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Increasing the High Throughput of a Luminescence-Based Serum Bactericidal Assay (L-SBA)
- Source :
- BioTech, Vol 10, Iss 19, p 19 (2021), BioTech, Volume 10, Issue 3
- Publication Year :
- 2021
-
Abstract
- Serum bactericidal assay (SBA) is the method to investigate in vitro complement-mediated bactericidal activity of sera raised upon vaccination. The assay is based on incubating the target bacteria and exogenous complement with sera at different dilutions and the result of the assay is represented by the sera dilution being able to kill 50% of bacteria present in the inoculum. The traditional readout of the assay is based on measurement of colony-forming units (CFU) obtained after plating different reaction mixes on agar. This readout is at low throughput and time consuming, even when automated counting is used. We previously described a novel assay with a luminescence readout (L-SBA) based on measurement of ATP released by live bacteria, which allowed to substantially increase the throughput as well as to reduce the time necessary to perform the assay when compared to traditional methods. Here we present a further improvement of the assay by moving from a 96-well to a 384-well format, which allowed us to further increase the throughput and substantially reduce costs while maintaining the high performance of the previously described L-SBA method. The method has been successfully applied to a variety of different pathogens.
- Subjects :
- Functional assay
food.ingredient
Chromatography
biology
Serial dilution
Chemistry
Biomedical Engineering
Bioengineering
high throughput
Bacteria Present
biology.organism_classification
Applied Microbiology and Biotechnology
Biochemistry
food
vaccine
Agar
luminescent SBA
Luminescence
serum bactericidal assay
Throughput (business)
functional assay
TP248.13-248.65
Bacteria
Biotechnology
Subjects
Details
- ISSN :
- 26736284
- Volume :
- 10
- Issue :
- 3
- Database :
- OpenAIRE
- Journal :
- Biotech (Basel (Switzerland))
- Accession number :
- edsair.doi.dedup.....88b1a2540620bf72be56053a7767898a