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Comparative Analysis of Antioxidant Properties of Extracts Obtained from Bingöl Propolis with Different Solvents

Yıl 2026, Cilt: 15 Sayı: 1 , 124 - 132 , 30.03.2026
https://doi.org/10.46810/tdfd.1687072
https://izlik.org/JA84MG72SK

Öz

Propolis is a valuable bee product collected by honeybees from plants, especially flowers and buds, and enriched with wax and resin. Bees use propolis for defense, support and protection within the hive. The chemical composition and biological activities of propolis vary depending on factors such as the region where it is collected, plant source, extraction method and solvent selection.
This study aimed to determine appropriate extraction methods to optimize the potential applications of propolis by examining the effects of different solvents on biologically active substances. Propolis samples collected from Bingöl province were extracted using six different solvents (70% ethanol, 99.9% ethanol, distilled water, hexane + ethyl alcohol mixture and grape vinegar). The total phenolic and flavonoid content of the obtained extracts and their antioxidant activities were analyzed by the DPPH method.
It was revealed that among the solvents, hexane + 70% ethanol had the highest total phenolic (461,16 ±0,5 mg GAE/g) and flavonoid (368.10 ±1.92mg QE/g) content and showed the highest DPPH radical scavenging capacity 82,95 ± 0,43% inhibition. Based on the findings, it was concluded that hexane + 70% ethanol extraction was the most efficient method to increase the concentration of biologically active compounds.

