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棘孢曲霉转化甜菊糖为甜菊醇及纯化莱鲍迪苷A 被引量:5

Biological conversion of stevioside to steviol by Aspergillus aculeatus and the purification of rebaudioside A
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摘要 【目的】本工作对棘孢曲霉固体发酵抽提酶液转化甜菊糖进行了研究,并对转化产物进行鉴定及纯化分析。【方法】用高效液相色谱、液质联用及红外光谱等方法对转化新产物进行鉴定,对上清液中莱鲍迪苷A(RA)成分进行纯化。【结果】棘孢曲霉酶液在10 h内对甜菊糖中的甜菊苷(SS)、莱鲍迪苷C(RC)进行高效特异性转化,以沉淀的形式析出的转化产物经鉴定为甜菊醇,转化率高达98.0%,分离提纯后纯度为95.2%,回收率达84.0%.由于甜菊醇的沉淀分离,留在溶液中的RA更易被纯化。RA通过树脂吸附分离的回收率为80.5%.【结论】棘孢曲霉酶液对甜菊糖的一次转化可以同时得到甜菊醇和莱鲍迪苷A两种产品,是一种经济高效的工艺。 [Objective] The purpose of this research was to apply Aspergillus aculeatus solid fermentation extracts to convert stevioside and rebaudioside C,followed by identifying and purifying the new conversion product.[Methods]The product was identified by high performance liquid chromatography,chromatography-mass spectrometry and Infrared spectrum.The new product and rebaudioside A exited in the supernatant were purified by alcohol and macroporous resin.[Results]The Aspergillus aculeatus enzyme extracts could convert the stevioside and rebaudioside C to the new product within 10 hours. The conversion rate was 98.0% in 24 hours.The conversion product existed in deposit was identified as steviol.The purity and recovery percent of steviol were 95.2% and 84.0% respectively.Because stevioside could occur to deposit,the rebaudioside A existed in supernatant was purified easily. We used the resin chromatography to purify RA and the recovery could reach 80.5%.[Conclusion]Aspergillus aculeatus enzyme extracts could convert stevioside efficiently and specifically,and we could obtain rebaudioside A and steviol at the same time.
出处 《微生物学报》 CAS CSCD 北大核心 2014年第1期62-68,共7页 Acta Microbiologica Sinica
基金 国家林业行业公益专项(200904055) 江苏省优势学科生物学项目(2011010)~~
关键词 甜菊糖 棘孢曲霉 生物转化 莱鲍迪苷A 甜菊醇 stevioside Aspergillus aculeatus bioconvert rebaudioside A steviol
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  • 1柏正武,刘秀芳,徐汉生.甜叶醇衍生物的合成及其生物活性[J].应用化学,1993,10(4):35-38. 被引量:4
  • 2刘秀芳,黄曦,徐汉生.甜叶醇的结构改造及生物活性试验[J].武汉大学学报(自然科学版),1994,40(2):74-78. 被引量:6
  • 3Fujita T,Takeda Y,Yuasa E,et al.Structure of inflexinol,a new cytotoxic diterpene from Rabdosia inflexa[J].Phytochemistry,1982,21(4):903-905. 被引量:1
  • 4Fuji K,Node M,Ito N,et al.Terpenoids.L Antitumor activity of diterpenoids from Rabdosia shikokiana var.oceidentalis[J].Chem Pharm Bull,1985,33(3):1038-1042. 被引量:1
  • 5Toskulkao C,Sutlleerawattananon M,Piyachaturawat P.Inhibitory effect of steviol,a metabolite of stevioside,on glucose absorption in everted hamster intestine in vitro[J].Toxlcol Lett,1995,80:153-159. 被引量:1
  • 6Kelmer Bracht A,Alvarez M,Bracht A.Effects of Stevia rebaudiana natural products On rat liver mitochondria[J].Biochem Pharmacol,1985,34:873-882. 被引量:1
  • 7Mosetting E,Beglinge U,et al.J.Am.Chem.Soc[J].1963,85:2305. 被引量:1
  • 8Ogawa T,Nozaki M,Matsui M.Total synthesis stevioside[J].Tetrahedron,1980,36(18):2641-2648. 被引量:1
  • 9刘铸晋 周文华 高峰等.甜叶悬钩子叶的甜味成分研究.植物学通报,1983,01:33-37. 被引量:3
  • 10Heleno de Oliveira,Bras,Ferreim da Trindade,Jose Luiz.Production of hydroxysteviol and its apphcation as a plant growth regulator:Brazil,2004006278[P1.2006-08-22. 被引量:1

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  • 1马骁驰,果德安.中药活性成分生物转化的研究思路与方法[J].中国天然药物,2007,5(3):162-168. 被引量:33
  • 2Kovylyaeva G I,Bakaleinik G A,Strobykina I Y,et al.Glycosides from stevia rebaudiana[J].Chemistry of Natu- ral Compounds,2007,43(1):81-85. 被引量:1
  • 3Carakostas M C,Curry L L,Boileau A C,et al.Over- view:the history,technical function and safety of rebaudi- oside A,a naturally occurring steviol glycoside,for use in food and beverages[J].Food and Chemical Toxicology,2008,46:SI-S10. 被引量:1
  • 4Sehar I,Kaul A.,Bani S,et al.Immune up regulatoiy re- sponse of a non-caloric natural sweetener,stevioside[J].Chem-Biol Interact,2008,173(2):115-121. 被引量:1
  • 5Boonkaewwan G,Toskulkao C,Vongsakul M.Anti-inflam- matory and immunomodulatory activities of stevioside and its metabolite steviol on THP-1 cells[J].Food Chem,2006,54(3):785-789. 被引量:1
  • 6Chan P,TomLinson B,Chen Y J,et al.A double-blind placebo-controlled study of the effectiveness and tolerability of oral stevioside in human hypertension[J].Blackwell Science Ltd Br J Clin Pharmacol,2000,50:215-220. 被引量:1
  • 7Seren Gregersen P B J,Jens J H,Kjeld H.Antihypergly- cemic effects of stevioside in type 2 diabetic subjects[J].Metabolism,2004,53(1):73-76. 被引量:1
  • 8Yasukawa K,Kitanaka S,Seo S.Inhibitory effect of stevi- oside on tumor promotion by 12-o-tetradecanoylphorbol-13- acetate in two-stage carcinogenesis in mouse skin[J].Biol Pharm Bull.,2002,25(11);1 488-1 490. 被引量:1
  • 9Pariwat P,Homvisasevongsa S,Muanprasat C,et al.A natural plant-derived dihydroisosteviol prevents cholera tox- in-induced intestinal fluid secretion[J].J Pharmacol Exp Ther,2008,324(2);798-805. 被引量:1
  • 10Sonia Maria Blauth de Slavutzky.Stevia and sucrose effect on plaque formation[J].Journal ftir Verbraucherschutz und Lebensmittelsicherheit,2010,5(2):213-216. 被引量:1

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