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result(s) for
"Geranial"
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Titanium dioxide nanoparticles (TiO2 NPs) promote growth and ameliorate salinity stress effects on essential oil profile and biochemical attributes of Dracocephalum moldavica
2020
Considering titanium dioxide nanoparticles (TiO
2
NPs) role in plant growth and especially in plant tolerance against abiotic stress, a greenhouse experiment was carried out to evaluate TiO
2
NPs effects (0, 50, 100 and 200 mg L
−1
) on agronomic traits of Moldavian balm (
Dracocephalum moldavica
L.) plants grown under different salinity levels (0, 50 and 100 mM NaCl). Results demonstrated that all agronomic traits were negatively affected under all salinity levels but application of 100 mg L
−1
TiO
2
NPs mitigated these negative effects. TiO
2
NPs application on Moldavian balm grown under salt stress conditions improved all agronomic traits and increased antioxidant enzyme activity compared with plants grown under salinity without TiO
2
NP treatment. The application of TiO
2
NPs significantly lowered H
2
O
2
concentration. In addition, highest essential oil content (1.19%) was obtained in 100 mg L
−1
TiO
2
NP-treated plants under control conditions. Comprehensive GC/MS analysis of essential oils showed that geranial, z-citral, geranyl acetate and geraniol were the dominant essential oil components. The highest amounts for geranial, geraniol and z-citral were obtained in 100 mg L
−1
TiO
2
NP-treated plants under control conditions. In conclusion, application of 100 mg L
−1
TiO
2
NPs could significantly ameliorate the salinity effects in Moldavian balm.
Journal Article
Lemongrass Essential Oil Components with Antimicrobial and Anticancer Activities
2021
The prominent cultivation of lemongrass (Cymbopogon spp.) relies on the pharmacological incentives of its essential oil. Lemongrass essential oil (LEO) carries a significant amount of numerous bioactive compounds, such as citral (mixture of geranial and neral), isoneral, isogeranial, geraniol, geranyl acetate, citronellal, citronellol, germacrene-D, and elemol, in addition to other bioactive compounds. These components confer various pharmacological actions to LEO, including antifungal, antibacterial, antiviral, anticancer, and antioxidant properties. These LEO attributes are commercially exploited in the pharmaceutical, cosmetics, and food preservations industries. Furthermore, the application of LEO in the treatment of cancer opens a new vista in the field of therapeutics. Although different LEO components have shown promising anticancer activities in vitro, their effects have not yet been assessed in the human system. Hence, further studies on the anticancer mechanisms conferred by LEO components are required. The present review intends to provide a timely discussion on the relevance of LEO in combating cancer and sustaining human healthcare, as well as in food industry applications.
Journal Article
Antifungal Activities of cis-trans Citral Isomers against Trichophyton rubrum with ERG6 as a Potential Target
2021
Trichophyton rubrum causes ringworm worldwide. Citral (CIT), extracted from Pectis plants, is a monoterpene and naturally composed of geometric isomers neral (cis-citral) and geranial (trans-citral). CIT has promising antifungal activities and ergosterol biosynthesis inhibition effects against several pathogenic fungi. However, no study has focused on neral and geranial against T. rubrum, which hinders the clinical application of CIT. This study aimed to compare antifungal activities of neral and geranial and preliminarily elucidate their ergosterol biosynthesis inhibition mechanism against T. rubrum. Herein, the disc diffusion assays, cellular leakage measurement, flow cytometry, SEM/TEM observation, sterol quantification, and sterol pattern change analyses were employed. The results showed geranial exhibited larger inhibition zones (p < 0.01 or 0.05), higher cellular leakage rates (p < 0.01), increased conidia with damaged membranes (p < 0.01) within 24 h, more distinct shriveled mycelium in SEM, prominent cellular material leakage, membrane damage, and morphological changes in TEM. Furthermore, geranial possessed more promising ergosterol biosynthesis inhibition effects than neral, and both induced the synthesis of 7-Dehydrodesmosterol and Cholesta-5,7,22,24-tetraen-3β-ol, which represented marker sterols when ERG6 was affected. These results suggest geranial is more potent than neral against T. rubrum, and both inhibit ergosterol biosynthesis by affecting ERG6.
