Skip to main content
Have a personal or library account? Click to login
UČINKOVITOST BIOLOŠKI AKTIVNIH SASTAVNICA MATIČNE MLIJEČI: ANALIZA I STANDARDIZACIJA Cover

UČINKOVITOST BIOLOŠKI AKTIVNIH SASTAVNICA MATIČNE MLIJEČI: ANALIZA I STANDARDIZACIJA

By:   
Open Access
|Oct 2013

References

  1. 1. Chandrasekara A, Shahidi F. Bioactivities and antiradical properties of millet grains and hulls. J Agric Food Chem 2011;59:9563-71. doi: 10.1021/jf201849d
  2. 2. Kamakura M. Royalactin induces queen differentiation in honeybees. Nature 2011;473:478-83. doi: 10.1038/ nature10093
  3. 3. Vecchi MA, Sabatini AG, Grazia L, Tini V, Zambonelli C. Il contenuto in vitamine come possibile elemento di caratterizzazione della gelatina reale [The content in vitamins as a possible element of characterization of the royal jelly, in Italian]. Apicoltura 1988;4:139-46.
  4. 4. Tamura S, Kono T, Harada C, Yamaguchi K, Moriyama T. Estimation and characterisation of major royaljelly proteins obtained from the honeybee. Food Chem 2009;114:1491-7. doi: 10.1016/j.foodchem.2008.11.058
  5. 5. Bogdanov S. Royal Jelly, Bee Brood: Composition, Health, Medicine: A Review [pristup 28. lipnja 2013.]. Dostupno na http://www.bee-hexagon.net/files/file/fileE/Health/RJBookReview.pdf
  6. 6. Fontana R, Mendes MA, De Souza, BM, Konno K, Cesar LM, Malaspina O, Palma MS. Jelleines: a family of antimicrobial peptides from the Royal Jelly of honeybees (). Peptides 2004;25:919-28. doi: 10.1016/j. peptides.2004.03.016
  7. 7. Sabatini AG, Marcazzan G, Caboni MF, Bogdanov S, Almeida-Muradian LB. Quality and standardisation of royal jelly. JAAS 2009;1:1-6. doi: 10.3896/IBRA.4.01.1.04
  8. 8. Schmitzova J, Klaudiny J, Albert S, Schroder W, Schreckengost W, Hanes J, Judova J, Simuth J. A family of major royal jelly proteins of the honeybeeL. Cell Mol Life Sci 1998;54:1020-30. PMID: 9791542
  9. 9. Simuth J, Bilikova K, Kovacova E, Kuzmova Z, Schroder W. Immunochemical approach to detection of adulteration in honey: physiologically active royal jelly protein stimulating TNF-alpha release is a regular component of honey. J Agric Food Chem 2004;52:2154-8. doi: 10.1021/jf034777y
  10. 10. Albert S, Klaudiny J. The MRJP/YELLOW protein family of: identification of new members in the EST library. J Insect Physiol 2004;50:51-9. PMID: 15037093
  11. 11. Drapeau MD, Albert S, Kucharski R, Prusko C, Maleszka R. Evolution of the Yellow/Major Royal Jelly Protein family and the emergence of social behavior in honey bees.Genome Res 2006;16:1385-94. doi: 10.1101/gr.5012006
  12. 12. Schonleben S, Sickmann A, Mueller MJ, Reinders J. Proteome analysis ofroyal jelly. Anal Bioanal Chem 2007;389:1087-93. doi: 10.1007/s00216-007-1498-2
  13. 13. Bilikova K, Simuth J. New criterion for evaluation of honey: quantification of royal jelly protein apalbumin 1 in honey by ELISA. J Agric Food Chem 2010;58:8776-81. doi: 10.1021/ jf101583s
