A Polymer-Based Indicator for Detecting Dexamethasone in Herbal Medicine Using Polymethylmethacrylate (PMMA)
Abstract
:1. Introduction
2. Materials and Methods
2.1. Materials and Instruments
2.2. Sample Collection and Preparation
2.3. Selection of the Reagent for Dexamethasone Detection
2.4. Fabrication of PMMA-Based Indicator Strips
2.5. Performance Test
2.5.1. Selectivity Test
2.5.2. Accuracy Test
2.5.3. Sensitivity Test
2.5.4. Stability Test
3. Results and Discussion
3.1. Sample Collection and Preparation
3.2. Selection of the Reagent for Dexamethasone Detection
3.3. Fabrication of the PMMA-Based Indicator Strips
3.4. Performance Test
3.4.1. Selectivity Test
3.4.2. Accuracy Test
3.4.3. Sensitivity Test
3.4.4. Stability Test
4. Conclusions
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Data Availability Statement
Conflicts of Interest
References
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Sample | Manufacturer | Legality | |
---|---|---|---|
Legal | Illegal | ||
Control (pain, herbal) | PT. A | ✓ | |
S1 (gout, herbal) | PT. B | ✓ | |
S2 (pain, herbal) | PT. C | ✓ | |
S3 (pain, herbal) | PT. D | ✓ | |
S4 (pain and gout, herbal) | PT. E | ✓ | |
S5 (pain, gout, and rheumatic, herbal) | PT. F | ✓ | |
S6 (pain and gout, herbal) | PT. G | ✓ | |
S7 (gout and rheumatic, herbal) | PT. H | ✓ | |
S8 (pain, herbal) | PT. I | ✓ | |
S9 (pain, herbal) | PT. J | ✓ |
Chemical Drug | Result |
---|---|
Dexamethasone | Light pink-purple |
Paracetamol | Light brown |
Allopurinol | Colorless |
Antalgin | Colorless |
Phenylbutazone | Colorless |
Mefenamic acid | Yellow with a white precipitate |
Chlorpheniramine maleate (CTM) | Colorless |
Sample | Rf Value | Result |
---|---|---|
Standard Dexamethasone | 0.3 (±0.005) | + |
Positive Control | 0.285 (±0.008) | + |
Negative Control | − | − |
S1 | 0.28 (±0.014) | + |
S2 | − | − |
S3 | − | − |
S4 | 0.275 (±0.014) | + |
S5 | − | − |
S6 | − | − |
S7 | 0.285 (±0.007) | + |
S8 | 0.295 (±0.007) | + |
S9 | 0.29 (±0.007) | + |
Sample | Rt (min) | AUC | Concentration (ppm) |
---|---|---|---|
S1 | 3.492 | 4,636,761.3 | 818.59 |
S4 | 3.496 | 1,741,291.3 | 297.93 |
S7 | 3.502 | 1,544,784.4 | 262.59 |
S8 | 3.485 | 2,416,122.5 | 419.27 |
S9 | 3.491 | 6,032,553.5 | 1069.58 |
Repetition Measurement | Negative Control | Positive Control | S1 | S4 | S7 | S8 | S9 |
---|---|---|---|---|---|---|---|
1 | (−) | (+) | (+) | (+) | (+) | (+) | (+) |
2 | (−) | (+) | (+) | (+) | (+) | (+) | (+) |
3 | (−) | (+) | (+) | (+) | (+) | (+) | (+) |
Visualization |
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Pratiwi, R.; Charlie, V.; Saptarini, N.M.; Rahayu, D. A Polymer-Based Indicator for Detecting Dexamethasone in Herbal Medicine Using Polymethylmethacrylate (PMMA). Polymers 2023, 15, 2862. https://doi.org/10.3390/polym15132862
Pratiwi R, Charlie V, Saptarini NM, Rahayu D. A Polymer-Based Indicator for Detecting Dexamethasone in Herbal Medicine Using Polymethylmethacrylate (PMMA). Polymers. 2023; 15(13):2862. https://doi.org/10.3390/polym15132862
Chicago/Turabian StylePratiwi, Rimadani, Vandie Charlie, Nyi Mekar Saptarini, and Driyanti Rahayu. 2023. "A Polymer-Based Indicator for Detecting Dexamethasone in Herbal Medicine Using Polymethylmethacrylate (PMMA)" Polymers 15, no. 13: 2862. https://doi.org/10.3390/polym15132862
APA StylePratiwi, R., Charlie, V., Saptarini, N. M., & Rahayu, D. (2023). A Polymer-Based Indicator for Detecting Dexamethasone in Herbal Medicine Using Polymethylmethacrylate (PMMA). Polymers, 15(13), 2862. https://doi.org/10.3390/polym15132862