Ministry of Education, Science and Technological Development, Republic of Serbia, Grant no. 451-03-68/2020-14/200168 (University of Belgrade, Faculty of Chemistry)

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Ministry of Education, Science and Technological Development, Republic of Serbia, Grant no. 451-03-68/2020-14/200168 (University of Belgrade, Faculty of Chemistry) (en)
Ministarstvo prosvete, nauke i tehnološkog razvoja Republike Srbije, Ugovor br. 451-03-68/2020-14/200168 (Univerzitet u Beogradu, Hemijski fakultet) (sr_RS)
Министарство просвете, науке и технолошког развоја Републике Србије, Уговор бр. 451-03-68/2020-14/200168 (Универзитет у Београду, Хемијски факултет) (sr)
Authors

Publications

Chemical Composition and In Vitro Biological Activity of Angelica Root and Hop Strobile Essential Oils and Hydrolates

Lazarević, Jovan; Aćimović, Milica; Pezo, Lato; Lončar, Biljana; Konstantinović, Bojan; Popov, Milena; Šovljanski, Olja; Travičić, Vanja; Sikora, Vladimir; Vujisić, Ljubodrag

(Springer, 2024)

TY  - JOUR
AU  - Lazarević, Jovan
AU  - Aćimović, Milica
AU  - Pezo, Lato
AU  - Lončar, Biljana
AU  - Konstantinović, Bojan
AU  - Popov, Milena
AU  - Šovljanski, Olja
AU  - Travičić, Vanja
AU  - Sikora, Vladimir
AU  - Vujisić, Ljubodrag
PY  - 2024
UR  - http://fiver.ifvcns.rs/handle/123456789/4282
AB  - The purpose of this study was to obtain additional value of hydrolates (HYs), by-products during essential oil distillation. Chemical compositions of angelica and hop hydrolates were determined and compared with the corresponding essential oils, and their biological potential tested. Steam distilled essential oils and hydrolates were analyzed by GC-MS, and their biological potential was tested for antioxidant (DPPH, ABTS and reduction power) and antimicrobial activities (against nine bacteria and fungi). Hydrolates were additionally tested for allelopathic activity (on corn and redroot pigweed). The investigated essential oils have totally different volatile profiles and aromas in comparison to hydrolates. The most dominant constituents in the angelica essential oil were limonene, β-phellandrene, α-pinene, α-phellandrene and δ-3-carene, while in the hydrolate it was trans-verbenol. In the hop essential oil the most dominant constituents were myrcene and α-humulene, while in the hydrolate isovaleric acid and linalool were dominant. Angelica essential oil showed higher antioxidant activity in comparison with hop, while hydrolates displayed significantly lower antioxidant activity. Low antimicrobial potential of both essential oils was observed in the case of Enterococcus faecalis, Escherichia coli, Saccharomyces cerevisiae and Candida albicans. Antimicrobial activity was not detected in neither of the two hydrolates. In terms of allelopathic activity, hydrolates showed a dose-dependent decreasing activity on germination and seedling growth of corn and redroot pigweed. Angelica and hop essential oils are mainly used in food, cosmetic and pharmaceutical industries because of their aroma. Hydrolates, as by-products, possess potential for application in agriculture as natural herbicides.
PB  - Springer
T2  - Waste and Biomass Valorization
T1  - Chemical Composition and In Vitro Biological Activity of Angelica Root and Hop Strobile Essential Oils and Hydrolates
EP  - 883
SP  - 867
VL  - 15
DO  - 10.1007/s12649-023-02209-1
ER  - 
@article{
