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    標題: 茯苓多醣體應用於化粧品之抗老化分析
    Anti-aging assay of Wolfiporia cocos polysaccharid...
    作者: 周玟玉
    Min-Yu Chou
    貢獻者: 呂敏勇
    嘉南藥理科技大學:化妝品科技研究所
    關鍵字: 茯苓
    反應曲面法
    基質金屬蛋白酶
    保濕
    多醣體
    polysaccharides
    Wolfiporia cocos
    response surf
    日期: 2008
    上傳時間: 2010-05-31 13:59:21 (UTC+8)
    摘要: 本研究的目的在探討茯苓(WolfiPoria cocos)菌絲體液態深層培養生產菌絲體和胞外多醣體(exopolysaccharides)的最佳培養條件;而且我們將萃取獲得的茯苓胞外多醣體處理3T3老鼠纖維母細胞,分析多醣體對基質金屬蛋白酶(matrix metalloproteinases, MMPs)酵素活性及對膠原蛋白含量的影響;並評估其保濕能力。
    以反應曲面法得知含有3%的葡萄糖、0.7%的酵母抽出物和0.7%的玉米抽出物,對茯苓的菌絲體和胞外多醣體可得到最佳的產量;再利用五公升小型醱酵槽進行茯苓菌絲體和胞外多醣體的生產,發現菌絲體會隨著葡萄糖的濃度降低而增加,直到第六天葡萄糖完全被利用殆盡,菌絲體產量可達到9.00 g/L,胞外多醣體的濃度可達到2.93 g/L。
    實驗結果顯示茯苓胞外多醣體對於MMP-2和MMP-9的酵素活性皆無抑制的作用;因此對細胞培養液內所含的膠原蛋白無保護作用。由保濕能力測定的結果顯示,在(1) 3.4%於20分鐘內、(2) 1.5%於15分鐘內、(3) 0.5%於10分鐘內,其保濕能力均比玻尿酸佳;且在60分鐘後保濕能力雖然沒有比玻尿酸來的好,但保濕能力仍維持在94%以上,由實驗數據顯示茯苓胞外多醣體具有良好的保濕幼纂C
    綜合上述的實驗結果,茯苓胞外多醣體在化妝品的應用上可做為天然的保濕成分。
    The purpose of this study was designed to investigate the optimum condition for the production of mycelia and exopolysaccharides (WCEPs) in submerged culture of Wolfiporia cocos. Furthermore, we treated 3T3 mouse fibroblasts with WCEPs, then assaying the effect of WCEPs on the activities of MMPs and the content of collagen present in the culture medium. Additionally, we evaluated the moisturizing abilities of WCEPs.
    The data obtained from response surface methodology showed that the fermentation broth including 3% glucose, 0.7% yeast extract, and 0.7% corn steep powder could give rise to the optimum yield of mycelia and WCEPs. The 5-L fermentors were also employed for the production of mycelia and WCEPs. We found that after 6-day fermentation, glucose was nearly depleted, and the concentrations of W. cocos mycelia and WCEPs in submerged medium were 9.00 g/L and 2.93 g/L, respectively.
    The results also showed that WCEPs could not inhibit the activities of MMP-2 and MMP-9, and therefore, collagen in the present of culture medium was not preserved. On the other hand, we demonstrated that compared with hyaluronans, WCEPs in 3.4%, 1.5%, and 0.5% possessed a superior moisturizing ability within 20 min, 15min, and 10 min, respectively. During 60 min, moisture storage capacity in WCEPs was maintained above 95% at room temperature. The data demonstrated that WCEPs had the exceptional moisturizing efficacy.
    The results presented here suggest that WCEPs can be used as a natural moisturizing agent and applied in skincare cosmetic products.
    關聯: 1.Ainsworth, G. C., Sparrow, F. K., and Snassman, A. S. The fungi. Vol. IV A.A Taxonomic Review with Key:Ascomycetes and Fungi Imperfecti. Academic Press, Inc. New York, p621, 1973.
    2.盧宏民,中藥大辭典,上海:上海科學技術出版社,pp.1596-1597, 1997。
    3.張景保,中國人民共合國藥典中藥彩色圖集,廣東:廣東技術出版社,pp.262-263, 1990。
    4.顏正華,中藥學,上冊:台北知音出版社,pp.865-867, 1997。
    5.劉波,中國藥用真菌,山西:山西人民出版社,pp.228, 1984。
    6.Chen, Y. U., and Chang, H. M, Antiproliferative and differentiating effect of polysaccharide fraction form fu-ling (Poria cocos) on human leukemic U397 and HL-60 cell, Food chem, (42): 759-769, 2004.
