Next Article in Journal
3D-Printed Electrochemical Sensors: A Comprehensive Review of Clinical Analysis Applications
Previous Article in Journal
Recent Advances in Monitoring Microbial Toxins in Food Samples by HPLC-Based Techniques: A Review
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Article

Quantification of Metronidazole in Tablets: Combining Thin-Layer Chromatography in the GPHF-Minilab™ with Image Processing Using Open-Source ImageJ Software

1
Product Quality and Compliance, FHI 360, 2810 Meridian Parkway, Suite 160, Durham, NC 27713, USA
2
Department of Chemistry, North Carolina State University, 2620 Yarbrough Dr., Raleigh, NC 27607, USA
*
Author to whom correspondence should be addressed.
Analytica 2024, 5(4), 538-551; https://doi.org/10.3390/analytica5040036
Submission received: 17 September 2024 / Revised: 9 October 2024 / Accepted: 13 October 2024 / Published: 16 October 2024

Abstract

The GPHF-Minilab™ is a portable toolkit for performing qualitative methods such as thin-layer chromatography (TLC) on common pharmaceuticals. It is particularly useful in resource-limited locations where it is more challenging to monitor for substandard and falsified (SF) medicines. However, the GPHF-Minilab™ TLC methods are only semi-quantitative at best and thus have issues monitoring product quality effectively. We have improved on the GPHF-Minilab™ TLC method for metronidazole, a common antibiotic, by making it fully quantitative. Sample solutions were spotted on TLC plates alongside three metronidazole standards at different concentrations. After development, plates were imaged in a lightbox with two different smartphone cameras. Images were processed through the open-source program ImageJ and resulting pixel data from the standard spots were used to create a calibration curve, enabling quantitation of the sample. The USP Metronidazole Tablet high-performance liquid chromatography (HPLC) assay was used as the reference method. We validated this TLC method using 250 and 500 mg metronidazole tablets from different manufacturers and assessed linearity, range, accuracy, precision, intermediate precision, specificity, and robustness. These improvements should enhance the GPHF-Minilab™ TLC methods for metronidazole product screening. Additionally, the procedure is extensible to other analytes, although further validation would be required for each Minilab method.
Keywords: thin-layer chromatography; metronidazole; image analysis; ImageJ; quantitation; screening method; pharmaceutical product quality thin-layer chromatography; metronidazole; image analysis; ImageJ; quantitation; screening method; pharmaceutical product quality

Share and Cite

MDPI and ACS Style

Harmon, C.L.; Butts, S.; Sowers, M.E.; Bethea, E.; Jenkins, D. Quantification of Metronidazole in Tablets: Combining Thin-Layer Chromatography in the GPHF-Minilab™ with Image Processing Using Open-Source ImageJ Software. Analytica 2024, 5, 538-551. https://doi.org/10.3390/analytica5040036

AMA Style

Harmon CL, Butts S, Sowers ME, Bethea E, Jenkins D. Quantification of Metronidazole in Tablets: Combining Thin-Layer Chromatography in the GPHF-Minilab™ with Image Processing Using Open-Source ImageJ Software. Analytica. 2024; 5(4):538-551. https://doi.org/10.3390/analytica5040036

Chicago/Turabian Style

Harmon, Christopher L., Sean Butts, Mary Elizabeth Sowers, Ed Bethea, and David Jenkins. 2024. "Quantification of Metronidazole in Tablets: Combining Thin-Layer Chromatography in the GPHF-Minilab™ with Image Processing Using Open-Source ImageJ Software" Analytica 5, no. 4: 538-551. https://doi.org/10.3390/analytica5040036

APA Style

Harmon, C. L., Butts, S., Sowers, M. E., Bethea, E., & Jenkins, D. (2024). Quantification of Metronidazole in Tablets: Combining Thin-Layer Chromatography in the GPHF-Minilab™ with Image Processing Using Open-Source ImageJ Software. Analytica, 5(4), 538-551. https://doi.org/10.3390/analytica5040036

Article Metrics

Back to TopTop