author = "Lazarević, Jovan and Aćimović, Milica and Pezo, Lato and Lončar, Biljana and Konstantinović, Bojan and Popov, Milena and Šovljanski, Olja and Travičić, Vanja and Sikora, Vladimir and Vujisić, Ljubodrag",
year = "2024",
abstract = "The purpose of this study was to obtain additional value of hydrolates (HYs), by-products during essential oil distillation. Chemical compositions of angelica and hop hydrolates were determined and compared with the corresponding essential oils, and their biological potential tested. Steam distilled essential oils and hydrolates were analyzed by GC-MS, and their biological potential was tested for antioxidant (DPPH, ABTS and reduction power) and antimicrobial activities (against nine bacteria and fungi). Hydrolates were additionally tested for allelopathic activity (on corn and redroot pigweed). The investigated essential oils have totally different volatile profiles and aromas in comparison to hydrolates. The most dominant constituents in the angelica essential oil were limonene, β-phellandrene, α-pinene, α-phellandrene and δ-3-carene, while in the hydrolate it was trans-verbenol. In the hop essential oil the most dominant constituents were myrcene and α-humulene, while in the hydrolate isovaleric acid and linalool were dominant. Angelica essential oil showed higher antioxidant activity in comparison with hop, while hydrolates displayed significantly lower antioxidant activity. Low antimicrobial potential of both essential oils was observed in the case of Enterococcus faecalis, Escherichia coli, Saccharomyces cerevisiae and Candida albicans. Antimicrobial activity was not detected in neither of the two hydrolates. In terms of allelopathic activity, hydrolates showed a dose-dependent decreasing activity on germination and seedling growth of corn and redroot pigweed. Angelica and hop essential oils are mainly used in food, cosmetic and pharmaceutical industries because of their aroma. Hydrolates, as by-products, possess potential for application in agriculture as natural herbicides.",
publisher = "Springer",
journal = "Waste and Biomass Valorization",
title = "Chemical Composition and In Vitro Biological Activity of Angelica Root and Hop Strobile Essential Oils and Hydrolates",
pages = "883-867",
volume = "15",
doi = "10.1007/s12649-023-02209-1"
}
Lazarević, J., Aćimović, M., Pezo, L., Lončar, B., Konstantinović, B., Popov, M., Šovljanski, O., Travičić, V., Sikora, V.,& Vujisić, L.. (2024). Chemical Composition and In Vitro Biological Activity of Angelica Root and Hop Strobile Essential Oils and Hydrolates. in Waste and Biomass Valorization
Springer., 15, 867-883.
https://doi.org/10.1007/s12649-023-02209-1
Lazarević J, Aćimović M, Pezo L, Lončar B, Konstantinović B, Popov M, Šovljanski O, Travičić V, Sikora V, Vujisić L. Chemical Composition and In Vitro Biological Activity of Angelica Root and Hop Strobile Essential Oils and Hydrolates. in Waste and Biomass Valorization. 2024;15:867-883.
doi:10.1007/s12649-023-02209-1 .
Lazarević, Jovan, Aćimović, Milica, Pezo, Lato, Lončar, Biljana, Konstantinović, Bojan, Popov, Milena, Šovljanski, Olja, Travičić, Vanja, Sikora, Vladimir, Vujisić, Ljubodrag, "Chemical Composition and In Vitro Biological Activity of Angelica Root and Hop Strobile Essential Oils and Hydrolates" in Waste and Biomass Valorization, 15 (2024):867-883,
https://doi.org/10.1007/s12649-023-02209-1 . .
1

