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离子液体对热带假丝酵母细胞生物相容性的研究 被引量:6

The biocompatibility of ionic liquids for Candida tropicalis
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摘要 采用琼脂扩散法、糖代谢活力保留法和细胞生长抑制试验评价了6种离子液体对热带假丝酵母104细胞的毒性大小,以期构建可用于热带假丝酵母细胞催化3,5-双三氟甲基苯乙酮不对称还原的含离子液体反应体系.研究表明:离子液体[EMIM](L)-Lac对热带假丝酵母细胞的毒性最小,在含该离子液体的体系中进行不对称还原时可获得最高产率.阴离子为(L)-Lac-的离子液体对细胞的毒性较BF4-的低;且阴离子为BF4-时,离子液体对细胞的毒性随阳离子咪唑环上烷基侧链取代基长度的增加而增加.与基于细胞生长抑制试验获得的离子液体EC50值的毒性评价相比较,采用琼脂扩散法和糖代谢活力保留法均可快速、简便地检测离子液体的生物相容性,后两种方法可为快速筛选合适的离子液体种类,以构建含离子液体反应体系提供一定的依据. The agar diffusion test, glucose metabolic activity retention method and cell growth inhibition test were performed to evaluate the toxicity of ionic liquids to Candida tropicalis 104 cells,and to formulate a suitable ionic liquid-containing system for asymmetric reduction of 3,5- bistrifluoromethyl aeetophenone. [EMIM] (L)-Lac showed less toxicity to Candida tropicalis 104 cells and the maximum yield was obtained when asymmetric reduction carried out in an [EMIM-] (L)-Lac-containing system. The ionic liquids with (L)-Lac- anion were more biocompatible to Candida tropicalis cells than BF^-. When the anion of ionic liquids was BF4- , an increase chain length of alkyl group substituted on the imidazole cation ring corresponded to an increase in toxicity. Compared with the EC50value obtained by the cell growth inhibition test, the agar diffusion test and glucose metabolism can be used to fast and simply distinguish between toxic and biocompatible ionic liquids and can be applied for preliminary screening of ionic liquids for constructing of an ionic liquid-containing system for asymmetric reduction.
出处 《浙江工业大学学报》 CAS 2013年第3期254-259,共6页 Journal of Zhejiang University of Technology
基金 国家自然科学基金资助项目(21076193) 浙江省制药重中之重学科开放基金资助项目(20100609)
关键词 离子液体 琼脂扩散法 热带假丝酵母 不对称还原 ionic liquids agar diffusion test Candida tropicalis asymmetric reduction
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参考文献15

  • 1PHAM T P T, CHO C W,]EON C 0, et al. Identification of metabolites involved in the biodegradation of the ionic liquid 1- butyl-3-methylpyridinium bromide by activated sludge microor-ganisms]']]. Environmental Science and Technology, 2009,43 (2): 516-521.
  • 2SHELDON R. Catalytic reactions in ionic liquids[]]. Chemical Communications, 2001,23: 2399-2407.
  • 3GORDON C M. New developments in catalysis using ionic liq-uids[J]. Applied Catalysis A: General,2001,222Cl/2): 101- 117.
  • 4李汝雄,王建基.绿色溶剂——离子液体的制备与应用[J].化工进展,2002,21(1):43-47. 被引量:159
  • 5ASTORFF B, STRMANN R, RANKE]. How hazardous are ionic liquids? Structure-activity relationships and biological testing as important elements for sustainability evaluation[J]. Green Chemistry, 2003,5 (2) : 136-142.
  • 6STASIEWICZ M, MULKIEWICZ E, TOMCZAK-WAND-ZEL R, et al. Assessing toxicity and biodegradation of novel, environmentally benign ionic liquids (l-alkoxymethyl-3- hydroxypyridinium chloride, saccharinate and acesulfamates ) on cellular and molecular level[J]. Ecotoxicology and Environ-mental Safety,2008,710) :157-65.
  • 7DOCHERTY K M, KULPA C F. Toxicity and antimicrobial activity of imidazolium and pyridinium ionic liquids[] J. Green Chemistry,2005,7(4) :185-189.
  • 8REBROS M, NIMAL GUNARATNE H Q, FERGUSONJ, et al. A high throughput screen to test the biocompatibility of water-miscible ionic liquids[J]. Green Chemistry, 2009,11 (3) :402-408.
  • 9WOOD N, FERGUSON] L, NIMAL GUNARATNE H Q, et al. Screening ionic liquids for use in biotransformations with whole microbial cells[]]. Green Chemistry ,2011,13(7) : 1843- 1851.
  • 10YANG Zhong-hua , ZENG Rong , WANG Yu, et al. Toler-ance of immobilized yeast cells in imidazolium-based ionic liq-uids[] J. Food Technology and Biotechnology, 2009,47 (1) : 62-66.

