189
Views
57
CrossRef citations to date
0
Altmetric
Antimicrobial/Biological Activity

Chemical and Antimicrobial Properties of Essential Oils of Five Moroccan Pinaceae

, , &
Pages 298-302 | Received 01 May 1999, Accepted 01 Oct 2000, Published online: 08 Dec 2011

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (5)

Wissem Aidi Wannes, Sarra Dakhlaoui, Hajer Limam, Sonia Tammar & Kamel Msaada. (2021) Chemical profile, allelopathic, antibacterial and antioxidant potential of the essential oil from Aleppo pine (Pinus halepensis Miller) needles. Archives of Phytopathology and Plant Protection 54:19-20, pages 2483-2499.
Read now
Tahar Dob, Tayeb Berramdane & Chaabane Chelghoum. (2007) Essential Oil Composition of Pinus halepensis Mill. from Three Different Regions of Algeria. Journal of Essential Oil Research 19:1, pages 40-43.
Read now
MarwanW. Ghosn, NajatA. Saliba & SalmaY. Talhouk. (2006) Chemical Composition of the Needle-Twig Oils of Pinus brutia Ten. Journal of Essential Oil Research 18:4, pages 445-447.
Read now
B. Chebli, M. Hmamouchi, M. Achouri & L. M. Idrissi Hassani. (2004) Composition and in vitro Fungitoxic Activity of 19 Essential Oils Against Two Post-Harvest Pathogens. Journal of Essential Oil Research 16:5, pages 507-511.
Read now
Kanyanga Cimanga, Sandra Apers, Tess de Bruyne, Sabine Van Miert, Nina Hermans, Jozef Totté, Luc Pieters, ArnoldJ. Vlietinck, Kabangu Kambu & Lutete Tona. (2002) Chemical Composition and Antifungal Activity of Essential Oils of Some Aromatic Medicinal Plants Growing in the Democratic Republic of Congo. Journal of Essential Oil Research 14:5, pages 382-387.
Read now

Articles from other publishers (52)

Rania M. Kamal, Manal M. Sabry, Ali M. El-Halawany, Mostafa A. Rabie, Nesrine S. El Sayed, Mohamed S. Hifnawy & Inas Y. Younis. (2024) GC-MS analysis and the effect of topical application of essential oils of Pinus canariensis C.Sm., Cupressus lusitanica Mill. and Cupressus arizonica Greene aerial parts in Imiquimod–Induced Psoriasis in Mice. Journal of Ethnopharmacology 318, pages 116947.
Crossref
Dhouha Alimi, Azhar Hajri, Selim Jallouli & Hichem Sebai. (2023) Study on In Vitro Acaricidal Proprieties of Pinus sylvestris Against Two Ectoparasites of Veterinary Importance Dermanyssus gallinae and Hyalomma scupense. Waste and Biomass Valorization.
Crossref
Stefania Garzoli, Valentina Vaglia, Marcello Iriti & Sara Vitalini. (2023) Vapor and Liquid Phase Profiles of Essential Oils from Abies, Picea and Pinus Species and Their Phytotoxic Interactions with Weed Growth in Pre- and Post-Emergence Conditions. Plants 12:5, pages 1172.
Crossref
Mansureh Ghavam. (2022) A GC-MC analysis of chemical compounds and identification of the antibacterial characteristics of the essential oil of two species exclusive to Iranian habitats: New chemotypes. PLOS ONE 17:10, pages e0273987.
Crossref
Ana Ruas, Angelica Graça, Joana Marto, Lídia Gonçalves, Ana Oliveira, Alexandra Nogueira da Silva, Madalena Pimentel, Artur Mendes Moura, Ana Teresa Serra, Ana Cristina Figueiredo & Helena M. Ribeiro. (2022) Chemical Characterization and Bioactivity of Commercial Essential Oils and Hydrolates Obtained from Portuguese Forest Logging and Thinning. Molecules 27:11, pages 3572.
