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Original

Encapsulation of complex extracts in β-cyclodextrin: An application to propolis ethanolic extract

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Pages 603-613 | Received 16 Oct 2008, Accepted 27 Oct 2008, Published online: 05 Nov 2009

References

  • Ahn MR, Kumazawa S, Usui Y, Nakamura J, Matsuka M, Zhu F, et al. Antioxidant activity and constituents of propolis collected in various areas of China. Food Chem 2007; 101: 1400–1409
  • Alvarez-Parrilla E, De la Rosa LA, Torresrivas F, Rodrigo-Garcia J, Gonzales-Aguilar GA. Complexation of apple antioxidants: Chlorogenic acid, quercetin and rutin by b-cyclodextrin (b-CD). J Incl Phenom Macro 2005; 53: 121–129
  • Aree T, Chaichit N. Crystal structure of β-cyclodextrin–benzoic acid inclusion complex. Carbohyd Res 2003; 338: 439–446
  • Bankova V, De Castro SL, Marcucci MC. Propolis: Recent advances in chemistry and plant origin. Apidologie 2000; 31: 3–15
  • Bankova V, Popova M, Bogdanov S, Sabatini A. Chemical composition of European propolis: Expected and unexpected results. Z Naturforsch 2000; 57c: 530–533
  • Banskota AH, Tezuka Y, Prasain JK, Matsushige K, Saiki I, Kadota S. Chemical constituents of Brazilian propolis and their cytotoxic activities. J Nat Prod 1998; 61: 896–900
  • Burdock GA. Review of the biological properties and toxicity of bee propolis (propolis). Food Chem Toxicol 1998; 36: 347–363
  • Calabrò ML, Tommasini S, Donato P, Raneri D, Stancanelli R, Ficarra P, et al. Effects of α- and β-cyclodextrin complexation on the physico-chemical properties and antioxidant activity of some 3-hydroxyflavones. J Pharm Biomed Anal 2004; 35: 365–377
  • Crowell PL, Elson CE. Isoprenoids, health and disease. Wildman REC, editor. 2001, Nutraceuticals and functional foods. Boca Raton, FL: CRC Press. pp 31–54
  • Desorby SA, Netto FM, Labuza TP. Comparison of spray-drying, drum-drying and freeze-drying for β-carotene encapsulation and preservation. J Food Sci 1997; 62: 1158–1162
  • Divakar S. A structural study of the naringin-β-cyclodextrin complex. J Incl Phenom Macro 1993; 15: 305–316
  • Divakar S, Maheswaran M. Structural studies on inclusion compounds of β-cyclodextrin with some substituted phenols. J Incl Phenom Macro 1997; 27: 113–126
  • Ghisalberti EL. Propolis: A review. Bee World 1978; 60: 59–84
  • Gouin S. Microencapsulation: Industrial appraisal of existing technologies and trends. Trends Food Sci Tech 2004; 15: 330–347
  • Guo M, Zhang S, Song F, Wang D, Liu Z, Liu S. Studies on the non-covalent complexes between oleanolic acid and cyclodextrins using electrospray ionization tandem mass spectrometry. J Mass Spectrom 2003; 38: 723–731
  • Hashimoto H. CyD applications in food, cosmetic, toiletry, textile and wrapping material fields. Cyclodextrins and their complexes, H Dodziuk. Wiley-VCH, Weinheim 2006; 452–459
  • Hedges AR, Shieh WJ, Sikorski CT. Use of cyclodextrins for encapsulation in the use and treatment of food products. Encapsulation and controlled release of food ingredients, SJ Risch, GA Reineccius. American Chemical Society, Washington 1995; 60–71
  • Higuchi T, Connors KA. Phase solubility technique. Adv Anal Chem Instrum 1965; 4: 117–212
  • Jeng S-N, Shih M-K, Kao C-M, Liu T-Z, Chen S-C. Antimutagenicity of ethanol extracts of bee glue against environmental mutagens. Food Chem Toxicol 2000; 38: 893–897
  • Jiang H, Sun H, Zhang S, Hua R, Xu Y, Jin S, et al. NMR investigations of inclusion complexes between b-cyclodextrin and naphthalene/anthraquinone derivatives. J Incl Phenom Macro 2007; 58: 133–138
  • Kalogeropoulos N, Chiou A, Mylona A, Ioannou MS, Andrikopoulos NK. Recovery and distribution of natural antioxidants (a-tocopherol, polyphenols and terpenic acids) after pan-frying of Mediterranean finfish in virgin olive oil. Food Chem 2007; 100: 509–517
  • Kimoto T, Koya S, Hino K, Yamamoto Y, Nomura Y. Renal carcinogenesis induced by ferric nitrilotriacetate in mice and protection from it by Brazilian propolis and artepillin C. Pathol Int 2000; 50: 679–689
  • Kokkinou A, Makedonopoulou S, Mentzafos D. The crystal structure of the 1:1 complex of b-cyclodextrin with trans-cinnamic acid. Carbohyd Res 2000; 328: 135–140