Chemical Composition, Antioxidant Potential, and Nutritional Evaluation of Cultivated Sorghum Grains: A Combined Experimental, Theoretical, and Multivariate Analysis

Jaćimović, Simona; Kiprovski, Biljana; Ristivojević, Petar; Dimić, Dušan; Nakarada, Đura; Dojčinović, Biljana; Sikora, Vladimir; Teslić, Nemanja; Pantelić, Nebojša

(Basel : MDPI, 2023)

TY  - JOUR
AU  - Jaćimović, Simona
AU  - Kiprovski, Biljana
AU  - Ristivojević, Petar
AU  - Dimić, Dušan
AU  - Nakarada, Đura
AU  - Dojčinović, Biljana
AU  - Sikora, Vladimir
AU  - Teslić, Nemanja
AU  - Pantelić, Nebojša
PY  - 2023
UR  - http://fiver.ifvcns.rs/handle/123456789/3647
AB  - Sorghum grain (Sorghum bicolor L. Moench) is a gluten-free cereal with excellent nutritional value and is a good source of antioxidants, including polyphenols, as well as minerals with proven health benefits. Herein, the phenolic composition, elemental profile, and antioxidant activity of sixteen food-grade sorghum grains (S1–S16) grown under agroecological conditions in Serbia were determined. Nine phenolic compounds characteristic of sorghum grains, such as luteolinidin, 5-methoxyluteolinidin, luteolidin derivative, luteolidin glucoside, apigeninidin, 7-methoxyapigeninidin, apigeninidin glucoside, and cyanidin derivative, were quantified. The antioxidant potential of the analyzed sorghum grains was evaluated by UV/Vis (DPPH, ABTS, and FRAP) and Electron Paramagnetic Resonance spectroscopy (hydroxyl and ascorbyl radical scavenging assays). The content of macro- and microelements was determined by Inductively Coupled Plasma Optical Emission spectroscopy. Theoretical daily intakes of selected major and trace elements were assessed and compared with the Recommended Daily Allowance or Adequate Intake. Sample S8 had the highest amount of phenolic compounds, while S4, S6, and S8 exhibited the strongest antioxidative potential. The sorghum studied could completely satisfy the daily needs of macro- (K, Mg, and P) and microelements (Se, Zn, Fe). Pattern recognition techniques confirmed the discrimination of samples based on phenolic profile and elemental analysis and recognized the main markers responsible for differences between the investigated samples. The reaction between hydroxyl radicals and luteolinidin/apigeninidin was investigated by Density Functional Theory and thermodynamically preferred mechanism was determined.
PB  - Basel : MDPI
T2  - Antioxidants (Basel)
T1  - Chemical Composition, Antioxidant Potential, and Nutritional Evaluation of Cultivated Sorghum Grains: A Combined Experimental, Theoretical, and Multivariate Analysis
IS  - 8
SP  - 1485
VL  - 12
DO  - 10.3390/antiox12081485
ER  - 
@article{
author = "Jaćimović, Simona and Kiprovski, Biljana and Ristivojević, Petar and Dimić, Dušan and Nakarada, Đura and Dojčinović, Biljana and Sikora, Vladimir and Teslić, Nemanja and Pantelić, Nebojša",
year = "2023",
