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1.
Environ Sci Pollut Res Int ; 30(26): 69321-69329, 2023 Jun.
Article in English | MEDLINE | ID: mdl-37133656

ABSTRACT

The aim of the present study was to identify the active principle from Catharanthus roseus leaf using larvicidal bioassay against three mosquito species viz. Aedes aegypti, Culex quinquefasciatus, and Anopheles stephensi. Preliminary studies of the three successive extracts such as hexane, chloroform, and methanol against Ae. aegypti larvae showed that the chloroform extract was more active with LC50 and LC90 values of 40.09 ppm and 189.15 ppm respectively. Bioassay guided fractionation of the active chloroform extract resulted in the isolation of a triterpenoid (ursolic acid) as the active constituent. Three derivatives acetate, formate, and benzoate were prepared using this, and they were tested for their larvicidal activity against three mosquito species. The acetyl derivative was highly active against all the three species compared to the parent compound ursolic acid; the activities of benzoate and formate were higher than ursolic acid when tested against Cx. quinquefasciatus. This is the first report related to ursolic acid from C. roseus with mosquito larvicidal activity. The pure compound could be considered for medicinal and other pharmacological applications in future.


Subject(s)
Aedes , Anopheles , Catharanthus , Culex , Insecticides , Animals , Larva , Chloroform , Insecticides/pharmacology , Plant Extracts/pharmacology , Plant Leaves , Ursolic Acid
2.
Parasitol Res ; 115(5): 1807-16, 2016 May.
Article in English | MEDLINE | ID: mdl-26792432

ABSTRACT

Mosquitoes (Diptera: Culicidae) are important vectors of terms of public health relevance, especially in tropical and sub-tropical regions. The continuous and indiscriminate use of conventional pesticides for the control of mosquito vectors has resulted in the development of resistance and negative impacts on non-target organisms and the environment. Therefore, there is a need for development of effective mosquito control tools. In this study, the larvicidal and repellent activity of Zingiber nimmonii rhizome essential oil (EO) was evaluated against the malaria vector Anopheles stephensi, the dengue vector Aedes aegypti, and the lymphatic filariasis vector Culex quinquefasciatus. The chemical composition of the EO was analyzed by gas chromatography-mass spectroscopy (GC-MS). GC-MS revealed that the Z. nimmonii EO contained at least 33 compounds. Major constituents were myrcene, ß-caryophyllene, α-humulene, and α-cadinol. In acute toxicity assays, the EO showed significant toxicity against early third-stage larvae of An. stephensi, Ae. aegypti, and Cx. quinquefasciatus, with LC50 values of 41.19, 44.46, and 48.26 µg/ml, respectively. Repellency bioassays at 1.0, 2.0, and 5.0 mg/cm(2) of Z. nimmonii EO gave 100 % protection up to 120, 150, and 180 min. against An. stephensi, followed by Ae. aegypti (90, 120, and 150 min) and Cx. quinquefasciatus (60, 90, and 120 min). Furthermore, the EO was safer towards two non-target aquatic organisms, Diplonychus indicus and Gambusia affinis, with LC50 values of 3241.53 and 9250.12 µg/ml, respectively. Overall, this research adds basic knowledge to develop newer and safer natural larvicides and repellent from Zingiberaceae plants against malaria, dengue, and filariasis mosquito vectors.


Subject(s)
Dengue/prevention & control , Elephantiasis, Filarial/prevention & control , Insect Repellents/pharmacology , Insecticides/pharmacology , Malaria/prevention & control , Mosquito Control/methods , Mosquito Vectors/drug effects , Oils, Volatile/pharmacology , Zingiberaceae/chemistry , Acyclic Monoterpenes , Aedes/drug effects , Alkenes/analysis , Animals , Anopheles/drug effects , Culex/drug effects , Gas Chromatography-Mass Spectrometry , Insect Repellents/chemistry , Larva/drug effects , Monocyclic Sesquiterpenes , Monoterpenes/analysis , Plant Leaves/chemistry , Polycyclic Sesquiterpenes , Sesquiterpenes/analysis , Terpenes/analysis
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