Kaynakça

  • Simone-Finstrom M, Borba RS, Wilson M and Spivak M. Propolis Counteracts Some Threats to Honey Bee Health. Insects. 2017;8 (2).
  • Burdock GA. Review of the biological properties and toxicity of bee propolis. Food Chem. Toxicol. 1998;36(4):347-63.
  • Ahangari Z, Naseri M and Vatandoost F. Propolis: Chemical Composition and Its Applications in Endodontics. Iran. Endod. J. 2018;13(3):285–292.
  • Silva-Carvalho R, Baltazar F and Almeida-Aguiar C. Propolis: A Complex Natural Product with a Plethora of Biological Activities That Can Be Explored for Drug Development. Evid. Based Complement. Alternat. Med. 2015;1: 206439.
  • Wang T, Liu Q, Wang M and Zhang L. Metabolomics Reveals Discrimination of Chinese Propolis from Different Climatic Regions. Foods. 2020;9(4):491.
  • Aminimoghadamfarouj N and Nematollahi A. Propolis Diterpenes as a Remarkable Bio-Source for Drug Discovery Development: A Review, Int. J. Mol. Sci. 2017;18(6).
  • Drescher N, Klein AM, Schmitt T and Leonhardt SD. A clue on bee glue: New insight into the sources and factors driving resin intake in honeybees (Apis mellifera). Plos One. 2019; 14(2).
  • Huang S, Zhang CP, Wang K, Li GQ and Hu FL. Recent Advances in the Chemical Composition of Propolis. Molecules. 2014; 19(12):19610–19632.
  • Dogan N, Nası̇rlı̇ F, Bozbeyoğlu Kart NN and Kuzucu V. Propolisin Antikanser Aktivitesine Genel Bir Bakış. Bartın Univ. Int. J. Nat. Appl. Sci. 2022;5(2): 122-130.
  • Simone-Finstrom M and Spivak M. Propolis and bee health: the natural history and significance of resin use by honey bees. Apidologie. 2010; 41(3): 295–311.
  • Toreti VC, Sato HH, Pastore GM and Park YK. Recent Progress of Propolis for Its Biological and Chemical Compositions and Its Botanical Origin. Evid. Based Complement. Alternat. Med. 2013;30(1): 697390.
  • Šuran J, Cepanec I, Mašek T, Radic ́ B, Radic ́ S, Tlak Gajger I and Vlainic ́ J. Propolis Extract and Its Bioactive Compounds From Traditional to Modern Extraction Technologies. Molecules. 2021;26(10):2930.
  • Bayram NE, Sorkun K, Oz GC, Salih B and Topcu G. Chemical Characterization Of 64 Propolis Samples From Hakkari Turkey. 2018;12 (6):569-581.
  • [14] Pietta PG, Gardana C and Pietta AM. Analytical methods for quality control of propolis. Fitoterapia. 2002;73(1): S7-20.
  • Bakkaloğlu Z and Arici M. Farklı Çözücülerle Propolis Ekstraksiyonunun Toplam Fenolik İçeriği, Antioksidan Kapasite ve Antimikrobiyal Aktivite Üzerine Etkileri. Akademik Gıda. 2019;17(4):538–545.
  • Bildir B, Demı̇rkan Z, Kaya B and Caf F. Investıgatıon Of Some Bıologıcal Propertıes Of Propolıs In Hawthorn Vınegar Extract. Türk Doğa Ve Fen Derg. 2023; 12(2): 24–31.
  • Silici S and Kutluca S. Chemical composition and antibacterial activity of propolis collected by three different races of honeybees in the same region. J. Ethnopharmacol. 2005; 99(1);69–73.
  • Cottica SM, Sabik H, Antoine C, Fortin J, Graveline N, Visentainer J V and Britte M. Characterization of Canadian propolis fractions obtained from two-step sequential extraction. LWT - Food Sci. Technol.2015; 60(1):609–614.
  • Almohammadi OH, Bakdash A, Taha NA, Abu-Rumman A and Kumar S. Chemical composition of propolis from the Baha region in Saudi Arabia. Czech J. Food Sci.2018; 36(2):109–118.
  • Segueni N, Khadraoui F and Rhouati S. Volatile Compounds as Propolis Characterization Markers. Recent Advances in Environmental Science from the Euro-Mediterranean and Surrounding Regions, A. Kallel, M. Ksibi, H. Ben Dhia, and N. Khélifi, Eds., Cham: Springer International Publishing; 2018.
  • Al-Ghamdi AA, Bayaqoob NIM, Rushdi AI, Alattal Y, Simoneit BRT, El-Mubarak AH, Al-Mutlaq KF. Chemical compositions and characteristics of organic compounds in propolis from Yemen. Saudi J. Biol. Sci. 2016; (24): 1094–1103.
  • Mohtar LG, Rodríguez S A and Nazareno MA. Comparative analysis of volatile compound profiles of propolis from different provenances. J. Sci. Food Agric. 2018;98(9):3409–3415.
  • Kapare H, Lohidasan S, Sinnathambi A and Mahadik K. Standardization, anti-carcinogenic potential and biosafety of Indian propolis. J. Ayurveda Integr. Med.2019; 10(2):81–87.
  • Ertürk Ö, Yavuz C and Sıralı R. The Antımıcrobıal Actıvıty Of Propolıs From Ordu Provınce Of Turkey. Mellifera.2016;15(1).
  • Taddeo VA, Epifano F, Fiorito S and Genovese S. Comparison of different extraction methods and HPLC quantification of prenylated and unprenylated phenylpropanoids in raw Italian propolis. J. Pharm. Biomed. Anal. 2016;129(1):219–223.
  • Arslan S, Perçin D, Silici S, Koç AN and Er Ö. Farklı Çözücülerle Hazırlanan Propolis Özütlerinin Mutans Streptokoklar Üzerine In Vıtro Antimikrobiyal Etkisi. Sağlık Bilim. Derg. 2010;19(1).
  • Trusheva B, Trunkova D and Bankova V. Different extraction methods of biologically active components from propolis: a preliminary study. Chem. Cent. J. 2007;1(1):13.
  • Sforcin JM. Biological Properties and Therapeutic Applications of Propolis. Phytother. Res.2016; 30(6):894–905.