abstract = "Sorghum grain (Sorghum bicolor L. Moench) is a gluten-free cereal with excellent nutritional value and is a good source of antioxidants, including polyphenols, as well as minerals with proven health benefits. Herein, the phenolic composition, elemental profile, and antioxidant activity of sixteen food-grade sorghum grains (S1–S16) grown under agroecological conditions in Serbia were determined. Nine phenolic compounds characteristic of sorghum grains, such as luteolinidin, 5-methoxyluteolinidin, luteolidin derivative, luteolidin glucoside, apigeninidin, 7-methoxyapigeninidin, apigeninidin glucoside, and cyanidin derivative, were quantified. The antioxidant potential of the analyzed sorghum grains was evaluated by UV/Vis (DPPH, ABTS, and FRAP) and Electron Paramagnetic Resonance spectroscopy (hydroxyl and ascorbyl radical scavenging assays). The content of macro- and microelements was determined by Inductively Coupled Plasma Optical Emission spectroscopy. Theoretical daily intakes of selected major and trace elements were assessed and compared with the Recommended Daily Allowance or Adequate Intake. Sample S8 had the highest amount of phenolic compounds, while S4, S6, and S8 exhibited the strongest antioxidative potential. The sorghum studied could completely satisfy the daily needs of macro- (K, Mg, and P) and microelements (Se, Zn, Fe). Pattern recognition techniques confirmed the discrimination of samples based on phenolic profile and elemental analysis and recognized the main markers responsible for differences between the investigated samples. The reaction between hydroxyl radicals and luteolinidin/apigeninidin was investigated by Density Functional Theory and thermodynamically preferred mechanism was determined.",
publisher = "Basel : MDPI",
journal = "Antioxidants (Basel)",
title = "Chemical Composition, Antioxidant Potential, and Nutritional Evaluation of Cultivated Sorghum Grains: A Combined Experimental, Theoretical, and Multivariate Analysis",
number = "8",
pages = "1485",
volume = "12",
doi = "10.3390/antiox12081485"
}
Jaćimović, S., Kiprovski, B., Ristivojević, P., Dimić, D., Nakarada, Đ., Dojčinović, B., Sikora, V., Teslić, N.,& Pantelić, N.. (2023). Chemical Composition, Antioxidant Potential, and Nutritional Evaluation of Cultivated Sorghum Grains: A Combined Experimental, Theoretical, and Multivariate Analysis. in Antioxidants (Basel)
Basel : MDPI., 12(8), 1485.
https://doi.org/10.3390/antiox12081485
Jaćimović S, Kiprovski B, Ristivojević P, Dimić D, Nakarada Đ, Dojčinović B, Sikora V, Teslić N, Pantelić N. Chemical Composition, Antioxidant Potential, and Nutritional Evaluation of Cultivated Sorghum Grains: A Combined Experimental, Theoretical, and Multivariate Analysis. in Antioxidants (Basel). 2023;12(8):1485.
doi:10.3390/antiox12081485 .
Jaćimović, Simona, Kiprovski, Biljana, Ristivojević, Petar, Dimić, Dušan, Nakarada, Đura, Dojčinović, Biljana, Sikora, Vladimir, Teslić, Nemanja, Pantelić, Nebojša, "Chemical Composition, Antioxidant Potential, and Nutritional Evaluation of Cultivated Sorghum Grains: A Combined Experimental, Theoretical, and Multivariate Analysis" in Antioxidants (Basel), 12, no. 8 (2023):1485,
https://doi.org/10.3390/antiox12081485 . .
3
2

