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Heterologous Expression,Purification and Enzymatic Characterization of Xylitol Dehydrogenase from the Thermophilic Fungus Talaromyces emersonii
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作者 MENG Er QU Cong +8 位作者 YI Ke LI Hui-Min DUAN Xin-Yi ZHANG Zhe-Yuan HE Shao-Long LUO Yu-Tao WU Lei ZHANG Dong-Yi LIU Chang-Jun 《中国生物化学与分子生物学报》 北大核心 2025年第7期1007-1018,共12页
The xylitol dehydrogenase(XDH)is a crucial enzyme involved in the xylose utilization in pentose⁃catabolizing yeasts and fungi.In addition to producing xylulose,XDH can also be employed to develop a biosensor for monit... The xylitol dehydrogenase(XDH)is a crucial enzyme involved in the xylose utilization in pentose⁃catabolizing yeasts and fungi.In addition to producing xylulose,XDH can also be employed to develop a biosensor for monitoring xylitol concentration.In this study,the gene encoding the thermophilic fungus Talaromyces emersonii XDH(TeXDH)was heterologously expressed in Escherichia coli BL21(DE3)at 16℃in the soluble form.Recombinant TeXDH with high purity was purified by using a Ni⁃NTA affinity column.Size⁃exclusion chromatography and SDS⁃PAGE analysis demonstrated that the puri⁃fied recombinant TeXDH exists as a native trimer with a molecular mass of approximately 116 kD,and is composed of three identical subunits,each with a molecular weight of around 39 kD.The TeXDH strictly preferred NAD^(+)as a coenzyme to NADP^(+).The optimal temperature and pH of the TeXDH were 40℃and 10.0,respectively.After EDTA treatment,the enzyme activity of TeXDH decreased to 43.26%of the initial enzyme activity,while the divalent metal ions Mg^(2+)or Ca^(2+)could recover the enzyme activity of TeXDH,reaching 103.32%and 110.69%of the initial enzyme activity,respectively,making them the optimal divalent metal ion cofactors for TeXDH enzyme.However,the divalent metal ions of Mn^(2+),Ni^(2+),Cu^(2+),Zn^(2+),Co^(2+),and Cd^(2+)significantly inhibited the activity of TeXDH.ICP⁃MS and molecular doc⁃king studies revealed that 1 mol/L of TeXDH bound 2 mol/L Zn^(2+)ions and 1 mol/L Mg^(2+)ion.Further⁃more,TeXDH exhibited a high specificity for xylitol,laying the foundation for the development of future xylitol biosensors. 展开更多
关键词 xylitol dehydrogenase(XDH) Talaromyces emersonii heterologous expression enzymatic characterization
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Efficient corn stover-derived metal-supported biochar catalyst for hydrogenation of xylose to xylitol
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作者 Kridsada Karin Sanchai Kuboon +5 位作者 Bunyarit Panyapinyopol Saran Youngjan Wanwitoo Wanmolee Nawin Viriya-empikul Navadol Laosiripojana Kamonwat Nakason 《Resources Chemicals and Materials》 2025年第1期77-87,共11页
Xylitol,one of the top twelve chemical building blocks,is commercially synthesized through the xylose hy-drogenation reaction using a metal catalyst.Biochar has emerged as an eco-efficient catalyst support material.In... Xylitol,one of the top twelve chemical building blocks,is commercially synthesized through the xylose hy-drogenation reaction using a metal catalyst.Biochar has emerged as an eco-efficient catalyst support material.In this study,biochar derived from corn stover(BCS)was first used as a metal catalyst support material for xylose hydrogenation into xylitol.The catalyst was prepared by carbonizing corn stover(CS),impregnating the resulting biochar with metal,and reducing the metal-impregnated BCS.The catalyst characteristics were comprehensively explored.The Ru/BCS catalyst was employed in xylose conversion to xylitol at different process temperatures(100-160℃),retention times(3-12 h),H_(2)pressures(2-5 MPa),and Ru contents(1-5%).The highest xylitol yield(87.0 wt.%)and selectivity(91.6%)were derived at 120℃ for 6 h under 4 MPa H_(2)using 5%Ru.Interestingly,the Ru/BCS catalyst showed high stability under the promising process condition.Additionally,xylitol production from hydrolysates enriched with CS xylose was subsequently explored.On the other hand,the catalyst characterization results revealed that the superior catalytic efficiency of 5Ru/BCS was mainly due to the metal nanoparticles embedded in the biochar.Additionally,BCS proved to be an outstanding support material for a bimetallic hydrogenation catalyst(Ru-Ni/BCS).Therefore,these results indicate that BCS can be a competitive support material for metal hydrogenation catalysts,enhancing environmental friendliness and potentially being employed in industrial-scale xylitol production. 展开更多
