
Academic Journal
Q1Cellular and Molecular Immunology
About Cellular and Molecular Immunology
Cellular and Molecular Immunology is a scholarly journal published by Springer Nature. SCImago 2025 places it in Q1 with an SJR of 7.021 and an H-index of 153.
Its listed coverage is 2004-2026 and its research categories include Immunology (Q1); Immunology and Allergy (Q1); Infectious Diseases (Q1); Medicine (miscellaneous) (Q1). The 2025 dataset reports 126 documents and 6841 citations across the latest three-year reporting window.
Understanding Cellular and Molecular Immunology: The Foundation of Modern Immunology Research
Cellular and molecular immunology is a rapidly evolving field that explores the complex mechanisms of the immune system at the cellular and molecular levels. It forms the backbone of immunological research and provides critical insights into how the body defends itself against infections, diseases, and foreign substances. This branch of immunology focuses on understanding immune cells, signaling pathways, cytokines, antigens, antibodies, and genetic regulation of immune responses.
What is Cellular and Molecular Immunology?
Cellular and molecular immunology combines two major aspects of immune system research:
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Cellular Immunology focuses on the roles and functions of immune cells, such as T cells, B cells, macrophages, dendritic cells, and natural killer (NK) cells. These cells work together to identify and eliminate pathogens like bacteria, viruses, and parasites.
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Molecular Immunology investigates the molecular interactions and biochemical signals that regulate immune responses. It looks at proteins such as cytokines, chemokines, receptors, and the genetic expression of immune-related genes.
Together, these disciplines provide a holistic view of how the immune system operates at the smallest levels, offering a deep understanding that supports the development of vaccines, immunotherapies, and treatments for autoimmune and inflammatory diseases.
Importance in Health and Medicine
Cellular and molecular immunology plays a critical role in numerous areas of healthcare and medical research:
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Vaccine Development: Understanding immune mechanisms at the cellular and molecular levels helps scientists design effective vaccines, including mRNA vaccines that have been instrumental in combating diseases like COVID-19.
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Cancer Immunotherapy: Targeting immune checkpoints and enhancing the ability of T cells to fight tumors are made possible through molecular immunology research.
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Autoimmune Diseases: Diseases like rheumatoid arthritis, lupus, and type 1 diabetes are caused by immune system malfunctions. Cellular immunology helps identify the faulty immune responses, leading to more targeted therapies.
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Transplant Medicine: Immunological compatibility and rejection mechanisms are better managed through molecular insights, improving the success rates of organ transplants.
Key Concepts in Cellular and Molecular Immunology
Some of the fundamental components studied include:
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Antigen Presentation: How immune cells display pathogen fragments to trigger responses.
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Signal Transduction: Molecular pathways that transmit signals inside immune cells, leading to activation or suppression.
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Immunogenetics: The study of how genes control immune responses, particularly in autoimmune diseases and allergies.
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Inflammation: The body's immediate response to injury or infection, driven by molecular mediators like cytokines.
Future of Cellular and Molecular Immunology
As technology advances, cellular and molecular immunology continues to lead innovations in biotechnology, gene therapy, and precision medicine. Techniques like CRISPR gene editing, single-cell RNA sequencing, and immunoprofiling are unlocking new levels of understanding, enabling researchers to tailor treatments based on individual immune responses.
Journal Metrics
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Aims & Scope
Scope of Cellular and Molecular Immunology: Unraveling the Complexities of the Immune System
Cellular and molecular immunology is a rapidly evolving field that lies at the heart of biomedical science. It focuses on understanding how the immune system works at the cellular and molecular levels to protect the body against pathogens, cancer, and other diseases. With the growing relevance of immunotherapies, vaccines, and immune-based diagnostics, the scope of cellular and molecular immunology has expanded significantly in both research and clinical applications.
What Is Cellular and Molecular Immunology?
Cellular and molecular immunology studies the structure, function, and interactions of the cells and molecules that make up the immune system. This includes white blood cells such as T cells, B cells, macrophages, dendritic cells, and the signaling molecules they use—cytokines, antibodies, and receptors.
The field bridges biology, genetics, and biochemistry, offering insights into immune regulation, tolerance, inflammation, and disease pathogenesis. It also explains how immune cells communicate and adapt to threats, which is essential for developing new therapeutic strategies.
Key Areas of Focus
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Immune Cell Development and Differentiation
Understanding how immune cells originate and mature from stem cells in the bone marrow is critical. This area explores how different cell types specialize to perform distinct roles in immune defense. -
Antigen Recognition and Signal Transduction
Molecular immunology examines how immune cells recognize foreign substances (antigens) through receptors and trigger intracellular signaling pathways. These interactions are crucial for initiating immune responses. -
Cytokine Signaling and Regulation
Cytokines are small proteins that modulate immune activity. The field explores their roles in cell communication, immune activation, and resolution of inflammation. -
Immune Tolerance and Autoimmunity
Understanding how the immune system differentiates self from non-self is vital to preventing autoimmune diseases. Researchers investigate the molecular mechanisms that maintain immune tolerance. -
Immunopathology and Inflammation
Studying abnormal immune responses—such as chronic inflammation, hypersensitivity, and immune deficiencies—helps in diagnosing and treating immune-related disorders. -
Cancer Immunology and Immunotherapy
One of the most promising applications, this area focuses on how immune cells detect and destroy cancer cells, and how this knowledge is used in therapies like checkpoint inhibitors and CAR-T cell therapy. -
Vaccine Development and Infectious Diseases
Cellular and molecular immunology informs vaccine design by identifying key antigens and understanding immune memory formation, which is essential for long-lasting protection.
