| Literature DB >> 20140081 |
Hassan Arida1, Mona Ahmed, Abdallah Ali.
Abstract
The fabrication and electrochemical evaluation of two PVC membrane-based Ion-Selective electrodes responsive for ramipril drug have been proposed. The sensitive membranes were prepared using ramipril-phosphomolibdate and ramipril-tetraphenylborate ion-pair complexes as electroactive sensing materials in plasticized PVC support. The electrodes based on these materials provide near-Nernestian response (sensitivity of 53 +/- 0.5-54 +/- 0.5 mV/concentration decade) covering the concentration range of 1.0 x 10(-2)-1.0 x 10(-5) mol L(-1) with a detection limit of 3.0 x 10(-6)-4.0 x 10(-6) mol L(-1). The suggested electrodes have been successfully used in the determination of ramipril drug in some pharmaceutical formulations using direct potentiometry with average recovery of >96% and mean standard deviation of <3% (n = 5).Entities:
Year: 2009 PMID: 20140081 PMCID: PMC2814142 DOI: 10.1155/2009/954083
Source DB: PubMed Journal: Int J Anal Chem ISSN: 1687-8760 Impact factor: 1.885
Figure 1Potentiometric calibration response of ramibril-based selective electrodes.
Response characteristics of ramipril membrane-based selective electrodes.
| Parameter | Ramipril | Ramipril |
|---|---|---|
| phosphomolibdate | tetraphenylborate | |
| Slope, mV/decade | 53 ± 0.5 | 54 ± 0.5 |
| Linear range, mol L−1 | 1 × 10−2–1 × 10−5 | 1 × 10−2–1 × 10−5 |
| Lower limit of detection, | 4.0 × 10−6 | 3.0 × 10−6 |
| mol L−1 | ||
| Response time, (s) | <20 | <15 |
| Life time, (d) | 60 | 50 |
| Working pH range | 1–3.8 | 1–4 |
Figure 2Potentiometric dynamic response of ramipril-phosphomolibdate membrane electrode.
Figure 3Effect of pH on the potentiometric response of ramipril-phosphomolibdate PVC membrane electrode.
Figure 4Effect of pH on the potentiometric response of the ramipril-tetraphenylborate PVC membrane electrode.
Potentiometric selectivity coefficients (K A, B pot) for the ramipril phosphomolibdate and ramipril-tetraphenylborate selective electrodes.
| Interfering species, B | Ramipril-phosphomolibdate | Ramipril-tetraphenylborate |
|---|---|---|
| electrode | electrode | |
| Ramipril | 1 | 1 |
| NH4 + | 8.8 × 10−3 | 9.1 × 10−3 |
| Co2+ | 8.7 × 10−3 | 8.8 × 10−3 |
| Cd2+ | 8.8 × 10−3 | 8.7 × 10−3 |
| Ni2+ | 8.8 × 10−3 | 8.7 × 10−3 |
| Cr3+ | 4.2 × 10−2 | 4.3 × 10−2 |
| Cu2+ | 6.6 × 10−3 | 9.0 × 10−3 |
| Ca2+ | 4.6 × 10−3 | 4.8 × 10−3 |
| Mg2+ | 9.8 × 10−3 | 9.8 × 10−3 |
| Sn2+ | 5.1 × 10−2 | 5.3 × 10−2 |
| K+ | 8.8 × 10−3 | 8.6 × 10−3 |
| Na+ | 8.1 × 10−3 | 8.5 × 10−3 |
| Fe3+ | 8.8 × 10−3 | 8.8 × 10−3 |
| Glycine | 7.8 × 10−3 | 8.1 × 10−3 |
| Phenyl hydrazine | 3.2 × 10−2 | 3.2 × 10−2 |
| Hydroxylamine | 2.2 × 10−2 | 2.7 × 10−2 |
The accuracy and reliability of result obtained with ramipril PVC matrix membrane electrode.
| Sample | Concentration, mol L−1 | Ramipril-phosphomolibdate | Ramipril-teraphenylborate | ||
|---|---|---|---|---|---|
| Found | Recovery % | Found | Recovery % | ||
|
| |||||
| 1 | 1 × 10−3 | 0.95 × 10−3 | 95.0 | 0.95 × 10−3 | 95.0 |
| 2 | 2 × 10−3 | 1.87 × 10−3 | 93.5 | 1.90 × 10−3 | 95.0 |
| 3 | 3 × 10−3 | 2.91 × 10−3 | 97.0 | 2.92 × 10−3 | 97.3 |
| 4 | 4 × 10−3 | 3.94 × 10−3 | 98.5 | 3.94 × 10−3 | 98.5 |
| 5 | 5 × 10−3 | 4.98 × 10−3 | 99.6 | 4.93 × 10−3 | 98.6 |
|
| |||||
| Averagere covery | 96.7 | 96.9 | |||
Determination of ramipril in some pharmaceutical preparations.
| Sample(a) | Nominal content mg/tablet | Ramipril-phosphomolibdate | Ramipril-teraphenylborate | ||
|---|---|---|---|---|---|
| Found | Recovery % | Found | Recovery % | ||
|
| |||||
| 1 | 1.25 | 1.23 | 98.4 | 1.24 | 99.2 |
| 2 | 2.50 | 2.43 | 97.2 | 2.46 | 98.4 |
| 3 | 5.0 | 4.95 | 99.0 | 4.95 | 99.0 |
|
| |||||
| Average recovery | 98.2 | 98.8 | |||
(a)Different pharmaceutical formulations (tritace; aventis).