Nanotechnology in the sports athlete community based on its application in doping detection: a systematic literature review and meta-analysis

This study examines the effectiveness and accuracy of nanotechnology applications in doping detection within the athlete community. Nanotechnology offers a novel approach with potential in detecting doping substances more efficiently and accurately. The method used in this study is a Systematic Lit...

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Main Authors: Ahmad Chaeroni, Bekir Erhan Orhan, Ardo Okilanda, Kamal Talib, Karuppasamy Govindasamy, Mottakin Ahmed
Format: Article
Language:English
Published: FEADEF 2024-11-01
Series:Retos: Nuevas Tendencias en Educación Física, Deportes y Recreación
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Online Access:https://recyt.fecyt.es/index.php/retos/article/view/107477
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author Ahmad Chaeroni
Bekir Erhan Orhan
Ardo Okilanda
Kamal Talib
Karuppasamy Govindasamy
Mottakin Ahmed
author_facet Ahmad Chaeroni
Bekir Erhan Orhan
Ardo Okilanda
Kamal Talib
Karuppasamy Govindasamy
Mottakin Ahmed
author_sort Ahmad Chaeroni
collection DOAJ
description This study examines the effectiveness and accuracy of nanotechnology applications in doping detection within the athlete community. Nanotechnology offers a novel approach with potential in detecting doping substances more efficiently and accurately. The method used in this study is a Systematic Literature Review (SLR) and meta-analysis, with articles selected from the Scopus and Web of Science (WoS) databases covering the years 2020-2024. The selection process employs the PRISMA method and includes only research articles relevant to the topic. A total of 13 studies were selected for further analysis. The meta-analysis results indicate that the Differential Pulse Voltammetry (DPV) and Enzyme-Linked Immunosorbent Assay (ELISA) methods provide highly accurate and reliable results in doping detection. No significant differences were found between the use of serum and urine as test samples. Additionally, nanocomposite sensors proved to be more effective than regular sensors in detecting doping substances with high accuracy. Key findings from the results include no significant effect distinguishing between the DPV and ELISA methods (Z = 0.53, P = 0.60), no significant heterogeneity among the studies analyzed concerning serum and urine (Chi² = 0.90, df = 2, P = 0.64; Tau² = 0.00), and nanocomposite sensors proving to be more effective than regular sensors (Z = 4.14, P < 0.0001; I² = 0%). In conclusion, nanotechnology has great potential to enhance doping detection in sports. The use of nanomaterials and nanosensors can improve the sensitivity, specificity, and accuracy in detecting doping substances, making it a highly effective tool for maintaining the integrity and health of athletes. This study provides a strong foundation for the development of more efficient and effective nanotechnology-based doping detection technologies in the future. Keywords: Nanotechnology, doping, sensors, sports, athletes.
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series Retos: Nuevas Tendencias en Educación Física, Deportes y Recreación
spelling doaj-art-b5cbd3b3283a4f3f90fc80e7c42553ef2025-08-20T02:35:24ZengFEADEFRetos: Nuevas Tendencias en Educación Física, Deportes y Recreación1579-17261988-20412024-11-016010.47197/retos.v60.107477Nanotechnology in the sports athlete community based on its application in doping detection: a systematic literature review and meta-analysisAhmad Chaeroni 0Bekir Erhan Orhan1Ardo Okilanda2Kamal Talib3Karuppasamy Govindasamy4Mottakin Ahmed5Universitas Negeri PadangIstanbul Aydın UniversityUniversitas Negeri PadangUniversiti Malaysia TerengganuSri Balaji UniversityGovernment College Silwani This study examines the effectiveness and accuracy of nanotechnology applications in doping detection within the athlete community. Nanotechnology offers a novel approach with potential in detecting doping substances more efficiently and accurately. The method used in this study is a Systematic Literature Review (SLR) and meta-analysis, with articles selected from the Scopus and Web of Science (WoS) databases covering the years 2020-2024. The selection process employs the PRISMA method and includes only research articles relevant to the topic. A total of 13 studies were selected for further analysis. The meta-analysis results indicate that the Differential Pulse Voltammetry (DPV) and Enzyme-Linked Immunosorbent Assay (ELISA) methods provide highly accurate and reliable results in doping detection. No significant differences were found between the use of serum and urine as test samples. Additionally, nanocomposite sensors proved to be more effective than regular sensors in detecting doping substances with high accuracy. Key findings from the results include no significant effect distinguishing between the DPV and ELISA methods (Z = 0.53, P = 0.60), no significant heterogeneity among the studies analyzed concerning serum and urine (Chi² = 0.90, df = 2, P = 0.64; Tau² = 0.00), and nanocomposite sensors proving to be more effective than regular sensors (Z = 4.14, P < 0.0001; I² = 0%). In conclusion, nanotechnology has great potential to enhance doping detection in sports. The use of nanomaterials and nanosensors can improve the sensitivity, specificity, and accuracy in detecting doping substances, making it a highly effective tool for maintaining the integrity and health of athletes. This study provides a strong foundation for the development of more efficient and effective nanotechnology-based doping detection technologies in the future. Keywords: Nanotechnology, doping, sensors, sports, athletes. https://recyt.fecyt.es/index.php/retos/article/view/107477Nanotechnologydopingsensorssportsathletes
spellingShingle Ahmad Chaeroni
Bekir Erhan Orhan
Ardo Okilanda
Kamal Talib
Karuppasamy Govindasamy
Mottakin Ahmed
Nanotechnology in the sports athlete community based on its application in doping detection: a systematic literature review and meta-analysis
Retos: Nuevas Tendencias en Educación Física, Deportes y Recreación
Nanotechnology
doping
sensors
sports
athletes
title Nanotechnology in the sports athlete community based on its application in doping detection: a systematic literature review and meta-analysis
title_full Nanotechnology in the sports athlete community based on its application in doping detection: a systematic literature review and meta-analysis
title_fullStr Nanotechnology in the sports athlete community based on its application in doping detection: a systematic literature review and meta-analysis
title_full_unstemmed Nanotechnology in the sports athlete community based on its application in doping detection: a systematic literature review and meta-analysis
title_short Nanotechnology in the sports athlete community based on its application in doping detection: a systematic literature review and meta-analysis
title_sort nanotechnology in the sports athlete community based on its application in doping detection a systematic literature review and meta analysis
topic Nanotechnology
doping
sensors
sports
athletes
url https://recyt.fecyt.es/index.php/retos/article/view/107477
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AT ardookilanda nanotechnologyinthesportsathletecommunitybasedonitsapplicationindopingdetectionasystematicliteraturereviewandmetaanalysis
AT kamaltalib nanotechnologyinthesportsathletecommunitybasedonitsapplicationindopingdetectionasystematicliteraturereviewandmetaanalysis
AT karuppasamygovindasamy nanotechnologyinthesportsathletecommunitybasedonitsapplicationindopingdetectionasystematicliteraturereviewandmetaanalysis
AT mottakinahmed nanotechnologyinthesportsathletecommunitybasedonitsapplicationindopingdetectionasystematicliteraturereviewandmetaanalysis