[1] |
FINKIELSTEIN V A, GOLDFARB D S. Strategies for preventing calcium oxalate stones[J]. Canadian Medical Association Journal, 2006, 174(10):1407-1409.
|
[2] |
IVANOVSKI O, DRUEKE T B. A new era in the treatment of calcium oxalate stones?[J]. Kidney International, 2013, 83(6):998-1000.
|
[3] |
杨寿佐. 泌尿系结石治疗新进展[J]. 临床合理用药杂志, 2011, 4(8X):130-131. YANG S Z. New progress in the treatment of urinary calculi[J]. Clinical Rational Drug Use, 2011, 4(8X):130-131.
|
[4] |
SVEDRU?I? D, JÓNSSON S, TOYOTA C G, et al. The enzymes of oxalate metabolism:unexpected structures and mechanisms[J]. Archives of Biochemistry and Biophysics, 2005, 433(1):176-192.
|
[5] |
MÄKELÄ M R, HILDÉN K, LUNDELL T K. Oxalate decarboxylase:biotechnological update and prevalence of the enzyme in filamentous fungi[J]. Applied Microbiology and Biotechnology, 2010, 87(3):801-814.
|
[6] |
贺俊斌, 林日辉, 韦成昱, 等. 草酸脱羧酶的性质及应用研究进展[J]. 食品科学, 2015, (1):262-267. HE J B, LIN R H, WEI C Y, et al. Properties and applications of oxalate decarboxylase[J]. Food Science, 2015, (1):262-267.
|
[7] |
贺俊斌, 林日辉, 龙寒, 等. 草酸降解酶预防治疗草酸钙结石症的研究进展[J]. 广东医学, 2015, (7):1132-1136. HE J B, LIN R H, LONG H, et al. Research progress on oxalate-degrading enzyme preventing calcium oxalate stones[J]. Guangdong Medical Journal, 2015, (7):1132-1136.
|
[8] |
GRUJIC D, SALIDO E C, SHENOY B C, et al. Hyperoxaluria is reduced and nephrocalcinosis prevented with an oxalate-degrading enzyme in mice with Hyperoxaluria[J]. American Journal of Nephrology, 2009, 29(2):86-93.
|
[9] |
JEONG B C, HAN D H, SEO S I, et al. Yvrk gene recombinant E. coli reduce the concentration of urine oxalate in transient Hyperoxaluria rat model[J]. The Journal of Urology, 2009, 181(4):660.
|
[10] |
COWLEY A B, POAGE D W, DEAN R R, et al. 14-Day repeat-dose oral toxicity evaluation of oxazyme in rats and dogs[J]. International Journal of Toxicology, 2010, 29(1):20-31.
|
[11] |
SHENOY B C, CACHERO T G, SHIN J, et al. Crystallized oxalate decarboxylase and methods of use:WO, US8142775B2[P]. 2012-03-27.
|
[12] |
SIDHU H, COWLEY A B, GOLANDER C, et al. Purification and isolation of recombinant oxalate degrading enzymes and spray-dried particles containing oxalate degrading enzymes:US8431122[P]. 2013-4-30.
|
[13] |
贺俊斌, 龙寒, 林日辉, 等. 草酸脱羧酶促进草酸钙结晶溶解的体外研究[J]. 食品科学, 2015, (19):159-162. HE J B, LONG H, LIN R H, et al. Oxalate decarboxylase promotes the in vitro dissolution of calcium oxalate crystals[J]. Food Science, 2015, (19):159-162.
|
[14] |
张永帅, 李元召, 孙俊良. 酶修饰研究进展[J]. 食品工业科技, 2014, 35(2):350-353. ZHANG Y S, LI Y Z, SUN J, et al. Research progress in the enzymatic modification[J]. Science and Technology of Food Industry, 2014, 35(2):350-353.
|
[15] |
梁跃, 林日辉, 黄文勤, 等. 交联草酸脱羧酶聚集体的制备及其性质[J]. 食品科学, 2013, 34(1):215-219. LIANG Y, LIN R H, HUANG W Q, et al. Preparation and properties of cross-linked oxalate decarboxylase aggregates[J]. Food Science, 2013, 34(1):215-219.