Multistep Approach Points to Compounds Responsible for the Biological Activity and Safety of Hydrolates from Nine Lamiaceae Medicinal Plants on Human Skin Fibroblasts

Smiljanić, Katarina; Prodić, Ivana; Trifunović, Sara; Krstić Ristivojević, Maja; Aćimović, Milica; Stanković Jeremić, Jovana; Lončar, Biljana; Tešević, Vele

(Basel : MDPI, 2023)

TY  - JOUR
AU  - Smiljanić, Katarina
AU  - Prodić, Ivana
AU  - Trifunović, Sara
AU  - Krstić Ristivojević, Maja
AU  - Aćimović, Milica
AU  - Stanković Jeremić, Jovana
AU  - Lončar, Biljana
AU  - Tešević, Vele
PY  - 2023
UR  - http://fiver.ifvcns.rs/handle/123456789/4128
AB  - As byproducts of essential oil distillation, hydrolates are used in natural cosmetics/biomedicine due to their beneficial skin effects. However, data on their safety with relevant biological targets, such as human skin cells, are scarce. Therefore, we have tested nine hydrolates from the Lamiaceae family with skin fibroblasts that are responsible for extracellular collagenous matrix builds. Thyme, oregano, and winter savoury hydrolates showed several times higher total phenolics, which correlated strongly with their radical scavenging and antioxidative capacity; there was no correlation between their viability profiles and the reducing sugar levels. No proteins/peptides were detected.
PB  - Basel : MDPI
T2  - Antioxidants - Basel
T1  - Multistep Approach Points to Compounds Responsible for the Biological Activity and Safety of Hydrolates from Nine Lamiaceae Medicinal Plants on Human Skin Fibroblasts
IS  - 11
SP  - 1988
VL  - 12
DO  - 10.3390/antiox12111988
ER  - 
@article{
author = "Smiljanić, Katarina and Prodić, Ivana and Trifunović, Sara and Krstić Ristivojević, Maja and Aćimović, Milica and Stanković Jeremić, Jovana and Lončar, Biljana and Tešević, Vele",
year = "2023",
abstract = "As byproducts of essential oil distillation, hydrolates are used in natural cosmetics/biomedicine due to their beneficial skin effects. However, data on their safety with relevant biological targets, such as human skin cells, are scarce. Therefore, we have tested nine hydrolates from the Lamiaceae family with skin fibroblasts that are responsible for extracellular collagenous matrix builds. Thyme, oregano, and winter savoury hydrolates showed several times higher total phenolics, which correlated strongly with their radical scavenging and antioxidative capacity; there was no correlation between their viability profiles and the reducing sugar levels. No proteins/peptides were detected.",
publisher = "Basel : MDPI",
journal = "Antioxidants - Basel",
title = "Multistep Approach Points to Compounds Responsible for the Biological Activity and Safety of Hydrolates from Nine Lamiaceae Medicinal Plants on Human Skin Fibroblasts",
number = "11",
pages = "1988",
volume = "12",
doi = "10.3390/antiox12111988"
}
Smiljanić, K., Prodić, I., Trifunović, S., Krstić Ristivojević, M., Aćimović, M., Stanković Jeremić, J., Lončar, B.,& Tešević, V.. (2023). Multistep Approach Points to Compounds Responsible for the Biological Activity and Safety of Hydrolates from Nine Lamiaceae Medicinal Plants on Human Skin Fibroblasts. in Antioxidants - Basel
Basel : MDPI., 12(11), 1988.
https://doi.org/10.3390/antiox12111988
Smiljanić K, Prodić I, Trifunović S, Krstić Ristivojević M, Aćimović M, Stanković Jeremić J, Lončar B, Tešević V. Multistep Approach Points to Compounds Responsible for the Biological Activity and Safety of Hydrolates from Nine Lamiaceae Medicinal Plants on Human Skin Fibroblasts. in Antioxidants - Basel. 2023;12(11):1988.
doi:10.3390/antiox12111988 .
Smiljanić, Katarina, Prodić, Ivana, Trifunović, Sara, Krstić Ristivojević, Maja, Aćimović, Milica, Stanković Jeremić, Jovana, Lončar, Biljana, Tešević, Vele, "Multistep Approach Points to Compounds Responsible for the Biological Activity and Safety of Hydrolates from Nine Lamiaceae Medicinal Plants on Human Skin Fibroblasts" in Antioxidants - Basel, 12, no. 11 (2023):1988,
https://doi.org/10.3390/antiox12111988 . .
2
1

