Innate and Adaptive Immunity during SARS-CoV-2 Infection: Biomolecular Cellular Markers and Mechanisms

Author:

Brown Brent1ORCID,Ojha Vanshika2,Fricke Ingo3ORCID,Al-Sheboul Suhaila A45,Imarogbe Chinua6ORCID,Gravier Tanya7,Green Michael8ORCID,Peterson Lori9ORCID,Koutsaroff Ivoyl P.10ORCID,Demir Ayça11,Andrieu Jonatane12,Leow Chiuan Yee13ORCID,Leow Chiuan Herng14ORCID

Affiliation:

1. Academic Researcher, London NW7 4AU, UK

2. Independent Researcher, Ayodhya 224001, India

3. Independent Immunologist and Researcher, 311995 Lamspringe, Germany

4. Department of Medical Laboratory Sciences, Faculty of Applied Medical Sciences, Jordan University of Science and Technology, Irbid 22110, Jordan

5. Department of Medical Microbiology, International School of Medicine, Medipol University-Istanbul, Istanbul 34810, Turkey

6. UKHSA, Rosalind Franklin Laboratory, UK

7. Independent Researcher, MPH, San Francisco, CA 94131, USA

8. Independent Researcher, Perth 6065, Australia

9. Senior Epidemiologist, Murray, KY 42071, USA

10. Technology Freelancer, Otsu, Osaka 520-0817, Japan

11. Faculty of Medicine, Afyonkarahisar University, Istanbul 03030, Turkey

12. Faculté de Médecine, Aix–Marseille University, 13005 Marseille, France

13. School of Pharmaceutical Sciences, Universiti Sains Malaysia, USM, Penang 11800, Malaysia

14. Institute for Research in Molecular Medicine, (INFORMM), Universiti Sains Malaysia, USM, Penang 11800, Malaysia

Abstract

The coronavirus 2019 (COVID-19) pandemic was caused by a positive sense single-stranded RNA (ssRNA) severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). However, other human coronaviruses (hCoVs) exist. Historical pandemics include smallpox and influenza, with efficacious therapeutics utilized to reduce overall disease burden through effectively targeting a competent host immune system response. The immune system is composed of primary/secondary lymphoid structures with initially eight types of immune cell types, and many other subtypes, traversing cell membranes utilizing cell signaling cascades that contribute towards clearance of pathogenic proteins. Other proteins discussed include cluster of differentiation (CD) markers, major histocompatibility complexes (MHC), pleiotropic interleukins (IL), and chemokines (CXC). The historical concepts of host immunity are the innate and adaptive immune systems. The adaptive immune system is represented by T cells, B cells, and antibodies. The innate immune system is represented by macrophages, neutrophils, dendritic cells, and the complement system. Other viruses can affect and regulate cell cycle progression for example, in cancers that include human papillomavirus (HPV: cervical carcinoma), Epstein–Barr virus (EBV: lymphoma), Hepatitis B and C (HB/HC: hepatocellular carcinoma) and human T cell Leukemia Virus-1 (T cell leukemia). Bacterial infections also increase the risk of developing cancer (e.g., Helicobacter pylori). Viral and bacterial factors can cause both morbidity and mortality alongside being transmitted within clinical and community settings through affecting a host immune response. Therefore, it is appropriate to contextualize advances in single cell sequencing in conjunction with other laboratory techniques allowing insights into immune cell characterization. These developments offer improved clarity and understanding that overlap with autoimmune conditions that could be affected by innate B cells (B1+ or marginal zone cells) or adaptive T cell responses to SARS-CoV-2 infection and other pathologies. Thus, this review starts with an introduction into host respiratory infection before examining invaluable cellular messenger proteins and then individual immune cell markers.

Funder

Biochem123 Ltd.

Publisher

MDPI AG

Subject

Pharmacology (medical),Infectious Diseases,Drug Discovery,Pharmacology,Immunology

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