Journal Article
Ovicidal toxicity of plant essential oils and their major constituents against two mosquito vectors and their non-target aquatic predators
by
Moungthipmalai, Tanapoom
,
Aungtikun, Jirapon
,
Puwanard, Cheepchanok
in
631/449
,
631/601/1466
,
Aedes
2023
Plant essential oil (EO) is a natural alternative to synthetic chemical insecticides for mosquito control. EOs from
Citrus aurantium
L.,
Cymbopogon citratus
(Stapf.), and
Cinnamomum verum
(J. Presl.) were selected for topical assay of their ovicidal activity against
Aedes aegypti
(Linnaeus) and
Aedes albopictus
(Skuse). Their efficacy was compared to that of 1% (
w/w
) temephos. In addition, their non-toxicity against aquatic mosquito predators,
Poecilia latipinna
and
Poecilia reticulata
, was tested. Found by GC–MS analysis, the major constituent of
C
.
verum
EO was
trans
-cinnamaldehyde, of
C
.
aurantium
EO was
d
-limonene, and of
C
.
citratus
EO was geranial. Both
C
.
verum
EO and
trans
-cinnamaldehyde at a high concentration (30,000 ppm) exhibited high ovicidal activity against
Ae
.
aegypti
and
Ae
.
albopictus
eggs after 48 h of incubation with an inhibition rate of 91.0–93.0% for
C
.
verum
EO and 96.7–95.2% for
trans
-cinnamaldehyde. The combination of
C
.
verum
EO + geranial exhibited the strongest synergistic inhibition activity (100%) against the two mosquito vectors and was five times more effective than temephos. Moreover, they were not toxic to the non-target fishes. As a safe ovicidal agent for mosquito egg control, the combination of
C
.
verum
EO + geranial has excellent potential.
Journal Article
Terpenoid Mixtures as Repellents Against the American Cockroach: Their Synergy and Low Toxicity Against Non-Target Species
by
Moungthipmalai, Tanapoom
,
Passara, Hataichanok
,
Laosinwattana, Chamroon
in
Alcohol
,
Anethole
,
Bees
2026
The repellent activities (Periplaneta americana) of lone and binary mixtures of terpenoids—geranial, trans-anethole, and trans-cinnamaldehyde—against adult American cockroaches were evaluated in this study. The respective efficacies of these mixtures were compared with that of 12% (w/w) DEET. Safety bioassays for all formulations on non-target species, namely, earthworms (Eudrilus eugeniae) and guppy fish (Poecilia reticulata), were conducted to identify natural compounds with repellent efficacy equal to or surpassing that of DEET while ensuring ecological safety for non-target organisms such as fish and earthworms. All mixtures (RC50 of 0.3 to 1.6 µL/cm3) were more effective than all lone terpenoids (RC50 of 6.2 to 9.1 µL/cm3) and DEET (RC50 of 3.0 µL/cm3), demonstrating strong synergy, with an increased repellent value (IV) of 79 to 96%. The strongest repellency, 98.0% at 72 h and an RC50 of 0.3 µL/cm3, was achieved using geranial + trans-cinnamaldehyde (1:1). This mixture was 5.9 to 10 times more effective as a repellent than DEET. The toxicity of every lone terpenoid and terpenoid mixture to non-target species was low; hence, these mixtures can be considered safe, whereas DEET was highly toxic to non-target species (100% mortality). The terpenoid mixture geranial + trans-cinnamaldehyde showed strong repellency against P. americana.
