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[Inborn immunodeficiencies].

Hans Konrad Müller‐Hermelink, J Müller

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Abstract

Primary immunodeficiency syndromes may be seen as "experiments of nature", giving insights into the organization and function of the human immune system. The principal categories of primary immunodeficiency syndromes: severe combined immunodeficiency, agammaglobulinemia and isolated T-cell defects (e.g. Di George Syndrome) are still used in view of their leading clinical presentations. However, detailed analysis of individual cases and families now shows a plethora of different diseases in each category. In this review the relationship of primary immunodeficiency diseases of the B-cell system and autoimmune phenomena are discussed. The pathology of thymus in severe combined immunodeficiency is shown: central maturation defects of the T-cell system are not due to "dysplasia" of the thymus but rather to enzyme defects of the lymphatic cells. Severe alterations of the thymus may also be caused by graft versus host disease. The clarification of genetic defects of lymphoid differentiation and maturation today may lead to improved early and prenatal diagnosis as well as specific gene therapy. The success of bone marrow transplantation in many cases of primary immunodeficiency disease syndromes may be considered as a consequence of successful gene therapy.

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What this paper is about

Primary immunodeficiency syndromes may be seen as "experiments of nature", giving insights into the organization and function of the human immune system. The principal categories of primary immunodeficiency syndromes: severe combined immunodeficiency, agammaglobulinemia and isolated T-cell defects (e.g. Di George Syndrome) are still used in view of their leading clinical presentations. However, detailed analysis of individual cases and families now shows a plethora of different diseases in each category. In this review the relationship of primary immunodeficiency diseases of the B-cell system and autoimmune phenomena are discussed. The pathology of thymus in severe combined immunodeficiency is shown: central maturation defects of the T-cell system are not due to "dysplasia" of the thymus but rather to enzyme defects of the lymphatic cells. Severe alterations of the thymus may also be caused by graft versus host disease. The clarification of genetic defects of lymphoid differentiation and maturation today may lead to improved early and prenatal diagnosis as well as specific gene therapy. The success of bone marrow transplantation in many cases of primary immunodeficiency disease syndromes may be considered as a consequence of successful gene therapy.

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Available abstract

Primary immunodeficiency syndromes may be seen as "experiments of nature", giving insights into the organization and function of the human immune system. The principal categories of primary immunodeficiency syndromes: severe combined immunodeficiency, agammaglobulinemia and isolated T-cell defects (e.g. Di George Syndrome) are still used in view of their leading clinical presentations. However, detailed analysis of individual cases and families now shows a plethora of different diseases in each category. In this review the relationship of primary immunodeficiency diseases of the B-cell system and autoimmune phenomena are discussed. The pathology of thymus in severe combined immunodeficiency is shown: central maturation defects of the T-cell system are not due to "dysplasia" of the thymus but rather to enzyme defects of the lymphatic cells. Severe alterations of the thymus may also be caused by graft versus host disease. The clarification of genetic defects of lymphoid differentiation and maturation today may lead to improved early and prenatal diagnosis as well as specific gene therapy. The success of bone marrow transplantation in many cases of primary immunodeficiency disease syndromes may be considered as a consequence of successful gene therapy.

Key concepts: Primary immunodeficiency, Immunodeficiency, Severe combined immunodeficiency, Immunodeficiency Syndrome, Lymphatic system, Disease, Immunology, Immune system

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