Phytochemical profile and larvicidal activity of aqueous extract of Ocimum americanum against mosquito vectors

Author(s):  
Mathiyazhagan Narayanan ◽  
A. Vijay ◽  
Sabariswaran Kandasamy ◽  
Omaima Nasif ◽  
Sulaiman Ali Alharbi ◽  
...  
2020 ◽  
Vol 10 ◽  
Author(s):  
Dayane Kelly Dias do Nascimento Santos ◽  
Cristiane Moutinho Lagos de Melo ◽  
Elivânia Maria da Silva ◽  
Vanessa Silva de Almeida ◽  
Iranildo José da Cruz Filho ◽  
...  

Background: One of the four most incident species in mangrove is the Laguncularia racemosa, plant widely used in popular medicine against inflammation and fever. Objective: Here, L. racemosa was investigated in relation to their phytochemical profile, antioxidant activity, citotoxicity, antimicrobial and immunostimulatory effect. Method: Aqueous extract was obtained from leaves of plant, its phytochemical profile was investigated through UPLC method, the antioxidant assays performed were TAA, DPPH, ABTS, nitrite and lipid peroxidation assay. Antimicrobial assays were made using standard strains. For all biological tests were used mice splenocytes and from these cell cultures were measured cytotoxicity, proliferation index and cytokines production. Results: Laguncularia racemosa leaves showed the presence of ions, proteins, carbohydrates, vitamins and high concentration of phenolic compounds. Antioxidant activities were promoted by aqueous extract, especially in DPPH and NO assays. Extract in 6 µg/mL did not induce significant cell death, stimulated the cell proliferation and the IL-4 production. Moreover, decreases of proinflammatory cytokines IFN-γ, TNF-α and IL-6 were found. Conclusion: The presence of essential nutrients, significant antioxidant activity and immune stimulation confirm the use of this plant in folk medicine against inflammation.


2020 ◽  
Vol 8 (3) ◽  
pp. 310
Author(s):  
Ana Claudia Martins Da Silva ◽  
José Jailson Lima Bezerra ◽  
Ana Paula Do Nascimento Prata ◽  
Renan Cantalice De Souza ◽  
Cynthiane Lins de Albuquerque Paulino ◽  
...  

The allelopathic potential of some plant species has been scientifically proven over the years. The use of such natural compounds with phytotoxic activity is an alternative to synthetic herbicides. Thus, this research aims to analyze the phytochemical profile and the allelopathic effect of aqueous extracts of Fimbristylis miliacea (L.) Vahl. The allelopathic potential was evaluated by germination bioassays using seeds from two receptor species (Lactuca sativa L. and Emilia fosbergii Nicolson) and seven concentrations of aqueous extracts of F. miliacea aerial and underground parts in triplicate. The variables evaluated were germination (G) and germination speed index (GSI). The data obtained were submitted to F test and the averages to regression analysis. In addition, phytochemical analyses were performed to analyze possible allelochemicals present in aqueous extracts of F. miliacea through phytochemical screening and by high performance liquid chromatography (HPLC). The aqueous extracts of aerial and underground parts of F. miliacea inhibit the germination of E. fosbergii seeds at all concentrations analyzed (0.94, 1.87, 3.75, 7.5, 15 and 30%). However, the same extracts do not show any effects when evaluated in L. sativa seeds. The aqueous extract of F. miliacea shows important chemical constituents (gallic acid, chlorogenic acid, rutin, luteolin, apigenin, acacetin, and alkaloids) that can be directly related to the allelopathic effects observed in E. fosbergii seeds.


Molecules ◽  
2020 ◽  
Vol 25 (17) ◽  
pp. 3844
Author(s):  
Sengodan Karthi ◽  
Karthic Uthirarajan ◽  
Vinothkumar Manohar ◽  
Manigandan Venkatesan ◽  
Kamaraj Chinnaperumal ◽  
...  