    7.Tai, T., Akita, Y., Kinoshits, K., Koyama, K., Takahashi, K., and Watanabe, K, Triterpenes form the surface lycrs of Poria cocos, Phytochemistry, 39(5): 1165-1169, 1995.
    8.Cuellar, M. J., Giner, R. M., Recio, M. C., Just, M. Manez, J. S. and Rios. J. L, Effect of the basidiomycete Poria cocos on experimental dermatitis and other inflammatory condition, Chem Pharm Bull, 45(3): 492-494, 1997.
    9.Kaminaga, T., Yasukawa, K., and Takido, T, Inhibitory effect of Poria cocos on 12--Tetradecanoylphorbol-13-acetate induced ear oedema and tumour promotion in mouse skin, Phytother res, (10): 581-584, 1996.
    10.Nukaya, H., Yamashiro, H., Fukazawa, H., Ishida, H., and Tsuji, K, Isolation of TPA-induced mouse ear edema from Poria cocos, Chem Pharm Bull, 44(4): 847-849, 1996.
    11.Yasukawa, K., Kaminaga, T. Kitanaka, S., Tai, T., Nunoura, Y., Natori., Takido, S. and M, 3-Hydrooybenzoyldehydrotumulosic acid from Poria cocos, and its anti-inflammatory effect, Phytochemistry, 48(8): 1357-1360, 1998.
    12.M. Ukiya, T. Akihisa, M. Hirano, M. Oshikubo, Y. Nobukuni, Y. Kimura, T. Tai, S. Kondo, and H. Nishino, Inhibition of tumor-promoting effect by poricoic acids G and H and other lanostane-type triterpenes and cytotoxic acitivity of poricoic acids A and G from Poria cocos, J. Net. Prod., 65: 426-465, 2002.
    13.T. Tai, T. Kaminaga, K. Yasukawa, H. Kanno, Y. Nunoura, and M. Takido, Inhibitory effects of lanostane-type triterpene acids, the components of Poria cocos, on tumor promotion by 12--tetra-decanoylphorbol-13-acetate in two-stage carcinogenesis in mouse skin, Oncology, 53: 382-385, 1996.
    14.H. Kanayama, N. Adachi, Y. Fukai, I. Takeuchi, and M. Togami, Studies on the active polysaccharides from the mycelia of Wolfiporia cocos fractionation and purification of antitumor polysaccharides H11, Yakugaku Zasshi, 106(3): 199-205, 1986.
    15.Http://faculty.stut.edu.tw
    16.李萍、何俊蓉,茯苓藥理研究概況。山地學報,pp.140-142, 2004。
    17.丁瓊、張俐娜、張志強,茯苓菌絲體多醣的分離及結構分析。高分子學報,pp.224-227, 2000。
    18.Yong Jin, Lina Zhang, Mei Zhang, Li Chen, Peter Chi Keung Cheung, Antitumor activies of hetero polysaccharides of Poria cocos mycelia from different strains and culture media, Science direct, 1517-1521, 2003.
    19.Yifeng Wang, Mei Zhang, Dong Ruan, Alexander S. Shashkov, Michelle Kilcoyne, Angela V. Savage and Lina Zhang, Chemical componets and molecular mass of six polysaccharides isolated from the sclerotium of Poria cocos, Science direct, 327-334, 2004.
    20.林雨露、張俐娜、金勇、陳莉、張玫、張志強、陳立國,人工培養菌種茯苓菌絲體多醣的分離、組成和分子量。高分子學報,pp.97-102, 2003。
    21.Shen Qian, New studies on constituents of fuling cyclohexanondien triterpenic, Chinese Medicinal Herd, Attachment 1-3, 1999.
    22.A. Kanematsu and S. Natori, Triterpenoides of fuling, sclerotia of Poria cocos (Schw.) Wolf. I., Yakugaku Zasshi, 90(4): 475-479, 1970.
    23.陳宏慧,液態培養環境對茯苓菌絲體生長及其多醣體成分之影響,東海大學食品科學系研究所碩士論文, 2004。
    24.Catley, B. J, The extracellular polysaccharide, pullulan, produced by aureobasidium pullulans; a relationship between elaboration rate and morphology, J. Gen Microbiol, 120: 263-268, 1980.
    25.林家如,浸液發酵培養基與培養條件對藥用茯苓菌絲體及胞外多醣體生成之影響,大葉大學食品工程研究所碩士論文, 2002。
    26.王謙、冀宏、丁方杰、朱朝輝、汪虹、霍紅、顧雅君,茯苓的發酵研究。中國食用菌,21(2): 41-42, 2002。
    27.李得俊、林品汛、陳埁華、王伯徹,茯苓液態批次發酵培養最佳化。中華民國食品科學技術學會會議論文集,第十六屆第一次, 2001。
    28.Nomoto, T., Culture of Poria cocos Wolf, Japan Patent: JP6277039, 1994.