Emerging Trends and Future Prospects
The scope of cellular and molecular immunology is expanding with the advent of new technologies such as CRISPR gene editing, single-cell RNA sequencing, and artificial intelligence. These tools allow scientists to study immune cells at unprecedented resolution and develop personalized immunotherapies.
Moreover, the field is crucial in addressing global health challenges, including emerging infectious diseases, antibiotic resistance, and age-related immune decline.
Recent Research Articles
Latest publications matched automatically by ISSN.
Immunometabolism at the intersection of metabolic signaling, cell fate, and systems immunology
Hongbo Chi
2022-03 · DOI: 10.1038/s41423-022-00840-xSystems-based approaches to study immunometabolism
Vinee Purohit, Allon Wagner, Nir Yosef, Vijay K. Kuchroo et al.
2022-03 · DOI: 10.1038/s41423-021-00783-9Vaccine booster efficiently inhibits entry of SARS-CoV-2 omicron variant
Wei Zhang, Linfen Huang, Gang Ye, Qibin Geng et al.
2022-03 · DOI: 10.1038/s41423-022-00837-6T cell epitopes in SARS-CoV-2 proteins are substantially conserved in the Omicron variant
Seong Jin Choi, Dong-Uk Kim, Ji Yun Noh, Sangwoo Kim et al.
2022-03 · DOI: 10.1038/s41423-022-00838-5Neutrophils in chronic inflammatory diseases
Andrea Herrero-Cervera, Oliver Soehnlein, Ellinor Kenne
2022-02 · DOI: 10.1038/s41423-021-00832-3Microenvironmental influences on T cell immunity in cancer and inflammation
Darren R. Heintzman, Emilie L. Fisher, Jeffrey C. Rathmell
2022-03 · DOI: 10.1038/s41423-021-00833-2NK cell dysfunction in patients with COVID-19
Jiacheng Bi
2022-02 · DOI: 10.1038/s41423-021-00825-2Reprogramming cholesterol metabolism in macrophages and its role in host defense against cholesterol-dependent cytolysins
Min-Sub Lee, Steven J. Bensinger
2022-03 · DOI: 10.1038/s41423-021-00827-0Increased immune escape of the new SARS-CoV-2 variant of concern Omicron
Jie Hu, Pai Peng, Xiaoxia Cao, Kang Wu et al.
2022-02 · DOI: 10.1038/s41423-021-00836-zSDHA: a key player in T cell-mediated intestinal disease severity
José M. Izquierdo
2022-02 · DOI: 10.1038/s41423-021-00820-7Transcriptional control of mature ILC3 function and plasticity: not just RORγt
Xinping Lv, Shan Zhu, Jing Wu, Jingtao Chen et al.
2022-02 · DOI: 10.1038/s41423-021-00816-3MCMV-based vaccine vectors expressing full-length viral proteins provide long-term humoral immune protection upon a single-shot vaccination
Yeonsu Kim, Xiaoyan Zheng, Kathrin Eschke, M. Zeeshan Chaudhry et al.
2022-02 · DOI: 10.1038/s41423-021-00814-5Restoration of established systemic inflammation and autoimmunity by Foxp3+ regulatory T cells
Varun Kumar Sharma, Jagadeesh Bayry
2022-02 · DOI: 10.1038/s41423-021-00831-4Compartmentalized immune responses and the local microbiota determine mucosal and systemic immunity against SARS-CoV-2
Jonas Buttenschön, Stefan Vogt, Jochen Mattner
2022-02 · DOI: 10.1038/s41423-021-00822-5Ripping the Ripoptosome: a novel path for blocking allergic inflammation?
Theresa Neuper, Richard Weiss, Jutta Horejs-Hoeck
2022-02 · DOI: 10.1038/s41423-021-00815-4A new perspective is needed for positive selection of germinal center B cells with higher-affinity B cell receptors
Timo Gaber, Frank Buttgereit
2022-02 · DOI: 10.1038/s41423-021-00823-4Dexamethasone ameliorates severe pneumonia but slightly enhances viral replication in the lungs of SARS-CoV-2-infected Syrian hamsters
Lunzhi Yuan, Ming Zhou, Jian Ma, Xuan Liu et al.
2022-02 · DOI: 10.1038/s41423-021-00793-7Safety, immunogenicity, and protection provided by unadjuvanted and adjuvanted formulations of a recombinant plant-derived virus-like particle vaccine candidate for COVID-19 in nonhuman primates
Stéphane Pillet, Prabhu S. Arunachalam, Guadalupe Andreani, Nadia Golden et al.
2022-02 · DOI: 10.1038/s41423-021-00809-2No evidence for increased cell entry or antibody evasion by Delta sublineage AY.4.2
Prerna Arora, Amy Kempf, Inga Nehlmeier, Luise Graichen et al.
2022-03 · DOI: 10.1038/s41423-021-00811-8Diet, lipids, and antitumor immunity
Hannah Prendeville, Lydia Lynch
2022-03 · DOI: 10.1038/s41423-021-00781-xReviews
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April 20, 2025 at 11:57 am
April 20, 2025