Canonical Question
Immuno – Inflamation, Immunity
Master answer
Definitions
Immune System: complex network of cells and proteins that defends the body against infection. They can be classified as:
- Physical barries
- Innate Immunity: Recognize generic pathogenic motifs and directly attack or opsonize and phagocytose
- Acquired immunity: Pathogenic antigens presented to B cells and T cells via APCs such as dendritic cells
Immunization: A process by which a person becomes protected against a disease through vaccination. This term is often used interchangeably with vaccination or inoculation.
Vaccine: A product that stimulates a person’s immune system to produce immunity to a specific disease, protecting the person from that disease.
Immunization:
- Passive
- Active
- Passive Immunization:
- transfer of preformed antibodies to an unimmunized individual.
- develop temporary immunity to the particular organism or toxin
- Once these preformed antibodies have been destroyed, the individual would no longer have immunity to this microorganism or toxin.
- e.g: Natural: passage of maternal antibodies through the placenta to the fetus
- e.g: Artificial: administration of pooled human immune gamma globulin and antivenin
- Active immunization:
- occurs with the exposure of an unimmunized individual to a pathogenic agent
- Immune system begins the process of developing immunity to this agent
- produces long-term immunity due to the stimulation of the individual’s immune system.
Stimulation of Immunity by vaccines:
Detection:
- by innate immune system, and/or B-cells
- recognize epitopes on antigens
Primary Response to vaccine administration:
- Innate Immune System activation:
- Opsonize or bind to agent → aid in engulfment by Antigen-presenting cells (macrophages or monocytes) → insert processed antigen + MHC protein onto its surface
- Complex presented to Adaptive Immune System:
- Viral: Antigen + MHC I complex → presented to CD8 cell → trigger cell mediated immunity
- Bacterial or parasitic: Antigen + MHC II protein → presented to CD4 cell → trigger antibody- mediated immunity
- Memory T-cells and B-cells formed → undergo clonal selection following infection, which increases antigen-binding affinity
Subsequent Infection: 2° immune response
- Subsequent exposure to Ag
- memory T cells rapidly proliferate into active helper and cytotoxic T cells specific to that antigen
- memory B cells rapidly produce antibodies to neutralize the pathogen.
- more rapid, prolonged and powerful immune response
Types of vaccines:
- Live attenuated vaccines: produce a strong cellular and antibody responses and typically produce long-term immunity with only one to two doses: MMR, Typhoid
- Inactivated vaccines: Influenza
- Toxoid: Tetanus, diphteria
- Subunit vaccines: Hepatitis B
- Conjugate vaccine: Haemophilus Influenza B vaccine
- Outer membrane vesicle vaccine: B-Meningococcal
- Heterotypic/Heterologous: BCG
- Viral vector: Ebola
- RNA: Pfizer–BioNTech COVID-19 vaccine
JC 2020
Exam appearances
| Exam | Exact wording | Relationship | Success |
|---|---|---|---|
| 2011A Q20 | Describe how previous immunisation protects against subsequent infection. | historical_member | — |