Comparison of volatile compounds from clary sage (Salvia sclarea L.) verticillasters essential oil and hydrolate

Aćimović, Milica; Lončar, Biljana; Jeliazkov, Valtcho; Pezo, Lato; Ljujić, Jovana; Miljković, Ana; Vujisić, Ljubodrag

(Taylor & Francis, 2022)

TY  - JOUR
AU  - Aćimović, Milica
AU  - Lončar, Biljana
AU  - Jeliazkov, Valtcho
AU  - Pezo, Lato
AU  - Ljujić, Jovana
AU  - Miljković, Ana
AU  - Vujisić, Ljubodrag
PY  - 2022
UR  - http://fiver.ifvcns.rs/handle/123456789/3019
AB  - The volatile compounds of essential oil (EO) and corresponding hydrolate (HY) extracted by steam distillation from clary sage (Salvia sclarea L.) cv “Domaća mirisna” grown in Serbia were identified using gas hromatography/mass spectrometry (GC/MS). The most abundant compounds of EO were linalyl acetate (43.5%) and linalool (25.9%), followed by α-terpineol, germacrene D, and geranyl acetate. In the corresponding HY (recovered water-soluble fraction of EO) the dominant were linalool (63.3%) and α-terpineol (26.8%), followed by geraniol. These differences in composition between clary sage EO and HY could be explained by linalyl acetate's low water solubility. Clustering of 55 clary sage EO accessions (from literature) shows the presence of several chemotypes: linalyl acetate+linalool, linalyl acetate+sclareol, linalool+geranyl acetate, germacrene D+β-caryophyllene, caryophyllene oxide, and three unspecified chemotypes (geranyl acetate, methyl chavicol, and α-terpineol). According to this classification, clary sage cv “Domaća mirisna” belongs to a moderate linalyl acetate chemotype (between 19.8 and 45.7%). Further investigations need to focus on clary sage HY and their potential applications because HYs could increase economic gain as a by-product. However, their utilization for other purposes (cosmetic, postharvest fruit processing, organic agriculture, etc.) could be a safe solution for wastewater produced during EO distillation.
PB  - Taylor & Francis
T2  - Journal of Essential Oil Bearing Plants
T1  - Comparison of volatile compounds from clary sage (Salvia sclarea L.) verticillasters essential oil and hydrolate
EP  - 570
IS  - 3
SP  - 555
VL  - 25
DO  - 10.1080/0972060X.2022.2105662
ER  - 
@article{
author = "Aćimović, Milica and Lončar, Biljana and Jeliazkov, Valtcho and Pezo, Lato and Ljujić, Jovana and Miljković, Ana and Vujisić, Ljubodrag",
year = "2022",
abstract = "The volatile compounds of essential oil (EO) and corresponding hydrolate (HY) extracted by steam distillation from clary sage (Salvia sclarea L.) cv “Domaća mirisna” grown in Serbia were identified using gas hromatography/mass spectrometry (GC/MS). The most abundant compounds of EO were linalyl acetate (43.5%) and linalool (25.9%), followed by α-terpineol, germacrene D, and geranyl acetate. In the corresponding HY (recovered water-soluble fraction of EO) the dominant were linalool (63.3%) and α-terpineol (26.8%), followed by geraniol. These differences in composition between clary sage EO and HY could be explained by linalyl acetate's low water solubility. Clustering of 55 clary sage EO accessions (from literature) shows the presence of several chemotypes: linalyl acetate+linalool, linalyl acetate+sclareol, linalool+geranyl acetate, germacrene D+β-caryophyllene, caryophyllene oxide, and three unspecified chemotypes (geranyl acetate, methyl chavicol, and α-terpineol). According to this classification, clary sage cv “Domaća mirisna” belongs to a moderate linalyl acetate chemotype (between 19.8 and 45.7%). Further investigations need to focus on clary sage HY and their potential applications because HYs could increase economic gain as a by-product. However, their utilization for other purposes (cosmetic, postharvest fruit processing, organic agriculture, etc.) could be a safe solution for wastewater produced during EO distillation.",
publisher = "Taylor & Francis",
journal = "Journal of Essential Oil Bearing Plants",
title = "Comparison of volatile compounds from clary sage (Salvia sclarea L.) verticillasters essential oil and hydrolate",
pages = "570-555",
number = "3",
volume = "25",
doi = "10.1080/0972060X.2022.2105662"
}
Aćimović, M., Lončar, B., Jeliazkov, V., Pezo, L., Ljujić, J., Miljković, A.,& Vujisić, L.. (2022). Comparison of volatile compounds from clary sage (Salvia sclarea L.) verticillasters essential oil and hydrolate. in Journal of Essential Oil Bearing Plants
Taylor & Francis., 25(3), 555-570.
https://doi.org/10.1080/0972060X.2022.2105662
Aćimović M, Lončar B, Jeliazkov V, Pezo L, Ljujić J, Miljković A, Vujisić L. Comparison of volatile compounds from clary sage (Salvia sclarea L.) verticillasters essential oil and hydrolate. in Journal of Essential Oil Bearing Plants. 2022;25(3):555-570.
doi:10.1080/0972060X.2022.2105662 .
Aćimović, Milica, Lončar, Biljana, Jeliazkov, Valtcho, Pezo, Lato, Ljujić, Jovana, Miljković, Ana, Vujisić, Ljubodrag, "Comparison of volatile compounds from clary sage (Salvia sclarea L.) verticillasters essential oil and hydrolate" in Journal of Essential Oil Bearing Plants, 25, no. 3 (2022):555-570,
https://doi.org/10.1080/0972060X.2022.2105662 . .
7
5

