-1::1
Simple Hit Counter
Skip to content

Products

Solutions

×
×
Sign In

DE

EN - EnglishCN - 简体中文DE - DeutschES - EspañolKR - 한국어IT - ItalianoFR - FrançaisPT - Português do BrasilPL - PolskiHE - עִבְרִיתRU - РусскийJA - 日本語TR - TürkçeAR - العربية
Sign In Start Free Trial

RESEARCH

JoVE Journal

Peer reviewed scientific video journal

Behavior
Biochemistry
Bioengineering
Biology
Cancer Research
Chemistry
Developmental Biology
View All
JoVE Encyclopedia of Experiments

Video encyclopedia of advanced research methods

Biological Techniques
Biology
Cancer Research
Immunology
Neuroscience
Microbiology
JoVE Visualize

Visualizing science through experiment videos

EDUCATION

JoVE Core

Video textbooks for undergraduate courses

Analytical Chemistry
Anatomy and Physiology
Biology
Calculus
Cell Biology
Chemistry
Civil Engineering
Electrical Engineering
View All
JoVE Science Education

Visual demonstrations of key scientific experiments

Advanced Biology
Basic Biology
Chemistry
View All
JoVE Lab Manual

Videos of experiments for undergraduate lab courses

Biology
Chemistry

BUSINESS

JoVE Business

Video textbooks for business education

Accounting
Finance
Macroeconomics
Marketing
Microeconomics

OTHERS

JoVE Quiz

Interactive video based quizzes for formative assessments

Authors

Teaching Faculty

Librarians

K12 Schools

Biopharma

Products

RESEARCH

JoVE Journal

Peer reviewed scientific video journal

JoVE Encyclopedia of Experiments

Video encyclopedia of advanced research methods

JoVE Visualize

Visualizing science through experiment videos

EDUCATION

JoVE Core

Video textbooks for undergraduates

JoVE Science Education

Visual demonstrations of key scientific experiments

JoVE Lab Manual

Videos of experiments for undergraduate lab courses

BUSINESS

JoVE Business

Video textbooks for business education

OTHERS

JoVE Quiz

Interactive video based quizzes for formative assessments

Solutions

Authors
Teaching Faculty
Librarians
K12 Schools
Biopharma

Language

German

EN

English

CN

简体中文

DE

Deutsch

ES

Español

KR

한국어

IT

Italiano

FR

Français

PT

Português do Brasil

PL

Polski

HE

עִבְרִית

RU

Русский

JA

日本語

TR

Türkçe

AR

العربية

    Menu

    JoVE Journal

    Behavior

    Biochemistry

    Bioengineering

    Biology

    Cancer Research

    Chemistry

    Developmental Biology

    Engineering

    Environment

    Genetics

    Immunology and Infection

    Medicine

    Neuroscience

    Menu

    JoVE Encyclopedia of Experiments

    Biological Techniques

    Biology

    Cancer Research

    Immunology

    Neuroscience

    Microbiology

    Menu

    JoVE Core

    Analytical Chemistry

    Anatomy and Physiology

    Biology

    Calculus

    Cell Biology

    Chemistry

    Civil Engineering

    Electrical Engineering

    Introduction to Psychology

    Mechanical Engineering

    Medical-Surgical Nursing

    View All

    Menu

    JoVE Science Education

    Advanced Biology

    Basic Biology

    Chemistry

    Clinical Skills

    Engineering

    Environmental Sciences

    Physics

    Psychology

    View All

    Menu

    JoVE Lab Manual

    Biology

    Chemistry

    Menu

    JoVE Business

    Accounting

    Finance

    Macroeconomics

    Marketing

    Microeconomics

Start Free Trial
Loading...
Home
JoVE Journal
Immunology and Infection
In Vitro ELISA-Test zur Bewertung der Wirksamkeit von Tollwut-Impfstoffen
In Vitro ELISA-Test zur Bewertung der Wirksamkeit von Tollwut-Impfstoffen
JoVE Journal
Immunology and Infection
A subscription to JoVE is required to view this content.  Sign in or start your free trial.
JoVE Journal Immunology and Infection
In Vitro ELISA Test to Evaluate Rabies Vaccine Potency

In Vitro ELISA-Test zur Bewertung der Wirksamkeit von Tollwut-Impfstoffen

Full Text
13,434 Views
09:04 min
May 11, 2020

DOI: 10.3791/59641-v

Corinne Jallet1, Noël Tordo1,2

1Unit Antiviral Strategies, OIE Reference Laboratories for Rift Valley Fever Virus & Crimean Congo Hemorrhagic Fever Virus,Institut Pasteur, 2Institut Pasteur de Guinée, Conakry

AI Banner

Please note that some of the translations on this page are AI generated. Click here for the English version.