|
[16] |
韦成昱, 林日辉, 黄文勤, 等. 单甲氧基聚乙二醇-醛对草酸脱羧酶的修饰[J]. 食品与发酵工业, 2014, 40(3):30-35. WEI C Y, LIN R H, HUANG W Q, et al. Research on modification of oxalate decarboxylase by methoxy polyethyleneglycol-aldehyde[J]. Food and Fermentation Industries, 2014, 40(3):30-35.
|
[17] |
韦成昱, 林日辉, 龙寒, 等. 右旋糖酐对草酸脱羧酶的修饰研究[J]. 食品工业科技, 2014, 35(13):195-199. WEI C Y, LIN R H, LONG H, et al. Study on chemical modification of oxalate decarboxylase by dextran[J]. Science and Technology of Food Industry, 2014, 35(13):195-199.
|
[18] |
林日辉, 许丽莉, 农勉, 等. 重组草酸脱羧酶的表达及酶学性质研究[J]. 食品与发酵工业, 2011, 37(2):57-61. LIN R H, XU L L, NONG M, et al. Expression and characterization of oxalate decarboxylase[J]. Food and Fermentation Industries, 2011, 37(2):57-61.
|
[19] |
SVEDRUZIC D, LIU Y, REINHARDT L A, et al. Investigating the roles of putative active site residues in the oxalate decarboxylase from Bacillus subtilis[J]. Archives of Biochemistry and Biophysics, 2007, 464(1):36-47.
|
[20] |
HABEEB A F S A. Determination of free amino groups in proteins by trinitrobenzenesulfonic acid[J]. Analytical Biochemistry, 1966, 14(3):328-336.
|
[21] |
SREERAMA N, WOODY R W. A self-consistent method for the analysis of protein secondary structure from circular dichroism[J]. Analytical Biochemistry, 1993, 209(1):32-44.
|
[22] |
SREERAMA N, VENYAMINOV S Y, WOODY R W. Estimation of protein secondary structure from circular dichroism spectra:inclusion of denatured proteins with native proteins in the analysis.[J]. Analytical Biochemistry, 2000, 287(2):243-251.
|
[23] |
TANNER A, BORNEMANN S. Bacillus subtilis YvrK is an acid-induced oxalate decarboxylase[J]. Journal of Bacteriology, 2000, 182(18):5271-5273.
|
[24] |
GREGG C, KINSTLER O. Chemical modification of proteins to improve biocompatibility and bioactivity:US6770746B2[P]. 2004-8-3.
|
[25] |
张静, 田亚平. 丁二酸酐修饰对枯草芽孢杆菌氨肽酶结构及酶学特性的影响[J]. 食品与生物技术学报, 2013, 32(6):622-627. ZHANG J,TIAN Y P. Chemical modification of the Bacillus subtilis aminopeptidase by succinic anhydride and its enzyme properties[J]. Journal of Food Science and Biotechnology, 2013, 32(6):622-627.
|
[26] |
SANGEETHA K, ABRAHAM T E. Chemical modification of papain for use in alkaline medium[J]. Journal of Molecular Catalysis B:Enzymatic, 2006, 38(3/4/5/6):171-177.
|
[27] |
熊亚红, 高敬忠, 郑坚鹏. 提高漆酶稳定性的化学修饰方法的研究[J]. 化学研究与应用, 2011, 23(8):985-990. XIONG Y H, GAO J Z, ZHEN J P. Study on the chemical modification of laccase with stability enhancement[J]. Chemical Research and Application, 2011, 23(8):985-990.
|
[28] |
KHAPARDE S S, SINGHAL R S. Chemically modified papain for applications in detergent formulations[J]. Bioresour. Technol., 2001, 78(1):1-4.
|
[29] |
GOUDA M D, SINGH S A, RAO A G A, et al. Thermal inactivation of glucose oxidase[J]. Journal of Biological Chemistry, 2003, 278(27):24324-24333.
|