Simultaneous rapid detection of glycyrrhizin and sennoside A in Daiokanzoto samples by lateral flow immunoassay

Author:

Ochi Akihiro1,Nuntawong Poomraphie1,Chaingam Jiranan1,Ota Tomoki1,Juengwatanatrakul Thaweesak2,Putalun Waraporn3ORCID,Shoyama Yukihiro4,Tanaka Hiroyuki5ORCID,Morimoto Satoshi1,Sakamoto Seiichi1ORCID

Affiliation:

1. Graduate School of Pharmaceutical Sciences Kyushu University Fukuoka Japan

2. Faculty of Pharmaceutical Sciences Ubon Ratchathani University Ubon Ratchathani Thailand

3. Faculty of Pharmaceutical Sciences Khon Kaen University Khon Kaen Thailand

4. Faculty of Pharmaceutical Sciences Nagasaki International University Nagasaki Japan

5. Faculty of Pharmaceutical Sciences Sanyo‐Onoda City University Yamaguchi Japan

Abstract

AbstractIntroductionGlycyrrhizin (GLY) and sennoside A (SA) are characteristic bioactive marker compounds of the Kampo medicine Daiokanzoto. Their accurate detection in blends of Rhei rhizoma and Glycyrrhizae radix of several species (4:1 or 4:2) is essential for quality control and to ensure therapeutic efficacy. A rapid, efficient assay can significantly facilitate their detection.ObjectiveTo establish a rapid qualitative assay for GLY and SA detection, a lateral flow immunoassay (LFA) was developed using specific monoclonal antibody (mAb) nanoparticles.MethodologyThis assay harnesses the competitive binding of mAb nanoparticles to the immobilized analytes on test strips and free analytes in the samples. Two conjugates for detecting GLY and SA, GLY–bovine serum albumin and SA–human serum albumin, were separately immobilized on the test zones of LFA strips. The detection mechanism is reliant on the visual detection of color changes in the test zones.ResultsWhen GLY and SA were present in samples, they contended with the immobilized conjugates on the strip to bind with the mAb nanoparticles and produced distinct color patterns in the test zones. The limits of detection of the assay for GLY and SA were both 3.13 μg/mL. The capability of the LFA was substantiated using plant samples and Daiokanzoto, and its alignment with indirect competitive ELISA results was confirmed.ConclusionThe introduced LFA is a groundbreaking procedure that offers a rapid, straightforward, and sensitive method for simultaneously detecting GLY and SA in Daiokanzoto samples. It is instrumental in ensuring product quality.

Funder

Japan Agency for Medical Research and Development

Publisher

Wiley

Subject

Complementary and alternative medicine,Drug Discovery,Plant Science,Molecular Medicine,General Medicine,Biochemistry,Food Science,Analytical Chemistry

Reference32 articles.

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3. Ministry of Health Labour and Welfare of Japan. Rhubarb. The Japanese Pharmacopoeia.18th ed.2021:2113‐2114.

4. Ministry of Health Labour and Welfare of Japan. Glycyrhiza. The Japanese Pharmacopoeia.18th ed.2021:2013‐2014.

5. Assessment report onRheum palmatumL. andRheum officinaleBaillon radixs.HMPC European Medicines Agency;2014;1–22.

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