真菌多糖免疫活性的研究进展
ADVANCES IN RESEARCH ON IMMUNE ACTIVITIES OF POLYSACCHARIDES FROM FUNGI
李师鹏 安利国
分类号:Q939.96 文献标识码:A
文章编号:1007-3515(2001)04-0581-07
自从真菌多糖抑瘤活性被发现以后,真菌多糖引起越来越多的关注,成为一个非常活跃的研究领域.人们发现,真菌多糖具有复杂的生物活性和功能,其中,最主要的活性就是免疫调节活性,作为一种免疫调节剂真菌多糖已广泛应用于免疫性缺陷疾病、自身免疫病和肿瘤等疾病的临床治疗.本文对近年来真菌多糖免疫活性的研究作一综述,以期为真菌多糖的研究与开发提供参考.
……
基金项目:国家自然科学基金资助项目
作者单位:李师鹏(山东师范大学动物抗性生物学省级重点实验室,济南,250014)
安利国(山东师范大学动物抗性生物学省级重点实验室,济南,250014)
参考文献:
[1]万克青,1995.香菇多糖注射液对慢性活动型肝炎外周血T淋巴细胞亚群和IL-2R表达作用的研究.中国免疫学杂志,11,(5):298~299
[2]方积年,1984.亮菌多糖的研究IAM3组分的分离纯化及其性质.生物化学与生物物理学报,16,(3):222~228
[3]刘美琴,李建中,1999.香菇菌丝体多糖的分离鉴定与免疫功能研究.生物化学与生物物理学报,31,(1):46~50
[4]匡彦德,1989.冬虫夏草免疫增强作用机理的研究.上海免疫学杂,9(1):6~8
[5]安明榜,1994.金针菇多糖对大鼠脾淋巴细胞增殖反应及IL-2产生的影响.中国免疫学杂志,10(2):113
[6]李兆兰,1987.裂褶菌深层培养及多糖测定.真菌学报,6,(3):170~177
[7]李兆兰,1994.裂褶菌多糖的结构研究.南京大学学报,30(3):482~487
[8]沈萍萍,1991.真菌多糖研究进展.南京大学学报,27(3):524~529
[9]陈广西,张翼秋,1990.安络小皮伞水溶性多糖的研究Ⅰ、甘露糖FPl的纯化与结构研究真菌学报,9(2):155~160
[10]周金黄,1993,免疫药理学进展.北京:中国科学技术出版社,192~201
[11]郑建仙编著,1995.功能性食品.北京:中国轻工业出版社,79~80
[12]夏尔宁,陈琼华,1988.银耳子实体多糖的分离、分析及生物活性,真菌学报,7(7):166~174
[13]徐红薇,1998.猪苓多糖与IL-2协同诱导PBMC杀伤肿瘤细胞活性的实验研究中国免疫学杂志,14(2):109~111
[14]曹培让,1989.金针菇子实体多糖PA3DE的分离、纯化和分析.生物化学与生物物理学报,21(2):152~156
[15]黄幸纾,1993.灰树花多糖及其抗癌作用中国食用菌,13(1):41~43
[16]龚敏,朱勤,1990.冬虫夏草多糖的分子结构与免疫活性.生物化学杂志,6(6):486~491
[17]靖大道,1995.虫草多糖对人外血IL-2、IL-2R及IFN-γ调节作用的研究.上海免疫学杂志,5(6):321~323
[18]Adachi Y, Ohno N, Ohsawa M et al., 1990. Change of biological activities of (1-3)-beta-D-glucan from Grifola frondosa upon molecular weight reduction by heat treatment. Chem Pharm Bull (Tokyo), 38(2): 477~81
[19]ChiharaG.,1993.香菇多糖的免疫药理作用.国外医学:植物药分册,8:165~169
[20]Engstad R E, Robertsen B, 1994. Specificity of a beta-glucan receptor on macrophages from Atlantic salmon (Salmo salar L.). Dev Comp Immunol, 18(5): 97~408
[21]Gutierrez A, Prieto A, Martinez A T et al., 1996. Structural characterization of extracellular polysaccharides produced by fungi from the genus Pleurotus. Carbohydr Res, 281(1): 143~54
[22]Hamuro J, Maeda Y Y, Arai Y et al., 1971.The significance of the higher structure of the polysaccharides lentinan and pachymaran with regard to their antitumour activity. Chem Biol Interact, 3(1): 69~71.
[23]Han S B, Lee C W, Jeon Y J et al., 1999. The inhibitory effect of polysaccharides isolated from Phellinus linteus on tumor growth and metastasis. Immunopharmacology, 41(2): 157~64
[24]Janusz M J, Austen K F, Czop J K et al., 1989 .Isolation of a yeast heptaglucoside that inhibits monocyte phagocytosis of zymosan particles. J Immunol, 142 (3): 959~65
[25]Jeannin J F, Lagadec P, Pelletier H et al., 1988.Regression induced by lentinan, of peritoneal carcinomatoses in a model of colon cancer in rat. Int J Immunopharmacol, 10 (7): 855~61
[26]Kamasuka T, Momoki T, Sakai S ,1968. Antitumor activity of polysaccharide fractions prepared from some strains of Basidiomycetes.Gann, 59(5): 443~5.