  • Naczk M and Shahidi F. Extraction and analysis of phenolics in food. J. Chromatogr. 2004;1054(1): 95–111.
  • Hajji M, Jarraya R, Lassoued I, Masmoudi O, Damak M and Nasri M. GC/MS and LC/MS analysis, and antioxidant and antimicrobial activities of various solvent extracts from Mirabilis jalapa tubers. Process Biochem. 2010;45(9):1486–1493.
  • Zhishen J, Mengcheng T, Jianming W. The determination of flavonoid contents in mulberry and their scavenging effects on superoxide radicals. Food Chem. 1999;64(4):555-9.
  • Hatano T, Kagawa H, Yasuhara T, Okuda T. Two new flavonoids and other constituents in licorice root: their relative astringency and radical scavenging effects. [Chem Pharm Bull (Tokyo). Haziran 1988;36(6):2090-7. [33] Sı̇lici S. Farklı Botanik Orijine Sahip Propolis Örneklerinde Biyolojik Olarak Aktif Bileşiklerin Belirlenmesi. 2008; 24(1):120–128.
  • Kurek-Górecka A, Keskin S, Bobis O, Felitti R, Górecki M, Otre ̨ba M, Stojko J, Olczyk P, Kolayli S and Rzepecka-Stojko A. Comparison of the Antioxidant Activity of Propolis Samples from Different Geographical Regions. Plants. 2022;11(9).
  • Okińczyc P, Widelski J, Szperlik J, Zuk M, Mroczek T, Skalicka-Wozniak K et al. Impact of Plant Origin on Eurasian Propolis on Phenolic Profile and Classical Antioxidant Activity. Biomolecules. 2021;11(1).
  • Socha R, Gałkowska D, Bugaj M, Juszczak L. Phenolic composition and antioxidant activity of propolis from various regions of Poland. Nat Prod Res [Internet]. 04 Mart 2015 [a.yer 12 Şubat 2025]; Erişim adresi: https://www.tandfonline.com/doi/abs/10.1080/14786419.2014.949705
  • Stanciauskaite M, MarksaM, Liaudanskas M, Ivanauskas L, Ivaskiene M and K Ramanauskiene. Extracts of Poplar Buds (Populus balsamifera L., Populus nigra L.) and Lithuanian Propolis: Comparison of Their Composition and Biological Activities. Plants. 2021;10(5).
  • Wang X, Sankarapandian K, Cheng Y, Woo OK, Kwon HW, Perumalsamy H et al. Relationship between total phenolic contents and biological properties of propolis from 20 different regions in South Korea. BMC Complement. Altern. Med. 2016; 16(1): 65.
  • Mohtar LG, Messina GA, Bertolino FA, Pereira SV, Raba J and Nazareno MA. Comparative study of different methodologies for the determination the antioxidant activity of Venezuelan propolis. Microchem. J. 2020;158:105244.
  • Degirmencioglu H, Guzelmeric E, Yuksel PI, Kırmızıbekmez H, Deniz I, Yesilada E. A New Type of Anatolian Propolis: Evaluation of Its Chemical Composition, Activity Profile and Botanical Origin. Chem Biodivers. 2019;16(12).
  • Baştürk A and Yavaş B. Antioxidant Activity, Total Phenolic Content, and Volatile Component Profiles of Propolis From Eight Turkish Regions. Chem. Biodivers. 2024.
  • Kolaylı S Birinci C, Kara Y, Ozkok A, Tanugur Samancı AE, Sahin H et al. A melissopalynological and chemical characterization of Anatolian propolis and an assessment of its antioxidant potential. Eur. Food Res. Technol. 2023;249(5):1213–1233.
  • Dervişoğlu G, Darendelioğlu E, Aykutoğlu G, Ayna A, and Kaya B. Synthesis of Silver Nanoparticles Reduced by Bingol Propolis and Evaluation of Antioxidant, Cytotoxic and Anticancer Activities in PC-3 Cells. Research Square. 2022;1:28.
  • Şengün İY and Kiliç G. Farklı Sirke Çeşitlerinin Mikroflorası, Biyoaktif Bileşenleri ve Sağlık Üzerine Etkileri. Akad. Gıda. 2019;17(1):89–101.
  • Ozturk I, Caliskan O, Tornuk F, Ozcan N, Yalcin H, Baslar M, vd. Antioxidant, antimicrobial, mineral, volatile, physicochemical and microbiological characteristics of traditional home-made Turkish vinegars. LWT - Food Sci Technol. 2015;63(1):144.
  • Olczyk P, Komosinska-Vassev K, Ramos P, Mencner L, Olczyk K, Pilawa B. Free Radical Scavenging Activity of Drops and Spray Containing Propolis-An EPR Examination. Molecules. 2017;22(1):128.
  • Devequi-Nunes D, Machado BAS, Barreto GA, Silve JR, Silva DF, Rocha LC et al. Chemical characterization and biological activity of six different extracts of propolis through conventional methods and supercritical extraction. Plos One. 2018;13(12).
  • Christov R, Trusheva B, Popova M, Bankova V, Bertrand M. Chemical composition of propolis from Canada, its antiradical activity and plant origin. Nat Prod Res. 2006;20(6):531-6.
  • Chaillou LL and Nazareno MA. Bioactivity of propolis from Santiago del Estero, Argentina, related to their chemical composition. LWT - Food Sci. Technol.2009;42(8): 1422–1427.
  • Kumazawa S, Hamasaka T, Nakayama T. Antioxidant activity of propolis of various geographic origins. Food Chem. 01 Şubat 2004;84(3):329-39.
  • Mohdaly AAA, Mahmoud AA, Roby MHH, Smetanska I, Ramadan MF. Phenolic Extract from Propolis and Bee Pollen: Composition, Antioxidant and Antibacterial Activities. J Food Biochem. 2015;39(5):538-47.
  • Böke Sarıkahya N, Gören AC, Sümer Okkalı G, Çöven FO, Orman B, Kırcı D, vd. Chemical composition and biological activities of propolis samples from different geographical regions of Turkey. Phytochem Lett. 2021;44:129-36.