Comparison of volatile compounds from clary sage (Salvia sclarea L.) verticillasters essential oil and hydrolate

Aćimović, Milica; Lončar, Biljana; Jeliazkov, Valtcho; Pezo, Lato; Ljujić, Jovana; Miljković, Ana; Vujisić, Ljubodrag

(Taylor & Francis, 2022)

TY  - JOUR
AU  - Aćimović, Milica
AU  - Lončar, Biljana
AU  - Jeliazkov, Valtcho
AU  - Pezo, Lato
AU  - Ljujić, Jovana
AU  - Miljković, Ana
AU  - Vujisić, Ljubodrag
PY  - 2022
UR  - http://fiver.ifvcns.rs/handle/123456789/3020
AB  - The volatile compounds of essential oil (EO) and corresponding hydrolate (HY) extracted by steam distillation from clary sage (Salvia sclarea L.) cv “Domaća mirisna” grown in Serbia were identified using gas hromatography/mass spectrometry (GC/MS). The most abundant compounds of EO were linalyl acetate (43.5%) and linalool (25.9%), followed by α-terpineol, germacrene D, and geranyl acetate. In the corresponding HY (recovered water-soluble fraction of EO) the dominant were linalool (63.3%) and α-terpineol (26.8%), followed by geraniol. These differences in composition between clary sage EO and HY could be explained by linalyl acetate's low water solubility. Clustering of 55 clary sage EO accessions (from literature) shows the presence of several chemotypes: linalyl acetate+linalool, linalyl acetate+sclareol, linalool+geranyl acetate, germacrene D+β-caryophyllene, caryophyllene oxide, and three unspecified chemotypes (geranyl acetate, methyl chavicol, and α-terpineol). According to this classification, clary sage cv “Domaća mirisna” belongs to a moderate linalyl acetate chemotype (between 19.8 and 45.7%). Further investigations need to focus on clary sage HY and their potential applications because HYs could increase economic gain as a by-product. However, their utilization for other purposes (cosmetic, postharvest fruit processing, organic agriculture, etc.) could be a safe solution for wastewater produced during EO distillation.
PB  - Taylor & Francis
T2  - Journal of Essential Oil Bearing Plants
T1  - Comparison of volatile compounds from clary sage (Salvia sclarea L.) verticillasters essential oil and hydrolate
EP  - 570
IS  - 3
SP  - 555
VL  - 25
DO  - 10.1080/0972060X.2022.2105662
ER  - 
@article{
author = "Aćimović, Milica and Lončar, Biljana and Jeliazkov, Valtcho and Pezo, Lato and Ljujić, Jovana and Miljković, Ana and Vujisić, Ljubodrag",
year = "2022",
abstract = "The volatile compounds of essential oil (EO) and corresponding hydrolate (HY) extracted by steam distillation from clary sage (Salvia sclarea L.) cv “Domaća mirisna” grown in Serbia were identified using gas hromatography/mass spectrometry (GC/MS). The most abundant compounds of EO were linalyl acetate (43.5%) and linalool (25.9%), followed by α-terpineol, germacrene D, and geranyl acetate. In the corresponding HY (recovered water-soluble fraction of EO) the dominant were linalool (63.3%) and α-terpineol (26.8%), followed by geraniol. These differences in composition between clary sage EO and HY could be explained by linalyl acetate's low water solubility. Clustering of 55 clary sage EO accessions (from literature) shows the presence of several chemotypes: linalyl acetate+linalool, linalyl acetate+sclareol, linalool+geranyl acetate, germacrene D+β-caryophyllene, caryophyllene oxide, and three unspecified chemotypes (geranyl acetate, methyl chavicol, and α-terpineol). According to this classification, clary sage cv “Domaća mirisna” belongs to a moderate linalyl acetate chemotype (between 19.8 and 45.7%). Further investigations need to focus on clary sage HY and their potential applications because HYs could increase economic gain as a by-product. However, their utilization for other purposes (cosmetic, postharvest fruit processing, organic agriculture, etc.) could be a safe solution for wastewater produced during EO distillation.",
publisher = "Taylor & Francis",
journal = "Journal of Essential Oil Bearing Plants",
title = "Comparison of volatile compounds from clary sage (Salvia sclarea L.) verticillasters essential oil and hydrolate",
pages = "570-555",
number = "3",
volume = "25",
doi = "10.1080/0972060X.2022.2105662"
}
Aćimović, M., Lončar, B., Jeliazkov, V., Pezo, L., Ljujić, J., Miljković, A.,& Vujisić, L.. (2022). Comparison of volatile compounds from clary sage (Salvia sclarea L.) verticillasters essential oil and hydrolate. in Journal of Essential Oil Bearing Plants
Taylor & Francis., 25(3), 555-570.
https://doi.org/10.1080/0972060X.2022.2105662
Aćimović M, Lončar B, Jeliazkov V, Pezo L, Ljujić J, Miljković A, Vujisić L. Comparison of volatile compounds from clary sage (Salvia sclarea L.) verticillasters essential oil and hydrolate. in Journal of Essential Oil Bearing Plants. 2022;25(3):555-570.
doi:10.1080/0972060X.2022.2105662 .
Aćimović, Milica, Lončar, Biljana, Jeliazkov, Valtcho, Pezo, Lato, Ljujić, Jovana, Miljković, Ana, Vujisić, Ljubodrag, "Comparison of volatile compounds from clary sage (Salvia sclarea L.) verticillasters essential oil and hydrolate" in Journal of Essential Oil Bearing Plants, 25, no. 3 (2022):555-570,
https://doi.org/10.1080/0972060X.2022.2105662 . .
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Weather conditions Influence on lavandin essential oil and hydrolate quality

Aćimović, Milica; Lončar, Biljana; Stanković Jeremić, Jovana; Cvetković, Mirjana; Pezo, Lato; Pezo, Milada; Todosijević, Marina; Tešević, Vele

(Basel : MDPI, 2022)