  14. 14. Kimura M, Kimura Y, Tsumura K, Okihara K, Sugimoto H, Yamada H, Yonekura M. 350-kDa royal jelly glycoprotein (apisin), which stimulates proliferation of human monocytes, bears the beta1-3galactosylated N-glycan: analysis of the N-glycosylation site. Biosci Biotechnol Biochem2003;67:2055-8. PMID: 14520005
  15. 15. Li J, Wang T, Zhang Z, Pan Y. Proteomic analysis of royal jelly from three strains of western honeybees (). J Agric Food Chem 2007;55:8411-22. doi: 10.1021/ jf0717440
  16. 16. Ramadan MF, Al-Ghamdi A. Bioactive compounds and health-promoting properties of royal jelly: A review. J Funct Foods 2012;4:39-52. doi: 10.1016/j.jff.2011.12.007
  17. 17. Kamakura M, Suenobu N, Fukushima M. Fifty-seven-kDa protein in royal jelly enhances proliferation of primary cultured rat hepatocytes and increases albumin production in the absence of serum. Biochem Biophys Res Commun 2001;282:865-74. doi: 10.1006/bbrc.2001.4656
  18. 18. Kamakura M, Moriyama T, Sakaki T. Changes in hepatic gene expression associated with the hypocholesterolaemic activity of royal jelly. J Pharm Pharmacol 2006;58:1683-9. PMID: 17331334
  19. 19. Mishima S, Suzuki KM, Isohama Y, Kuratsu N, Araki Y, Inoue M, Miyata T. Royal jelly has estrogenic effectsand. J Ethnopharmacol 2005;101:215-20. doi: 10.1016/j.jep.2005.04.012
  20. 20. Narita Y, Ohta S, Suzuki KM, Nemoto T, Abe K, Mishima S. Effects of long-term administration of royal jelly on pituitary weight and gene expression in middle-aged female rats. Biosci Biotechnol Biochem 2009;73:431-3. PMID: 19202272
  21. 21. Watanabe K, Shinmoto H, Kobori M, Tsushida T, Shinohara K, Kanaeda J, Yonekura M. Stimulation of cell growth in the U-937 human myeloid cell line by honey royal jelly protein. Cytotechnology 1998;26:23-7. doi: 10.1023/ A:1007928408128
  22. 22. Nakaya M, Onda H, Sasaki K, Yukiyoshi A, Tachibana H, Yamada K. Effect of royal jelly on bisphenol A-induced proliferation of human breast cancer cells. Biosci Biotechnol Biochem 2007;71:253-5. PMID: 17213647
  23. 23. Kohno K, Okamoto I, Sano O, Arai N, Iwaki K, Ikeda M, Kurimoto M. Royal jelly inhibits the production of proinflammatory cytokines by activated macrophages. Biosci Biotechnol Biochem 2004;68:138-45. PMID: 14745176
  24. 24. Okamoto I, Taniguchi Y, Kunikata T, Kohno K, Iwaki K, Ikeda M, Kurimoto M. Major royal jelly protein 3 modulates immune responsesand. Life Sci 2003;73:2029-45. doi: 10.1016/S0024-3205(03)00562-9
  25. 25. Salazar-Olivo LA, Paz-Gonzalez V. Screening of biological activities present in honeybee () royal jelly. Toxicol In Vitro 2005;19:645-51. doi: 10.1016/j. tiv.2005.03.001
  26. 26. Inoue S, Koya-Miyata S, Ushio S, Iwaki K, Ikeda M, Kurimoto M. Royal Jelly prolongs the life span of C3H/HeJ mice: correlation with reduced DNA damage. Exp Gerontol 2003;38:965-9. PMID: 12954483
  27. 27. Oršolić N. Bašić I. Honey bee products and their polyphenolic compounds in treatment of diabetes. U: Govil JN, Singh VK, Bhardwaj R, urednici. Phytopharmacology and Therapetutic Values IV. Rec Prog Med Plants 2008;22:455-553.