Bingöl Propolisinden Elde Edilen Ekstraktların Farklı Çözücülerle Antioksidan Özelliklerinin Karşılaştırmalı Analizi

Yıl 2026, Cilt: 15 Sayı: 1 , 124 - 132 , 30.03.2026
https://doi.org/10.46810/tdfd.1687072
https://izlik.org/JA84MG72SK

Öz

Propolis, bal arıları tarafından bitkilerin özellikle çiçek ve tomurcuklardan toplanarak balmumu ve reçine ile zenginleştirilen değerli bir arı ürünüdür. Arılar, propolisi kovan içinde savunma, destek ve koruma amaçlı kullanmaktadır. Propolisin kimyasal içeriği ve biyolojik aktivitesi toplandığı bölge, bitki kaynağı, ekstraksiyon yöntemi ve çözücü seçimi gibi faktörlere bağlı olarak değişikenlik göstermektedir.
Bu çalışmada, farklı çözücülerin biyolojik aktif maddeler üzerindeki etkilerini inceleyerek, propolisin potansiyel uygulamalarını optimize etmek için uygun ekstraksiyon yöntemleri belirlenmesi amaçlanmıştır. Bingöl ilinden toplanan propolis örnekleri, altı farklı çözücü (%70 etanol, %99,9 etanol, distile su, hekzan + etil alkol karışımı ve üzüm sirkesi) kullanılarak ekstrakte edilmiştir. Elde edilen ekstraktların toplam fenolik ve flavonoid içeriği ve DPPH yöntemiyle antioksidan aktiviteleri analiz edilmiştir.
Çözücüler arasında hekzan + %70 etanolün en yüksek toplam fenolik (461,16 ±0,5 mg GAE/g) ve flavonoid (368.10 ±1.92mg QE/g) içeriğine sahip olduğunu ve 82,95 ± 0,43 inhibisyon ile en yüksek DPPH radikal süpürme kapasitesini gösterdiği ortaya koyulmuştur. Bulgular doğrultusunda, hekzan+ %70’ lik etanolik ekstraksiyonun biyolojik olarak aktif bileşiklerin konsantrasyonunu artırmada en verimli yöntem olduğu sonucuna varılmıştır.