    29.胡琦桂,真菌球狀菌絲體生長之探討。食品工業,26(9): 37-45, 1994。
    30.劉松青、武成榮,灰樹花栽培技術研究。中國食用菌,16-18, 1998。
    31.汪雜云、吳守一、朱金華,灰樹花液體深層培養工藝研究。生物工程學報,15: 378-382, 1999。
    32.Park, J. P., Kim, S. W., Hwang, H. J., Cho, Y. J., and Yun, J. W, Stimulatory effect of plant oils and fatty acids on the exo-biopolymer production in Cordyceps militaris, Eneyme and Microbial Technology, 31: pp250-255, 2002.
    33.Jeongseok, L., Sang, Y. P., Sunwon, P. and Anton, P. J, Control of fed-batch fermentation, Biotechnol. Adv, 17: pp29-48, 1999.
    34.王謙、關蕾蕾、王超、冀宏、丁萬傑、劉傳斌、刑志華、李寶佳,茯苓液體培養條件研究及其營養濃縮液的相關檢測。河北大學生命科學學院食藥用真菌研究所, 2004。
    35.周建良,醣脂類生物介面活性劑rhamnolipid醱酵基質最適化及生產策略之研究。國立成奶j學化學工程學系碩士論文, 2005。
    36.王耀東,冷凍金線鰱魚生產煉製品之適性研究。國立台灣海洋大學食品科學系碩士論文, 2003。
    37.謝銘傑,利用不同金屬錯合物與過氧化氫對氯酚氧化之研究。國立高雄第一科技大學環境與安全衛生工程所碩士論文, 2004。
    38.Http://www.homeostyle.com/facedesignn
    39.光井武夫,新化粧品學,第二版:合記圖書出版社, 2004。
    40.洪偉章、李金枝、陳榮秀,化妝品原料及弁遄G藝軒出圖書出版社, 2001。
    41.張麗卿,化妝品製造實務:台灣復文興業股份有限公司, 1998。
    42.鄭明俊,尿毒症患者接受不同血液透析膜治療前與治療後,血漿中MMP-2、MMP-9、TIMP-1及TIMP-2之變化。中山醫學大學生物化學研究所碩士論文, 2001。
    43.李宜達,探討丹參酸B對於內毒素處理人類主動脈平滑肌細胞和apo E缺陷小鼠表現MMP-2與MMP-9的影響及其機制。國立陽明大學醫學院解剖暨細胞生物學研究所碩士論文, 2005。
    44.潘美仁,非類固醇抗發炎藥物抑制間質性金屬蛋白酶-2表現的分子機轉探討。高雄醫學院醫學研究所碩士論文, 2001。
    45.Kahari, V. M. and Saarialho-kere, U, Matrix metalloproteinases in skin, Experimental dermatology, 6: 199-213, 1997.
    46.Creemers, L. B., Jansen, I. D. C., Docherty, A. J. P., Reynoleds, J. J., Beertsen, W., Everts, V. Gelatinase A (MMP-2) and cysteine proteinases are essential for the degradation of collagen in soft connective tissue, Matrix Biology, 17: 35-46, 1998.
    47.Thibodeau, A, Metalloproteinase inhibitors. Cosmetics & Toiletries. 115: 75-82, 2000.
    48.賴宜甄,藻類多醣體應用於化妝品中之抗老化分析。嘉南藥理科技大學化妝科技研究所碩士論文, 2006。
    49.鄭懿芳,樟芝菌絲體培養之胞外多醣體應用於抗老化化妝品成份之研究。嘉南藥理科技大學化妝科技研究所碩士論文, 2005。
    50.趙祐癒A黃白木耳液體醱酵的生理活性探討。南台科技大學生物科技研究所碩士論文, 2004。
    51.呂欣怡,舞菇多醣體成份之分析研究。南台科技大學化學工程系碩士論文, 2003。
    52.邱標麟,實用化妝品學:復文書局, 2001。
    53.洪偉章,化妝品有效性評估:高立圖書有限公司, 2001。
    54.吳侑軒,液態黑納豆對於皮膚保健之研究。靜宜大學化學研究所碩士論文, 2004。
    55.陳士軒,透明質酸之製備與傷口癒合應用。國立陽明大學醫學工程研究所碩士論文, 1996。
    56.謝慧冰,攪拌剪應力是玻尿酸醱酵放大設計之關鍵因素。國立成奶j學化學工程學系碩士論文, 2005。
    顯示於類別:[化妝品應用與管理系(所)] 博碩士論文

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