References
- ***Mespilus germanica - https://en.wikipedia.org/wiki/Mespilus_germanica.megtekintés dátuma: 2023.01.30.
- Cristofori V, Silvestri C, Pica AL, Bertazza G, Bignami C. Evaluation of four medlar cultivars: agronomical, pomological and qualitative traits, Eur. J. Hortic. Sci., 2019, 84 (6):350-8.
- ***Encyclopedia of Arkansas - https://encyclopediaofarkansas.net/entries/sterns-medlar-6875/, megtekintés dátuma: 2022.09.1.
- ***Flora of North America, http://www.efloras.org/florataxon.aspx?flora_id=1&taxon_id=120360, megtekintés dátuma: 2021.11.22.
- Surányi D. Az „elfelejtett” naspolya jövője Magyarországon, Kertgazdaság, 42. évf. 2. sz. 2010; 36-46.
- Voaides C, Radu N, Barza E, Babeanu N. A Comprehensive and Integrative Review – Plants, 2021;10(11):2344.
- ***Érintő - online-2017, http://www.erinto.ro/egy-elfeledett-csodanovenyunk-naspolya/, megtekintés dátuma: 2021.11.04.
- ***WFO-The world flora online, http://www.worldfloraonline.org/taxon/wfo-4000023878#local, megtekintés dátuma: 2021.10.22.
- Popović-Djordjević J, Kostic A, Kamiloglu S, Tomas M, Mićanović N, Capanoglu E. Chemical composition, nutritional and health related properties of the medlar (Mwspilus germanica L.): from medieval glory to underutilized fruit, Phytochemistry Reviews, 2023: 1-28.
- ***Kertlap - https://kertlap.hu/naspolya/v Megtekintés dátuma: 2021.11.01.
- ***Herbació - https://herbacio.hu/cikkek/seta-az-oszi-teli-erdoben, megtekintés dátuma: 2021.10.22.
- Foroohimanjili F, Mirzaie A, Mehdi Hamdi SM, Noorbazargan H. Antibacterial, antibiofilm, and antiquorum sensing activities of phytosynthesized silver nanoparticles fabricated from Mespilus germanica extract against multidrug resistance of Klebsiella pneumoniae clinical strains, J Basic Microbiol., 2020; 60(3):216-30.
- Gülçin İ, Topal F, Beyza S, Sarıkaya Ö, Bursal E, Bilsel G, Gören AC. Polyphenol Contents and Antioxidant Properties of Medlar (Mespilus germanica L.), Rec. Nat. Prod. 2011; 5(3):158-75.
- Glew RH, Ayaz FA, Sanz C, Vanderjagt DJ, Huang HS, Chuang LT, Strnad M. Changes in sugars, organic acids and amino acids in medlar (Mespilus germanica L.) during fruit development and maturation, Food Chem., 2003, 83(3):363-9.
- Ayaz FA, Huang HS, Chuang LT, Vanderjagt DJ, Glew RH. Fatty acid composition of medlar (Mespilus germanica L.) fruit at different stages of development, ITAL J FOOD SCI, 2002, 14(4):439-46.
- Pourmortazavi SM, Ghadiri M, Hajimirsadeghi SS. Supercritical fluid extraction of volatile components from Bunium persicum Boiss. (black cumin) and Mespilus germanica L. (medlar) seeds, J. Food Compos. Anal., 2005, 18(5):439-46.
- Cosmulescu SN, Trandafir I, Screiciu F, Stoenescu AM. Content in organic acids of Mespilus spp. and Crataegus spp. genotypes, Not Bot Horti Agrobo, 2020; 48(1):171-6.
- Stankovic JSK, Micanovic N, Grazdanic N, Kostic A. Polyphenolic profile, antioxidant and antidiabetic potential of medlar (Mespilus germanica L.), blackthorn (Prunus spinosa L.) and common hawthorn (Crataegus monogyna Jacq.) fruit extracts from Serbia- Horticulturae, 2022; 8(11):1053.
- Cevahir G, Bostan SZ. Organic acids, sugars and bioactive compounds of promising medlar (Mespilus germanica L.) genotypes selected from Turkey, Int. J. Fruit Sci., 2021; 21(1):312-22
- Güclü SF, Koyuncu F, Atay E. Organic acid, phenolic acid and flavonoids of medlar during different maturation stages, Akademik Ziraat Dergisi, 2022;11(2):207-12.
- Velicovic MM, Radivojenic DD, Oparnica CD. Volatile compounds in medlar fruit (Mespilus germanica L.) at two ripening stages, Hem.Ind, 2013; 67(3):437–41.
- Darbandi N, Ramezani M, Noori M. Mespilus germanica flavonoids attenuate cognitiv dysfunction in the streptozotocin induced rat model of Alzheimer’s disease, Indian J. Pharm. Sci., 2018; 80(4):668-75.
- Zołnierczyk AK, Ciałek S, Styczy ìnska M, Oziembłowski M. Functional properties of fruits of common Medlar (Mespilus germanica L.) extract, Appl.Sci., 2021; 11(16):7528.
- Shariatifar N, Rahimnia R, Jamshidi AM, Pirali Hamedani M, Shoeibi Sh. Effect of ethanolic extract of mespilus germanica on cutaneous leishmaniasis in BALB/c Mice, J. Med. Plants., 2011; 10(39):76-81.
- Bibalani GH, Mosazadeh-Sayadmahaleh F. Medicinal benefits and usage of medlar (Mespilus germanica) in Gilan Province (Roudsar District), Iran - J. Med. Plants Res., 2012; 6(7):1155-9.
- Nabavi S. F., Nabavi S. M., Ebrahimzadeh M. A., Asgarirad H. -The antioxidant activity of wild medlar (Mespilus germanica L.) fruit, stem bark and leaf, Afr. J. Biotechnol. 2011; 10(2):283-9.
- Safaria M, Ahmady-Asbchin S. Evaluation of antioxidant and antibacterial activities of methanolic extractof medlar (Mespilus germanica L.) leaves, Biotechnol. & Biotechnol. Equip., 2019; 33(1):372–8.
- Sadeghinejad Z, Erfani-Moghadam J, Khadivi A. Bioactive content and phenolic compounds of common medlar (Mespilus germanica L.) and Stern’s medlar (M. canescens Phipps), Food Sci Nutr., 2022; 10:1988–93.
- Shafee F, Khoshvishkaie E, Davoodi A, Dashti Kalantar A. The determination of blood glucose lowering and metabolic effects of Mespilus germanica L. hydroacetonic extract on streptozocin- induced diabetic Balb/c mice, Medicines, 2018, 5(1):1.
- Gruz J, Ayaz FA, Torun H, Strnad M. Phenolic acid content and radical scavenging activity of extracts from medlar (Mespilus germanica L.) fruit at different stages of ripening, Food Chem., 2011, 124:271-277.
- Rop O, Posolda M, Mlcek J, Reznicek V, Sochor J, Adam V, Kizek R, Sumczynski D. Qualities of native apple cultivar juices characteristic of Central Europe, Not Bot Horti Agrobo, 2012, 40(1):222-8.
- Campanella L, Bonanni A, Favero G, Tomassetti M. Determination of antioxidant properties of aromatic herbs, olives and fresh fruit using an enzymatic sensor, ABC, 2003, 375(8):1011-6.