Kaynakça

  • Simone-Finstrom M, Borba RS, Wilson M and Spivak M. Propolis Counteracts Some Threats to Honey Bee Health. Insects. 2017;8 (2).
  • Burdock GA. Review of the biological properties and toxicity of bee propolis. Food Chem. Toxicol. 1998;36(4):347-63.
  • Ahangari Z, Naseri M and Vatandoost F. Propolis: Chemical Composition and Its Applications in Endodontics. Iran. Endod. J. 2018;13(3):285–292.
  • Silva-Carvalho R, Baltazar F and Almeida-Aguiar C. Propolis: A Complex Natural Product with a Plethora of Biological Activities That Can Be Explored for Drug Development. Evid. Based Complement. Alternat. Med. 2015;1: 206439.
  • Wang T, Liu Q, Wang M and Zhang L. Metabolomics Reveals Discrimination of Chinese Propolis from Different Climatic Regions. Foods. 2020;9(4):491.
  • Aminimoghadamfarouj N and Nematollahi A. Propolis Diterpenes as a Remarkable Bio-Source for Drug Discovery Development: A Review, Int. J. Mol. Sci. 2017;18(6).
  • Drescher N, Klein AM, Schmitt T and Leonhardt SD. A clue on bee glue: New insight into the sources and factors driving resin intake in honeybees (Apis mellifera). Plos One. 2019; 14(2).
  • Huang S, Zhang CP, Wang K, Li GQ and Hu FL. Recent Advances in the Chemical Composition of Propolis. Molecules. 2014; 19(12):19610–19632.
  • Dogan N, Nası̇rlı̇ F, Bozbeyoğlu Kart NN and Kuzucu V. Propolisin Antikanser Aktivitesine Genel Bir Bakış. Bartın Univ. Int. J. Nat. Appl. Sci. 2022;5(2): 122-130.
  • Simone-Finstrom M and Spivak M. Propolis and bee health: the natural history and significance of resin use by honey bees. Apidologie. 2010; 41(3): 295–311.
  • Toreti VC, Sato HH, Pastore GM and Park YK. Recent Progress of Propolis for Its Biological and Chemical Compositions and Its Botanical Origin. Evid. Based Complement. Alternat. Med. 2013;30(1): 697390.
  • Šuran J, Cepanec I, Mašek T, Radic ́ B, Radic ́ S, Tlak Gajger I and Vlainic ́ J. Propolis Extract and Its Bioactive Compounds From Traditional to Modern Extraction Technologies. Molecules. 2021;26(10):2930.
  • Bayram NE, Sorkun K, Oz GC, Salih B and Topcu G. Chemical Characterization Of 64 Propolis Samples From Hakkari Turkey. 2018;12 (6):569-581.
  • [14] Pietta PG, Gardana C and Pietta AM. Analytical methods for quality control of propolis. Fitoterapia. 2002;73(1): S7-20.
  • Bakkaloğlu Z and Arici M. Farklı Çözücülerle Propolis Ekstraksiyonunun Toplam Fenolik İçeriği, Antioksidan Kapasite ve Antimikrobiyal Aktivite Üzerine Etkileri. Akademik Gıda. 2019;17(4):538–545.
  • Bildir B, Demı̇rkan Z, Kaya B and Caf F. Investıgatıon Of Some Bıologıcal Propertıes Of Propolıs In Hawthorn Vınegar Extract. Türk Doğa Ve Fen Derg. 2023; 12(2): 24–31.
  • Silici S and Kutluca S. Chemical composition and antibacterial activity of propolis collected by three different races of honeybees in the same region. J. Ethnopharmacol. 2005; 99(1);69–73.
  • Cottica SM, Sabik H, Antoine C, Fortin J, Graveline N, Visentainer J V and Britte M. Characterization of Canadian propolis fractions obtained from two-step sequential extraction. LWT - Food Sci. Technol.2015; 60(1):609–614.
  • Almohammadi OH, Bakdash A, Taha NA, Abu-Rumman A and Kumar S. Chemical composition of propolis from the Baha region in Saudi Arabia. Czech J. Food Sci.2018; 36(2):109–118.
