Employing a Carbon-Based Nanocomposite as a Diffusive Solid-Phase Extraction Adsorbent for Methamphetamine for Therapeutic Purposes

Due to the obvious minimal doses of drugs in biological matrices as well as the societal difficulties caused by methamphetamine usage, methamphetamine identification is critical in clinical and forensic laboratories. Because of their simple and inexpensive production procedure, as well as their exce...

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Main Authors: K. Lakshmi Kala, G. Anbuchezhiyan, Kavitha Pingili, Pradeep Kumar Singh, V. M. Vel, Kareem Yusuf, Ahmed Muteb Aljuwayid, Md Ataul Islam, David Christopher
Format: Article
Language:English
Published: SAGE Publishing 2023-01-01
Series:Adsorption Science & Technology
Online Access:http://dx.doi.org/10.1155/2023/8650678
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author K. Lakshmi Kala
G. Anbuchezhiyan
Kavitha Pingili
Pradeep Kumar Singh
V. M. Vel
Kareem Yusuf
Ahmed Muteb Aljuwayid
Md Ataul Islam
David Christopher
author_facet K. Lakshmi Kala
G. Anbuchezhiyan
Kavitha Pingili
Pradeep Kumar Singh
V. M. Vel
Kareem Yusuf
Ahmed Muteb Aljuwayid
Md Ataul Islam
David Christopher
author_sort K. Lakshmi Kala
collection DOAJ
description Due to the obvious minimal doses of drugs in biological matrices as well as the societal difficulties caused by methamphetamine usage, methamphetamine identification is critical in clinical and forensic laboratories. Because of their simple and inexpensive production procedure, as well as their excellent selectivity and sensitivity, polymeric carbon-based nanocomposites are strong contenders for the diffusive solid-phase extraction approach. The diffusive solid-phase extraction absorbent nanographene oxide polypyrrole composite was produced and used to recover methamphetamine from a complicated urine substrate. The generated NGPPC was fully characterized, and the significant extracting parameters have been explored using the one-parameter-at-a-time strategy. NGOPC is being used to extract methamphetamine using a urine medium with high efficiency. The NGPPC synthesizing procedure was easy, and the extraction method will demonstrate good repeatability. Moreover, the practical and efficient synthesis process stimulates the use of carbon-based compounds in various extraction procedures. As for detecting and quantifying equipment, HPLC monitors are being used. 300 mL methanol, 7 min extracting and desorption duration, 5000 mixing frequency, urinary pH value of 20, 40 mg adsorption, and 5 mL amount of urine were the optimal extraction variables. Following tracing the calibration graph, the method’s linear ranges were determined to be 40-600 ng/ml. The detection limits (LOD) and quantitation limits (LOQ), correspondingly, were 10 and 35.80 ng/mL. The proposed methodology seemed to have a detection range of 9 ng/mL. The suggested approach’s applicability in numerous characterization and medical facilities was proven by the examination of addicted subjects using the proposed technique. For successful extraction of methamphetamine using biological urine samples, the carbon-based adsorbent was being used as diffusive solid-phase extraction adsorption.
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spelling doaj-art-68a77cf5aec34ca7bde594fa4c79bb222025-01-03T00:12:42ZengSAGE PublishingAdsorption Science & Technology2048-40382023-01-01202310.1155/2023/8650678Employing a Carbon-Based Nanocomposite as a Diffusive Solid-Phase Extraction Adsorbent for Methamphetamine for Therapeutic PurposesK. Lakshmi Kala0G. Anbuchezhiyan1Kavitha Pingili2Pradeep Kumar Singh3V. M. Vel4Kareem Yusuf5Ahmed Muteb Aljuwayid6Md Ataul Islam7David Christopher8Department of Mechanical EngineeringDepartment of Mechanical EngineeringDepartment of ChemistryDepartment of Mechanical Engineering GLA UniversityDepartment of Mechanical EngineeringDepartment of ChemistryDepartment of ChemistrySchool of Health SciencesDepartment of Mechanical EngineeringDue to the obvious minimal doses of drugs in biological matrices as well as the societal difficulties caused by methamphetamine usage, methamphetamine identification is critical in clinical and forensic laboratories. Because of their simple and inexpensive production procedure, as well as their excellent selectivity and sensitivity, polymeric carbon-based nanocomposites are strong contenders for the diffusive solid-phase extraction approach. The diffusive solid-phase extraction absorbent nanographene oxide polypyrrole composite was produced and used to recover methamphetamine from a complicated urine substrate. The generated NGPPC was fully characterized, and the significant extracting parameters have been explored using the one-parameter-at-a-time strategy. NGOPC is being used to extract methamphetamine using a urine medium with high efficiency. The NGPPC synthesizing procedure was easy, and the extraction method will demonstrate good repeatability. Moreover, the practical and efficient synthesis process stimulates the use of carbon-based compounds in various extraction procedures. As for detecting and quantifying equipment, HPLC monitors are being used. 300 mL methanol, 7 min extracting and desorption duration, 5000 mixing frequency, urinary pH value of 20, 40 mg adsorption, and 5 mL amount of urine were the optimal extraction variables. Following tracing the calibration graph, the method’s linear ranges were determined to be 40-600 ng/ml. The detection limits (LOD) and quantitation limits (LOQ), correspondingly, were 10 and 35.80 ng/mL. The proposed methodology seemed to have a detection range of 9 ng/mL. The suggested approach’s applicability in numerous characterization and medical facilities was proven by the examination of addicted subjects using the proposed technique. For successful extraction of methamphetamine using biological urine samples, the carbon-based adsorbent was being used as diffusive solid-phase extraction adsorption.http://dx.doi.org/10.1155/2023/8650678
spellingShingle K. Lakshmi Kala
G. Anbuchezhiyan
Kavitha Pingili
Pradeep Kumar Singh
V. M. Vel
Kareem Yusuf
Ahmed Muteb Aljuwayid
Md Ataul Islam
David Christopher
Employing a Carbon-Based Nanocomposite as a Diffusive Solid-Phase Extraction Adsorbent for Methamphetamine for Therapeutic Purposes
Adsorption Science & Technology
title Employing a Carbon-Based Nanocomposite as a Diffusive Solid-Phase Extraction Adsorbent for Methamphetamine for Therapeutic Purposes
title_full Employing a Carbon-Based Nanocomposite as a Diffusive Solid-Phase Extraction Adsorbent for Methamphetamine for Therapeutic Purposes
title_fullStr Employing a Carbon-Based Nanocomposite as a Diffusive Solid-Phase Extraction Adsorbent for Methamphetamine for Therapeutic Purposes
title_full_unstemmed Employing a Carbon-Based Nanocomposite as a Diffusive Solid-Phase Extraction Adsorbent for Methamphetamine for Therapeutic Purposes
title_short Employing a Carbon-Based Nanocomposite as a Diffusive Solid-Phase Extraction Adsorbent for Methamphetamine for Therapeutic Purposes
title_sort employing a carbon based nanocomposite as a diffusive solid phase extraction adsorbent for methamphetamine for therapeutic purposes
url http://dx.doi.org/10.1155/2023/8650678
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