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Repertoire characterization and validation of gB-specific human IgGs directly cloned from humanized mice vaccinated with dendritic cells and protected against HCMV
- Source :
- PLoS Pathogens, PLoS Pathogens, 2020, 16 (7), pp.e1008560. ⟨10.1371/journal.ppat.1008560⟩, e1008560, PLoS pathogens, United States, PLoS Pathog, PLoS Pathogens, Vol 16, Iss 7, p e1008560 (2020), PLoS Pathogens, Public Library of Science, 2020, 16 (7), pp.e1008560. ⟨10.1371/journal.ppat.1008560⟩
- Publication Year :
- 2019
-
Abstract
- Human cytomegalovirus (HCMV) causes serious complications to immune compromised hosts. Dendritic cells (iDCgB) expressing granulocyte-macrophage colony-stimulating factor, interferon-alpha and HCMV-gB were developed to promote de novo antiviral adaptive responses. Mice reconstituted with a human immune system (HIS) were immunized with iDCgB and challenged with HCMV, resulting into 93% protection. Immunization stimulated the expansion of functional effector memory CD8+ and CD4+ T cells recognizing gB. Machine learning analyses confirmed bone marrow T/CD4+, liver B/IgA+ and spleen B/IgG+ cells as predictive biomarkers of immunization (≈87% accuracy). CD8+ and CD4+ T cell responses against gB were validated. Splenic gB-binding IgM-/IgG+ B cells were sorted and analyzed at a single cell level. iDCgB immunizations elicited human-like IgG responses with a broad usage of various IgG heavy chain V gene segments harboring variable levels of somatic hypermutation. From this search, two gB-binding human monoclonal IgGs were generated that neutralized HCMV infection in vitro. Passive immunization with these antibodies provided proof-of-concept evidence of protection against HCMV infection. This HIS/HCMV in vivo model system supported the validation of novel active and passive immune therapies for future clinical translation.<br />Author summary Human cytomegalovirus (HCMV) is a ubiquitous pathogen. As long as the immune system is functional, T and B cells can control HCMV. Yet, for patients who have debilitated immune functions, HCMV infections and reactivations cause major complications. Vaccines or antibodies to prevent or treat HCMV are not yet approved. Novel animal models for testing new immunization approaches are emerging and are important tools to identify biomedical products with a reasonable chance to work in patients. Here, we used a model based on mice transplanted with human immune cells and infected with a traceable HCMV. We tested a cell vaccine (iDCgB) carrying gB, a potent HCMV antigen. The model showed that iDCgB halted the HCMV infection in more than 90% of the mice. We found that antibodies were key players mediating protection. Using state-of-the-art methods, we were able to use the sequences of the human antibodies generated in the mice to construct and produce monoclonal antibodies in the laboratory. Proof-of-concept experiments indicated that administration of these monoclonal antibodies into mice protected them against HCMV infection. In summary, this humanized mouse model was useful to test a vaccine and to generate and test novel antibodies that can be further developed for human use.
- Subjects :
- B Cells
Pathology and Laboratory Medicine
Antibodies, Viral
Biochemistry
MESH: Antibodies, Monoclonal
MESH: Antibodies, Neutralizing
Mice
Animal Cells
Cytotoxic T cell
MESH: Animals
Biology (General)
Enzyme-Linked Immunoassays
Immune Response
MESH: Immunoglobulin G
0303 health sciences
030302 biochemistry & molecular biology
Antibodies, Monoclonal
3. Good health
Medical Microbiology
Viral Pathogens
MESH: Immunization, Passive
Antibody
Blood cells
QH301-705.5
T cell
Immunology
Cytotoxic T cells
Microbiology
03 medical and health sciences
Antigen
Genetics
Humans
Antibody-Producing Cells
Immunoassays
Molecular Biology
Microbial Pathogens
MESH: Humans
Organisms
Immunization, Passive
Proteins
Correction
MESH: Cytomegalovirus Infections
Dendritic Cells
biochemical phenomena, metabolism, and nutrition
medicine.disease
Virology
Antibodies, Neutralizing
Animal Studies
Parasitology
Immunologic diseases. Allergy
MESH: Disease Models, Animal
MESH: Antibodies, Viral
Human cytomegalovirus
Physiology
[SDV]Life Sciences [q-bio]
Cytomegalovirus
White Blood Cells
Cytomegalovirus Vaccines
Medizinische Fakultät
Immune Physiology
Cellular types
Medicine and Health Sciences
Antigens, Viral
Immune System Proteins
biology
MESH: Dendritic Cells
T Cells
Immune cells
Animal Models
medicine.anatomical_structure
Experimental Organism Systems
Viruses
Cytomegalovirus Infections
Human Cytomegalovirus
Pathogens
MESH: Antigens, Viral
Research Article
MESH: Cytomegalovirus
Cell biology
Herpesviruses
Somatic hypermutation
Mouse Models
Research and Analysis Methods
Antibodies
Immune system
Model Organisms
MESH: Cytomegalovirus Vaccines
medicine
Animals
ddc:610
MESH: Mice
030304 developmental biology
Biology and life sciences
RC581-607
Disease Models, Animal
Immunization
Immunoglobulin G
biology.protein
Immunologic Techniques
DNA viruses
Subjects
Details
- ISSN :
- 15537374 and 15537366
- Volume :
- 16
- Issue :
- 7
- Database :
- OpenAIRE
- Journal :
- PLoS pathogens
- Accession number :
- edsair.doi.dedup.....939efc403a356ddcdb2b3c56debdc122