Overview

This article describes an indirect ELISA sandwich immunocapture method for determining the immunogenic glycoprotein contents in rabies vaccines. The test utilizes a neutralizing Monoclonal Antibody (mAb-D1) that recognizes glycoprotein trimers, providing an alternative to the in vivo NIH test for assessing vaccine potency.

Key Study Components

Area of Science

  • Immunology
  • Vaccinology
  • In vitro testing methods

Background

  • The WHO encourages the development of in vitro approaches to reduce animal testing.
  • Variability in the NIH test has prompted the search for more consistent alternatives.
  • This ELISA test demonstrates good concordance with classical NH tests.
  • High sensitivity and rapid execution within one day are key advantages of this method.

Purpose of Study

  • To evaluate rabies vaccine potency using an in vitro ELISA method.
  • To provide a reliable alternative to the in vivo NIH test.
  • To promote the use of this method among manufacturers and national control laboratories.

Methods Used

  • Indirect ELISA sandwich immunocapture technique.
  • Use of neutralizing Monoclonal Antibody (mAb-D1).
  • Preparation of pre-sized volumes in duplicate for each dilution.
  • Decontamination procedures for handling contaminated materials.

Main Results

  • The ELISA test shows high sensitivity in recognizing the immunogenic form of the glycoprotein.
  • Results are consistent with those obtained from classical NH tests.
  • The method can be completed in a single day, enhancing efficiency.
  • Promoted as a viable alternative by manufacturers and control laboratories.

Conclusions

  • The ELISA method is a promising alternative for evaluating rabies vaccine potency.
  • It aligns with WHO recommendations to reduce animal testing.
  • Further adoption could standardize vaccine potency assessments.

Frequently Asked Questions

What is the main advantage of the ELISA method?
The main advantage is its high sensitivity and ability to provide results within one day, reducing the need for animal testing.
How does this method compare to the NIH test?
The ELISA method shows good concordance with the NIH test but offers greater consistency and efficiency.
What safety measures are recommended during the procedure?
Personal protective equipment such as gloves, masks, and goggles should be worn, and contaminated materials should be decontaminated properly.
Who promotes the use of this ELISA method?
Manufacturers and national control laboratories promote the use of this method as a reliable alternative.
What is the role of the Monoclonal Antibody in this test?
The Monoclonal Antibody (mAb-D1) specifically recognizes glycoprotein trimers, which are crucial for assessing vaccine potency.

Hier beschreiben wir eine indirekte ELISA-Sandwich-Immunocapture zur Bestimmung des immunogenen Glykoproteingehalts in Tollwut-Impfstoffen. Dieser Test verwendet einen neutralisierenden monoklonalen Antikörper (mAb-D1), der Glykoproteintrimer erkennt. Es ist eine Alternative zum in vivo NIH-Test, um die Konsistenz der Impfstoff-Potenz während der Produktion zu verfolgen.

Um Tierversuche zu reduzieren und aufgrund der Variabilität des NH-Tests, regt die WHO an, In-vitro-Ansätze zur Bewertung der Wirksamkeit von Tollwutimpfstoffen zu entwickeln. Dieser ELISA-Test zeigt eine gute Übereinstimmung mit einem klassischen NH-Test bei der Erkennung der immunogenen Form des Glykoproteins, zeigt eine hohe Empfindlichkeit und kann innerhalb von nur einem Tag durchgeführt werden. Die Bewertung der Tollwut-Impfstoff-Potenz in vitro durch ELISA ist eine Alternative zum in vivo NH-Test.

Es wird von den Herstellern und nationalen Kontrolllaboratorien gefördert. Es ist wichtig, vorgefertigte Mengen in Doppeltage für jede Verdünnung zu verteilen und die Platte auf saugfähigem Papier nach dem Waschen gut zu trocknen, um zu vermeiden, dass Sie dieses Verfahren beginnen, geeignete persönliche Schutzausrüstung einschließlich Einwegmantel, Handschuhe, Maske und Brille anziehen. Behandeln Sie die kontaminierten Materialien, indem Sie sie für die Dekontamination 30 Minuten lang in eine Lösung von 2,6% Natriumhypochlorit eintauchen.

