Phyto-synthesis of selenium nanoparticles using Mentha spicata (mint) extract and its larvicidal and antibacterial activities
[Display omitted] •Vector-borne diseases spread by Aedes aegypti have ruined the lives of millions of people worldwide.•Synthesized selenium nanoparticles utilizing Mentha spicata leaf extract.•Antibacterial activity of Ms-SeNPs was tested against two gram-positive and negative food-borne pathogens....
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| Published in: | Journal of Asia-Pacific entomology Vol. 28; no. 1; pp. 102370 - 8 |
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| Main Authors: | , , , , |
| Format: | Journal Article |
| Language: | English |
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Elsevier B.V
01.03.2025
한국응용곤충학회 |
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| ISSN: | 1226-8615, 1876-7790 |
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| Abstract | [Display omitted]
•Vector-borne diseases spread by Aedes aegypti have ruined the lives of millions of people worldwide.•Synthesized selenium nanoparticles utilizing Mentha spicata leaf extract.•Antibacterial activity of Ms-SeNPs was tested against two gram-positive and negative food-borne pathogens.•The larvicidal effect of Ms-SeNPs on Ae. aegypti 3rd instar larvae is shown.•The impact of Ms-SeNPs on the expression of GST-2 and NO5-CYP450 genes in Ae. aegypti is tested.
Major diseases like Zika, dengue, and chikungunya spread by Aedes aegypti have affected the lives of millions of people worldwide and continue to threaten billions. Controlling Ae. aegypti poses a significant challenge as the species has also evolved resistance to synthetic insecticides. The objective of the present study was to synthesize selenium nanoparticles (Se NPs) utilizing Mentha spicata (mint) leaf extract and evaluate their efficacy in managing Ae. aegypti third instar larvae and two gram-positive (Enterococcus faecalis and Staphylococcus aureus) and two gram-negative food-borne pathogens (Pseudomonas aeruginosa and Klebsiella pneumonia). The formation of Ms-SeNPs was confirmed using UV–Vis spectra (absorption peak at 268 nm), FTIR (functional peaks at 3418, 3006, 2915, 1632, 1382, 1200, 1047, 823, and 689 cm−1), and FESEM (rod shape). The size of the Ms-SeNPs was also analyzed using DLS (the average particle diameter is 111.1 nm). The Ms-SeNPs were also active on four food-borne pathogens and displayed strong inhibitory zones. The Ae. aegypti 3rd instar larvae that were treated with Ms-SeNPs showed promising larvicidal activities (LC50 value of 85.54 µg/ml and an LC90 value of 190.53 µg/ml). Furthermore, we examined the impact of Ms-SeNPs on the expression of functional genes, glutathione S transferase-2 (GST-2) and NO5-cytochrome P450 (NO5-CYP450), in Ae. aegypti. The overall findings validate the efficacy of Ms-SeNPs in managing both mosquitoes and bacterial pathogens, hence aiding in the development of versatile, environmentally friendly compounds. |
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| AbstractList | Major diseases like Zika, dengue, and chikungunya spread by Aedes aegypti have affected the lives of millions of people worldwide and continue to threaten billions. Controlling Ae. aegypti poses a significant challenge as the species has also evolved resistance to synthetic insecticides. The objective of the present study was to synthesize selenium nanoparticles (Se NPs) utilizing Mentha spicata (mint) leaf extract and evaluate their efficacy in managing Ae. aegypti third instar larvae and two gram-positive (Enterococcus faecalis and Staphylococcus aureus) and two gram-negative food-borne pathogens (Pseudomonas aeruginosa and Klebsiella pneumonia). The formation of Ms-SeNPs was confirmed using UV–Vis spectra (absorption peak at 268 nm), FTIR (functional peaks at 3418, 3006, 2915, 1632, 1382, 1200, 1047, 823, and 689 cm⁻¹), and FESEM (rod shape). The size of the Ms-SeNPs was also analyzed using DLS (the average particle diameter is 111.1 nm). The Ms-SeNPs were also active on four food-borne pathogens and displayed strong inhibitory zones. The Ae. aegypti 3rd instar larvae that were treated with Ms-SeNPs showed promising larvicidal activities (LC₅₀ value of 85.54 µg/ml and an LC₉₀ value of 190.53 µg/ml). Furthermore, we examined the impact of Ms-SeNPs on the expression of functional genes, glutathione S transferase-2 (GST-2) and NO5-cytochrome P450 (NO5-CYP450), in Ae. aegypti. The overall findings validate the efficacy of Ms-SeNPs in managing both mosquitoes and bacterial pathogens, hence aiding in the development of versatile, environmentally friendly compounds. [Display omitted] •Vector-borne diseases spread by Aedes aegypti have ruined the lives of millions of people worldwide.•Synthesized selenium nanoparticles utilizing Mentha spicata leaf extract.•Antibacterial activity of Ms-SeNPs was tested against two gram-positive and negative food-borne pathogens.•The larvicidal effect of Ms-SeNPs on Ae. aegypti 3rd instar larvae is shown.