection. The patient was subsequently found to carry a homozygous variant in the NCF2 gene, establishing a diagnosis of autosomal recessive chronic granulomatous disease (CGD). This presentation, combining cytokine storm with ongoing infection-driven inflammation, exemplifies the multifaceted role of neutrophils in health and disease. In this review, we provide clinical and immunological insights into neutrophil disorders, illustrated through a case of CGD as a paradigm of primary neutrophil dysfunction.

Amarilla B. Mandola MD, Shirly Frizinsky MD, Ido Somekh MD, Shachar Naor MD, Raz Somech MD PhD

Background: Syndromic inborn errors of immunity (IEIs) are a heterogeneous group of disorders characterized by immune dysfunction associated with congenital anomalies and multisystem involvement. Tricho-hepato-enteric syndrome (THES) is an ultra-rare autosomal recessive syndromic IEI caused by biallelic pathogenic variants in TTC37 or SKIV2L. Delayed recognition is common because of its broad clinical spectrum.

Objectives: To describe the clinical, immunologic, genetic, and histopathologic characteristics of two children with THES and to highlight a structured diagnostic approach for syndromic immunodeficiencies.

Methods: We retrospectively reviewed the clinical presentation, laboratory investigations, immune phenotyping, endoscopic and histopathologic findings, and molecular analyses of two unrelated children diagnosed with THES at a tertiary pediatric immunology center. Molecular confirmation was obtained by whole-exome sequencing.

Results: Both patients presented during early infancy with intractable diarrhea, severe failure to thrive, characteristic dysmorphic features, brittle woolly hair, and inflammatory enteropathy requiring prolonged nutritional support. Immunologic evaluation demonstrated immune dysregulation, including inverted CD4/CD8 ratios, abnormalities of humoral immunity, and impaired vaccine-specific antibody responses. Histopathology revealed chronic active colitis with crypt distortion, inflammatory infiltrates, and crypt abscesses, consistent with very-early-onset inflammatory bowel disease-like enteropathy. Whole-exome sequencing identified homozygous pathogenic variants in SKIV2L in one patient and TTC37 in the other, establishing the diagnosis. Management included nutritional support, immunoglobulin replacement, antimicrobial prophylaxis, and immunomodulatory therapy.

Conclusions: Recognition of syndromic phenotype combined with comprehensive immune evaluation and early genomic testing facilitates prompt diagnosis, multidisciplinary management, genetic counseling, and consideration of emerging targeted therapies.

Shira Benor MD, Franziska Hentschel MD, Tel Freund MSc, David Hagin MD PhD

Background: Common variable immunodeficiency (CVID) is the most common clinically significant primary immunodeficiency disorder, typically presenting with hypogammaglobulinemia and recurrent infections. Mechanistically, CVID is caused by abnormal B-cell maturation or function. These abnormalities lead to an impaired ability to generate a normal quantity or diversity of antibodies and an impaired response to neo-antigens. In addition to the resulted immunodeficiency, CVID can also involve immune dysregulation affecting different organ systems, with the lungs being one of the more commonly involved organs. Granulomatous lymphocytic interstitial lung disease (GLILD) is a challenging and well known CVID-related complication. It is associated with high morbidity and increased risk of mortality.

Objectives: To describe the clinical and immunological features of five CVID patients with radiologic and/or pathologic features consistent with granulomatous lymphocytic interstitial lung disease.

Methods: We conducted a review of clinical, laboratory, imaging, and pathology data, as well as B-cell and T-cell immunophenotyping of patient PBMCs, focusing on unique characteristics of CVID GLILD patients.

Results: CVID GLILD patients showed several clinical characteristics, including multiorgan involvement with cytopenias and lymphoproliferation but without significant gastrointestinal involvement. B-cell phenotyping showed abnormal B-cell maturation and development with severely impaired class switching. In addition, unique T-cell phenotype with low to near-absent naive CD4+ T cells was observed.

Conclusions: Lung involvement in the form of GLILD is associated with significant co-morbidity and typical B-cell and T-cell immunophenotyping. Patients should be actively screened for the possibility of GLILD, especially when regularly performed lymphocyte immunophenotyping suggests similar patterns.

March 2025
Ido Somekh MD PhD, Ilan Dalal MD, Raz Somech MD PhD

Inborn errors of immunity (IEI), formerly known as primary immunodeficiencies (PID), comprise a diverse group of genetic disorders characterized by increased susceptibility to infections, autoimmunity, autoinflammatory conditions, allergies, and malignancies. These disorders exhibit a broad spectrum of clinical manifestations, including extra-hematopoietic manifestations, which may also present later in life. IEI diagnosis has significantly advanced, in line with the common use of next-generation sequencing-based genetic platforms, such as whole-exome and whole-genome sequencing. Treatment approaches have evolved beyond infection management to include curative therapies such as hematopoietic stem cell transplantation, gene therapy, and targeted pharmacologic treatments. In this review, we explore recent advancements in the understanding, diagnosis, and treatment of IEI, emphasizing the rapid progress in this expanding field.

