A Rapid, Simple, and Standardized Homogenization Method to Prepare Antigen/Adjuvant Emulsions for Inducing
1The Rausing Laboratory, Autoimmunity Section, Division of Neurosurgery, Department of Clinical Sciences, Lund University; Department of Autoimmunity, BTB Emulsions; thomas.backstrom@med.lu.se.
Abstract:
Experimental autoimmune encephalomyelitis (EAE) shares similar immunological and clinical features with multiple sclerosis (MS), and is therefore widely used as a model to identify new drug targets for better patient treatment. MS is characterized by several different disease courses: relapsing-remitting MS (RRMS), primary progressive MS (PPMS), secondary progressive MS (SPMS), and a rare progressive-relapsing form of MS (PRMS). Although animal models do not accurately mimic all of these contrasting human disease phenotypes, there are EAE models that reflect some of the different clinical manifestations of MS. For example, myelin oligodendrocyte glycoprotein (MOG)-induced EAE in C57BL/6J mice mimics human PPMS, while myelin proteolipid protein (PLP)-induced EAE in SJL/J mice resembles RRMS. Other autoantigens, such as myelin basic protein (MBP), and a number of different mouse strains are also used to study EAE. To induce disease in these autoantigen-immunization EAE models, a water-in-oil emulsion is prepared and injected subcutaneously. The majority of EAE models also require an injection of pertussis toxin for the disease to develop. For consistent and reproducible EAE induction, a detailed protocol to prepare the reagents to produce antigen/adjuvant emulsions is necessary. The method described here takes advantage of a standardized method to generate water-in-oil emulsions. It is simple and fast and uses a shaking homogenizer instead of syringes to prepare quality-controlled emulsions.
Insights
This study presents a standardized, fast, and quality-controlled method for preparing antigen/adjuvant emulsions used in experimental autoimmune encephalomyelitis (EAE) models. This improved technique enhances the reproducibility of EAE induction for multiple sclerosis (MS) research.
Area of Science:
- Neuroimmunology
- Animal Models of Disease
Background:
- Experimental autoimmune encephalomyelitis (EAE) is a key animal model for studying multiple sclerosis (MS).
- MS presents with diverse clinical courses (RRMS, PPMS, SPMS, PRMS), and EAE models can reflect some of these phenotypes.
- Accurate EAE induction relies on reproducible preparation of antigen/adjuvant emulsions.
Purpose of the Study:
- To describe a standardized, simple, and fast method for preparing water-in-oil emulsions for EAE induction.
- To improve the quality control and reproducibility of EAE models used in MS research.
Main Methods:
- Utilized a standardized method for generating water-in-oil emulsions.
- Employed a shaking homogenizer for emulsion preparation, replacing traditional syringe methods.
- Focused on optimizing reagent preparation for consistent antigen/adjuvant emulsions.
Main Results:
- The described method provides a simple and fast approach to emulsion preparation.
- The use of a shaking homogenizer ensures quality-controlled emulsions.
- This technique enhances the consistency and reproducibility of EAE induction.
Conclusions:
- The developed protocol offers a reliable method for preparing emulsions crucial for EAE induction.
- This standardized approach can improve the validity and comparability of findings across different MS research studies.
- Optimized EAE induction protocols are vital for advancing the identification of new therapeutic targets for MS.
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