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GC-MS investigation of the chemical composition of honeybee drone and queen larvae homogenate


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Andriţoiu C. V., Andriţoiu V., Cuciureanu M., Nica- Badea D., Bibere N., & Popa M. (2014). Effect of apitherapy products against carbon tetrachlorideinduced toxicity in Wistar rats. Romanian Journal of Morphology & Embryology, 55(3), 835-847.Search in Google Scholar

Balkanska R., Karadjova I., & Ignatova M. (2014). Comparative analyses of chemical composition of royal jelly and drone brood. Bulgarian Chemical Communications, 46, 412-416.Search in Google Scholar

Bărnuţiu L.-I., Mărghitaş L., Dezmirean D., Bobiş O., Cristina Mihai C., & Crenguţa Pavel C. (2013). Physicochemical composition of Apilarnil (bee drone larvae). Lucrări Ştiinţifice-Seria Zootehnie, 59, 199-202.Search in Google Scholar

Bogdanov S. (2015). Royal Jelly, Bee Brood: Composition, Health, Medicine: A Review. Bee Product Science, from www.bee-hexagon.net. April 2015.Search in Google Scholar

Budnikova N. V. (2009). Biologically active compounds in drone brood. Pchelovodstvo, 6, 54-56 (in Russian).Search in Google Scholar

Budnikova N. V. (2011). Development of the technology of honey bee drone production and storing. PhD Thesis. Divovo (in Russian).Search in Google Scholar

Burmistrova L. (1999). Physico-chemical analysis and biochemical appreciation of drone brood. PhD Thesis, Ryazan Medical University (in Russian).Search in Google Scholar

Finke M. D. (2005). Nutrient composition of bee brood and its potential as human food. Ecology of Food and Nutrition, 44, 257-270.10.1080/03670240500187278Search in Google Scholar

Gorpinchenko I. I., Dobrovol’skaya L. I., Mulyavko N. A., & Protas A. F. (2004). Drone homogenate in the medical treatment of man’s infertility. Man’s Health, 4, 61-63 (in Russian).Search in Google Scholar

Iliescu V. N. (1993). Preparation based oh medical plants, bee product, apilarnil and pollen. Romanian Apicola, 1, 8-9.Search in Google Scholar

Isidorov V. A., Bakier S., & Grzech J. (2012). Gas chromatographic- mass spectrometric investigation of volatile and extractable compounds of crude royal jelly. Journal of Chromatography B, 885-886, 109-116.10.1016/j.jchromb.2011.12.025Search in Google Scholar

Isidorov V. A. (2015). Identification of Biologically and Environmentally Significant Organic Compounds. Mass spectra and Retention Indices Library of Trimethylsilyl Derivatives. Warsaw: PWN.Search in Google Scholar

Krasovskaya S. V. (2011). Quantitative characterization of bee queen larvae homogenate for standardi zation and determination of the suitableness term. The Herald of Voronezh University. Ser.: Chemistry, Biology and Pharmacology, 2, 118-121 (in Russian).Search in Google Scholar

Krell R. (1996). Vallue-added products from beekeeping. FAO Agricultural Service Bullein No 124, Chapter 8.Search in Google Scholar

Lazaryan D. S. (2002). Comparative amino acids analysis in bee brood. Pharmaceutical Chemistry Journal, 36, 680-682.10.1023/A:1023469931357Search in Google Scholar

Lazaryan D. S., Sotnikova E. M., & Evtushenko N. S. (2003). Standardization of bee brood homogenate composition. Pharmaceutical Chemistry Journal, 37, 614-616.10.1023/B:PHAC.0000016077.99039.4bSearch in Google Scholar

Mbaya J. S. K. (1996). Usages of bee products in folk medicine in Kenia. In: Bee products: Properties, application and apitherapy. Abstr. Intern. Conf. Tel Aviv, p. 98.Search in Google Scholar

Meda A., Lamien Ch. E., Millogo J., Romito M., & Nacoulma O. G. (2004). Therapeutic uses of honey and honeybee larvae in central Burkina Faso. Journal of Ethnopharmacology, 95, 103-107.10.1016/j.jep.2004.06.016Search in Google Scholar

Murav’ev D. V., & Kalachinskaya A. M. (2014). Drone homogenate and laying hens productivity. Herald of Kazan’ Agrarian University, 1, 130-134.10.12737/3829Search in Google Scholar