  • Segueni N, Khadraoui F and Rhouati S. Volatile Compounds as Propolis Characterization Markers. Recent Advances in Environmental Science from the Euro-Mediterranean and Surrounding Regions, A. Kallel, M. Ksibi, H. Ben Dhia, and N. Khélifi, Eds., Cham: Springer International Publishing; 2018.
  • Al-Ghamdi AA, Bayaqoob NIM, Rushdi AI, Alattal Y, Simoneit BRT, El-Mubarak AH, Al-Mutlaq KF. Chemical compositions and characteristics of organic compounds in propolis from Yemen. Saudi J. Biol. Sci. 2016; (24): 1094–1103.
  • Mohtar LG, Rodríguez S A and Nazareno MA. Comparative analysis of volatile compound profiles of propolis from different provenances. J. Sci. Food Agric. 2018;98(9):3409–3415.
  • Kapare H, Lohidasan S, Sinnathambi A and Mahadik K. Standardization, anti-carcinogenic potential and biosafety of Indian propolis. J. Ayurveda Integr. Med.2019; 10(2):81–87.
  • Ertürk Ö, Yavuz C and Sıralı R. The Antımıcrobıal Actıvıty Of Propolıs From Ordu Provınce Of Turkey. Mellifera.2016;15(1).
  • Taddeo VA, Epifano F, Fiorito S and Genovese S. Comparison of different extraction methods and HPLC quantification of prenylated and unprenylated phenylpropanoids in raw Italian propolis. J. Pharm. Biomed. Anal. 2016;129(1):219–223.
  • Arslan S, Perçin D, Silici S, Koç AN and Er Ö. Farklı Çözücülerle Hazırlanan Propolis Özütlerinin Mutans Streptokoklar Üzerine In Vıtro Antimikrobiyal Etkisi. Sağlık Bilim. Derg. 2010;19(1).
  • Trusheva B, Trunkova D and Bankova V. Different extraction methods of biologically active components from propolis: a preliminary study. Chem. Cent. J. 2007;1(1):13.
  • Sforcin JM. Biological Properties and Therapeutic Applications of Propolis. Phytother. Res.2016; 30(6):894–905.
  • Naczk M and Shahidi F. Extraction and analysis of phenolics in food. J. Chromatogr. 2004;1054(1): 95–111.
  • Hajji M, Jarraya R, Lassoued I, Masmoudi O, Damak M and Nasri M. GC/MS and LC/MS analysis, and antioxidant and antimicrobial activities of various solvent extracts from Mirabilis jalapa tubers. Process Biochem. 2010;45(9):1486–1493.
  • Zhishen J, Mengcheng T, Jianming W. The determination of flavonoid contents in mulberry and their scavenging effects on superoxide radicals. Food Chem. 1999;64(4):555-9.
  • Hatano T, Kagawa H, Yasuhara T, Okuda T. Two new flavonoids and other constituents in licorice root: their relative astringency and radical scavenging effects. [Chem Pharm Bull (Tokyo). Haziran 1988;36(6):2090-7. [33] Sı̇lici S. Farklı Botanik Orijine Sahip Propolis Örneklerinde Biyolojik Olarak Aktif Bileşiklerin Belirlenmesi. 2008; 24(1):120–128.
  • Kurek-Górecka A, Keskin S, Bobis O, Felitti R, Górecki M, Otre ̨ba M, Stojko J, Olczyk P, Kolayli S and Rzepecka-Stojko A. Comparison of the Antioxidant Activity of Propolis Samples from Different Geographical Regions. Plants. 2022;11(9).
  • Okińczyc P, Widelski J, Szperlik J, Zuk M, Mroczek T, Skalicka-Wozniak K et al. Impact of Plant Origin on Eurasian Propolis on Phenolic Profile and Classical Antioxidant Activity. Biomolecules. 2021;11(1).
  • Socha R, Gałkowska D, Bugaj M, Juszczak L. Phenolic composition and antioxidant activity of propolis from various regions of Poland. Nat Prod Res [Internet]. 04 Mart 2015 [a.yer 12 Şubat 2025]; Erişim adresi: https://www.tandfonline.com/doi/abs/10.1080/14786419.2014.949705
  • Stanciauskaite M, MarksaM, Liaudanskas M, Ivanauskas L, Ivaskiene M and K Ramanauskiene. Extracts of Poplar Buds (Populus balsamifera L., Populus nigra L.) and Lithuanian Propolis: Comparison of Their Composition and Biological Activities. Plants. 2021;10(5).