关键词 xylitol Platform chemical Hydrogenation reaction Heterogeneous catalyst Waste utilization Bimetallic catalyst
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Hydrogen release of NaBH_(4) below 60 ℃ with binary eutectic mixture of xylitol and erythritol additive
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作者 Yugang Shu Jiaguang Zheng +4 位作者 Chengguo Yan Ao Xia Meiling Lv Zhenxuan Ma Zhendong Yao 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第7期225-234,共10页
NaBH_(4) was widely regarded as a low-cost hydrogen storage material due to its high-mass hydrogen capacity of approximately 10.8%(mass)and high volumetric hydrogen capacity of around 115 g·L^(–1).However,it exh... NaBH_(4) was widely regarded as a low-cost hydrogen storage material due to its high-mass hydrogen capacity of approximately 10.8%(mass)and high volumetric hydrogen capacity of around 115 g·L^(–1).However,it exhibits strong stability and requires temperatures above 500℃ for hydrogen release in practical applications.In this study,two polyhydric alcohols,xylitol and erythritol(XE),were prepared as a binary eutectic sugar alcohol through a grinding-melting method.This binary eutectic sugar alcohol was used as a proton-hydrogen carrier to destabilize NaBH_(4).The 19NaBH_(4)-16XE composite material prepared by ball milling could start releasing hydrogen at 57.5℃,and the total hydrogen release can reach over 88.8%(4.45%(mass))of the theoretical capacity.When the 19NaBH_(4)-16XE composite was pressed into solid blocks,the volumetric hydrogen capacity of the block-shaped composite could reach 67.2 g·L^(–1).By controlling the temperature,the hydrogen desorption capacity of the NaBH_(4)-XE composite material was controllable,which has great potential for achieving solid-state hydrogen production from NaBH_(4). 展开更多
关键词 HYDROGEN DESORPTION Binary mixture NaBH_(4) xylitol ERYTHRITOL
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Lead electrodeposition from alkaline solutions containing xylitol
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作者 古映莹 周琼华 +2 位作者 杨天足 刘伟 张杜超 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第6期1407-1413,共7页
The electrodeposition of lead in alkaline solutions containing xylitol (1, 2, 3, 4, 5-pentahydroxypentane) was studied. The lead electrodeposition and the chemical stability of xylitol in alkaline solutions were inv... The electrodeposition of lead in alkaline solutions containing xylitol (1, 2, 3, 4, 5-pentahydroxypentane) was studied. The lead electrodeposition and the chemical stability of xylitol in alkaline solutions were investigated by cyclic voltammetry. Apparent activation energy, apparent transfer coefficient and exchange current density were obtained by linear sweep voltammetry. Initial stages of lead electrocrystallization were determined by chronoamperometry. Voltammograms of a AISI 316 stainless steel electrode in xylitol solution exhibit no current in the potential range of-1.3 V to 0.75 V (vs Hg/HgO), implying that xylitol is stable to oxidation and reduction. The apparent activation energy, apparent transfer coefficient and exchange current density were calculated to be 35.15 kJ/mol, 1.56 and 9.65x10^-5 A/m^2. Analysis of the chronoamperometric responses implies three-dimensional growth of nuclei, with the type of nucleation depending on overpotential. 展开更多
关键词 LEAD xylitol ELECTRODEPOSITION cyclic voltammetry NUCLEATION CHRONOAMPEROMETRY
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Electrodeposition of Sb(Ⅲ) in alkaline solutions containing xylitol
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作者 刘伟 杨天足 +2 位作者 周琼华 张杜超 雷存茂 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第4期949-957,共9页
