In vivo and in vitro effectiveness of Azadirachta indica-synthesized silver nanocrystals against Plasmodium berghei and Plasmodium falciparum, and their potential against malaria mosquitoes. (June 2016)
- Record Type:
- Journal Article
- Title:
- In vivo and in vitro effectiveness of Azadirachta indica-synthesized silver nanocrystals against Plasmodium berghei and Plasmodium falciparum, and their potential against malaria mosquitoes. (June 2016)
- Main Title:
- In vivo and in vitro effectiveness of Azadirachta indica-synthesized silver nanocrystals against Plasmodium berghei and Plasmodium falciparum, and their potential against malaria mosquitoes
- Authors:
- Murugan, Kadarkarai
Panneerselvam, Chellasamy
Samidoss, Christina Mary
Madhiyazhagan, Pari
Suresh, Udaiyan
Roni, Mathath
Chandramohan, Balamurugan
Subramaniam, Jayapal
Dinesh, Devakumar
Rajaganesh, Rajapandian
Paulpandi, Manickam
Wei, Hui
Aziz, Al Thabiani
Alsalhi, Mohamad Saleh
Devanesan, Sandhanasamy
Nicoletti, Marcello
Pavela, Roman
Canale, Angelo
Benelli, Giovanni - Abstract:
- Abstract: Malaria transmission is a serious emergence in urban and semiurban areas worldwide, becoming a major international public health concern. Malaria is transmitted through the bites of Anopheles mosquitoes. The extensive employ of synthetic pesticides leads to negative effects on human health and the environment. Recently, plant-synthesized nanoparticles have been proposed as highly effective mosquitocides. In this research, we synthesized silver nanoparticles (AgNP) using the Azadirachta indica seed kernel extract as reducing and stabilizing agent. AgNP were characterized by UV–vis spectrophotometry, SEM, EDX, XRD and FTIR spectroscopy. The A. indica seed kernel extract was toxic against Anopheles stephensi larvae and pupae, LC50 were 232.8 ppm (larva I), 260.6 ppm (II), 290.3 ppm (III), 323.4 ppm (IV), and 348.4 ppm (pupa). AgNP LC50 were 3.9 ppm (I), 4.9 ppm (II), 5.6 ppm (III), 6.5 ppm (IV), and 8.2 ppm (pupa). The antiplasmodial activity of A. indica seed kernel extract and AgNP was evaluated against CQ-resistant (CQ-r) and CQ-sensitive (CQ-s) strains of Plasmodium falciparum . IC50 of A. indica seed kernel extract were 63.18 μg/ml (CQ-s) and 69.24 μg/ml (CQ-r). A. indica seed kernel-synthesized AgNP achieved IC50, of 82.41 μg/ml (CQ-s) and 86.12 μg/ml (CQ-r). However, in vivo anti-plasmodial experiments conducted on Plasmodium berghei infecting albino mice showed moderate activity of the A. indica extract and AgNP. Overall, this study showed that the A. indicaAbstract: Malaria transmission is a serious emergence in urban and semiurban areas worldwide, becoming a major international public health concern. Malaria is transmitted through the bites of Anopheles mosquitoes. The extensive employ of synthetic pesticides leads to negative effects on human health and the environment. Recently, plant-synthesized nanoparticles have been proposed as highly effective mosquitocides. In this research, we synthesized silver nanoparticles (AgNP) using the Azadirachta indica seed kernel extract as reducing and stabilizing agent. AgNP were characterized by UV–vis spectrophotometry, SEM, EDX, XRD and FTIR spectroscopy. The A. indica seed kernel extract was toxic against Anopheles stephensi larvae and pupae, LC50 were 232.8 ppm (larva I), 260.6 ppm (II), 290.3 ppm (III), 323.4 ppm (IV), and 348.4 ppm (pupa). AgNP LC50 were 3.9 ppm (I), 4.9 ppm (II), 5.6 ppm (III), 6.5 ppm (IV), and 8.2 ppm (pupa). The antiplasmodial activity of A. indica seed kernel extract and AgNP was evaluated against CQ-resistant (CQ-r) and CQ-sensitive (CQ-s) strains of Plasmodium falciparum . IC50 of A. indica seed kernel extract were 63.18 μg/ml (CQ-s) and 69.24 μg/ml (CQ-r). A. indica seed kernel-synthesized AgNP achieved IC50, of 82.41 μg/ml (CQ-s) and 86.12 μg/ml (CQ-r). However, in vivo anti-plasmodial experiments conducted on Plasmodium berghei infecting albino mice showed moderate activity of the A. indica extract and AgNP. Overall, this study showed that the A. indica -mediated fabrication of AgNP is of interest for a wide array of purposes, ranging from IPM of mosquito vectors to the development of novel and cheap antimalarial drugs. Graphical abstract: Highlights: Neem-synthesized Ag nanoparticles were studied by UV–vis, SEM, EDX, XRD and FTIR. AgNP were mostly spherical in shape, crystalline in nature, with a size range of 35–60 nm. AgNP acted as larvicides and pupicides against the malaria vector Anopheles stephensi . In vitro, AgNP were toxic to chloroquine-resistant Plasmodium falciparum parasites. In vivo, AgNP effectively inhibited the growth of Plasmodium berghei in albino mice. … (more)
- Is Part Of:
- Research in veterinary science. Volume 106(2016)
- Journal:
- Research in veterinary science
- Issue:
- Volume 106(2016)
- Issue Display:
- Volume 106, Issue 2016 (2016)
- Year:
- 2016
- Volume:
- 106
- Issue:
- 2016
- Issue Sort Value:
- 2016-0106-2016-0000
- Page Start:
- 14
- Page End:
- 22
- Publication Date:
- 2016-06
- Subjects:
- Arbovirus -- Anopheles stephensi -- Botanical byproducts -- Culicidae -- Filariasis -- Nanobiotechnology
Veterinary medicine -- Periodicals
Veterinary Medicine -- Periodicals
Médecine vétérinaire -- Périodiques
Médecine vétérinaire -- Recherche -- Périodiques
Diergeneeskunde
636.089 - Journal URLs:
- http://www.sciencedirect.com/science/journal/00345288 ↗
http://www.elsevier.com/journals ↗
http://www.journals.elsevier.com/research-in-veterinary-science/ ↗
http://www.harcourt-international.com/journals ↗ - DOI:
- 10.1016/j.rvsc.2016.03.001 ↗
- Languages:
- English
- ISSNs:
- 0034-5288
- Deposit Type:
- Legaldeposit
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- British Library DSC - 7774.100000
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