Mutsaers M., van Blitterswijk H., van’t Leven L., Kerkvliet, J., & van de Waerdt, J. (2005). Bee products: properties, processing and marketing. Wageningen: Agromisa Foundation, In: M. Mutsaers (Ed.), pp. 41-42.Search in Google Scholar

Narumi S. (2004). Honeybee brood as a nutritional food. Mitsubachi Kagaku (Honeybee Science), 25, 119-124.Search in Google Scholar

NIST Chemistry WebBook. (2013) National Institute of Standards and Technology, Gaitherburg, MD 20899, from http://webbook.nist.gov/chemistry.Search in Google Scholar

PB-14. (2013). Oznaczanie zawartości tłuszczu metodą wagową. Wojewódzka Stacja Sanitarno- Epidemiologiczna w Białymstoku.Search in Google Scholar

PB-44. (2011). Określanie zawartości białka metoda miareczkową. Wojewódzka Stacja Sanitarno-Epidemiologiczna w Białymstoku.Search in Google Scholar

Pemberton R. W. (1999). Insects and other arthropods used as drugs in Korean traditional medicine. Journal of Ethnopharmacology 65, 207-216.10.1016/S0378-8741(98)00209-8Search in Google Scholar

PN-A-79011-3. (1998). Koncentraty spożywcze. Metody badań. Oznaczanie zawartości wody. Warszawa: Polski Komitet Normalizacyjny.Search in Google Scholar

PN-A-79011-6. (1998). Koncentraty spożywcze. Metody badań. Oznaczanie wartości kalorycznej. Warszawa: Polski Komitet Normalizacyjny.Search in Google Scholar

PN-A-79011-8. (1998). Koncentraty spożywcze. Metody badań. Oznaczanie zawartości popiołu ogólnego. Warszawa: Polski Komitet Normalizacyjny.Search in Google Scholar

PN-EN ISO 1736. (2008). Mleko w proszku i przetwory mleczne w proszku. Oznaczanie zawartości tłuszczu. Metoda grawimetryczna (Metoda odniesienia). Warszawa: Polski Komitet Normalizacyjny.Search in Google Scholar

Posey D. A. (1986). Topics and issues in ethnoentomology with some suggestions for the development of hypothesis-generation and testing in ethnobiology. Journal of Ethnobiology, 6, 99-120.Search in Google Scholar

Schmidt J.O., & Buchmann S.L. (1992). Other products of the hive. In: The hive and the honeybee J.M. Graham, ed. Dadant & Sons, Hamilton, Illinois, USA.Search in Google Scholar

Seres A. B., Ducza E., Bathori M., Hunyadi A., Beni Z., Dekany M., & Gaspar R. (2013). Raw drone milk of honeybee elicits uterotrophic effect in rat: evidence for estrogenic activity. Journal of Medicinal Food, 16, 404-409.10.1089/jmf.2012.023223631495Search in Google Scholar

Seres A.B., Ducza E., Báthori M., Hunyadi A., Béni Z., Dékány M., Hajagos-Tóth J., Verli J., & Gáspár R. (2014). Androgenic effect of honeybee drone milk in castrated rats: roles of methyl palmitate and methyl oleate. Journal of Ethnopharmacology, 153, 446-453.10.1016/j.jep.2014.02.05024607508Search in Google Scholar

Vasilenko Yu. K., Klimova I. I., & Lasaryan D. S. (2002). Biological effect of drone brood under chronic hy perlipidemia conditions. Pharmaceutical Chemistry Journal, 36, 434-436.10.1023/A:1021214728006Search in Google Scholar

Vasilenko Yu. K., Klimova I. I., & Lasaryan D. S. (2005). A comparative study of the immunitropic and hepatotropic action of beekeeping products in rats with drug-induced hepatitis. Pharmaceutical Chemistry Journal, 39, 319-321.10.1007/s11094-005-0144-6Search in Google Scholar

Yücel B., Açikgöz Z., Bayraktar H., & Seremet C. (2011). The effect of Apilarnil (drone bee larvae) administration on growth performance and secondary sex characteristics of male broilers. Journal of Animal and Veterinary Advances, 10, 2263-2266.Search in Google Scholar

eISSN:
2299-4831
Language:
English
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Journal Subjects:
Life Sciences, other, Zoology