  28. 28. Koya-Miyata S, Okamoto I, Ushio S, Iwaki K, Ikeda M, Kurimoto M. Identification of a collagen productionpromoting factor from an extract of royal jelly and its possible mechanism. Biosci Biotechnol Biochem 2004;68:767-73. PMID: 15118301
  29. 29. Hashimoto M, Kanda M, Ikeno K, Hayashi Y, Nakamura T, Ogawa Y, Fukumitsu H, Nomoto H, Furukawa S. Oral administration of royal jelly facilitates mRNA expression of glial cell line-derived neurotrophic factor and neurofilament H in the hippocampus of the adult mouse brain. Biosci Biotechnol Biochem 2005;69:800-5. PMID: 15849420
  30. 30. Hattori N, Nomoto H, Fukumitsu H, Mishima S, Furukawa S. Royal jelly and its unique fatty acid, 10-hydroxy-trans-2- decenoic acid, promote neurogenesis by neural stem/ progenitor cells. Biomed Res 2007;28:261-6. PMID: 18000339
  31. 31. Hattori N, Ohta S, Sakamoto T, Mishima S, Furukawa S. Royal jelly facilitates restoration of the cognitive ability in trimethyltin-intoxicated mice. Evid Based Complement Alternat Med 2011;2011:165968. doi: 10.1093/ecam/ nep029
  32. 32. Fujii A, Kobayashi S, Kuboyama N, Furukawa Y, Kaneko Y, Ishihama S, Yamamoto H, Tamura T. Augmentation of wound healing by royal jelly (RJ) in streptozotocin-diabetic rats. Jpn J Pharmacol 1990;53:331-7. PMID: 2391765
  33. 33. Erski-Biljić M, Biljić Erski A, Rajić Savić N. Matični mleč - kraljevski gel (Apiterapija, knjiga 2.). Beograd: Grafos; 2003.
  34. 34. Nomura M, Maruo N, Zamami Y, Takatori S, Doi S, Kawasaki H. [Effect of long-term treatment with royal jelly on insulin resistance in Otsuka Long-Evans Tokushima Fatty (OLETF) rats, in Japanese]. Yakugaku Zasshi 2007;127:1877-82. PMID: 17978564
  35. 35. Tamura T, Fujii A, Kuboyama N. [Antitumor effects of royal jelly, in Japanese]. Nippon Yakurigaku Zasshi 1987;89:73-80. PMID: 3570105
  36. 36. Tamura T, Fujii A, Kuboyama N. Effects of royal jelly on experimental transplantable tumours. U: The XXXth International Apicultural Congress; 10.-16. listopada 1985. Nagoya, Japan. Bucharest: Apimondia Publishing House; 1985. str. 474-7.
  37. 37. Townsend GF, Morgan JF, Hazlett B. Activity of 10- hydroxydecenoic acid from royal jelly against experimental leukaemia and ascitic tumors. Nature 1959;183:1270-1. doi: 10.1038/1831270a0
  38. 38. Townsend GF, Morgan JF, Hazlett B, Hazlett B, Morton H, Shuel RW. Studies on theantitumor activity of fatty acid and 10-hydroxy-2-decenoic acid from royal jelly. Cancer Res 1960;20:503-10.
  39. 39. Oršolić N, Knežević A, Šver L, Terzić S, Hackenberger BK, Bašić I. Infl uence of honey bee products on transplantable murine tumors. Vet Comp Oncol 2003;1:216-26. doi: 10.1111/j.1476-5810.2003.00029.x
  40. 40. Oršolić N, Sacases F, Percie Du Sert P, Bašić I. Antimetastatic ability of honey bee products. Period biol 2007;109:173-80.
  41. 41. Oršolić N, Terzić S, Šver L, Bašić I. Honey-bee products in preventive and/or terapy of murine transplantable tumours. J Sci Food Agric 2005;85:363-70. doi: 10.1002/jsfa.2041
  42. 42. Šver L, Oršolić N, Tadić Z, Njari B, Valpotić I, Bašić I. A royal jelly a new potential immunomodulator in rats and mice. Comp Immun Microbiol Infect Dis 1996;19:31-8. PMID: 8654043
  43. 43. Vucevic D, Melliou E, Vasilijic S, Gasic S, Ivanovski P, Chinou I, Colic M. Fatty acids isolated from royal jelly modulate dendritic cell-mediated immune response. Int Immunopharmacol 2007;7:1211-20. doi: 10.1016/j.intimp.2007.05.005
  44. 44. Bincoletto C, Eberlin S, Figueiredo CA, Luengo MB, Queiroz ML. Effects produced by Royal Jelly on haematopoiesis: relation with host resistance against Ehrlich ascites tumour challenge. Int Immunopharmacol 2005;5:679-88. doi: 10.1016/j.intimp.2004.11.015
  45. 45. Allavena P, Mantovani A. Immunology in the clinic review series; focus on cancer: tumour-associated macrophages: undisputed stars of the inflammatory tumour microenvironment. Clin Exp Immunol. 2012;167:195-205
  46. 46. Emori Y, Oka H, Kobayashi N, Ohya O, Tamaki H, Hayashi H, Nomoto K. [Protective effect of royal jelly on immune dysfunction in aged mice, in Japanese]. Biotherapy (Tokyo) 1999;13:281-7.