Crossref
Elaissi Ameur, Moumni Essahli Sarra, khtatfa Takoua, Kouja Mariem, Abid Nabil, Frederic Lynen & Khouja Mohamed Larbi. (2022) Chemical composition of five Tunisian Pinus Species’ essential oils and effect of their blends on Otitis infection. Industrial Crops and Products 180, pages 114688.
Crossref
Abderrahmen Merghni, Mohamed Ali Lassoued, Bakoliarisoa Nivomalala Voahangy Rasoanirina, Sarra Moumni & Maha Mastouri. (2022) Characterization of Turpentine nanoemulsion and assessment of its antibiofilm potential against methicillin-resistant Staphylococcus aureus. Microbial Pathogenesis 166, pages 105530.
Crossref
Subramanian Thangaleela, Bhagavathi Sundaram Sivamaruthi, Periyanaina Kesika, Muruganantham Bharathi, Wipada Kunaviktikul, Areewan Klunklin, Chatnithit Chanthapoon & Chaiyavat Chaiyasut. (2022) Essential Oils, Phytoncides, Aromachology, and Aromatherapy—A Review. Applied Sciences 12:9, pages 4495.
Crossref
Mualla BALABAN UÇAR & Oktay GÖNÜLTAŞ. (2022) Geographical Variation of Essential Oil of Pinus pinea Needles in TurkeyTürkiye’de Fıstık çamı (Pinus pinea) İbresi Uçucu Yağının Coğrafi Varyasyonu. Kastamonu Üniversitesi Orman Fakültesi Dergisi 22:1, pages 78-84.
Crossref
Haidy Gad, Eman Al‐Sayed & Iriny Ayoub. (2021) Phytochemical discrimination of Pinus species based on GC–MS and ATR‐IR analyses and their impact on Helicobacter pylori . Phytochemical Analysis 32:5, pages 820-835.
Crossref
Nafila Zouaghi, Nour El Houda Bensiradj, Carlos Cavaleiro, Boubekeur Nadjemi & Mohamed Trari. (2020) Phytochemical Study and Antibacterial Effects of Fraxinus angustifolia Vahl (Algeria): Experimental and Computational Investigations. Waste and Biomass Valorization 12:7, pages 3605-3616.
Crossref
Ahu DEMİRTAŞ. (2021) Assessing the susceptibility of some gut bacteria to the extract from needles of Turkish pine. Mehmet Akif Ersoy Üniversitesi Sağlık Bilimleri Enstitüsü Dergisi 9:1, pages 1-6.
Crossref
Nasreddine El Omari, Fatima Ezzahrae Guaouguaou, Naoual El Menyiy, Taoufiq Benali, Tariq Aanniz, Imane Chamkhi, Abdelaali Balahbib, Douae Taha, Mohammad Ali Shariati, Ghokhan Zengin, Mohamed El-Shazly & Abdelhakim Bouyahya. (2021) Phytochemical and biological activities of Pinus halepensis mill., and their ethnomedicinal use. Journal of Ethnopharmacology 268, pages 113661.
Crossref
Shu-xin Zhu, Fei-fei Hu, Shuang-yu He, Quan Qiu, Yan Su, Qian He & Ji-yue Li. (2021) Comprehensive Evaluation of Healthcare Benefits of Different Forest Types: A Case Study in Shimen National Forest Park, China. Forests 12:2, pages 207.
Crossref
Stefania Garzoli, Valentina Laghezza Masci, Valentina Caradonna, Antonio Tiezzi, Pierluigi Giacomello & Elisa Ovidi. (2021) Liquid and Vapor Phase of Four Conifer-Derived Essential Oils: Comparison of Chemical Compositions and Antimicrobial and Antioxidant Properties. Pharmaceuticals 14:2, pages 134.
