KMITL
Permanent URI for this communityhttps://dspace.kmitl.ac.th/handle/123456789/1
Browse
5 results
Search Results
- Some of the metrics are blocked by yourconsent settings
Item type:Publication, Larvicidal efficacy and morphological abnormalities induced by plant essential oils against housefly (Musca domestica L.)(2026-03-01) ;Passara, H. ;Sittichok, S. ;Moungthipmalai, T. ;Laosinwattana, C.Thongsaiklaing, M.The results showed that the lowest complete pupation rate was 43.67%, indicating a significant inhibition of normal metamorphosis. Additionally, 56.33% of third-instar larvae were classified as malformed larvae (ML), dying before pupation and exhibiting severe morphological and physiological abnormalities. These findings suggest that the star anise nanoemulsion interferes with key developmental pathways, preventing larvae from reaching the pupal stage. Due to its high effectiveness and plant-based origin, this nanoformulation offers a promising, environmentally friendly alternative to conventional chemical insecticides. It has potential for further development into a natural larvicidal agent for use in integrated pest management (IPM) strategies targeting housefly populations. Future research should explore the underlying mechanisms of action and assess the efficacy and safety of this nanoemulsion under real-world conditions to support its application in sustainable vector control. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Adulticidal activity of star anise, turmeric, cloves and combinations against houseflies(2025-01-01) ;Sinthusiri, J. ;Soonwera, M. ;Puwanard, C. ;Passara, H.Thongsaiklaing, T.The small droplet size could increase the absorbed ingredients and high stability. The star anise nanoemulsion was determined optimum efficacy, with a 1% concentration resulting in the highest knockdown and mortality rate of 100%. Its KT<inf>50</inf> and mortality effective values were 28 min and 36 times, respectively. Furthermore, the adult stage of houseflies is found to be susceptible to star anise nanoemulsion. In contrast, cypermethrin was less toxic to it, with a high KT<inf>50</inf> and resistance to adult houseflies. Consequently, the star anise nanoemulsion could be developed into an efficient and safe environment for controlling housefly populations. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Adulticidal synergy of two plant essential oils and their major constituents against the housefly Musca domestica and bioassay on non-target species(2024-03-15) ;Soonwera, Mayura ;Moungthipmalai, Tanapoom ;Puwanard, Cheepchanok ;Sittichok, SirawutSinthusiri, JirisudaSingle and mixture formulations of lemongrass (Cymbopogon citratus (DC.) Stapf.) and star anise (Illicium verum (J. Presl.)) essential oils (EOs) and their major constituents were assayed for their adulticidal activities against housefly, Musca domestica L., and two non-target species, stingless bee (Tetragonula pegdeni Schwarz) and guppy (Poecilia reticulata Peters). The efficacies of the mixture formulations were compared against those of the single formulations and 1.0% α-cypermethrin, a common synthetic insecticide. GC-MS analysis found that the major constituent of lemongrass EO was geranial (45.23%), and that of star anise EO was trans-anethole (93.23%). Almost all mixture formulations were more effective in adulticidal activity against housefly adults than single formulations and 1.0% α-cypermethrin. A mixture of 1.0% lemongrass EO + 1.0% trans-anethole exhibited the strongest synergistic insecticidal activity with a 100% mortality rate (KT<inf>50</inf> of 3.2 min and LT<inf>50</inf> of 0.07 h). The relative percentage increase in mortality rate over single formulations was between 1.6 and 91.9%. In addition, it was three times more effective than 1.0% α-cypermethrin. To find the mechanism of adulticidal action, scanning electron microscopy (SEM) was done to find morphological aberrations, such as antennal and mouthpart aberrations, after the houseflies were treated with 1.0% lemongrass EO + 1.0% trans-anethole. The aberrations included deformed and abnormal shape of arista and flagellum, change in labellum pigmentation, and damage to pseudotracheae. Regarding toxicity against non-target species, all single and mixture formulations were not toxic to the two non-target species, while 1.0% α-cypermethrin was highly toxic. To conclude, a mixture of 1.0% lemongrass EO + 1.0% trans-anethole can be an excellent, natural, sustainable housefly adulticidal agent. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Oviposition deterrent and ovicidal activities of seven herbal essential oils against female adults of housefly, Musca domestica L.(2014-01-01) ;Sinthusiri, JirisudaSoonwera, MayuraThe oviposition deterrent and ovicidal of seven herbal essential oils derived from Citrus sinensis, Cymbopogon citratus, Eucalyptus glubulus, Illicium verum, Lavandula angustifolia, Mentha piperita, and Zingiber cussumunar were assessed against the gravid female of housefly, Musca domestica L., under laboratory conditions and compared with commercial insecticide (10 % w/v cypermethrin). They were assayed at three concentrations (1.0, 5.0, and 10.0 %) where plastic cups containing 1 ml of desired oil concentration and cotton pad soaked with 10 ml of milk solution (10 % w/v) were used as oviposition substrate. The 0.1 ml of deferent concentrations was dropped on ten housefly eggs, which were used for ovicidal activity. The number of eggs laid and the hatched larvae in each cup was recorded to evaluate the oviposition deterrent and ovicidal activities of the herbal essential oils. High concentration (10 %) of herbal essential oils showed high percent effective repellency (ER). The 10 % I. verum oil caused complete oviposition deterrence (100 % ER, oviposition activity index (OAI)=-1.0), followed by Z. cussumunar, M. piperita, L. angustifolia, C. citratus, C. sinensis, and E. glubulus oils with 97.20, 88.55, 88.14, 87.93, 76.68, and 57.00 % ER, respectively. As the concentration of herbal essential oils increased from 1.0, 5.0, and up to 10.0 % concentration, the hatching rate decreased. Ten percent I. verum oil gave the maximum inhibiting rate at 97.3 % (LC<inf>50</inf> value of 6.85 %); in addition, the other herbal essential oils showed the minimum inhibiting rate of 3.3-22.7 %. On the other hand, cypermethrin 10 % w/v showed complete oviposition deterrence (100 % ER, OAI=-1.0) and ovicidal activity (100 % inhibiting rate). Our data showed that I. verum oil have high potential of oviposition deterrence and ovicide housefly control. © 2014 Springer-Verlag. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Efficacy of herbal essential oils as insecticides against the housefly, Musca domestica L.(2013-01-01) ;Sinthusiri, JirisudaSoonwera, MayuraThe insecticidal effects of 20 essential oils derived from herbs, were tested against the housefly species Musca domestica L. using a susceptibility test. Each was applied in ethyl alcohol at concentrations of 1, 5 and 10% (v/v). Ten percent concentrations of Cymbopogon citratus (lemongrass), Mentha piperita (peppermint) and Lavandula angustifolia (lavender) oils were the most effective, showing 100% knockdown at 30 and 60 minutes. The KT<inf>50</inf> values for C. citratus, M. piperita and L. angustifolia were 5.14, 5.36 and 8.23 minutes, respectively. These essential oils caused 100% mortality among houseflies 24 hours after exposure. The LC<inf>50</inf> values for C. citratus, M. piperita and L. angustifolia were 2.22, 2.62 and 3.26 minutes, respectively. This study reveals lemongrass, peppermint and lavender essential oils have the potential to control housefly populations and should be further studied for field applications.
