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Unleashing Monoclonal Antibodies: Targeting Covid-19's Nucleocapsid Protein and Spike Antigens
R Madani1, F Golchinfar1, M Hezarosi1
1Department of Proteomics and Biochemistry, Razi vaccine and serum research institute, Agricultural research education and extension organization (AREEO), Karaj, Iran.
Abstract:
Since the end of 2019, the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) has infected many people globally. Diagnosis and treatment of patients have a pivotal role in surviving them. Two units of virus namely, Nucleocapsid protein and Spike proteins play important roles in entering and affecting cells. These two substances can be good targets for producing monoclonal antibodies which can be useful in treatment, serological diagnosis tests, and even prevention by vaccination. In 2020, the nucleocapsid protein and spike proteins of SARS-CoV-2 were procured by the Razi Vaccine and Research Institute in Karaj. Subsequently, the proteins were injected into mice, with the injection dosage adjusted to ensure that the mice received an appropriate amount of the proteins. Subsequently, the spleen cells of the immunized mice were fused with myeloma cells. The most promising antibody-producing clones were selected for further evaluation. The immunoreactivity of the recombinant Np and S proteins was subsequently evaluated by implementing Western Blot and ELISA techniques. Finally, the most promising clones were cryopreserved using a nitrogen gas cryogenic method. The employment of an ELISA test resulted in the identification of eight clone antibodies, namely 3G1, 3G2, 3E7, H11, A11, F10, B11, and 2F6. These monoclonal antibodies were found to be against the S and Np antigens of SARS-CoV-2. Furthermore, the results of the western blot test indicated that each of these antibodies had antigenic sites against the Spike and Nucleocapsid protein independently, and the isotyping test revealed that they were from IgG (2a, 2b) or IgM class antibodies. The development of monoclonal antibodies has the potential to facilitate both diagnosis and treatment. The Nucleocapsid protein and Spike protein of SARS-CoV-2 show great promise in the creation of a new generation of monoclonal antibodies. Furthermore, a comprehensive approach to the early diagnosis of the disease can be facilitated by integrating the detection of these two proteins.
Insights
Researchers developed novel monoclonal antibodies targeting SARS-CoV-2 Spike and Nucleocapsid proteins for improved diagnosis and treatment strategies. These antibodies show promise for a new generation of diagnostics and therapeutics against the virus.
Area of Science:
- Immunology
- Virology
- Biotechnology
Background:
- Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) poses a global health challenge.
- Nucleocapsid (Np) and Spike (S) proteins are critical for viral entry and infection.
- Monoclonal antibodies targeting Np and S proteins offer potential for diagnostics and therapeutics.
Purpose of the Study:
- To develop and characterize monoclonal antibodies against SARS-CoV-2 Nucleocapsid and Spike proteins.
- To evaluate the efficacy of these antibodies in diagnostic and therapeutic applications.
- To explore their potential in creating a new generation of SARS-CoV-2 interventions.
Main Methods:
- Procurement of SARS-CoV-2 Np and S proteins.
- Immunization of mice and subsequent fusion of spleen cells with myeloma cells.
- Selection and evaluation of antibody-producing clones using Western Blot and ELISA.
- Cryopreservation of selected clones.
Main Results:
- Eight promising monoclonal antibody clones (3G1, 3G2, 3E7, H11, A11, F10, B11, 2F6) were identified.
- These antibodies demonstrated immunoreactivity against SARS-CoV-2 S and Np antigens.
- Western blot analysis confirmed independent antigenic sites on both proteins, with antibodies belonging to IgG (2a, 2b) or IgM classes.
Conclusions:
- Developed monoclonal antibodies show significant potential for SARS-CoV-2 diagnosis and treatment.
- Targeting Np and S proteins is a promising strategy for new antibody generation.
- Integrated detection of Np and S proteins can enhance early disease diagnosis.
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