Crossref
Jorge M. S. Faria & Ana Margarida Rodrigues. (2021) Metabolomic Variability in the Volatile Composition of Essential Oils from Pinus pinea and P. pinaster. Metabolomic Variability in the Volatile Composition of Essential Oils from Pinus pinea and P. pinaster.
Massimo E. Maffei. (2020) Plant Natural Sources of the Endocannabinoid (E)-β-Caryophyllene: A Systematic Quantitative Analysis of Published Literature. International Journal of Molecular Sciences 21:18, pages 6540.
Crossref
Nader A. Ashmawy, Dunia A. Al Farraj, Mohamed Z. M. Salem, Mohamed S. Elshikh, Roua Al-Kufaidy, Mariyam K. Alshammari & Abdelfattah Z. M. Salem. (2018) Potential impacts of Pinus halepensis Miller trees as a source of phytochemical compounds: antibacterial activity of the cones essential oil and n-butanol extract. Agroforestry Systems 94:4, pages 1403-1413.
Crossref
Youngseok HAM, Jiyoon YANG, Won-Sil CHOI, Byoung-Jun AHN & Mi-Jin PARK. (2020) Antibacterial Activity of Essential Oils from Pinaceae Leaves Against Fish Pathogens. Journal of the Korean Wood Science and Technology 48:4, pages 527-547.
Crossref
Junsung Woo & C. Justin Lee. (2020) Sleep-enhancing Effects of Phytoncide Via Behavioral, Electrophysiological, and Molecular Modeling Approaches. Experimental Neurobiology 29:2, pages 120-129.
Crossref
Sanae Akkaoui, Anders Johansson, Maâmar Yagoubi, Dorte Haubek, Adnane El hamidi, Sana Rida, Rolf Claesson & OumKeltoum Ennibi. (2020) Chemical Composition, Antimicrobial activity, In Vitro Cytotoxicity and Leukotoxin Neutralization of Essential Oil from Origanum vulgare against Aggregatibacter actinomycetemcomitans. Pathogens 9:3, pages 192.
Crossref
Kirima John Mary, Moses Okuta & Timothy Omara. (2020) Chemical composition of essential oils from Pinus caribaea Morelet needles. French-Ukrainian Journal of Chemistry 8:1, pages 142-148.
Crossref
Z. Chekroud, A. Kheffif & R. Bassout. (2019) Valorisation of Algerian Medicinal Plants: Inula viscosa L. A Future Source of Antibacterial Drugs. Asian Journal of Scientific Research 13:1, pages 58-66.
Crossref
Zorica S. Mitić, Boris Jovanović, Snežana Č. Jovanović, Zorica Z. Stojanović-Radić, Tatjana Mihajilov-Krstev, Nikola M. Jovanović, Biljana M. Nikolić, Petar D. Marin, Bojan K. Zlatković & Gordana S. Stojanović. (2019) Essential oils of Pinus halepensis and P. heldreichii: Chemical composition, antimicrobial and insect larvicidal activity. Industrial Crops and Products 140, pages 111702.
Crossref
Junsung Woo, Hyejin Yang, Minseok Yoon, Changdev G. Gadhe, Ae Nim Pae, Suengmok Cho & C. Justin Lee. (2019) 3-Carene, a Phytoncide from Pine Tree Has a Sleep-enhancing Effect by Targeting the GABA A -benzodiazepine Receptors . Experimental Neurobiology 28:5, pages 593-601.
Crossref
Paula Alexandra Postu, Fatima Zahra Sadiki, Mostafa El Idrissi, Oana Cioanca, Adriana Trifan, Monica Hancianu & Lucian Hritcu. (2019) Pinus halepensis essential oil attenuates the toxic Alzheimer’s amyloid beta (1-42)-induced memory impairment and oxidative stress in the rat hippocampus. Biomedicine & Pharmacotherapy 112, pages 108673.
