Flow Cytometry-Based Diagnosis for Inborn Errors of Immunity
- 1st Edition - May 1, 2027
- Latest edition
- Editor: Reza Yazdani
- Language: English
Flow Cytometry-based Diagnosis for Inborn Errors of Immunity addresses the need for a practical, comprehensive reference on applying flow cytometry to the diagnosis, classi… Read more
Description
Description
The reference covers flow cytometry principles, emerging technologies, technical considerations, and quality standards, alongside a framework for classifying IEI, before turning to practical diagnostic approaches for major disease categories. Protocols, diagnostic algorithms, immunophenotyping strategies, and functional assays demonstrate how flow cytometry rapidly identifies cellular and functional abnormalities to support diagnosis, while addressing its complementary role alongside molecular testing, narrowing candidate diagnoses, guiding genetic testing, and confirming genetic findings. Discussion of predictive and prognostic markers and international clinical experience extends its relevance across high-resource and resource-limited settings.
Flow Cytometry-based Diagnosis for Inborn Errors of Immunity equips clinicians, laboratory professionals, and researchers with the knowledge and tools to translate flow cytometric findings into accurate diagnosis and informed patient care, strengthening the diagnostic pathway for IEI.
Key features
Key features
- Provides disease-specific diagnostic algorithms, protocols, and practical strategies for immunophenotyping, functional assessment, and diagnosis of IEI
- Demonstrates how flow cytometry complements molecular testing by narrowing candidate diagnoses, guiding genetic testing, and confirming genetic findings
- Highlights flow cytometry as a rapid, cost-effective, and accessible tool for IEI diagnosis, including in resource-limited settings
- Covers technical considerations, quality standards, emerging technologies, and predictive and prognostic indicators
- Presents international experience applying flow cytometry to IEI diagnosis
Readership
Readership
Table of contents
Table of contents
Section I Principles, Technologies, and Technical Foundations of Flow Cytometry
1. Fundamentals and Emerging Technologies in Flow Cytometry
2. Technical Considerations and Quality Standards in Clinical Flow Cytometry
3. Introduction to Inborn Errors of Immunity
Section II Flow Cytometry in Diagnostic Workup of Inborn Errors of Immunity
4. Flow-Based Workup of Individuals Suspected of Inborn Errors of Immunity
5. Severe Combined Immunodeficiencies
6. Combined Immunodeficiencies
7. Hyper IgE Syndrome
8. Predominantly Antibody Deficiency
9. Phagocytic Defects and Granulocyte Function Testing
10. Immune Dysregulations Associated with Hemophagocytic lymphohistiocytosis (HLH) and Epstein–Barr Virus (EBV) Susceptibility
11. Immune Dysregulations Associated with Autoimmune Phenotypes
12. Defects of Intrinsic and Innate Immunity
13. Phenocopies of Inborn Errors of Immunity Associated with Autoantibodies
Section III Flow Cytometry in Monitoring and Prognosis of Inborn Errors of Immunity
14. Flow Cytometry in Post-Therapy Monitoring
15. Predictive Markers and Prognostic Indicators
Section IV Integration of Flow Cytometry and Genetic Testing in Inborn Errors of Immunity
16. Guiding Diagnostic Integration: Flow Cytometry for Gene Prioritization and Variant Validation
Section V Global Experiences with Flow Cytometry in Inborn Errors of Immunity
17. International Experiences in Flow Cytometry for Diagnosis of Inborn Errors of Immunity
Product details
Product details
- Edition: 1
- Latest edition
- Published: May 1, 2027
- Language: English
About the editor
About the editor
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Reza Yazdani
Reza Yazdani, PhD, is an Assistant Professor and Vice President of the Research Center for Immunodeficiencies (RCID) at Tehran University of Medical Sciences, the leading institution for the study of inborn errors of immunity (IEI) in Iran. He earned his PhD in Medical Immunology from Isfahan University of Medical Sciences, Iran, and completed a postdoctoral fellowship at Thomas Jefferson University, USA. His research focuses on the pathogenesis and diagnosis of IEIs, with particular expertise in the application of flow cytometry. He has received numerous awards and honors and has published over 160 scientific papers in international journals. He is honored as the top 1% of highly cited scientific researchers in the field of Immunology, Essential Science Indicators (ESI, Web of Science). He was selected as the Best Young Researcher in Medical Sciences at the Avicenna Festival 2025. He also serves on the editorial boards of several international journals.