  47. 47. Emori Y, Oka H, Ohya O, Tamaki H, Hayashi H, Nomoto K. [The protective effect of royal jelly against the hemopoiesis dysfunction in X-irradiated mice, in Japanese]. Biotherapy (Tokyo) 1998;12:313-9.
  48. 48. Emori Y, Oka H, Ohya O, Tamaki H, Hayashi H, Nomoto K. [The protective effect of royal jelly on cecal ligation and puncture-induced sepsis in X-irradiated mice, in Japanese]. Biotherapy (Tokyo) 1998;12:1143-8.
  49. 49. Krylov V, Koryagin AS, Nikolaeva AA, Sinelschikov AD, Ovoschnikova LV. Experiments on therapeutic effects of preparations of beekeeping products on radiation illnesses. Mellifera 2002:2:58-61.
  50. 50. Gore AC, editor. Endocrine-Disrupting Chemicals: From Basic Research to Clinical Practice. Totowa (NJ): Humana Press Inc.; 2007.
  51. 51. O’Connor JC, Chapin RE. Critical evaluation of observed adverse effects of endocrine active substances on reproduction and development, the immune system, and the nervous systemPure Appl Chem 2003;75:2099-123. doi: 10.1351/ pac200375112099
  52. 52. Karadeniz A, Simsek N, Karakus E, Yildirim S, Kara A, Can I, Kisa F, Emre H, Turkeli M. Royal jelly modulates oxidative stress and apoptosis in liver and kidneys of rats treated with cisplatin. Oxid Med Cell Longev 2011;2011:981793, doi:10.1155/2011/981793
  53. 53. Cemek M, Aymelek F, Buyukokuroĝlu ME, Karaca T, Buyukben A, Yilmaz F. Protective potential of Royal Jelly against carbon tetrachloride induced-toxicity and changes in the serum sialic acid levels. Food Chem Toxicol 2010;48:2827-32. doi: 10.1016/j.fct.2010.07.013
  54. 54. Kanbur M, Eraslan G, Beyaz L, Silici S, Liman BC, Altinordulu S, Atasever A. The effects of royal jelly on liver damage induced by paracetamol in mice. Exp Toxicol Pathol 2009;61:123-32. doi: 10.1016/j.etp.2008.06.003
  55. 55. Cavuşoμlu K, Yapar K, Yalcin E. Royal jelly (honey bee) is a potential antioxidant against cadmium-induced genotoxicity and oxidative stress in albino mice. J Med Food 2009;12:1286-92. doi: 10.1089/jmf.2008.0203
  56. 56. Oka H, Emori Y, Kobayashi N, Hayashi Y, Nomoto K. Suppression of allergic reactions by royal jelly in association with the restoration of macrophage function and the improvement of Th1/Th2 cell responses. Int Immunopharmacol 2001;1:521-32. PMID: 11367535
  57. 57. Taniguchi Y, Kohno K, Inoue S, Koya-Miyata S, Okamoto I, Arai N, Iwaki K, Ikeda M, Kurimoto M. Oral administration of royal jelly inhibits the development of atopic dermatitislike skin lesions in NC/Nga mice. Int Immunopharmacol 2003;3:1313-24. doi: 10.1016/S1567-576 (03)00132-2
  58. 58. Hidaka S, Okamoto Y, Uchiyama S, Nakatsuma A, Hashimoto K, Ohnishi ST, Yamaguchi M. Royal jelly prevents osteoporosis in rats: beneficial effects in ovariectomy model and in bone tissue culture model. Evid Based Complement Alternat Med 2006;3:339-48. doi: 10.1093/ecam/nel019
  59. 59. Husein MQ, Kridli RT. Reproductive responses following royal jelly treatment administered orally or intramuscularly into progesterone-treated Awassi ewes. Anim Reprod Sci 2002;74:45-53. PMID: 12379374
