Utilization of Localized Surface Plasmon Resonance of Silver Nanoparticles for ‎the Spectrophotometric Estimation of Amlodipine and Hydrochlorothiazide

A potent long-acting calcium channel blockers is amlodipine. Patient with high blood pressure can take it to treat high blood pressure, angina pectoris, and reduce the risk of stroke. Hydrochlorothiazide, a diuretic, is used to treat edema and hypertension. Additionally, it is used to treat certain...

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Main Authors: Rasul Jameel Ali, Lazeeza Sattar Omer, Nagham Nadhim Habeeb, Asmaa Ghanim Dawood
Format: Article
Language:English
Published: University of Baghdad, College of Science for Women 2024-11-01
Series:مجلة بغداد للعلوم
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Online Access:https://bsj.uobaghdad.edu.iq/index.php/BSJ/article/view/8097
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author Rasul Jameel Ali
Lazeeza Sattar Omer
Nagham Nadhim Habeeb
Asmaa Ghanim Dawood
author_facet Rasul Jameel Ali
Lazeeza Sattar Omer
Nagham Nadhim Habeeb
Asmaa Ghanim Dawood
author_sort Rasul Jameel Ali
collection DOAJ
description A potent long-acting calcium channel blockers is amlodipine. Patient with high blood pressure can take it to treat high blood pressure, angina pectoris, and reduce the risk of stroke. Hydrochlorothiazide, a diuretic, is used to treat edema and hypertension. Additionally, it is used to treat certain types of diabetes, hyperglycemia and hypokalemia. These drugs are widely available in the market and are commonly used orally. Therefore, a rapid, accurate, and inexpensive method for the determination of amlodipine and hydrochlorothiazide was developed and validated. This method is based on the ability of these drugs to reduce Ag +1 to Ag 0 by forming silver nanoparticles (AgNPs) in the presence of sodium dodecyl sulfate as a stabilizing agent .Significant surface plasmon resonance of synthesized nanoparticles was observed at 418 and 420 nm wavelengths which was used for quantitative spectrophotometric determination of amlodipine and hydrochlorothiazide .The linear concentration ranges for amlodipine and hydrochlorothiazide were 0.5-28 and 0.8-6 µg mL-1, with detection limits of 0.442 and 0.128 µg mL-1. The proposed method successfully determined amlodipine and hydrochlorothiazide in pure and commercial formulation.
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publisher University of Baghdad, College of Science for Women
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series مجلة بغداد للعلوم
spelling doaj-art-fdd0b47b8e58406288fbea8c961f17552025-08-20T03:58:03ZengUniversity of Baghdad, College of Science for Womenمجلة بغداد للعلوم2078-86652411-79862024-11-01211110.21123/bsj.2024.8097Utilization of Localized Surface Plasmon Resonance of Silver Nanoparticles for ‎the Spectrophotometric Estimation of Amlodipine and HydrochlorothiazideRasul Jameel Ali 0Lazeeza Sattar Omer 1https://orcid.org/0000-0001-5787-4778Nagham Nadhim Habeeb 2Asmaa Ghanim Dawood3Department Clinical Biochemistry, College of Health Sciences, Hawler Medical ‎University, Erbil, Iraq.‎Department of Pharmaceutical Chemistry, College ‎of Pharmacy, Hawler Medical University, Erbil, ‎Iraq.‎Department of Chemistry, College of Education, ‎Mosul University, Mosul, Iraq. ‎Department of Pharmaceutical Chemistry, College ‎of Pharmacy, Hawler Medical University, Erbil, ‎Iraq.‎ A potent long-acting calcium channel blockers is amlodipine. Patient with high blood pressure can take it to treat high blood pressure, angina pectoris, and reduce the risk of stroke. Hydrochlorothiazide, a diuretic, is used to treat edema and hypertension. Additionally, it is used to treat certain types of diabetes, hyperglycemia and hypokalemia. These drugs are widely available in the market and are commonly used orally. Therefore, a rapid, accurate, and inexpensive method for the determination of amlodipine and hydrochlorothiazide was developed and validated. This method is based on the ability of these drugs to reduce Ag +1 to Ag 0 by forming silver nanoparticles (AgNPs) in the presence of sodium dodecyl sulfate as a stabilizing agent .Significant surface plasmon resonance of synthesized nanoparticles was observed at 418 and 420 nm wavelengths which was used for quantitative spectrophotometric determination of amlodipine and hydrochlorothiazide .The linear concentration ranges for amlodipine and hydrochlorothiazide were 0.5-28 and 0.8-6 µg mL-1, with detection limits of 0.442 and 0.128 µg mL-1. The proposed method successfully determined amlodipine and hydrochlorothiazide in pure and commercial formulation. https://bsj.uobaghdad.edu.iq/index.php/BSJ/article/view/8097amlodipine; hydrochlorothiazide; silver nanoparticles; surface plasmon resonance; spectrophotometry.
spellingShingle Rasul Jameel Ali
Lazeeza Sattar Omer
Nagham Nadhim Habeeb
Asmaa Ghanim Dawood
Utilization of Localized Surface Plasmon Resonance of Silver Nanoparticles for ‎the Spectrophotometric Estimation of Amlodipine and Hydrochlorothiazide
مجلة بغداد للعلوم
amlodipine; hydrochlorothiazide; silver nanoparticles; surface plasmon resonance; spectrophotometry.
title Utilization of Localized Surface Plasmon Resonance of Silver Nanoparticles for ‎the Spectrophotometric Estimation of Amlodipine and Hydrochlorothiazide
title_full Utilization of Localized Surface Plasmon Resonance of Silver Nanoparticles for ‎the Spectrophotometric Estimation of Amlodipine and Hydrochlorothiazide
title_fullStr Utilization of Localized Surface Plasmon Resonance of Silver Nanoparticles for ‎the Spectrophotometric Estimation of Amlodipine and Hydrochlorothiazide
title_full_unstemmed Utilization of Localized Surface Plasmon Resonance of Silver Nanoparticles for ‎the Spectrophotometric Estimation of Amlodipine and Hydrochlorothiazide
title_short Utilization of Localized Surface Plasmon Resonance of Silver Nanoparticles for ‎the Spectrophotometric Estimation of Amlodipine and Hydrochlorothiazide
title_sort utilization of localized surface plasmon resonance of silver nanoparticles for ‎the spectrophotometric estimation of amlodipine and hydrochlorothiazide
topic amlodipine; hydrochlorothiazide; silver nanoparticles; surface plasmon resonance; spectrophotometry.
url https://bsj.uobaghdad.edu.iq/index.php/BSJ/article/view/8097
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