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Preparation of a Nanoemulsion of Essential Oil of Acroptilon repens Plant and Evaluation of Its Larvicidal Activity agianst Malaria Vector, Anopheles stephensi

BACKGROUND: Extensive use of chemical larvicides to control larvae, has led to resistance in vectors. More efforts have been conducted the use of natural products such as plant essential oils and their new formulations against disease vectors. Nanoformulation techniques are expected to reduce volati...

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Autores principales: Firooziyan, Samira, Osanloo, Mahmoud, Moosa-Kazemi, Seyed Hassan, Basseri, Hamid Reza, Hajipirloo, Habib Mohammadzadeh, Sadaghianifar, Ali, Amani, Amir, Sedaghat, Mohammad Mehdi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Tehran University of Medical Sciences 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9759440/
https://www.ncbi.nlm.nih.gov/pubmed/36579001
http://dx.doi.org/10.18502/jad.v15i3.9821
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author Firooziyan, Samira
Osanloo, Mahmoud
Moosa-Kazemi, Seyed Hassan
Basseri, Hamid Reza
Hajipirloo, Habib Mohammadzadeh
Sadaghianifar, Ali
Amani, Amir
Sedaghat, Mohammad Mehdi
author_facet Firooziyan, Samira
Osanloo, Mahmoud
Moosa-Kazemi, Seyed Hassan
Basseri, Hamid Reza
Hajipirloo, Habib Mohammadzadeh
Sadaghianifar, Ali
Amani, Amir
Sedaghat, Mohammad Mehdi
author_sort Firooziyan, Samira
collection PubMed
description BACKGROUND: Extensive use of chemical larvicides to control larvae, has led to resistance in vectors. More efforts have been conducted the use of natural products such as plant essential oils and their new formulations against disease vectors. Nanoformulation techniques are expected to reduce volatility and increase larvicidal efficacy of essential oils. In this study for the first time, a larvicide nanoemulsion from the essential oil of Acroptilon repens was developed and evaluated against Anopheles stephensi larvae under laboratory conditions. METHODS: Fresh samples of A. repens plant were collected from Urmia, West Azarbaijan Province, Iran. A clevenger type apparatus was used for extracting oil. Components of A. repens essential oil (AEO) were identified by gas chromatography–mass spectrometry (GC–MS). All larvicidal bioassay tests were performed according to the method recommended by the World Health Organization under laboratory condition. Particle size and the morphologies of all prepared nanoformulations determined by DLS and TEM analysis. RESULTS: A total of 111 compounds were identified in plant. The LC(50) and LC(90) values of AEO calculated as 7 ppm and 35 ppm respectively. AEO was able to kill 100% of the larvae in 4 days. CONCLUSION: The nanoemulsion of AEO showed a weak effect on the larvar mortality. It may therefore be suggested that this kind of nanoemulsion is not appropriate for the formulation as a larvicide. It is important to screen native plant natural products, search for new materials and prepare new formulations to develop alternative interventions with a long-lasting impact.
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spelling pubmed-97594402022-12-27 Preparation of a Nanoemulsion of Essential Oil of Acroptilon repens Plant and Evaluation of Its Larvicidal Activity agianst Malaria Vector, Anopheles stephensi Firooziyan, Samira Osanloo, Mahmoud Moosa-Kazemi, Seyed Hassan Basseri, Hamid Reza Hajipirloo, Habib Mohammadzadeh Sadaghianifar, Ali Amani, Amir Sedaghat, Mohammad Mehdi J Arthropod Borne Dis Original Article BACKGROUND: Extensive use of chemical larvicides to control larvae, has led to resistance in vectors. More efforts have been conducted the use of natural products such as plant essential oils and their new formulations against disease vectors. Nanoformulation techniques are expected to reduce volatility and increase larvicidal efficacy of essential oils. In this study for the first time, a larvicide nanoemulsion from the essential oil of Acroptilon repens was developed and evaluated against Anopheles stephensi larvae under laboratory conditions. METHODS: Fresh samples of A. repens plant were collected from Urmia, West Azarbaijan Province, Iran. A clevenger type apparatus was used for extracting oil. Components of A. repens essential oil (AEO) were identified by gas chromatography–mass spectrometry (GC–MS). All larvicidal bioassay tests were performed according to the method recommended by the World Health Organization under laboratory condition. Particle size and the morphologies of all prepared nanoformulations determined by DLS and TEM analysis. RESULTS: A total of 111 compounds were identified in plant. The LC(50) and LC(90) values of AEO calculated as 7 ppm and 35 ppm respectively. AEO was able to kill 100% of the larvae in 4 days. CONCLUSION: The nanoemulsion of AEO showed a weak effect on the larvar mortality. It may therefore be suggested that this kind of nanoemulsion is not appropriate for the formulation as a larvicide. It is important to screen native plant natural products, search for new materials and prepare new formulations to develop alternative interventions with a long-lasting impact. Tehran University of Medical Sciences 2021-09-30 /pmc/articles/PMC9759440/ /pubmed/36579001 http://dx.doi.org/10.18502/jad.v15i3.9821 Text en Copyright © 2021 The Authors. Published by Tehran University of Medical Sciences https://creativecommons.org/licenses/by-nc/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International license (https://creativecommons.org/licenses/by-nc/4.0/). Non-commercial uses of the work are permitted, provided the original work is properly cited.
spellingShingle Original Article
Firooziyan, Samira
Osanloo, Mahmoud
Moosa-Kazemi, Seyed Hassan
Basseri, Hamid Reza
Hajipirloo, Habib Mohammadzadeh
Sadaghianifar, Ali
Amani, Amir
Sedaghat, Mohammad Mehdi
Preparation of a Nanoemulsion of Essential Oil of Acroptilon repens Plant and Evaluation of Its Larvicidal Activity agianst Malaria Vector, Anopheles stephensi
title Preparation of a Nanoemulsion of Essential Oil of Acroptilon repens Plant and Evaluation of Its Larvicidal Activity agianst Malaria Vector, Anopheles stephensi
title_full Preparation of a Nanoemulsion of Essential Oil of Acroptilon repens Plant and Evaluation of Its Larvicidal Activity agianst Malaria Vector, Anopheles stephensi
title_fullStr Preparation of a Nanoemulsion of Essential Oil of Acroptilon repens Plant and Evaluation of Its Larvicidal Activity agianst Malaria Vector, Anopheles stephensi
title_full_unstemmed Preparation of a Nanoemulsion of Essential Oil of Acroptilon repens Plant and Evaluation of Its Larvicidal Activity agianst Malaria Vector, Anopheles stephensi
title_short Preparation of a Nanoemulsion of Essential Oil of Acroptilon repens Plant and Evaluation of Its Larvicidal Activity agianst Malaria Vector, Anopheles stephensi
title_sort preparation of a nanoemulsion of essential oil of acroptilon repens plant and evaluation of its larvicidal activity agianst malaria vector, anopheles stephensi
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9759440/
https://www.ncbi.nlm.nih.gov/pubmed/36579001
http://dx.doi.org/10.18502/jad.v15i3.9821
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