| Literature DB >> 29084166 |
Sohail Muhammad1, Guanhong Xu2, Fangdi Wei3, Yujie Ma4, Yunsu Ma5, Yueyue Song6, Menglan Shi7, Xiaoman Xu8, Yao Cen9, Qin Hu10.
Abstract
An analytical technique based on fluorescence quenching of CdTe/CdS/ZnS quantum dots (QDs) was developed to quantify verapamil in commercially available preparations. Various reaction parameters were optimized and the method developed was validated. One way analysis of variance (ANOVA) and post hoc tests at a 5% significance level were performed to justify the significance of the variation in observations. The linear range of the verapamil concentration was 0.25-5 µg/mL while the limit of detection was 20 µg/mL. Recovery and relative standard deviations were not more than ±10% of the actual amount and <5.9%, respectively. Foreign materials, common metal ions and pharmaceutical excipients of dosage forms caused little interference. To verify the application of the analytical method, the quantity of verapamil in commercially available dosage forms was measured. Verapamil content in the tablets and injections was not more than ±10% of the stated amount and it conformed to the specifications of both the British and the United States pharmacopoeias. In the case of statistical analysis, p-value was <0.05 in almost all levels of all parameters except for the optimized level of system. It can be concluded from the results that the designed method is simple, reliable, cost effective, selective, rapid and sensitive enough to be used for quantitative measurement of the verapamil HCl in dosage forms for quality control purposes.Entities:
Keywords: analytical method; fluorescence; nano probe; one way ANOVA; quantum dots; verapamil
Year: 2017 PMID: 29084166 PMCID: PMC5707575 DOI: 10.3390/nano7110358
Source DB: PubMed Journal: Nanomaterials (Basel) ISSN: 2079-4991 Impact factor: 5.076
Scheme 1Quenching of quantum dot (QD) fluorescence (FL) by Verapamil HCl.
Figure 1Effect of QDs concentration on fluorescence quenching by verapamil HCl.
Figure 2Effect of pH on QDs fluorescence quenching by verapamil HCl.
Figure 3Effect of concentration of buffer on QDs fluorescence quenching by verapamil HCl.
Figure 4Effect of incubation temperature on reaction of QDs with verapamil HCl.
Figure 5Effect of reaction time on QDs fluorescence quenching by verapamil HCl.
Figure 6(A) Absorbance spectra of verapamil HCl (a), CdTe/CdS/ZnS QDs before (b) and after (c) the addition of verapamil HCl. (B) Stern–Volmer plot for different concentrations of verapamil HCl.
Figure 7(A) Relationship between (Fo-F)/Fo and verapamil HCl concentration. (B) Effect of addition of different concentrations (µg/mL) of verapamil HCl on FL intensity of CdTe/CdS/ZnS QDs. Concentrations are as follows: (a) 0; (b) 0.25; (c) 0.5; (d) 1; (e) 2; (f) 3; (g) 4; and (h) 5.
Precision and accuracy of the method for measurement of verapamil HCl concentration. Each test was performed three times.
| Concentration of Verapamil HCl (µg/mL) | Interday | Intraday | ||
|---|---|---|---|---|
| Mean Recovery (%) ± SEM | RSD (%) | Mean Recovery (%) ± SEM | RSD (%) | |
| 0.75 | 99 ± 1.3 | 5.8 | 104 ± 1.4 | 5.4 |
| 2.5 | 97 ± 1.8 | 4.4 | 101 ± 0.7 | 3.2 |
| 4 | 94 ± 1.5 | 3 | 96 ± 2.1 | 4 |
Effect of common metal ions and excipients on fluorescence quenching.
| Metal Ion | Metal Ion: Verapamil HCl | Change in Quenching (%) | Excipient | Excipient: Verapamil HCl | Change in Quenching (%) |
|---|---|---|---|---|---|
| K+ | 20 | 3.8 | Hydroxypropyl cellulose | 20 | −2.5 |
| Na+ | 20 | −0.2 | Corn starch | 10 | −2.5 |
| Ca2+ | 20 | −2.4 | A-Cellulose | 10 | −4.1 |
| Mg2+ | 20 | −5.0 | PEG | 10 | 0.4 |
| Al3+ | 1 | −0.1 | HPMC | 10 | 1.1 |
| Ag2+ | 0.25 | 1.7 | CMC | 20 | 0.6 |
| Fe2+ | 2 | −3.5 | Titanium dioxide | 5 | −0.4 |
| Fe3+ | 5 | −4.2 | Talc | 5 | 1.5 |
| Cu2+ | 0.17 | −4.2 | Mg-Stearate | 5 | −4.9 |
| Mn2+ | 5 | 4.4 | |||
| Cd2+ | 0.25 | 2.7 | |||
| Zn2+ | 2 | −4.6 |
Percentage of verapamil measured by the designed method in standard powder, commercially available tablets and injection.
| Test Number | Percentage of Drug in Standard Powder | Percentage of Drug in Tablet | Percentage of Drug in Injection |
|---|---|---|---|
| 1 | 99.5 | 95.5 | 103.1 |
| 2 | 98.6 | 97.2 | 102.3 |
| 3 | 98.7 | 93.4 | 102.3 |
| Mean ± SEM | 98.9 ± 0.3 | 95.4 ± 1.1 | 102.5 ± 0.3 |