  • Wang X, Sankarapandian K, Cheng Y, Woo OK, Kwon HW, Perumalsamy H et al. Relationship between total phenolic contents and biological properties of propolis from 20 different regions in South Korea. BMC Complement. Altern. Med. 2016; 16(1): 65.
  • Mohtar LG, Messina GA, Bertolino FA, Pereira SV, Raba J and Nazareno MA. Comparative study of different methodologies for the determination the antioxidant activity of Venezuelan propolis. Microchem. J. 2020;158:105244.
  • Degirmencioglu H, Guzelmeric E, Yuksel PI, Kırmızıbekmez H, Deniz I, Yesilada E. A New Type of Anatolian Propolis: Evaluation of Its Chemical Composition, Activity Profile and Botanical Origin. Chem Biodivers. 2019;16(12).
  • Baştürk A and Yavaş B. Antioxidant Activity, Total Phenolic Content, and Volatile Component Profiles of Propolis From Eight Turkish Regions. Chem. Biodivers. 2024.
  • Kolaylı S Birinci C, Kara Y, Ozkok A, Tanugur Samancı AE, Sahin H et al. A melissopalynological and chemical characterization of Anatolian propolis and an assessment of its antioxidant potential. Eur. Food Res. Technol. 2023;249(5):1213–1233.
  • Dervişoğlu G, Darendelioğlu E, Aykutoğlu G, Ayna A, and Kaya B. Synthesis of Silver Nanoparticles Reduced by Bingol Propolis and Evaluation of Antioxidant, Cytotoxic and Anticancer Activities in PC-3 Cells. Research Square. 2022;1:28.
  • Şengün İY and Kiliç G. Farklı Sirke Çeşitlerinin Mikroflorası, Biyoaktif Bileşenleri ve Sağlık Üzerine Etkileri. Akad. Gıda. 2019;17(1):89–101.
  • Ozturk I, Caliskan O, Tornuk F, Ozcan N, Yalcin H, Baslar M, vd. Antioxidant, antimicrobial, mineral, volatile, physicochemical and microbiological characteristics of traditional home-made Turkish vinegars. LWT - Food Sci Technol. 2015;63(1):144.
  • Olczyk P, Komosinska-Vassev K, Ramos P, Mencner L, Olczyk K, Pilawa B. Free Radical Scavenging Activity of Drops and Spray Containing Propolis-An EPR Examination. Molecules. 2017;22(1):128.
  • Devequi-Nunes D, Machado BAS, Barreto GA, Silve JR, Silva DF, Rocha LC et al. Chemical characterization and biological activity of six different extracts of propolis through conventional methods and supercritical extraction. Plos One. 2018;13(12).
  • Christov R, Trusheva B, Popova M, Bankova V, Bertrand M. Chemical composition of propolis from Canada, its antiradical activity and plant origin. Nat Prod Res. 2006;20(6):531-6.
  • Chaillou LL and Nazareno MA. Bioactivity of propolis from Santiago del Estero, Argentina, related to their chemical composition. LWT - Food Sci. Technol.2009;42(8): 1422–1427.
  • Kumazawa S, Hamasaka T, Nakayama T. Antioxidant activity of propolis of various geographic origins. Food Chem. 01 Şubat 2004;84(3):329-39.
  • Mohdaly AAA, Mahmoud AA, Roby MHH, Smetanska I, Ramadan MF. Phenolic Extract from Propolis and Bee Pollen: Composition, Antioxidant and Antibacterial Activities. J Food Biochem. 2015;39(5):538-47.
  • Böke Sarıkahya N, Gören AC, Sümer Okkalı G, Çöven FO, Orman B, Kırcı D, vd. Chemical composition and biological activities of propolis samples from different geographical regions of Turkey. Phytochem Lett. 2021;44:129-36.
Toplam 51 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Yapısal Biyoloji
Bölüm Araştırma Makalesi
Yazarlar

