Live-attenuated Vaccine

A live-attenuated vaccine contains a weakened form of a pathogen that can stimulate protective immunity without typically causing disease in healthy individuals. After administration, the attenuated microorganism undergoes limited replication, presenting antigens to the innate and adaptive immune systems and promoting antibody production, T-cell responses, and immunological memory. These vaccines can produce strong, long-lasting protection and often resemble natural infection more closely than nonliving vaccine types. In immunology and infection research, they help clarify host-pathogen interactions and support prevention of diseases such as measles, mumps, rubella, and yellow fever, while their use requires careful assessment of safety, immune status, and pathogen stability.

Live-attenuated Vaccine - Related Videos

Research

JoVE EoE - Immunotherapy

Generating Recombinant Live-Attenuated Influenza Viruses for Vaccines

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2025

The video showcases a method to create cold-adapted recombinant influenza viruses. It involves transfecting human cells with bi-directional plasmids, followed by incubation at lower temperature incubation to yield viruses suitable for vaccine production, characterized by reduced replication in warmer conditions.

Intradermal Immunization with Live Attenuated Sporozoites in a Mouse Model

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2025

This video demonstrates an assay for immunizing a mouse model with live attenuated sporozoites. The radiation-attenuated Plasmodium sporozoites are injected into the dorsal side of the mouse's ear. After injections at multiple locations on both ears, the mouse is allowed to recover.

Education

JoVE Core - Biology

Vaccinations

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2019

Overview Vaccination is the administration of antigenic material from pathogens to confer immunity against a specific microorganism. Vaccination primes the immune system to recognize and mount an immune response faster and more effectively if the real pathogen is encountered. Vaccinations are one of the most efficient ways to protect both individual humans and the general public from disease. A growing anti-vaccination skepticism risks the successes of vaccination programs that helped reduce...

Myeloid Cell Isolation from Mouse Skin and Draining Lymph Node Following Intradermal Immunization with Live Attenuated Plasmodium Sporozoites

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Cited by 12 •

2016

We describe here a protocol for isolating myeloid cells from mouse skin and draining lymph node following intradermal injection of Plasmodium sporozoites. Flow cytometry of collected cells provides a reliable assay to characterize the skin and draining lymph node inflammatory response to the parasite.

Expression and Purification of Virus-like Particles for Vaccination

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Cited by 27 •

2016

Here, we present a protocol for synthesizing virus-like particles using either baculovirus or mammalian expression systems, and ultracentrifugation purification. This highly customizable approach is used to identify viral antigens as vaccine targets in a safe and flexible manner.

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