  • Kujumgiev A, Tsvetkova I, Serkedjieva Y, Bankova V, Christov R, Popova S. Antibacterial, antifungal and antiviral activity of propolis from different geographic origins. J Ethnopharmacol 1999; 64: 235–240
  • Marcucci MC. Propolis: Chemical composition, biological properties and therapeutic activity. Apidologie 1995; 26: 83–99
  • Marquele FD, Oliveira ARM, Bonato PS, Lara MG, Fonseca MJV. Propolis extract release evaluation from topical formulations by chemiluminescence and HPLC. J Pharm Biomed Anal 2006; 41: 461–468
  • Melliou E, Chinou I. Chemical analysis and antimicrobial activity of Greek propolis. Planta Medica 2004; 70: 515–519
  • Molly K, Woestyne MV, de Smet I, Verstraete W. Validation of the simulator of the human intestinal microbial ecosystem (SHIME) reactor using microorganisms-associated activities. Microb Ecol Health Dis 1994; 7: 191–200
  • Mourtzinos I, Salta F, Yannakopoulou K, Chiou A, Karathanos VT. Encapsulation of olive leaf extract in β-cyclodextrin. J Agric Food Chem 2007; 55: 8088–8094
  • Naefady AM, El-Shanawany MA, Mohamed MH, Hassanean HAH, Nohara T, Yoshimitsu H. Cyclodextrin-enclosed substances of Brazilian propolis. Chem Pharm Bull 2003; 51: 984–985
  • Neacsu M, Eklund PC, Sjöholm RE, Pietarinen SP, Ahotupa MO, Holmbom BR, et al. Antioxidant flavonoids from knotwood of Jack pine and European aspen. Holz Roh Werkst 2007; 65: 1–6
  • Orsia OR, Sforcin JM, Funaria SRC, Bankova V. Effects of Brazilian and Bulgarian propolis on bactericidal activity of macrophages against Salmonella Typhimurium. Int Immunopharmacol 2005; 5: 359–368
  • Pereira DSA, de Miranda FA, Trugo LC, Neto FR. Distribution of quinic acid derivatives and other phenolic compounds in Brazilian propolis. Z Naturforsch 2003; 58: 590–593
  • Polyakov NE, Leshina T, Konovalova TA, Hand EO, Kispert LD. Inclusion complexes of carotenoids with cyclodextrins: NMR, EPR, and optical studies. Free Radic Biol Med 2004; 36: 872–880
  • Said SA, Khan SA, Ahmad I, Ali HS. Chemical composition of Egyptian and UAE propolis. Pak J Pharm Sci 2006; 19: 58–61
  • Salvatierra D, Jaime C, Virgili A, Sánchez-Ferrando F. Determination of the inclusion geometry for the b-cyclodextrin/benzoic acid complex by NMR and molecular modeling. J Org Chem 1996; 61: 9578–9581
  • Schrooyen PMM, van der Meer R, de Kruif CG. Microencapsulation: Its application in nutrition. Proc Nutr Soc 2001; 60: 475–476
  • Shamsipur M, Yari A, Sharghi EE. Spectrofluorometric study of complexation of some amino derivatives of 9,10-anthraquinone with β-cyclodextrin. Spectrochim Acta A 2005; 62: 372–376
  • Silici S, Kutluca S. Chemical composition and antibacterial activity of propolis collected by three different races of honeybees in the same region. J Ethnopharmacol 2005; 99: 69–73
  • Singleton VL, Orthofer R, Lamuela-Raventós RM. Analysis of total phenols and other oxidation substrates and antioxidants by means of Folin-Ciocalteu reagent. Methods Enzymol 1999; 299: 152–178
  • Sumiyoshi H. Utilisation of inclusion complexes with plant components for foods. Nippon Shokuhin Shinsozai Kenkyukaishi 1999; 2: 109–114
  • Szejtli J. Introduction and general overview of cyclodextrin chemistry. Chem Rev 1998; 98: 1743–1753
  • Szente L, Szejtli J. Cyclodextrins as food ingredients. Trends Food Sci Tech 2004; 15: 137–142
  • Tommasini S, Raneri D, Ficarra R, Calabrò ML, Stancanelli R, Ficarra P. Improvement in solubility and dissolution rate of flavonoids by complexation with β-cyclodextrin. J Pharm Biomed Anal 2004; 35: 379–387
  • Yan C, Li X, Xiu Z, Hao C. A quantum-mechanical study on the complexation of b-cyclodextrin with quercetin. J Mol Struc-THEOCHEM 2006; 764: 95–100
  • Zeller BL, Saleeb FZ, Ludescher RD. Trends in development of porous carbohydrate food ingredients for use on flavor encapsulation. Trends Food Sci Tech 1999; 9: 389–394
  • Zheng U, Haworth IS, Zuo Z, Chow MSS, Chow AHL. Physicochemical and structural characterization of quercetin-β-cyclodextrin complexes. J Pharm Sci 2005; 94: 1079–1089
  • Zuo Y, Wang C, Lin Y, Guo J, Deng Y. Simultaneous determination of anthraquinones in radix Polygoni multiflori by capillary gas chromatography coupled with flame ionization and mass spectrometric detection. J Chromatogr A 2008; 1200: 43–48

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