Zeynep Demirkan 0000-0002-8101-8194

Bülent Kaya 0000-0002-1216-6441

Gönderilme Tarihi 29 Nisan 2025
Kabul Tarihi 20 Ocak 2026
Yayımlanma Tarihi 30 Mart 2026
DOI https://doi.org/10.46810/tdfd.1687072
IZ https://izlik.org/JA84MG72SK
Yayımlandığı Sayı Yıl 2026 Cilt: 15 Sayı: 1

Kaynak Göster

APA Demirkan, Z., & Kaya, B. (2026). Comparative Analysis of Antioxidant Properties of Extracts Obtained from Bingöl Propolis with Different Solvents. Türk Doğa ve Fen Dergisi, 15(1), 124-132. https://doi.org/10.46810/tdfd.1687072
AMA 1.Demirkan Z, Kaya B. Comparative Analysis of Antioxidant Properties of Extracts Obtained from Bingöl Propolis with Different Solvents. TDFD. 2026;15(1):124-132. doi:10.46810/tdfd.1687072
Chicago Demirkan, Zeynep, ve Bülent Kaya. 2026. “Comparative Analysis of Antioxidant Properties of Extracts Obtained from Bingöl Propolis with Different Solvents”. Türk Doğa ve Fen Dergisi 15 (1): 124-32. https://doi.org/10.46810/tdfd.1687072.
EndNote Demirkan Z, Kaya B (01 Mart 2026) Comparative Analysis of Antioxidant Properties of Extracts Obtained from Bingöl Propolis with Different Solvents. Türk Doğa ve Fen Dergisi 15 1 124–132.
IEEE [1]Z. Demirkan ve B. Kaya, “Comparative Analysis of Antioxidant Properties of Extracts Obtained from Bingöl Propolis with Different Solvents”, TDFD, c. 15, sy 1, ss. 124–132, Mar. 2026, doi: 10.46810/tdfd.1687072.
ISNAD Demirkan, Zeynep - Kaya, Bülent. “Comparative Analysis of Antioxidant Properties of Extracts Obtained from Bingöl Propolis with Different Solvents”. Türk Doğa ve Fen Dergisi 15/1 (01 Mart 2026): 124-132. https://doi.org/10.46810/tdfd.1687072.
JAMA 1.Demirkan Z, Kaya B. Comparative Analysis of Antioxidant Properties of Extracts Obtained from Bingöl Propolis with Different Solvents. TDFD. 2026;15:124–132.
MLA Demirkan, Zeynep, ve Bülent Kaya. “Comparative Analysis of Antioxidant Properties of Extracts Obtained from Bingöl Propolis with Different Solvents”. Türk Doğa ve Fen Dergisi, c. 15, sy 1, Mart 2026, ss. 124-32, doi:10.46810/tdfd.1687072.
Vancouver 1.Zeynep Demirkan, Bülent Kaya. Comparative Analysis of Antioxidant Properties of Extracts Obtained from Bingöl Propolis with Different Solvents. TDFD. 01 Mart 2026;15(1):124-32. doi:10.46810/tdfd.1687072