The electrodeposition of antimony in alkaline solutions containing xylitol was investigated using cyclic voltammetry,linear sweep voltammetry and chronoamperometry.The antimony electrodeposition and the chemical stabi... The electrodeposition of antimony in alkaline solutions containing xylitol was investigated using cyclic voltammetry,linear sweep voltammetry and chronoamperometry.The antimony electrodeposition and the chemical stability of xylitol in alkaline solutions were studied by cyclic voltammetric technique.Apparent activation energy,apparent transfer coefficient and exchange current density were obtained by linear sweep voltammetric technique.Initial stages of antimony electrocrystallization were determined by chronoamperometry.Xylitol in alkaline solutions exhibits high chemical stability and there is no redox in solutions when the potential ranges from-1.20 V to +0.60 V(vs Hg/HgO).There is no other redox reaction but hydrolysis occurring on stainless steel in the potential range of-1.75 V to 1.25 V(vs Hg/HgO) while the xylitol decomposition maybe take place on antimony electrode when potential is more negative than-1.70 V(vs Hg/HgO).Cyclic voltammograms with different scan rates indicate that the antimony electrodeposition process is an electrocrystallization which is a completely irreversible electrode process.The apparent activation energy,apparent transfer coefficient and exchange current density were calculated to be 46.33 kJ/mol,0.64 and 4.40×10-6 A/m2,respectively.The analyses of the chronoamperometric responses support the view of a three-dimensional growth under progressive nucleation.The average diffusion coefficient of antimony was calculated to be 1.53×10-6 cm2/s. 展开更多
关键词 antimony electrodeposition xylitol ELECTROCRYSTALLIZATION cyclic voltammetry CHRONOAMPEROMETRY
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Efficient one-pot hydrogenolysis of biomass-derived xylitol into ethylene glycol and 1,2-propylene glycol over Cu–Ni–ZrO_2 catalyst without solid bases 被引量:5
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作者 Shenglin Li Yifan Zan +4 位作者 Yuanyuan Sun Zhichao Tan Gai Miao L. Z. Kong Yuhan Sun 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2019年第1期101-106,共6页
The directly selective hydrogenolysis of xylitol to ethylene glycol(EG) and 1,2-propylene glycol(1,2-PDO)was performed on Cu–Ni–ZrO_2 catalysts prepared by a co-precipitation method. Upon optimizing the reaction con... The directly selective hydrogenolysis of xylitol to ethylene glycol(EG) and 1,2-propylene glycol(1,2-PDO)was performed on Cu–Ni–ZrO_2 catalysts prepared by a co-precipitation method. Upon optimizing the reaction conditions(518 K, 4.0 MPaH_2 and 3 h), 97.0% conversion of xylitol and 63.1% yield of glycols were obtained in water without extra inorganic base. The catalyst still remained stable activity after six cycles and above 80% total selectivity of glycols was obtained when using 20.0% xylitol concentration. XRD, TEM and ICP results indicated that Cu–Ni–ZrO_2 catalysts possess favorable stability. Cu and Ni are beneficial to the cleavage of C–O and C–H bond, respectively. To reduce the hydrogen consumption, isopropanol was added as in-situ hydrogen source and 96.4% conversion of xylitol with 43.6% yield of glycols were realized. 展开更多
关键词 HYDROGENOLYSIS xylitol GLYCOLS Cu-Ni-ZrO2 CATALYST
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Comparative effects of xylitol and erythritol on modulating blood glucose;inducing insulin secretion;reducing dyslipidemia and redox imbalance in a type 2 diabetes rat model 被引量:3
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作者 Nontokozo Z.Msomi Ochuko L.Erukainure +2 位作者 Veronica F.Salau Kolawole A.Olofinsan Md.Shahidul Islam 《Food Science and Human Wellness》 SCIE CSCD 2023年第6期2052-2060,共9页