[27]Kiho T., S. Sobue, S. Vkai, 1994. Structural features and hypoglycemic activeties of two polysaccharides fiom a hot-water extract of Agrocybe cylindracea .Carbohydrate Research, 252:81~87
[28]Kim H M, Han S B, Oh G T, et al., 1996 .Stimulation of humoral and cell mediated immunity by polysaccharide from mushroom Phellinus linteus. Int J Immunopharmacol, 18(5): 295~303
[29]Kumano N, Kurita K, Oka S, 1973. Inhibition of the development of 3-methylcholanthrene-induced mouse tumor with the yeast mannan preparation. Gann, 64(5): 529~33
[30]Kurashige S, Akuzawa Y, Endo F, 1997. Effects ofLentinus edodes, Grifola frondosa and Pleurotus ostreatus ' administration on cancer outbreak, and activities of macrophages and lymphocytes in mice treated with a carcinogen, N-butyl-N'-butanoinitrosoamine. Immunopharmacol Immunotoxicol, 19(2): 175~83
[31]Leung N Y, Fung K P, Chay Y M, 1997.The isolation and characterization of an immunomodulatory and anti-tumor polysaccharide preparation from Flammulina velutipes. Immunopharmacology, 35(3):255~63
[32]Liu W K, Ng T B, Sze S F,et al., 1993. Activation of peritoneal macrophages by polysaccharopeptide from the mushroom,Coriolus versicolor. Immunopharmacology ,26(2): 139~46
[33]Ma L., 1991.Effects of Ganoderma polysaccharides on IL-2 production by mouse splenocytes in vitro.IBeijing Med Univ, 23(5):412
[34]Nemoto J, Ohno N, Saito K et al., 1994.Analysis of cytokine mRNAs induced by the administrationof a highly branched(1-->3)-beta-D-glucan, OL-2. Bio Pharm Bull, 17(7):948~54
[35]Ng. T B, 1998. A review of research on the protein bound polysaccharide (polysaccharopeptide,PSP)from the mushroom Coriolus versicolor. Gen Pharmacol, 30(1):1~4
[36]Ohkuma T, Tanaka S, Ikekawa T, 1983.Augmentation of host's immunity by combined of sarcoma 180 and administration of protein-bound polysacchride,EA6,isolated from Flammulina velutipes(Curt. Ex Fr.) Sing. In ICR mice. J Pharmacobiodyn,6(2):88~95
[37]Ohno N, Suzuki I, Oikawa S et al. ,1984. Antitumor activity and structural characterization of glucans extracted fiom cultured fruit bodies of Grifolafrondosa. Chem Pharm Bull (Tokyo), 32(3): 1142~51
[38]Orr F W, Warner D J, 1990 .Effects of systemic complement activation and neutrophil-mediated pulmonary injury on the retention and metastasis of circulating cancer cells in mouse lungs. Lab Invest, 62(3):331~8
[39]Qian F G, Xu G Y, Du S J, et al., 1990, Yao Hsueh Hsueh Pao ,25(7):522~5
[40]Sakurai T, Ohno N, Suzuki I et al., 1995. Effect of soluble fungal (1-->3)-beta-D-glucan obtained from Sclerotinia sclerotiorum on alveolar macrophage activation. Immunopharmacology, 30(2):157~66
[41]Sasaki T, Tankasuka N, Chihara G et al., 1976 .Antitumor activity of degraded products of lentinan: its correlation with molecular weight. Gann, 67(2): 191~5
[42]Steadman R, Petersen M M, Topley N et al., 1990. Differential augmentation by recombinant human tumor necrosis factor-alpha of neutrophil responses to particulate zymosan and glucan. J Immunol, 144(7):2712~8.
[43]Tabata K, Mto W, Kojima T et al., 1981.Ultrasonic degradation of Schizophyllan,an antitumor polysaccharide produced by Schizophyllum commune fries. Carbohydr Res, 89:121
[44]Thornton B P, Vetvicka V, Pitman M, et al., 1996 . Analysis of the sugarv specificity and molecular location of the beta-glucan-binding lectin site of complement receptor type 3(CD1 lb/CD18). J Immunol, 156(3):1235~46
[45]Wang H K, Xie J X ,Chang J J et al., 1992. New shiraiachrome-A-and calphostin-C-related perylene derivatives as cytotoxic and antiviral agents and inhibitors of protein kinase C. JMed Chem.,35(15):2717~21
[46]Xia D, Lin Z B. 1989.Effects of Tremella polysaccharides on immune function in mice. Chung Kuo Yao Li Hsueh Pao ,10(5):453~7
[47]Zhang L., 1995.Studies on molecular weights ofpolysaccharides of Auricularia auricula-judae. Carbohydrate Research ,270:1~10