TY  - JOUR
AU  - Aćimović, Milica
AU  - Lončar, Biljana
AU  - Stanković Jeremić, Jovana
AU  - Cvetković, Mirjana
AU  - Pezo, Lato
AU  - Pezo, Milada
AU  - Todosijević, Marina
AU  - Tešević, Vele
PY  - 2022
UR  - http://fiver.ifvcns.rs/handle/123456789/2540
AB  - Lavandula sp. essential oil and hydrolate are commercially valuable in various industry branches with the potential for wide-ranging applications. This study aimed to evaluate the quality of these products obtained from L. x intermedia cv. ‘Budrovka’ for the first time cultivated on Fruška Gora Mt. (Serbia) during three successive seasons (2019, 2020, and 2021). Essential oil extraction was obtained by steam distillation, and the composition and influence of weather conditions were also assessed, using flowering tops. The obtained essential oils and hydrolates were analysed by gas chromatography with a flame ionization detector (GC-FID) and gas chromatography coupled to mass spectrometry (GC-MS). A linear regression model was developed to predict L. x intermedia cv. ‘Budrovka’ essential oil volatile compound content and hydrolate composition during three years, according to temperature and precipitation data, and the appropriate regression coefficients were calculated, while the correlation analysis was employed to analyse the correlations in hydrolate and essential oil compounds. To completely describe the structure of the research data that would present a better insight into the similarities and differences among the diverse L. x intermedia cv. ‘Budrovka’ samples, the PCA was used. The most dominant in L. intermedia cv. ‘Budrovka’ essential oil and hydrolate were oxygenated monoterpenes: linalool, 1,8-cineole, borneol, linalyl acetate, and terpinene-4-ol. It is established that the temperature was positively correlated with all essential oil and hydrolate compounds. The precipitations were positively correlated with the main compounds (linalool, 1,8-cineole, and borneol), while the other compounds’ content negatively correlated to precipitation. The results indicated that Fruška Gora Mt. has suitable agro-ecological requirements for cultivating Lavandula sp. and providing satisfactory essential oil and hydrolate
PB  - Basel : MDPI
T2  - Horticulturae (Basel)
T1  - Weather conditions Influence on lavandin essential oil and hydrolate quality
SP  - 281
VL  - 8
DO  - 10.3390/horticulturae8040281
ER  - 
@article{
author = "Aćimović, Milica and Lončar, Biljana and Stanković Jeremić, Jovana and Cvetković, Mirjana and Pezo, Lato and Pezo, Milada and Todosijević, Marina and Tešević, Vele",
year = "2022",
abstract = "Lavandula sp. essential oil and hydrolate are commercially valuable in various industry branches with the potential for wide-ranging applications. This study aimed to evaluate the quality of these products obtained from L. x intermedia cv. ‘Budrovka’ for the first time cultivated on Fruška Gora Mt. (Serbia) during three successive seasons (2019, 2020, and 2021). Essential oil extraction was obtained by steam distillation, and the composition and influence of weather conditions were also assessed, using flowering tops. The obtained essential oils and hydrolates were analysed by gas chromatography with a flame ionization detector (GC-FID) and gas chromatography coupled to mass spectrometry (GC-MS). A linear regression model was developed to predict L. x intermedia cv. ‘Budrovka’ essential oil volatile compound content and hydrolate composition during three years, according to temperature and precipitation data, and the appropriate regression coefficients were calculated, while the correlation analysis was employed to analyse the correlations in hydrolate and essential oil compounds. To completely describe the structure of the research data that would present a better insight into the similarities and differences among the diverse L. x intermedia cv. ‘Budrovka’ samples, the PCA was used. The most dominant in L. intermedia cv. ‘Budrovka’ essential oil and hydrolate were oxygenated monoterpenes: linalool, 1,8-cineole, borneol, linalyl acetate, and terpinene-4-ol. It is established that the temperature was positively correlated with all essential oil and hydrolate compounds. The precipitations were positively correlated with the main compounds (linalool, 1,8-cineole, and borneol), while the other compounds’ content negatively correlated to precipitation. The results indicated that Fruška Gora Mt. has suitable agro-ecological requirements for cultivating Lavandula sp. and providing satisfactory essential oil and hydrolate",
publisher = "Basel : MDPI",
journal = "Horticulturae (Basel)",
title = "Weather conditions Influence on lavandin essential oil and hydrolate quality",
pages = "281",
volume = "8",
doi = "10.3390/horticulturae8040281"
}
Aćimović, M., Lončar, B., Stanković Jeremić, J., Cvetković, M., Pezo, L., Pezo, M., Todosijević, M.,& Tešević, V.. (2022). Weather conditions Influence on lavandin essential oil and hydrolate quality. in Horticulturae (Basel)
Basel : MDPI., 8, 281.
https://doi.org/10.3390/horticulturae8040281
Aćimović M, Lončar B, Stanković Jeremić J, Cvetković M, Pezo L, Pezo M, Todosijević M, Tešević V. Weather conditions Influence on lavandin essential oil and hydrolate quality. in Horticulturae (Basel). 2022;8:281.
doi:10.3390/horticulturae8040281 .
Aćimović, Milica, Lončar, Biljana, Stanković Jeremić, Jovana, Cvetković, Mirjana, Pezo, Lato, Pezo, Milada, Todosijević, Marina, Tešević, Vele, "Weather conditions Influence on lavandin essential oil and hydrolate quality" in Horticulturae (Basel), 8 (2022):281,
https://doi.org/10.3390/horticulturae8040281 . .
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