  60. 60. Husein MQ, Haddad SG. A new approach to enhance reproductive performance in sheep using royal jelly in comparison with equine chorionic gonadotropin. Anim Reprod Sci 2006;93:24-33. PMID: 16055281
  61. 61. Boman HG. Peptide antibiotics: holy or heretic grails of innate immunity? Scand J Immunol 1996;43:475-82. PMID: 8633204
  62. 62. Papo N, Shai Y. Effect of drastic sequence alteration and D-amino acid incorporation on the membrane binding behavior of lytic peptides. Biochemistry 2004;43:6393-403. doi: 10.1021/bi049944h
  63. 63. Fujiwara S, Imai J, Fujiwara M, Yaeshima T, Kawashima T, Kobayashi K. A potent antibacterial protein in royal jelly. Purification and determination of the primary structure of royalisin. J Biol Chem 1990;265:11333-7. PMID: 2358464
  64. 64. Genc M, Aslan A. Determination of trans-10-hydroxy-2- decenoic acid content in pure royal jelly and royal jelly products by column liquid chromatography. J Chromatogr A 1999;839:265-8. PMID: 10327631
  65. 65. Boukraa L, Meslem A, Benhanifia M, Hammoudi SM. Synergistic effect of starch and royal jelly againstand. J Altern Complement Med 2009;15:755-7. doi: 10.1089/ acm.2008.0483
  66. 66. Okuda H, Kameda K, Morimoto C, Matsuura Y, Chikaki M, Ming J. Studies on insulinlike substances in royal jelly and other substances in royal jelly which inhibit angiotensinconverting enzyme. Honeybee Sci 1998;19:9-14.
  67. 67. Matsui T, Yukiyoshi A, Doi S, Sugimoto H, Yamada H, Matsumoto K. Gastrointestinal enzyme production of bioactive peptides from royal jelly protein and their antihypertensive ability in SHR. J Nutr Biochem 2002;13:80-6. PMID: 11834223
  68. 68. Tokunaga KH, Yoshida C, Suzuki KM, Maruyama H, Futamura Y, Araki Y, Mishima S. Antihypertensive effect of peptides from royal jelly in spontaneously hypertensive rats. Biol Pharm Bull 2004;27:189-92. PMID: 14758031
  69. 69. Takaki-Doi S, Hashimoto K, Yamamura M, Kamei C. Antihypertensive activities of royal jelly protein hydrolysate and its fractions in spontaneously hypertensive rats. Acta Med Okayama 2009;63:57-64. PMID: 19247423
  70. 70. Morita H, Ikeda T, Kajita K, Fujioka K, Mori I, Okada H, Uno Y, Ishizuka T. Effect of royal jelly ingestion for six months on healthy volunteers. Nutr J 2012;11:77. doi:10.1186/1475-2891-11-77
  71. 71. Guo H, Saiga A, Sato M, Miyazawa I, Shibata M, Takahata Y, Morimatsu F. Royal jelly supplementation improves lipoprotein metabolism in humans. J Nutr Sci Vitaminol (Tokyo2007;345-8. PMID: 17934240
  72. 72. Vittek J. Effect of royal jelly on serum lipids in experimental animals and humans with atherosclerosis. Experientia 1995;51:927-35. doi: 10.1007/BF01921742
  73. 73. Elnagar S. Royal jelly counteracts bucks’ “summer infertility”. Anim Repr Sci 2010;121:174-80. doi: 10.1016/ j.anireprosci.2010.05.008
  74. 74. Mannoor MK, Shimabukuro I, Tsukamotoa M, Watanabe H, Yamaguchi K. Honeybee royal jelly inhibits autoimmunity in SLE-prone NZB x NZW F1 mice. Lupus 2009;1:44-52. doi: 10.1177/0961203308094765
  75. 75. Poplawsky A. Food for thought: royal jelly for the people. The Central Sulcus 2008;4:3-4.