Xylitol and erythritol have been reported in numerous previous and recent studies as potential antidiabetic sweeteners,however,it is not certain which one is most effective in this regard.In the present study,the effe... Xylitol and erythritol have been reported in numerous previous and recent studies as potential antidiabetic sweeteners,however,it is not certain which one is most effective in this regard.In the present study,the effects of xylitol and erythritol were comparatively investigated on blood glucose,insulin level,dyslipidemia,pancreatic islet morphology andβ-cell function,and redox imbalance in a type 2 diabetes(T2D)model of rats.Seven-week-old male Sprague-Dawley rats were randomly divided into 8 groups:Normal Control(NC),Diabetic Control(DC),Diabetic Xylitol 5%(DX5),Diabetic Xylitol 10%(DX10),Diabetic Xylitol 20%(DX20),Diabetic Erythritol 5%(DE5),Diabetic Erythritol 10%(DE10),and Diabetic Erythritol 20%(DE20).T2D was induced in the diabetic groups initially by feeding 10%fructose solution to induce insulin resistance followed by an intraperitoneal injection of streptozotocin(40 mg/kg body weight)dissolved in citrate buffer(pH 4.5)to induce partial pancreaticβ-cells dysfunctions.The animals in NC group were fed with normal drinking water and injected with citrate buffer only.After the confi rmation of diabetes,the xylitol and erythritol with above-mentioned concentrations were supplied to the respective animal groups when the animals in NC and DC groups were supplied with normal drinking water.After 8 weeks intervention period,the body weight,fl uid and water intake,blood glucose,serum alanine aminotransferase,aspartate aminotransferase,CK-MB and creatinine were signifi cantly decreased,while the serum insulin level,serum lipids,glucose tolerance ability,pancreatic islet morphology andβ-cell function,pancreatic and serum redox imbalance were improved in the most xylitol and erythritol fed groups compared to the DC group,when effects were better for xylitol compared to erythritol.The data of this study suggests that xylitol has better antioxidant and antidiabetic effects compared to erythritol.Therefore,xylitol can be used as a preferrable dietary anti-diabetic sweetener or supplement over erythritol for the management of diabetes and its associated complications. 展开更多
关键词 xylitol ERYTHRITOL SWEETENERS Type 2 diabetes Oxidative stress
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A Statistical Approach to Optimize Xylitol Production by <i>Debaryomyces nepalensis</i>NCYC 3413 <i>in Vitro</i> 被引量:3
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作者 Hima Bindu Kumdam Shweta N. Murthy Sathyanarayana N. Gummadi 《Food and Nutrition Sciences》 2012年第8期1027-1036,共10页
Debaryomyces nepalensis NCYC 3413, halotolerant yeast isolated from rotten apple, was capable of utilizing components of hemicellulose hydrolysate such as glucose, galactose, mannose, xylose and arabinose. The organis... Debaryomyces nepalensis NCYC 3413, halotolerant yeast isolated from rotten apple, was capable of utilizing components of hemicellulose hydrolysate such as glucose, galactose, mannose, xylose and arabinose. The organism utilizes xylose as a sole carbon source and produces xylitol. The Plackett-Burman design was applied to determine the specific medium components affecting xylitol production and found that xylose, K2HPO4, and ZnSO4 were critical in augmenting xylitol production. These significant parameters were further optimized using response surface methodology. The optimum concentrations of xylose, K2HPO4, and ZnSO4 were found to be 100 g/l, 10.6 g/l and 8.9 mg/l respectively. Under these optimal conditions the xylitol production increased from 27 g/l to 36 g/l with a yield of 0.44 g/g (57% increase in total yield). In addition, formation of the by product (glycerol) was decreased under optimal conditions. 展开更多
关键词 DEBARYOMYCES nepalensis XYLOSE xylitol Medium Optimization Plackett-Burman DESIGN Central Composite DESIGN
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Metabolic activity of Streptococcus mutans biofilms and gene expression during exposure to xylitol and sucrose 被引量:4
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作者 Eva-Maria Decker Christian Klein +1 位作者 Dimitri Schwindt Christiane von Ohle 《International Journal of Oral Science》 SCIE CAS CSCD 2014年第4期195-204,共10页
