Browse > Article
http://dx.doi.org/10.5713/ajas.2008.70362

Microencapsulation of Korean Mistletoe (Viscum album var. coloratum) Extract and Its Application into Milk  

Kim, N.C. (Department of Food Science and Technology, Sejong University)
Kim, J.B. (School of Bioscienec and Food Technology, Handong Global University)
Kwak, H.S. (Department of Food Science and Technology, Sejong University)
Publication Information
Asian-Australasian Journal of Animal Sciences / v.21, no.2, 2008 , pp. 299-306 More about this Journal
Abstract
This study was designed to develop microencapsulated Korean mistletoe extract, to determine the stability in vitro and to examine its application in milk. Coating materials used were polyglycerol monostearate (PGMS) and medium-chain triacylglyderol (MCT). The highest efficiency of microencapsulation was 78.3% with 15:1:40 (w/w/v) as PGMS : mistletoe extract : distilled water and 66.1% with 15:1 (w/w) as MCT : mistletoe extract. The size of microcapsule was about 30.0 and $19.5{\mu}m$ with PGMS and MCT, respectively. When microcapsules of mistletoe extract were incubated in simulated gastric fluid at pH 2 for 60 min, 14.8 and 17.2% of lectin was released from capsules which were coated with PGMS and MCT, respectively. Comparatively, 83.2 and 87.3% of lectin was released in simulated intestinal fluid (pH 8) after 60 min incubation of capsules coated with PGMS and MCT, respectively. The subsequent study determined the changes of physicochemical and sensory characteristics of milk with fortification of the mistletoe extract microcapsules during 12 day storage. TBA value was significantly lower in microcapsule-added groups than in the uncapsulated mistletoe extract-added group during the storage. When 100 ppm microencapsulated mistletoe extract was added, the L-, a- and b- values and viscosity were not significantly different from those of the control. In addition, the release of lectin from mistletoe extract over 12 days was 8.3 and 9.5 mg/100 ml in milk containing microcapsules made by PGMS and MCT, respectively. All sensory attributes showed a significant difference in uncapsulated mistletoe extract-added milk compared with other groups. The present study indicated that microcapsules of Korean mistletoe extract could be applied to milk and microcapsules coated with PGMS were effectively released in a simulated intestinal environment.
Keywords
Microencapsulation; Korean Mistletoe Extract; Polyglycerol Monostearate; Medium-chain Triacylglycerol; Milk;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
Times Cited By Web Of Science : 1  (Related Records In Web of Science)
Times Cited By SCOPUS : 1
연도 인용수 순위
1 Magee, E. L. Jr. and N. F. Olson. 1981a. Microencapsulation of cheese ripening systems: Formation of microcapsules. J. Dairy Sci. 64:600-610.   DOI
2 Kwak, H. S., M. R. Ihm and J. Ahn. 2001. Microencapsulation of $\beta$-galactosidase with fatty acid esters. J. Dairy Sci. 84:1576-1582.   DOI   ScienceOn
3 Kuttan, G. 1993. Tumoricidal activity of mouse peripheral macrophages treated with Viscum album extract. Immunol. Investig. 22:431-440.   DOI   ScienceOn
4 Kwaja, T. A., C. B. Dias and S. Pentecost. 1986. Recent studies on the anticancer activities of mistletoe (Viscum album) and its alkaloids. Oncology 43:42-50.   DOI   ScienceOn