Crossref
Joséphine Ottavioli, Mathieu Paoli, Joseph Casanova, Félix Tomi & Ange Bighelli. (2019) Identification and Quantitative Determination of Resin Acids from Corsican Pinus pinaster Aiton Oleoresin Using 13 C‐NMR Spectroscopy . Chemistry & Biodiversity 16:1.
Crossref
Aikaterini Koutsaviti, Efstathia Ioannou, Olga Tzakou, Panos Petrakis & Vassilios Roussis. 2017. Green Pesticides Handbook. Green Pesticides Handbook 245 268 .
Zineb Djerrad, Abderrahmane Djouahri & Leila Kadik. (2017) Variability of Pinus halepensis Mill . Essential Oils and Their Antioxidant Activities Depending on the Stage of Growth During Vegetative Cycle . Chemistry & Biodiversity 14:4, pages e1600340.
Crossref
Ana M. Rodrigues, Marta D. Mendes, Ana S. Lima, Pedro M. Barbosa, Lia Ascensão, José G. Barroso, Luis G. Pedro, Manuel M. Mota & A. Cristina Figueiredo. (2017) Pinus halepensis , Pinus pinaster , Pinus pinea and Pinus sylvestris Essential Oils Chemotypes and Monoterpene Hydrocarbon Enantiomers, before and after Inoculation with the Pinewood Nematode Bursaphelenchus xylophilus . Chemistry & Biodiversity 14:1, pages e1600153.
Crossref
Hyejin Yang, Junsung Woo, Ae Nim Pae, Min Young Um, Nam-Chul Cho, Ki Duk Park, Minseok Yoon, Jiyoung Kim, C. Justin Lee & Suengmok Cho. (2016) α -Pinene, a Major Constituent of Pine Tree Oils, Enhances Non-Rapid Eye Movement Sleep in Mice through GABA A -benzodiazepine Receptors . Molecular Pharmacology 90:5, pages 530-539.
Crossref
Anne-Marie Nam, Félix Tomi, Marc Gibernau, Joseph Casanova & Ange Bighelli. (2016) Composition and Chemical Variability of the Needle Oil from Pinus halepensis growing in Corsica . Chemistry & Biodiversity 13:4, pages 380-386.
Crossref
Zineb Djerrad, Leila Kadik & Abderrahmane Djouahri. (2015) Chemical variability and antioxidant activities among Pinus halepensis Mill. essential oils provenances, depending on geographic variation and environmental conditions. Industrial Crops and Products 74, pages 440-449.
Crossref
Jun Mei, Qizhen Guo, Yan Wu & Yunfei Li. (2015) Evaluation of Chitosan-Starch–Based Edible Coating To Improve the Shelf Life of Bod Ljong Cheese. Journal of Food Protection 78:7, pages 1327-1334.
Crossref
Katerina Koutsaviti, Athanassios Giatropoulos, Danae Pitarokili, Dimitrios Papachristos, Antonios Michaelakis & Olga Tzakou. (2014) Greek Pinus essential oils: larvicidal activity and repellency against Aedes albopictus (Diptera: Culicidae). Parasitology Research 114:2, pages 583-592.
Crossref
Zouaghi Nafila, Bellel Cherifa, Cavaleiro Carlos, Nadjemi Boubekeur & Yousfi Mohamed. (2015) Identification of volatile compounds, antimicrobial properties and antioxidant activity from leaves, cones and stems of Cupressus sempervirens from Algeria. African Journal of Microbiology Research 9:2, pages 83-90.
Crossref
Efstathia Ioannou, Aikaterini Koutsaviti, Olga Tzakou & Vassilios Roussis. (2014) The genus Pinus: a comparative study on the needle essential oil composition of 46 pine species. Phytochemistry Reviews 13:4, pages 741-768.
Crossref
Anne-Marie Nam, Joseph Casanova, Félix Tomi & Ange Bighelli. (2014) Composition and Chemical Variability of Corsican Pinus halepensis Cone Oil . Natural Product Communications 9:9, pages 1934578X1400900.