View the full transcript and gain access to thousands of scientific videos

View the full transcript and gain access to thousands of scientific videos

Sign In Start Free Trial

Explore More Videos

Immunologie und Infektion Ausgabe 159 Tollwut-Impfstoff-Potenz NIH-Test ELISA-Methode mAb-D1-Monoklonaler Antikörper Trimers von Glykoprotein Glykoproteingehalt

Related Videos

Protokoll für die rekombinante RBD-basierte Impfstoffe SARS: Protein Preparation, Animal Impfung und Neutralisation Erkennung

12:09

Protokoll für die rekombinante RBD-basierte Impfstoffe SARS: Protein Preparation, Animal Impfung und Neutralisation Erkennung

Related Videos

43.5K Views

Eine immunhistochemische Färbung zum Nachweis von Tollwutvirus-Antigenen

04:34

Eine immunhistochemische Färbung zum Nachweis von Tollwutvirus-Antigenen

Related Videos

701 Views

Verwendung eines Sandwich-ELISA zur Bestimmung des immunogenen Glykoproteingehalts in einem Impfstoff

05:42

Verwendung eines Sandwich-ELISA zur Bestimmung des immunogenen Glykoproteingehalts in einem Impfstoff

Related Videos

993 Views

Verbesserte Tollwutüberwachung mit einem direkten schnellen immunhistochemischen Test

08:58

Verbesserte Tollwutüberwachung mit einem direkten schnellen immunhistochemischen Test

Related Videos

9.5K Views

Bewertung einer universellen, veralteten Transcription Polymerase Chain Reaction zur Erkennung von Lyssaviren

08:10

Bewertung einer universellen, veralteten Transcription Polymerase Chain Reaction zur Erkennung von Lyssaviren

Related Videos

8.9K Views

Field Postmortem Rabies Rapid Immunochromatographischer Diagnostischer Test für ressourcenbegrenzte Einstellungen mit weiteren molekularen Anwendungen

07:40

Field Postmortem Rabies Rapid Immunochromatographischer Diagnostischer Test für ressourcenbegrenzte Einstellungen mit weiteren molekularen Anwendungen

Related Videos

14.6K Views

Immunhistochemischer Test für den Lyssavirus-Antigennachweis aus formalinfixierten Geweben

08:42

Immunhistochemischer Test für den Lyssavirus-Antigennachweis aus formalinfixierten Geweben

Related Videos

4.8K Views

Quantifizierung des Tollwutvirus in verschiedenen Rinderhirnstrukturen

13:42

Quantifizierung des Tollwutvirus in verschiedenen Rinderhirnstrukturen

Related Videos

4K Views

Herstellung pulsatiler polymerer Mikropartikel, die das Tollwutantigen verkapseln

07:44

Herstellung pulsatiler polymerer Mikropartikel, die das Tollwutantigen verkapseln

Related Videos

1.7K Views

Nachweis von Tollwut-IgG- und IgM-Antikörpern mit dem Tollwut-Test mit indirekten fluoreszierenden Tollwut-Antikörpern

07:54

Nachweis von Tollwut-IgG- und IgM-Antikörpern mit dem Tollwut-Test mit indirekten fluoreszierenden Tollwut-Antikörpern

Related Videos

3.4K Views

JoVE logo
Contact Us Recommend to Library
Research
  • JoVE Journal
  • JoVE Encyclopedia of Experiments
  • JoVE Visualize
Business
  • JoVE Business
Education
  • JoVE Core
  • JoVE Science Education
  • JoVE Lab Manual
  • JoVE Quizzes
Solutions
  • Authors
  • Teaching Faculty
  • Librarians
  • K12 Schools
  • Biopharma
About JoVE
  • Overview
  • Leadership
Others
  • JoVE Newsletters
  • JoVE Help Center
  • Blogs
  • JoVE Newsroom
  • Site Maps
Contact Us Recommend to Library
JoVE logo

Copyright © 2026 MyJoVE Corporation. All rights reserved

Privacy Terms of Use Policies
WeChat QR code