The objective of the study was to analyse Streptococcus mutans biofilms grown under different dietary conditions by using multifaceted methodological approaches to gain deeper insight into the cariogenic impact of car... The objective of the study was to analyse Streptococcus mutans biofilms grown under different dietary conditions by using multifaceted methodological approaches to gain deeper insight into the cariogenic impact of carbohydrates. S. mutans biofilms were generated during a period of 24 h in the following media: Schaedler broth as a control medium containing endogenous glucose, Schaedler broth with an additional 5% sucrose, and Schaedler broth supplemented with 1% xylitol. The confocal laser scanning microscopy(CLSM)-based analyses of the microbial vitality, respiratory activity(5-cyano-2,3-ditolyl tetrazolium chloride, CTC) and production of extracellular polysaccharides(EPS) were performed separately in the inner, middle and outer biofilm layers. In addition to the microbiological sample testing, the glucose/sucrose consumption of the biofilm bacteria was quantified, and the expression of glucosyltransferases and other biofilm-associated genes was investigated. Xylitol exposure did not inhibit the viability of S. mutans biofilms, as monitored by the following experimental parameters: culture growth, vitality, CTC activity and EPS production. However,xylitol exposure caused a difference in gene expression compared to the control. Gtf C was upregulated only in the presence of xylitol.Under xylitol exposure, gtf B was upregulated by a factor of 6, while under sucrose exposure, it was upregulated by a factor of three.Compared with glucose and xylitol, sucrose increased cell vitality in all biofilm layers. In all nutrient media, the intrinsic glucose was almost completely consumed by the cells of the S. mutans biofilm within 24 h. After 24 h of biofilm formation, the multiparametric measurements showed that xylitol in the presence of glucose caused predominantly genotypic differences but did not induce metabolic differences compared to the control. Thus, the availability of dietary carbohydrates in either a pure or combined form seems to affect the cariogenic potential of S. mutans biofilms. 展开更多
关键词 biofilms 5-cyano-2 3-ditolyl tetrazolium chloride extracellular polysaccharides gene expression Streptococcus mutans sucrose viability xylitol
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Characterization of promoters in Escherichia coli and application for xylitol synthesis 被引量:2
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作者 王翠薇 李哲 +3 位作者 Aamir Rasool 屈虹男 戴大章 李春 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2015年第1期234-240,共7页
Promoters are the most important tools to control and regulate the gene expression in synthetic biology and metabolic engineering. The expression of target genes in Escherichia coli is usually controlled by the high-s... Promoters are the most important tools to control and regulate the gene expression in synthetic biology and metabolic engineering. The expression of target genes in Escherichia coli is usually controlled by the high-strength inducible promoter with the result that the abnormally high transcription of these genes creates excessive metabolic load on the host, which decreases product formation. The constitutive expression systems are capable of avoiding these defects. In this study, to enrich the application of constitutive promoters in metabolic engineering, four promoters from the glycolytic pathway of E. coli were cloned and characterized using the enhanced green fluorescent protein as reporter. Among these promoters, Pgap Awas determined as the strongest one, the strength of which was about 8.92% of that of the widely used inducible promoter PT7. This promoter was used to control the expression of heterologous xylose reductase in E. coli for xylitol synthesis so as to verify its function in pathway engineering. The maximum xylitol titer(40.6 g·L-1) produced by engineered E. coli under the control of the constitutive promoter Pgap Awas obviously higher than that under the control of the inducible promoter PT7,indicating the feasibility and superiority of promoter Pgap Ain the metabolic engineering of E. coli. 展开更多
关键词 Escherichia coli PROMOTER CHARACTERIZATION Xylose reductase xylitol
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Electrochimical determination of uric acid, xanthine and hypoxanthine by poly(xylitol) modified glassy carbon electrode 被引量:1