Journal Article
Application of Fe2O3 nanoparticles improves the growth, antioxidant power, flavonoid content, and essential oil yield and composition of Dracocephalum kotschyi Boiss
by
Mumivand, Hasan
,
Morshedloo, Mohamad Reza
,
Maggi, Filippo
in
Agricultural production
,
Agriculture
,
Antioxidants
2024
Dracocephalum kotschyi Boiss., an endemic and endangered medicinal and aromatic plant in Iran, showcases distinct botanical characteristics and therapeutic promise. According to the IUCN grouping criteria, this plant is facing challenges due to overcollection from its natural habitats. To address this issue, there is an increasing inclination towards cultivating this species within agricultural systems. This study aimed to evaluate the impact of applying Fe 2 O 3 nanoparticles (NPs) at varying concentrations (50, 100, and 200 mg L -1 ), as well as bulk Fe 2 O 3 at the same concentrations, on the growth, essential oil production, antioxidant capacity, total phenol, and flavonoid content of D. kotschyi . The foliar application of 100 and/or 200 mg L -1 of Fe 2 O 3 NPs resulted in the greatest leaf length and dry weight, while Fe 2 O 3 NPs at the level of 100 mg L -1 led to the highest leaf/stem ratio. Additionally, spraying 200 mg L -1 of Fe 2 O 3 NPs and all concentrations of bulk Fe 2 O 3 positively impacted chlorophyll and carotenoid levels. Both nano and bulk Fe 2 O 3 supplements stimulated H 2 O 2 production and subsequently enhanced enzymatic antioxidant activity. The use of 50 mg L -1 of Fe 2 O 3 NPs resulted in the highest flavonoid content and non-enzymatic antioxidant activity. Meanwhile, the highest essential oil content and yield was achieved by the application of 50 and/or 100 mg L -1 Fe 2 O 3 NPs. The addition of low concentration of Fe 2 O 3 NPs (50 mg L -1 ) resulted in a significant increase in the concentration of geranial, while a higher supply of Fe 2 O 3 NPs (200 mg L -1 ) significantly decreased the percentage of neral in the essential oil. Overall, the application of Fe 2 O 3 NPs demonstrated significant potential for increased biomass, enhanced yield, essential oil production, and phytochemical attributes. The findings highlight the versatility of Fe 2 O 3 NPs at optimal concentrations, acting as both a nano-fertilizer and a nano-inducer, promoting the production and accumulation of valuable secondary metabolites in plants.
Journal Article
Mechanisms and Applications of Citral’s Antimicrobial Properties in Food Preservation and Pharmaceuticals Formulations
by
Ayala-Zavala, J. Fernando
,
Gutiérrez-Pacheco, María Melissa
,
Velázquez Guadarrama, Norma
in
Antibacterial agents
,
Antimicrobial agents
,
Antiparasitic agents
2023
Citral is a monoterpene constituted by two isomers known as neral and geranial. It is present in different plant sources and recognized as safe (GRAS) by the Food and Drug Administration (FDA). In recent years, investigations have demonstrated that this compound exhibited several biological activities, such as antibacterial, antifungal, antibiofilm, antiparasitic, antiproliferative, anti-inflammatory, and antioxidant properties, by in vitro and in vivo assays. Additionally, when incorporated into different food matrices, citral can reduce the microbial load of pathogenic microorganisms and extend the shelf life. This compound has acceptable drug-likeness properties and does not present any violations of Lipinski’s rules, which could be used for drug development. The above shows that citral could be a compound of interest for developing food additives to extend the shelf life of animal and vegetable origin foods and develop pharmaceutical products.
Journal Article
Synergistic Adulticidal Activity of Lemongrass (Cymbopogon citratus), Star Anise (Illicium verum), Nutmeg (Myristica fragrans) Essential Oil and Their Components Against the Housefly (Musca domestica) and Their Safety for Key Non-Target Organisms
by
Moungthipmalai, Tanapoom
,
Passara, Hataichanok
,
Laosinwattana, Chamroon
in
Adulticides
,
Adults
,
Agricultural practices
2026
Botanical insecticides containing a mixture of plant essential oils (EOs) are considered suitable for the management of houseflies (M. domestica). The adulticidal efficacies of single EOs and mixtures of EOs, including lemongrass (C. citratus), star anise (I. verum), nutmeg (M. fragrans), and their components (geranial, trans-anethole, and α-pinene), against houseflies were determined in comparison to 2% (w/v) α-cypermethrin as the positive control and distilled water as the negative control. The mixture of star anise EO (1%) + geranial (1%) was the most effective adulticide, superseding single EOs, other combinations of EOs, and its active component, α-cypermethrin, and distilled water. This mixture was highly synergistic and was found to be over 74% more toxic than all single EOs and almost 2.6 times more toxic than α-cypermethrin. Furthermore, the tested EOs did not cause mortality in guppies (P. reticulata) or earthworms (E. fetida), and caused a maximum of 48% mortality in honeybees (A. mellifera) at 24 h; by contrast, α-cypermethrin led to 100% mortality in honeybees within 0.5 h and in guppies and earthworms within 24 h, although it had low toxicity toward houseflies. Thus, a mixture of star anise EO + geranial is a promising source of EO-derived insecticides for housefly control that is also safe for important non-target species.