  76. 76. Abdel-Wahhab MA, El-Nekeety AA, Abbas NF, El-Kholy W, Amra HA, Ebaid A. Efficacy of royal jelly against fumonisin-induced oxidative stress in rats. Toxicol Lett 2006;164(Supplement):S229-30.
  77. 77. Karaca T, Bayiroglu F, Yoruk M, Kaya MS, Uslu S, Comba B, Mis L. Effect of royaljelly on experimental colitis induced by acetic acid and alteration of mast cell distribution in the colon of rats. Eur J Histochem 2010;54:e35. PMID: 21263740
  78. 78. Sugiyama T, Takahashi K, Mori H. Royal jelly acid, 10- hydroxy-trans-2-decenoic acid, as a modulator of the innate immune responses. Endocr Metab Immune Disord Drug Targets 2012;12:368-76. PMID: 23061418
  79. 79. King DS, Baskerville R, Hellsten Y, Senchina DS, Burke LM, Stear SJ, Castell LM. A-Z of nutritional supplements: dietary supplements, sports nutrition foods and ergogenic aids for health and performance-Part 34. Br J Sports Med 2012;46:689-90. doi: 10.1136/bjsports 2012-091314
  80. 80. Cherniack EP. Bugs as drugs, Part 1: Insects: the “new” alternative medicine for the 21st century? Altern Med Rev 2010;15:124-35. PMID: 20806997
  81. 81. Boukraa L, Sulaiman SA. Rediscovering the antibiotics of the hive. Recent Pat Antiinfect Drug Discov 2009;4:206-13. PMID: 19673699
  82. 82. Viuda-Martos M, Ruiz-Navajas Y, Fernandez-Lopez J, Perez- Alvarez JA. Functional properties of honey, propolis, and royal jelly. J Food Sci 2008;73:R117-24. doi: 10.1111/j.1750-3841.2008.00966.x
  83. 83. Miyata T. Pharmacological basis of traditional medicines and health supplements as curatives. J Pharmacol Sci 2007;103:127-31. PMID: 17287592
  84. 84. Dzopalic T, Vucevic D, Tomic S, Djokic J, Chinou I, Colic M. 3,10-Dihydroxy-decanoicacid, isolated from royal jelly, stimulates Th1 polarising capability of human monocytederived dendritic cells. Food Chem 2011;126:1211-7. doi: 10.1016/j.foodchem.2010.12.004
  85. 85. Takahama H, Shimazu T. Food-induced anaphylaxis caused by ingestion of royal jelly. J Dermatol 2006;33:424-6. PMID: 16700835
  86. 86. Shkenderov S, Ivanov T. Pcelni Produkti [The Bee Products, in Bulgarian]. Zemizdat (Abstract in Honey bibliography)1983. 1-238.
  87. 87. Ghosh S, Playford RJ. Bioactive natural compounds for the treatment of gastrointestinal disorders. Clin Sci (London) 2003;104:547-56. PMID: 12641494
  88. 88. Mozherenkov VP, Miniaeva TG. [The use of products from bee raising in ophthalmology and otorhinolaryngology, in Russian]. Med Sestra 1991;50:47-51. PMID: 1803198
  89. 89. Popescu MP, Alexandra D, Popescu M. [Royal jelly and its use in ophthalmology, in Romanian]. Rev Chir Oncol Radiol O R L Oftalmol Stomatol Ser Oftalmol 1987;31:53-6. PMID: 2955470
  90. 90. Yang XY, Yang DS, Wei Z, Wang JM, Li CY, Ye H, Lei KF, Chen XF, Shen NH, Jin LQ, Wang JG. 10-Hydroxy-2- decenoic acid from royal jelly: A potential medicine for RA. J Ethnopharmacol 2010;128:314-21. doi: 10.1016/j. jep.2010.01.055
  91. 91. Rustogi R, Mill J, Fraser JF, Kimble RM. The use of ActicoatTM in neonatal burns. Burns 2005;31:878-82. doi: 10.1016/j.burns.2005.04.030
  92. 92. Hayashi T, Takamatsu N, Nakashima T, Arita T. Immunological characterization of honey proteins and identification of MRJP 1 as an IgE-binding protein. Biosci Biotechnol Biochem 2011;75:556-60. PMID: 21389615
  93. 93. Silici S, Ekmekcioglu O, Kanbur M, Deniz K. The protective effect of royal jelly against cisplatin-induced renal oxidative stress in rats. World J Urol 2011;29:127-32. doi: 10.1007/ s00345-010-0543-5
  94. 94. Siavash M, Shokri S, Haghighi S, Mohammadi M, Shahtalebi MA, Farajzadehgan Z. The efficacy of topical Royal Jelly on diabetic foot ulcers healing: A case series. J Res Med Sci 2011;16:904-9. PMID: 22279458
  95. 95. Lercker G, Caboni MF, Vecchi MA, Sabatini AG, Nanetti A. Characterization of the main constituents of royal jelly 410. Apicoltura 1992;8:27-37.