The larvicidal potential of crude leaf extracts of Rhizophora mucronata, the red mangrove, using diverse solvent extracts of the plant against the early fourth instar larvae of Anopheles stephensi, Culex quinquefasciatus and Aedes aegypti mosquito vectors was analyzed. The acetone extract of R. mucronata showed the greatest efficacy: for Cx. quinquefasciatus (LC50 = 0.13 mg/mL; LC90 = 2.84 mg/mL), An. stephensi (LC50 = 0.34 mg/mL; LC90 = 6.03 mg/mL), and Ae. aegypti (LC50 = 0.11 mg/mL; LC90 = 1.35 mg/mL). The acetone extract was further fractionated into four fractions and tested for its larvicidal activity. Fraction 3 showed stronger larvicidal activity against all the three mosquito larvae. Chemical characterization of the acetone extract displayed the existence of several identifiable compounds like phytol, 3,7,11,15-tetramethyl-2-hexadecen-1-ol, 1-hexyl-2-nitrocyclohexane, eicosanoic acid etc. Enzyme assay displayed that R. mucronata active F3-fractions exert divergent effects on all three mosquitos’ biochemical defensive mechanisms. The plant fractions displayed significant repellent activity against all the three mosquito vectors up to the maximum repellent time of 210 min. Thus, the bioactive molecules in the acetone extract of R. murconata leaves showed significant larvicidal and enzyme inhibitory activity and displayed novel eco-friendly tool for mosquito control.


PLoS ONE ◽  
2016 ◽  
Vol 11 (5) ◽  
pp. e0155265 ◽  
Author(s):  
Arshia Hematpoor ◽  
Sook Yee Liew ◽  
Wei Lim Chong ◽  
Mohd Sofian Azirun ◽  
Vannajan Sanghiran Lee ◽  
...  

2020 ◽  
Author(s):  
Darvin R. Ravindran ◽  
Madhuri Bharathithasan ◽  
Patmani Ramaiah ◽  
Mohd Sukhairi Mat Rasat ◽  
Dinesh Rajendran ◽  
...  

AbstractBackgroundMosquito is a human health tread nowadays, the major health problems caused by them are malaria, dengue fever, yellow fever, zika as well as several other outbreaks. The major problem in controlling dengue vectors are the resistant problems. Different classes of insecticides used for public have raised the concern of resistant problem with mosquitoes and environmental pollution. Thus, alternative chemical compounds search is necessary to be searched for overcoming the resistance problem of using pesticides in vectors and the chemical free environment respectively. Thus, to solve these problems, purpose of this study is to identify the larvicidal mechanism, metabolite, antioxidant, chemical compounds and its structure from C. ternatea flower and to test its efficacies against early 4th instar larvae of Ae. aegypti and Ae albopictus.MethodsClitoria ternatea flowers were collected from the Garden of the Faculty of Medicine in International Quest University, Ipoh, Perak and used for crude extraction. Then, the metabolite test, antioxidant test, chromatography techniques were conducted to identify chemical composition of extracts and their chemical structures were identified using GCMS-QP2010 Ultra (Shimadzu). Next, following WHO procedures for larval bioassays, the extracts were used to evaluate against early 4th instar larvae of Aedes mosquito vectors.ResultsThe larvicidal activity of Clitoria ternatea flowers extracts evidently affected the early 4th instar larvae of Aedes mosquito vectors. The highest larvicidal activity was observed against early 4th instar larvae of Ae. aegypti with the LC50 and LC95 values of 1056 and 2491 mg/L, respectively. Meanwhile larvae bioassay test for Ae.albopictus recorded with the LC50 and LC95 values of 1425 and 2753 mg/L. Moreover, the results for non target organism test on Guppy fish, Poecilia reticulate showed no mortalities with flower extracts at 2500 mg/L and posses no toxic effects on fish. In this study, total of 16 chemical compounds and 6 chemical compounds have been reported to posse’s direct effects on insecticidal, larvicidal and pupicidal effects. Namely 6 chemicals used for insecticidal properties were Glycerin, 2-Hydroxy-gamma-butyrolactone, Neophytadiene, n-Hexadecanoic acid, cis-Vaccenic acid, and Octadecanoic acid with total of 28.7%. Clitoria ternatea flower extracts also showed different types of phenols such as anthocyanin, flavonoid and tannin.ConclusionsOur findings showed that crude extract of Clitoria ternatea flower bioactive molecules to be effective and may be developed as biolarvicides for Aedes mosquito vector control. Furthermore, this study also provided a baseline understanding for future research work on the field applications of Clitoria ternatea flower extracts which could be tested for its long term effects on other non target organisms, including human health.


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