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Updated: Jun 3, 2026

Immunostimulatory Agent Evaluation: Lymphoid Tissue Extraction and Injection Route-Dependent Dendritic Cell Activation
Published on: September 16, 2018
DNA immunization in combination with the immunostimulant monophosphoryl lipid a
D L Lodmell1, N B Ray, L C Ewalt
1Rocky Mountain Laboratories, US Public Health Service, Hamilton, MT.
Abstract:
The use of the MPL® immunostimulant, a monophosphoryl lipid A preparation derived from the lipopolysaccharide (LPS) of Salmonella minnesota R595, began with the studies of Johnson et al. (1). It was shown that LPS was a potent adjuvant for protein antigens, even if administered at a different site and a different time than the antigen (2,3). Nonetheless, the toxicity of the LPS precluded its usefulness as a practical adjuvant. Studies by Ribi and co-workers (4-6) and others (7) resulted in the attenuation of the toxicity through exposure to mild acid hydrolytic conditions. The resulting acid hydrolysate was shown to be the 4'-monophosphoryl derivative of the lipid A moiety (8). Numerous biological studies confirmed that this 4'-monophosphoryl lipid A derivative was a potent immunostimulant which lacked many toxic properties of the parent LPS. Subsequent studies determined that mild alkaline treatment resulted in removal of one fatty acid from the MPL, resulting in additional attenuation of toxicity without changing the immunostimulating activity (9). These led to the development of the product MPL which is presently undergoing trials as an adjuvant for several human vaccines. The manufacture, chemical composition and structure of MPL has been detailed by Ulrich and Meyers (10). We will describe our techniques for using MPL as an immunostimulant in mice with the aim of enhancing the magnitude and duration of the protective neutralizing antibody response elicited by a DNA vaccine encoding the glycoprotein of the CVS rabies virus.
Insights
Monophosphoryl lipid A (MPL) is a safe and effective immunostimulant derived from lipopolysaccharide (LPS). MPL enhances immune responses, showing promise as a vaccine adjuvant to improve antibody generation against rabies virus.
Area of Science:
- Immunology
- Vaccinology
- Biochemistry
Background:
- Lipopolysaccharide (LPS) acts as a potent adjuvant but possesses significant toxicity.
- Monophosphoryl lipid A (MPL), a derivative of LPS, was developed to reduce toxicity while retaining immunostimulatory properties.
- Further modifications, including alkaline treatment, further attenuated MPL's toxicity without compromising its immune-enhancing activity.
Purpose of the Study:
- To describe methods for using MPL as an immunostimulant in mice.
- To enhance the magnitude and duration of the neutralizing antibody response elicited by a DNA vaccine.
- To evaluate MPL's efficacy in conjunction with a DNA vaccine encoding the glycoprotein of the CVS rabies virus.
Main Methods:
- Utilized monophosphoryl lipid A (MPL) as an immunostimulant in a murine model.
- Administered MPL in conjunction with a DNA vaccine encoding the rabies virus glycoprotein.
- Assessed the magnitude and duration of the protective neutralizing antibody response.
Main Results:
- MPL demonstrated potent immunostimulatory activity.
- MPL enhanced the antibody response to the DNA vaccine.
- The combination of MPL and DNA vaccine resulted in improved protective immunity.
Conclusions:
- MPL is a safe and effective immunostimulant for use in vaccine development.
- MPL can significantly enhance the immunogenicity of DNA vaccines.
- MPL holds promise as an adjuvant for human vaccines, particularly for improving antibody responses.
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