5 Kim, N. C., B. J. Jeon, J. Ahn and H. S. Kwak. 2006. In vitro study of microencapsulated isoflavone and $\beta$-galactosidase. J. Agric. Food Chem. 54:2582-2586.   DOI   ScienceOn
6 Park, C. H., D. W. Lee, T. B. Kang, K. H. Lee, T. J. Yoon, J. B. Kim, M. S. Do and S. K. Song. 2001. cDNA cloning and sequence analysis of the lectin genes of the Korean mistletoe (Viscum album coloratum). Mol. Cells 12:215-220.   과학기술학회마을
7 SAS. 1985. User's Guide: Statistics, Version 5 Edition. SAS Institute, Inc., Cary, NC
8 Magee, E. L. Jr. and N. F. Olson. 1981b. Microencapsulation of cheese ripening systems: Stability of microcapsules. J. Dairy Sci. 64:611-615.   DOI
9 Lee, J. B., J. Ahn, J. H. Lee and H. S. Kwak. 2003. The microencapsulated ascorbic acid released in vitro and its effect on iron bioavailability. Arch. Pharm. Res. 26:874-879.   DOI   ScienceOn
10 Yoon, T. J., Y. C. Yoo, O. B. Choi, M. S. Do, T. B. Kang, S. W. Lee, I. Azuma and J. B. Kim. 1995. Inhibitory effect of Korean mistletoe (Viscum album coloratum) extract on tumor angiogenesis and metastasis of haematogenous and nonhaematogenous tumor cells in mice. Cancer Lett. 97:83-91.   DOI   ScienceOn
11 Stoeva, S., M. Franz, R. Wacker, R. Krauspenhaar, E. Guthohrlein, A. Mikhailov, C. Betzel and W. Voelter. 2001. Promary structure, isoforms, and molecular modeling of a chitinbinding mistletoe lectin. Arch. Biochem. Biophys. 392:23-31.   DOI   ScienceOn
12 Choi, H. J., J. Ahn, N. C. Kim and H. S. Kwak. 2006. The effects of microencapsulated chitooligosaccharide on physical and sensory properties of the milk. Asian-Aust. J. Anim. Sci. 19:1347-1353.   과학기술학회마을   DOI
13 Yoon, T. J., Y. C. Yoo, T. B. Kang, E. Her, S. H. Kim, K. Kim, I. Azuma and J. B. Kim. 2001. Cellular and humoral adjuvant activity of lectins isolated from Korean mistletoe (Viscum album coloratum). Int. Immunopharmacol. 1:881-889.   DOI   ScienceOn
14 Yoon, T. J., Y. C. Yoo, T. B. Kang, K. Shimazaki, S. K. Song, K. H. Lee, S. H. Kim, C. H. Park, I. Azuma and J. B. Kim. 1999. Lectins isolated from Korean mistletoe (Viscum album coloratum) induce apoptosis in tumor cells. Cancer Lett. 136:33-40.   DOI   ScienceOn
15 Franz, H. 1991. In: Advances in lectin research (Ed. H. Franz, Kichi Kasai, J. Kochaurek, S. Olsnes, L. M. Shannon). pp. 4:33-50. Verlag Gesundheit and Springer Verlag, Berlin.
16 Jackson, L. S. and K. Lee. 1991. Microencpasulated iron food fortification. J. Food Sci. 56:1047-1050.   DOI
17 Gabius, H. J., S. Gabius and S. S. Joshi. 1994. Form ill-defined to the immunomodulatory lectin: will there be a reason for oncological of mistletoe: Planta Med. 60:2-7.   DOI   ScienceOn
18 Hajto, T., K. Hostanska, and H. J. Gabius. 1989. Modulatory potency of the $\beta$-galactosidase-specific lectin from mistletoe (lscador) on the host defense system in vivo in rabbits and patients. Cancer Res. 49:4803-4808.
19 Braun, S. D. and N. F. Olson. 1986. Encapsulation of proteins and peptides in milk fat. Encapsulation efficiency and temperature and freezing stability. J. Microencapsulation 3(2):115-126.   DOI
20 Bersen'eva, E. A., A. A. Inanov, T. P. Sansonova, E. M. Chernova, and N. I. Oragvelidze. 1990. Microencapsulated aromatizers for tea. Pishchevaya Paomyshlennost, USSR 1:57-59.
21 Kwak, H. S., K. M. Yang and J. Ahn. 2003. Microencpasulated iron for milk fortification. J. Agric. Food Chem. 51:7770-7774.   DOI   ScienceOn