•The impact of Ms-SeNPs on the expression of GST-2 and NO5-CYP450 genes in Ae. aegypti is tested. Major diseases like Zika, dengue, and chikungunya spread by Aedes aegypti have affected the lives of millions of people worldwide and continue to threaten billions. Controlling Ae. aegypti poses a significant challenge as the species has also evolved resistance to synthetic insecticides. The objective of the present study was to synthesize selenium nanoparticles (Se NPs) utilizing Mentha spicata (mint) leaf extract and evaluate their efficacy in managing Ae. aegypti third instar larvae and two gram-positive (Enterococcus faecalis and Staphylococcus aureus) and two gram-negative food-borne pathogens (Pseudomonas aeruginosa and Klebsiella pneumonia). The formation of Ms-SeNPs was confirmed using UV–Vis spectra (absorption peak at 268 nm), FTIR (functional peaks at 3418, 3006, 2915, 1632, 1382, 1200, 1047, 823, and 689 cm−1), and FESEM (rod shape). The size of the Ms-SeNPs was also analyzed using DLS (the average particle diameter is 111.1 nm). The Ms-SeNPs were also active on four food-borne pathogens and displayed strong inhibitory zones. The Ae. aegypti 3rd instar larvae that were treated with Ms-SeNPs showed promising larvicidal activities (LC50 value of 85.54 µg/ml and an LC90 value of 190.53 µg/ml). Furthermore, we examined the impact of Ms-SeNPs on the expression of functional genes, glutathione S transferase-2 (GST-2) and NO5-cytochrome P450 (NO5-CYP450), in Ae. aegypti. The overall findings validate the efficacy of Ms-SeNPs in managing both mosquitoes and bacterial pathogens, hence aiding in the development of versatile, environmentally friendly compounds. Major diseases like Zika, dengue, and chikungunya spread by Aedes aegypti have affected the lives of millions of people worldwide and continue to threaten billions. Controlling Ae. aegypti poses a significant challenge as the species has also evolved resistance to synthetic insecticides. The objective of the present study was to synthesize selenium nanoparticles (Se NPs) utilizing Mentha spicata (mint) leaf extract and evaluate their efficacy in managing Ae. aegypti third instar larvae and two gram-positive (Enterococcus faecalis and Staphylococcus aureus) and two gram-negative food-borne pathogens (Pseudomonas aeruginosa and Klebsiella pneumonia). The formation of Ms-SeNPs was confirmed using UV–Vis spectra (absorption peak at 268 nm), FTIR (functional peaks at 3418, 3006, 2915, 1632, 1382, 1200, 1047, 823, and 689 cm − 1 ), and FESEM (rod shape). The size of the Ms-SeNPs was also analyzed using DLS (the average particle diameter is 111.1 nm). The Ms-SeNPs were also active on four foodborne pathogens and displayed strong inhibitory zones. The Ae. aegypti 3rd instar larvae that were treated with Ms-SeNPs showed promising larvicidal activities (LC 50 value of 85.54 µg/ml and an LC 90 value of 190.53 µg/ml). Furthermore, we examined the impact of Ms-SeNPs on the expression of functional genes, glutathione S trans ferase-2 (GST-2) and NO5-cytochrome P450 (NO5-CYP450), in Ae. aegypti. The overall findings validate the ef ficacy of Ms-SeNPs in managing both mosquitoes and bacterial pathogens, hence aiding in the development of versatile, environmentally friendly compounds. KCI Citation Count: 0 |
| ArticleNumber | 102370 |
| Author | Dayana Senthamarai, M. Edwin Hillary, V. Antony Ceasar, S. Ignacimuthu, S. Rajan, M.R. |
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| Cites_doi | 10.3934/microbiol.2017.3.529 10.1002/ps.4879 10.1016/j.fm.2017.07.014 10.1016/j.jtemb.2016.09.003 10.1111/j.1365-2583.2004.00529.x 10.1093/nar/gks596 10.1016/j.btre.2021.e00615 10.1016/j.foodcont.2016.06.020 10.1093/bioinformatics/bty036 10.1007/s11274-022-03513-z 10.1016/B978-0-12-384947-2.00645-0 10.1016/j.foodcont.2017.08.023 10.1146/annurev.bi.49.070180.001531 10.2147/IJN.S285392 10.1007/s12639-015-0719-4 10.2174/1568026615666150414141601 10.1042/bj3590295 10.1016/j.biteb.2021.100894 10.1016/j.procbio.2022.03.014 10.1016/j.ibmb.2007.09.007 10.1093/jee/18.2.265a 10.1016/j.msec.2019.109763 10.1016/j.actatropica.2017.06.028 10.1038/s41598-020-80327-9 10.1016/B978-0-12-818140-9.00018-0 10.1016/S0026-895X(25)09656-7 10.1042/bj20030169 10.1021/acsami.7b15678 10.1042/BA20100042 10.1002/ps.1090 10.1016/j.pestbp.2019.10.002 10.1007/s12011-021-02868-y 10.1016/j.jphotobiol.2019.01.011 10.1016/j.inoche.2022.110030 10.1155/2021/8115585 |
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| Keywords | Bacterial pathogens Nanoparticle Aedes aegypti Selenium Gene expression Vector control Mentha spicata |
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•Vector-borne diseases spread by Aedes aegypti have ruined the lives of millions of people worldwide.•Synthesized selenium nanoparticles... Major diseases like Zika, dengue, and chikungunya spread by Aedes aegypti have affected the lives of millions of people worldwide and continue to threaten... |
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| SubjectTerms | absorption Aedes aegypti Bacterial pathogens Nanoparticle dengue Enterococcus faecalis entomology Gene expression glutathione instars Klebsiella pneumoniae larvicides leaf extracts Mentha spicata nanoparticles particle size Pseudomonas aeruginosa Selenium species Staphylococcus aureus Vector control 농학 |
| Title | Phyto-synthesis of selenium nanoparticles using Mentha spicata (mint) extract and its larvicidal and antibacterial activities |
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