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作者 窦志宇 崔丽莉 何兴权 《Journal of Central South University》 SCIE EI CAS 2014年第3期870-876,共7页
The novel covalently modified glassy carbon electrode with poly(xylitol) was prepared using an electropolymerization technique for the simultaneous determination of uric acid(UA), xanthine(XA) and hypoxanthine(HX). Th... The novel covalently modified glassy carbon electrode with poly(xylitol) was prepared using an electropolymerization technique for the simultaneous determination of uric acid(UA), xanthine(XA) and hypoxanthine(HX). This new electrode presents an excellent electrocatalytic activity towards the oxidation of UA, XA and HX by cyclic voltammetry(CV) method. The oxidation peaks of the three compounds were well defined and had enhanced the peak currents. The separation potentials of the oxidation peak potentials for UA-XA and XA-HX were 380 and 370 mV in CV, respectively. Using differential pulse voltammetry(DPV) method, the calibration curves in the ranges of 5-55, 1.3-75.3 and 4-59 μmol/L were obtained for HX, XA and UA, respectively. The lowest detection limits(S/N=3) were 4.5, 0.75 and 3.75 μmol/L for HX, XA and UA, respectively. The practical application of the modified electrode was demonstrated by the determination of UA, XA, HX in human urine samples. 展开更多
关键词 xylitol ELECTROPOLYMERIZATION uric acid XANTHINE HYPOXANTHINE
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Optimum Condition Selection of Xylitol Candida tropicalis Conversion Production 被引量:1
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作者 JIA Chan-yuan YANG Ping-ping 《Agricultural Science & Technology》 CAS 2011年第3期330-332,共3页
[Objective] The aim was to select the optimum conditions of xylitol Candida tropicalis conversion production. [Method] The effect of cell culture time,conversion time,conversion pH value,conversion initial sugar conce... [Objective] The aim was to select the optimum conditions of xylitol Candida tropicalis conversion production. [Method] The effect of cell culture time,conversion time,conversion pH value,conversion initial sugar concentration,speed and inoculation rate were determined respectively.[Result] Optimum fermentation conditions were obtained as follows:cell culture 16 h,conversion time 10 h,conversion pH value 5.5,conversion initial sugar concentration 20 g/L,conversion shaking speed 150 r/min,inoculation rate 10% (volume ratio). The yield of xylitol has increased to 90%. [Conclusion] This study had provided basis for the further study on xylitol. 展开更多
关键词 XYLOSE xylitol Candida tropicalis Bioconversion
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Preliminary Characterization of Xylose Reductase Partially Purified by Reversed Micelles from <i>Candida tropicalis</i>IEC5-ITV, an Indigenous Xylitol-Producing Strain 被引量:1
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作者 Yolanda Cocotle-Ronzon Marisol Zendejas-Zaldo +1 位作者 Micloth López del Castillo-Lozano MaGuadalupe Aguilar-Uscanga 《Advances in Chemical Engineering and Science》 2012年第1期9-14,共6页
Xylose reductase (EC 1.1.1.21) of Candida tropicalis IEC5-ITV, an indigenous xylitol-producing strain, was partially purified by reversed micelles and characterized, an 8.1 fold purification factor being obtained. The... Xylose reductase (EC 1.1.1.21) of Candida tropicalis IEC5-ITV, an indigenous xylitol-producing strain, was partially purified by reversed micelles and characterized, an 8.1 fold purification factor being obtained. The XR present in the crude extract exhibited its highest specific activity at pH 6.0 and 40℃, while in that obtained by reverse micelles, this occurs at pH 6.0 and 30℃. XR before and after extraction is stable within a range of 30 to 40℃, pH 7 after one hour of incubation under these conditions. After two months’storage at –18℃, the enzyme obtained by reverse micelles lost 76.60% specific activity. The estimated molecular weight by PAGE-SDS was 32.42 kD. KM for xylose was higher for the XR extracted by reverse micelles (0.026 M) than that obtained for the enzyme before extraction (0.0059 M), while KM for cofactor NADPH was lower after than before extraction (1.85 mM to 12.0 mM respectively). There was no activity with NADH as a cofactor. Variations in pH and temperature optima, as well as kinetic parameters before and after partial XR purification by reverse micelles are probably due to an alteration in enzyme molecule structure caused by the solvents used during extraction. 展开更多