  96. 96. Oribe E, Arioka T, Fukuda K, Tatefuji T, Hashimoto K, Maeda K. Moisturizing effect of royal jelly extract and its mechanism on skin. J Dermatol 2010;37:77.
  97. 97. Abdelatif M, Yakoot M, Etmaan M. Safety and effi cacy of a new honey ointment on diabetic foot ulcers: a prospective pilot study. J Wound Care 2008;17:108-10. PMID: 18376651
  98. 98. Planta von A. [Uber den Futtersaft der Bienen, in German]. Hoppe-Seylers Zeitsch Physiol Chem 1888;12:327-54.
  99. 99. Lercker G. [La gelatina reale: composizione, autenticita ed dulterazione, in ltalian]. U: Atti del Convegno “Strategie per la valorizzazione dei prodotti dell’alveare”. Campobasso: Universita degli Studi del Molise; 2003. str. 67-81.
  100. 100. Bogdanov S, Bieri K, Gremaud G, Iff D, Kanzig A, Seiler K, Stockli H, Zurcher K. Swiss Food Manual: Gelee Royale. Berne: Bienenprodukte, BAG, Swiss Federal Offi ce for Public Health; 2004.
  101. 101. Li Jk, Wang T, Peng Wj. Comparative analysis of the effects of different storage conditions on major royal jelly proteins. J Apicult Res 2007;46:73-80.
  102. 102. Kosińska, A, Karamać M, Penkacik K, Urbalewicz A, Amarowicz R. Interactions between tannins and proteins isolated from broad bean seeds (Major) yield soluble and non-soluble complexes. Eur Food Res Technol 2011;233:213-22.
  103. 103. Nagai T, Inoue R. Preparation and the functional properties of water extract and alkaline extract of royal jelly. Food Chem 2004;84:181-6. doi: 10.1016/S0308-8146(03)00198-5
  104. 104. Samaranayaka AGP, Li-Chan ECY. Food-derived peptidic antioxidants: A review of their production, assessment, and potential applications. J Funct Foods 2011;3:229-54. doi: 10.1016/j.jff.2011.05.006
  105. 105. Shahidi F, Zhong Y. Revisiting the polar paradox theory: a critical overview. J Agric Food Chem 2011;59:3499-504. doi: 10.1021/jf104750m
  106. 106. Boselli E, Caboni MF, Sabatini AG, Marcazzan GL, Lercker G. Determination and changes of free amino acids in royal jelly during storage. Apidologie 2003;34:129-37. doi: 10.1051/apido:2003011
  107. 107. Terada Y, Narukawa M, Watanabe T. Specifi c hydroxy fatty acids in royal jelly activate TRPA1. J Agric Food Chem 2011;59:2627-35. doi: 10.1021/jf1041646
  108. 108. Antinelli JF, Zeggane S, Dav Ico R, Rognone C, Faucon JP, Lizzani L. Evaluation of (E)-10-hydroxydec-2-enoic acid as a freshness parameter for royal jelly. Food Chem 2003;80:85-9. doi: 10.1016/S0308-8146(02)00243-1
  109. 109. Ferioli F, Marcazzan GL, Caboni MF. Determination of (E)-10-hydroxy-2-decenoic acid content in pure royal jelly: A comparison between a new CZE method and HPLC. J Sep Sci 2007;30:1061-9. PMID: 17566341
  110. 110. Lercker G, Caboni MF, Conti LS, Ruini F, Giordani G. Components of royal jelly: I. Identifi cation of the organic acids. Lipids 1981;16:912-9. doi: 10.1007/BF02534997
  111. 111. Lercker G, Caboni MF, Conti LS, Ruini F, Giordani G. Components of royal jelly: II. The lipid fraction, hydrocarbons and sterols. J Apicult Res 1982;21:178-84.