二级参考文献57

  • 1骆健美,金志华,岑沛霖.褐黄孢链霉菌纳他霉素发酵条件优化[J].高校化学工程学报,2006,20(1):68-73. 被引量:29
  • 2Forsyth S,Golding J,MacFarlane D R,Forsyth M.[J]. Electrochim.Acta.,2000,45:1753~1757
  • 3Welton T.[J].Chem.Rev.,1999,99:2071~2083
  • 4石峰 邓友全 彭家键 等.化学通报网络版,2000,(4):0003-0003.
  • 5Ellis B,Keim W,Wassorscheid P.[J].Chem.Commun.,1999, 337
  • 6Freemantle M.[J].C & EN.,2000,15:37
  • 7Wilkes J S,Zaworotko M J.[J]. Chem.Commun.,1992,965
  • 8Fuller J,Carlin R T,Delong H C,Haworth D.[J]. Chem. Commun.,1994,299
  • 9Fuller J,Carlin R T,Osteryoung R A.[J]. Chem.Commun.,1997,3881
  • 10Nanjundiah C,McDevitt S F,Koch V R.[J]. J. Electrochem. Soc.,1997,144(10):3392

共引文献200

同被引文献58

  • 1聂映,毕小玲,尤启冬.阿瑞吡坦[J].中国新药杂志,2006,15(3):238-239. 被引量:16
  • 2赵忠斌,魏振平,芮伟.化疗止吐临床治疗药物新进展[J].世界临床药物,2006,27(8):480-484. 被引量:35
  • 3INGO T,BERND D,GUNTHER H.Antisense therapy in oncology:new hope for an old idea[J].Lancet,2001,358(9280):489-497.
  • 4CHAUMONT C G,SEKSEK O,GRZYBOWSKA J,et al.Delivery systems for antisense oligodeoxynudeotide[J].Pharmacology & Therapeutics,2000,87(3):255-277.
  • 5ZHANG Yuan-pen,REIMER D L,ZHANG Guo-yang,et al.Self-assembling DNA-lipid particles for gene transfer[J].Pharmaceutical Research,1997,14(2):190-196.
  • 6LKRAMY A,KENTARO K,SHIROH F,et al.Octaarginine-modified liposomes:enhanced cellular uptake and controlled intracellular trafficking[J].International Journal of Pharmaceutics,2008,354:39-48.
  • 7SHYHDAR L,LEAF H.Targeted delivery of antisense oligodeoxynucleotide and small interference RNA into lung cancer cells[J].Molechlar Pharmaceutics,2006,3:579-588.
  • 8OLIVIER Z,FRANCIS C.SZOKA J R.Mechanism of oligodeoxynucleotide release from cationic liposomes[J].Biochemistry,1996,93:11493-11498.
  • 9XIANG Guang-ya,WU Jun,LU Yan-hui,et al.Synthesis and evaluation of a novel ligand for folate-mediated targeting liposomes[J].International Journal of Pharmaceutics,2008,356:29-36.
  • 10ZUHORN I S,ENGBERTS J B,HOEKSTRA D.Gene-delivery by cationic lipid vectors:overcoming cellular barriers[J].European Biophysics Journal,2007,36(4):349-362.

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