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Research Article

Antimicrobiological Studies on Turkish Cistus. Species

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Pages 178-183 | Accepted 15 Oct 2004, Published online: 07 Oct 2008

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Dariusz Szeremeta, Magdalena Knaś, Ewa Długosz, Klaudia Krzykała, Anna Mrozek-Wilczkiewicz, Robert Musioł, Teresa Kowalska, Péter G. Ott, Mieczysław Sajewicz & Ágnes M. Móricz. (2018) Investigation of antibacterial and cytotoxic potential of phenolics derived from Cistus incanus L. by means of thin-layer chromatography-direct bioautography and cytotoxicity assay. Journal of Liquid Chromatography & Related Technologies 41:6, pages 349-357.
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Patrizia Monica Mastino, Mauro Marchetti, Jean Costa & Marianna Usai. (2017) Comparison of essential oils from Cistus species growing in Sardinia. Natural Product Research 31:3, pages 299-307.
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Sevim Feyza ERDOĞMUŞ, Şerife Nur DURMUŞ & Saniye ÖZDEMİR. (2023) Cistus creticus Ekstrelerinin Kontrollü Salımını Gerçekleştiren Katı Lipid Nanopartiküllerin (KLN) Geliştirilmesi ve Antimikrobiyal Ekinliklerinin AraştırılmasıDevelopment of Controlled Release of Cistus creticus Extracts Loaded Solid Lipid Nanoparticles (SLN) and Investigation of Their Antimicrobial Activities. Iğdır Üniversitesi Fen Bilimleri Enstitüsü Dergisi 13:4, pages 2505-2515.
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Samuel M. Shor & Sunjya K. Schweig. (2023) The Use of Natural Bioactive Nutraceuticals in the Management of Tick-Borne Illnesses. Microorganisms 11:7, pages 1759.
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Maryem Bouabidi, Federica Lina Salamone, Chemseddoha Gadhi, Hafida Bouamama, Antonio Speciale, Giovanna Ginestra, Luana Pulvirenti, Laura Siracusa, Antonia Nostro & Mariateresa Cristani. (2023) Efficacy of Two Moroccan Cistus Species Extracts against Acne Vulgaris: Phytochemical Profile, Antioxidant, Anti-Inflammatory and Antimicrobial Activities. Molecules 28:6, pages 2797.
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Fatima I. Mahi, Mohammed A. Mehdid, Houda Zentar, Adil A. Othman, Az-eddine El Mansouri, Nisserine Hamini-Kadar, Fernando J. Reyes-Zurita & Rachid Chahboun. (2022) Synthesis, pharmacological and molecular docking investigations of 1,3,4-oxadiazole-5-thionyl derivatives of extracted cis-clerodane diterpenoid from Cistus monspeliensis. Medicinal Chemistry Research 32:1, pages 128-143.
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Fatma Nur Onal, Ismail Ozturk, Fadime Aydin Kose, Gulay Der, Emrah Kilinc & Sura Baykan. (2023) Comparative Evaluation of Polyphenol Contents and Biological Activities of Five Cistus L. Species Native to Turkey . Chemistry & Biodiversity 20:1.
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Armağan KAYA & Zehra Tuğba MURATHAN. (2022) Alanya Ekolojik Koşullarında Yetişen Cistus creticus L. Bitkisinin Taze ve Kuru Yaprak Örneklerinde Bazı Biyoaktif Bileşenlerin, Pigment İçeriği ve Antioksidan Kapasitenin BelirlenmesiDetermination of Some Bioactive Components, Pigment Content and Antioxidant Capacity in Fresh and Dry Leaf Samples of Cistus creticus L. Grown in Alanya Ecological Conditions]. Kahramanmaraş Sütçü İmam Üniversitesi Tarım ve Doğa Dergisi 25:Ek Sayı 1, pages 108-113.
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Yakup Budak, Hasan Basri Karayel & Oguz Özbek. (2022) DNA cleavage, cytotoxic and antioxidant properties of Cistus laurifolius L. extracts. Journal of the Indian Chemical Society 99:7, pages 100569.
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Roula M. Abdel-Massih & Marc El Beyrouthy. 2022. Medicinal Plants as Anti-Infectives. Medicinal Plants as Anti-Infectives 59 101 .