Crossref
Nadia Fekih, Hocine Allali, Salima Merghache, Faïza Chaïb, Djamila Merghache, Mohamed El Amine, Nassim Djabou, Alain Muselli, Boufeldja Tabti & Jean Costa. (2014) Chemical composition and antibacterial activity of Pinus halepensis Miller growing in West Northern of Algeria. Asian Pacific Journal of Tropical Disease 4:2, pages 97-103.
Crossref
Jun Mei, Yilin Yuan, Qizhen Guo, Yan Wu, Yunfei Li & Huaning Yu. (2013) Characterization and antimicrobial properties of water chestnut starch-chitosan edible films. International Journal of Biological Macromolecules 61, pages 169-174.
Crossref
Madiha Dhibi, Guido Flamini, Manel Issaoui & Mohamed Hammami. (2012) Volatile compounds and oxidative stability of Pinus halepensis Mill. seed oil under heating conditions . International Journal of Food Science & Technology 47:6, pages 1158-1164.
Crossref
Carlos Arrabal, Mar?a Concepci?n Garc?a-Vallejo, Estrella Cadahia, Manuel Cortijo & Brigida Fern?ndez de Sim?n. (2011) Characterization of two chemotypes of Pinus pinaster by their terpene and acid patterns in needles. Plant Systematics and Evolution 298:2, pages 511-522.
Crossref
T. Yli-Pirilä, J. Kusnetsov, M.-R. Hirvonen, M. Seuri & A. Nevalainen. (2009) Survival of amoebae on building materials. Indoor Air 19:2, pages 113-121.
Crossref
Biljana Nikolić, Mihailo Ristić, Srdjan Bojović & Petar D. Marin. (2008) Variability of the Needle Essential Oils of Pinus peuce from Different Populations in Montenegro and Serbia . Chemistry & Biodiversity 5:7, pages 1377-1388.
Crossref
Rajesh K. Joshi & Chitra Pande. (2019) Chemical Composition of the Essential Oil of the Flowering Aerial Parts of Craniotome Furcata . Natural Product Communications 3:6, pages 1934578X0800300.
Crossref
Josephine Ottavioli, Ange Bighelli & Joseph Casanova. (2008) Diterpene-rich needle oil ofPinus pinaster Ait. from Corsica. Flavour and Fragrance Journal 23:2, pages 121-125.
Crossref
Tahar Dob, Tayeb Berramdane & Chaabane Chelgoum. (2005) Chemical composition of essential oil of Pinus halepensis Miller growing in Algeria. Comptes Rendus Chimie 8:11-12, pages 1939-1945.
Crossref
T. Dob, T. Berramdane & C. Chelghoum. (2005) Analysis of Essential Oil from the Needles of Pinus pinaster Growing in Algeria. Chemistry of Natural Compounds 41:5, pages 545-548.
Crossref
T. Dob, T. Berramdane, D. Dahmane & C. Chelghoum. (2005) Chemical Composition of the Needles Oil of Pinus canariensis from Algeria. Chemistry of Natural Compounds 41:2, pages 165-167.
Crossref
Felice Senatore, Francesco Napolitano, M. A‐H Mohamed, P. J. C. Harris, P. N. S. Mnkeni & J. Henderson. (2004) Antibacterial activity of Tagetes minuta L. (Asteraceae) essential oil with different chemical composition . Flavour and Fragrance Journal 19:6, pages 574-578.
Crossref
Chebli Bouchra, Mohamed Achouri, L.M Idrissi Hassani & Mohamed Hmamouchi. (2003) Chemical composition and antifungal activity of essential oils of seven Moroccan Labiatae against Botrytis cinerea Pers: Fr.. Journal of Ethnopharmacology 89:1, pages 165-169.
Crossref
. (2002) Current awareness in flavour and fragrance. Flavour and Fragrance Journal 17:1, pages 81-86.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.