Journal Article
Anti-Inflammatory Properties and Chemical Characterization of the Essential Oils of Four Citrus Species
by
Moreno, Daniela Sales Alviano
,
Pinheiro, Mariana Martins Gomes
,
Simas, Daniel Luiz Reis
in
Animals
,
Anti-inflammatory agents
,
Anti-Inflammatory Agents - pharmacology
2016
Citrus fruits have potential health-promoting properties and their essential oils have long been used in several applications. Due to biological effects described to some citrus species in this study our objectives were to analyze and compare the phytochemical composition and evaluate the anti-inflammatory effect of essential oils (EO) obtained from four different Citrus species. Mice were treated with EO obtained from C. limon, C. latifolia, C. aurantifolia or C. limonia (10 to 100 mg/kg, p.o.) and their anti-inflammatory effects were evaluated in chemical induced inflammation (formalin-induced licking response) and carrageenan-induced inflammation in the subcutaneous air pouch model. A possible antinociceptive effect was evaluated in the hot plate model. Phytochemical analyses indicated the presence of geranial, limonene, γ-terpinene and others. EOs from C. limon, C. aurantifolia and C. limonia exhibited anti-inflammatory effects by reducing cell migration, cytokine production and protein extravasation induced by carrageenan. These effects were also obtained with similar amounts of pure limonene. It was also observed that C. aurantifolia induced myelotoxicity in mice. Anti-inflammatory effect of C. limon and C. limonia is probably due to their large quantities of limonene, while the myelotoxicity observed with C. aurantifolia is most likely due to the high concentration of citral. Our results indicate that these EOs from C. limon, C. aurantifolia and C. limonia have a significant anti-inflammatory effect; however, care should be taken with C. aurantifolia.
Journal Article
Zinc oxide nanoparticles foliar use and arbuscular mycorrhiza inoculation retrieved salinity tolerance in Dracocephalum moldavica L. by modulating growth responses and essential oil constituents
by
Rasouli, Farzad
,
Ghaffari Yaichi, Zahra
,
Esfandiari, Ezatollah
in
631/449/1736
,
631/449/2661
,
631/449/2667
2025
The production of medicinal plants under stressful environments offers an alternative to meet the requirements of sustainable agriculture. The action of mycorrhizal fungus;
Funneliformis mosseae
and zinc in stimulating growth and stress tolerance in medicinal plants is an intriguing area of research. The current study evaluated the combined use of nano-zinc and mycorrhizal fungus on the physiochemical responses of
Dracocephalum moldavica
under salinity stress. The study employed a factorial based on a completely randomized design with three replications. The treatments were different levels of salinity (0, 50, and 100 mM NaCl), two levels of mycorrhiza application (0 and 5 g kg
− 1
of soil), and two levels of foliar spraying of nano zinc oxide (0 and 1000 ppm). Salinity decreased the photosynthetic pigments content, SPAD value, and chlorophyll fluorescence data (
Fm
,
Fv
,
Fv/Fm
). Plant dry weight, Na
+
content, and essential oil content were significantly higher at 50 mM salinity + co-application of mycorrhiza and nano zinc oxide. Electrolyte leakage increased under salt stress, while mycorrhizal inoculation compensated for the trait. The main essential oil constituents were geranyl acetate, nerol, geranial, geraniol, viridiflorol, hexadecane, humulene, and germacrene D. Energy metabolism demonstrates the effectiveness of treatment combinations in promoting the biosynthesis and accumulation of essential oil components. The overall results with more comprehensive field-based studies would be advisable for the extension section to utilize marginal salty lands for the reliable production of a valuable medicinal plant.
Journal Article