November 2020
Elias Toubi MD and Zahava Vadasz MD PhD

Innate and adaptive immune response dysregulations are equally involved in the induction of autoimmunity. Toll-like receptors play a leading role in the activation of innate immune cells, thus priming auto-reactive T cells. Th17 cells and related cytokines are widely involved in many immune-mediated diseases such as rheumatoid arthritis. Thus, the recent introduction of anti-IL-17  therapies should be further evaluated. Janus kinase inhibitors and Fc receptor-targeting drugs are some of the new therapeutic strategies that are being implemented when old classical therapies lack sufficient beneficial outcomes

August 2019
Abdulla Watad MD, Nicola Luigi Bragazzi MD PhD MPH, Howard Amital MD MHA and Yehuda Shoenfeld MD FRCP MACR
August 2016
Dani Bercovich PhD, Geoffrey Goodman PhD and M. Eric Gershwin MD

Immune function is the most basic physiological process in humans and indeed throughout the animal kingdom. Interestingly, the vast majority of textbooks of physiology do not include a chapter on immunity. Our species survival is dependent on the diversity of the immune response and the ability for antigen presentation and effector mechanisms to be enormously promiscuous. As physicians, we are likely all too aware of how brief our life span is and the myriad of diseases and events that shorten it. It is not surprising that we question where our life comes from and our relationship within the universe. Many hypotheses have been offered regarding the likelihood that intelligent life exists elsewhere. We propose that such issues be discussed in the context of basic biologic observations on earth, such as the sight of a dense flock of tens of thousands of starlings maneuvering in rapid twists and turns at dusk before settling in trees for the night. The mathematical likelihood for life elsewhere was proposed by Frank Drake in a classic equation whose 'thesis' has stimulated the search for alien civilizations and the nature of life. A fundamental gap in this equation is the presence of a diverse immune response, a feature essential for survival of Life, presumably also extra-terrestrially.

October 2014
Elisabetta Borella MD, Lavinia Palma MD, Margherita Zen MD, Silvano Bettio MD, Linda Nalotto MD, Mariele Gatto MD, Marta Domeneghetti MD, Luca Iaccarino MD, Leonardo Punzi and Andrea Doria MD
Autoinflammatory (AIF) and autoimmune (AIM) diseases are chronic immune disorders characterized by dysregulation of the immune system. Most AIF diseases are monogenic diseases which lead to hyperactivation of the inflammasome and release of pro-inflammatory cytokines, such as interleukin-1 (IL-1) and IL-18, resulting in tissue inflammation. Besides, the main feature of autoimmune diseases is the loss of tolerance of the adaptive immune cells against self antigens. Most AIF diseases are polygenic and numerous immune pathogens are involved in organ damage. The involvement of some AIF-associated mechanisms in AIM diseases, i.e., the activation of the inflammasome and the role of IL-1, was recently recognized. Moreover, some single nucleotide polymorphisms of the inflammasome genes have been proven to be involved in the development of AIF-related inflammatory features in autoimmune patients. These observations raise the possibility of using some anti-inflammatory drugs, like IL-1 antagonists, in autoimmune diseases with autoinflammatory features. 
May 2011
L. Shen, Y. Matsunami, N. Quan, K. Kobayashi, E. Matsuura and K. Oguma

Background: Several murine models are susceptible to atherosclerosis, such as low density-lipoprotein receptor-deficient (LDLR-/-) and apolipoprotein E-deficient (apoE-/-) mice, and are used for studying pathophysiological mechanisms. Atherosclerotic lesions in the aortic valve and thoracic/abdominal aorta are commonly associated with hyperlipidemia. We recently demonstrated the development of large atherosclerotic plaques in Helicobacter pylori-infected heterozygous LDLR+/- apoE+/- mice.

Objectives: To measure novel biomarkers related to atherosclerosis, blood coagulation, and oxidative stress in order to investigate their possible pathogenic roles in atherosclerosis-prone mice.

Methods: Mice were fed with a normal chow diet or high-fat diet and sacrificed at different age intervals to measure aortic plaque size. Plasma cholesterol was enzymatically measured. Enzyme-linked immunosorbent assay was used to measure oxidized LDL (oxLDL)/beta-2-glycoprotein I (β2GPI) complexes, immunoglobulin M (IgM) antibodies against native LDL, oxLDL, or oxLDL/β2GPI, and urine 11-dehydro-thromboxane B2 (11-dhTxB2) or 8-hydroxy-deoxyguanosine.

Results: There was a parallel increase in plaque size, plasma cholesterol, and urinary 11-dhTxB2 in atherosclerosis-prone mice. In contrast to atherosclerosis-prone strains, an elevation of urinary 11-dhTxB2 with no significant plaque generation was observed in LDLR+/- apoE+/- mice. The atherogenic autoantigen oxLDL/β2GPI complex was detected only in LDLR-/- mice. These levels seem to depend on plaque size. IgM antibodies against oxLDL in apoE-/- mice were found, accompanied by atherosclerotic progression.

Conclusions: Progression of atherosclerotic lesions was associated not only with cholesterolemia but also with platelet activation and natural autoimmune-mediated regulatory mechanism(s) in murine models.
 

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