  112. 112. Lercker G, Caboni MF, Vecchi MA, Sabtini AG, Nanetti, A. [Caratterizzazione dei principali costituenti dellagelatina reale, in Italian]. Apicoltura 1993;8:27-37.
  113. 113. Stocker A. Isolation and characterisation of substances from Royal Jelly. [PhD thesis]. Orleans: Universite d’Orleans; 2003.
  114. 114. Howe SR, Dimick PS, Benton AW. Composition of freshly harvested and commercial royal jelly. J Apicult Res 1985;24:52-61.
  115. 115. Daniele G, Casabianca HH. Sugar composition of French Royal Jelly for comparison with commercial and artifi cial sugar samples. Food Chem 2012;134:1025-9. doi: 10.1016/ j.foodchem.2012.03.008
  116. 116. Ricciardelli D’Albore G. [Analisi microscopica del miele edella gelatina reale: possibilita di applicazione e limiti, in Italian]. Boll Acc Gioenia Sci Nat Catania 1986;19:45-60.
  117. 117. Ricciardelli D’Albore G, Battaglini M, Bernardini M. [Origine geographique de la Gelee royale, in Italian]. Apidologie 1978;9:1-17. doi: 10.1051/apido:19780101
  118. 118. Serra Bonvehi J. Sugar, acidity and pH royal jelly. Determination of tryptophan in bee pollen and royal jelly by high-performance liquid chromatography with fl uorescence detection. Ann Bromatol 1992;44:65-9.
  119. 119. Zhang JZ, Xue XF, Zhou JH, Chen F, Wu LM, Li Y, Zhao J. Determination of tryptophan in bee pollen and royal jelly. Biomed Chromatogr 2009;23:994-8. doi: 10.1002/ bmc.1213
  120. 120. Boselli E, Caboni MF, Lercker G, Marcazzan GL, Sabatini AG, Baggio A, Prandin L. [Valutazione di produzioni apistiche: Gelatina reale e cera, in Italian]. U: Sabatini AG, Bolchi Serrini G, Frilli F, Porrini C, editors. Il ruolo della ricerca in apicoltura. Bologna: Litosei; 2002. str. 321-9.
  121. 121. Marconi E, Caboni MF, Messia MC, Panfi li G. Furosine: A suitable marker for assessing the freshness of royal jelly. J Agric Food Chem 2002;50:2825-9. PMID: 11982406
  122. 122. Messia MC, Caboni MF, Marconi E. Storage stability assessment of freezedried royal jelly by furosine determination. J Agric Food Chem 2005;53:4440-3. PMID: 15913307
  123. 123. Zheng HQ, Hu FL, Dietemann V. Changes in composition of royal jelly harvested at different times: consequences for quality standards. Apidologie 2011;42:39-47. doi: 10.1051/ apido/2010033
  124. 124. Rosmilah M, Shahnaz M, Patel G, Lock J, Rahman D, Masita A, Noormalin A. Characterization of major allergens of royal jelly. Trop Biomed 2008;25:243-51. PMID: 19287364
DOI: https://doi.org/10.2478/10004-1254-64-2013-2332 | Journal eISSN: 1848-6312 (formerly 0004-1254) | Journal ISSN: 0004-1254
Language: English, Croatian
Page range: 445 - 461
Published on: Oct 1, 2013
Published by: Institute for Medical Research and Occupational Health
In partnership with: Paradigm Publishing Services

© 2013 Nada Oršolić, published by Institute for Medical Research and Occupational Health
This work is licensed under the Creative Commons License.