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Nazım ŞEKEROĞLU & Sevgi GEZİCİ. (2021) Türkiye’nin Virüs Savar Bitkisi Laden (Cistus spp.) Türleri: Geleneksel Kullanımları, Biyoaktif Kimyasal Bileşenleri ve Farmakolojik AktiviteleriRockrose (Cistus spp.) Species as Turkey’s Virus Repellent Plants: Traditional Uses, Bioactive Chemical Components and Pharmacological Activities. Mersin Üniversitesi Tıp Fakültesi Lokman Hekim Tıp Tarihi ve Folklorik Tıp Dergisi 11:2, pages 258-268.
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Şükran AMAÇ. (2021) Cistus creticus (Pembe Laden) Türünün Farmakolojik ÖzellikleriPharmacological Properties of Cistus creticus (Pink Laden) Species. Medical Records 3:2, pages 161-163.
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Ivana Carev, Ana Maravić, Nada Ilić, Vedrana Čikeš Čulić, Olivera Politeo, Zoran Zorić & Mila Radan. (2020) UPLC-MS/MS Phytochemical Analysis of Two Croatian Cistus Species and Their Biological Activity. Life 10:7, pages 112.
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Kenny Kuchta, Nguyen Huu Tung, Tomoe Ohta, Takuhiro Uto, Muhareva Raekiansyah, Kristina Grötzinger, Hans Rausch, Yukihiro Shoyama, Hans Wilhelm Rauwald & Kouichi Morita. (2020) The old pharmaceutical oleoresin labdanum of Cistus creticus L. exerts pronounced in vitro anti-dengue virus activity. Journal of Ethnopharmacology 257, pages 112316.
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Nazım ŞEKEROĞLU & Sevgi GEZİCİ. (2020) Koronavirüs Pandemisi ve Türkiye’nin Bazı Şifalı BitkileriCoronavirus Pandemic and Some Turkish Medicinal Plants. Anadolu Kliniği Tıp Bilimleri Dergisi 25:Special Issue on COVID 19, pages 163-182.
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Ikrame Zeouk, Mounyr Balouiri & Khadija Bekhti. (2019) Antistaphylococcal Activity and Phytochemical Analysis of Crude Extracts of Five Medicinal Plants Used in the Center of Morocco against Dermatitis. International Journal of Microbiology 2019, pages 1-7.
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Hans Wilhelm Rauwald, Tobias Liebold, Kristina Grötzinger, Jörg Lehmann & Kenny Kuchta. (2019) Labdanum and Labdanes of Cistus creticus and C. ladanifer: Anti-Borrelia activity and its phytochemical profiling✰. Phytomedicine 60, pages 152977.
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Enrique Barrajón-Catalán, Laura Tomás-Menor, Aranzazu Morales-Soto, Nuria Martí Bruñá, Domingo Saura López, Antonio Segura-Carretero & Vicente Micol. 2016. Essential Oils in Food Preservation, Flavor and Safety. Essential Oils in Food Preservation, Flavor and Safety 649 658 .
Laura Tomás-Menor, Aránzazu Morales-Soto, Enrique Barrajón-Catalán, Cristina Roldán-Segura, Antonio Segura-Carretero & Vicente Micol. (2013) Correlation between the antibacterial activity and the composition of extracts derived from various Spanish Cistus species. Food and Chemical Toxicology 55, pages 313-322.
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Ignacio Mariscal-Sancho, Jesús Santano, María-Ángeles Mendiola, Fernando Peregrina & Rafael Espejo. (2010) Carbon Dioxide Emission Rates and β-Glucosidase Activity in Mediterranean Ultisols Under Different Soil Management. Soil Science 175:9, pages 453-460.
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Congde Huo, Guoqing Shi, Wai Har Lam, Di Chen, Quizhi Cindy Cui, Q Ping Dou & Tak Hang Chan. (2008) Semi-synthesis and proteasome inhibition of D -ring deoxy analogs of (–)-epigallocatechin gallate (EGCG), the active ingredient of green tea extract . Canadian Journal of Chemistry 86:6, pages 495-502.
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Kumi Osanai, Congde Huo, Kristin R. Landis-Piwowar, Q. Ping Dou & Tak Hang Chan. (2007) Synthesis of (2R,3R)-epigallocatechin-3-O-(4-hydroxybenzoate), a novel catechin from Cistus salvifolius, and evaluation of its proteasome inhibitory activities. Tetrahedron 63:32, pages 7565-7570.
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