关键词 XYLOSE Reductase xylitol Reversed Micelles Candida TROPICALIS
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Efficacy of xylitol and fluoride mouthrinses on salivary mutans streptococci
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作者 Malee Arunakul Boonyanit Thaweboon +2 位作者 Sroisiri Thaweboon Yuwadee Asvanund Kesinee Charoenchaikorn 《Asian Pacific Journal of Tropical Biomedicine》 SCIE CAS 2011年第6期488-490,共3页
Objective:To evaluate the level of salivary Mutatis streptococci(MS) after rinsing with xylitol, fluoride,and a combination of xylitol and fluoride solutions,compared with distilled water. Methods:Eighty healthy 8-9 y... Objective:To evaluate the level of salivary Mutatis streptococci(MS) after rinsing with xylitol, fluoride,and a combination of xylitol and fluoride solutions,compared with distilled water. Methods:Eighty healthy 8-9 years old subjects with high level of MS(】 10~5 CFU/mL) were equally divided into 4 groups.Subjects rinsed their moutlis for 1 min with 10 mL of 0.05%(w/v) sodium fluoride(NaF),12.5%(w/v) xylitol or 0.05%(w/v) NoF + 12.5%(w/v) xylitol 3 times daily over 10 weeks.Distilled water rinsed group served as a control.Paraffin-stimulated whole saliva samples were collected at baseline,5 weeks,and 10 weeks after rinsing to determine the level of salivary MS by culturing on Mitis Salivarius Bacitracin agar.The statistical significance was calculated by Kruskol Wallis,Mann Whitney U,and Wilcoxon signed-rank tests at a significant level of P【 0.05.Results:Significant reductions in MS count were observed in subjects using 0.05%NaF + 12.5%xylitol over other groups within 5 weeks and after 10 weeks and 12.5%xylitol alone after 10 weeks compared with baseline.Conclusions:The present study provides evidence for the inhibitory effect of xylitol,used in combination with fluoride,delivered in the form of mouthrinse, on salivary MS in the group of schoolchildren. 展开更多
关键词 xylitol FLUORIDE MOUTHRINSE Mutans STREPTOCOCCI Dental caries SALIVARY
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Alternatives of Small-Scale Biorefineries for the Integrated Production of Xylitol from Sugarcane Bagasse
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作者 Nicolás M.Clauser Soledad Gutiérrez +2 位作者 María C.Area Fernando E.Felissia María E.Vallejos 《Journal of Renewable Materials》 SCIE 2018年第2期139-151,共13页
Small-scale biorefinery from sugarcane bagasse offers new possibilities to the sugar and ethanol industries.The aim of this study was to evaluate the feasibility of a small-scale biorefinery for the production of xyli... Small-scale biorefinery from sugarcane bagasse offers new possibilities to the sugar and ethanol industries.The aim of this study was to evaluate the feasibility of a small-scale biorefinery for the production of xylitol from sugarcane bagasse.The liquid fraction from the autohydrolysis treatment was selected as the source of sugars for xylitol and two scenarios were analyzed for the residual solid:ethanol or pellet production.A technical-economic analysis of alternatives was applied.The internal rate of return(IRR)was used to compare the selected proposals.The highest IRR values were obtained when processing 70,000 dry tons per year of bagasse.The results showed promising prospects for a small-scale biorefinery with capacities above 20,000 dry tons per year(xylitol and pellets),and above 50,000 dry tons per year(xylitol and ethanol). 展开更多
关键词 BIOREFINERY sugarcane bagasse xylitol ETHANOL PELLETS
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The Effects of Xylitol on Body Weight Loss Management and Lipid Profile on Diet-Induced Obesity Mice
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作者 Nor Ezleen Qistina Ahmad Noornabeela Md Yusoff 《Journal of Biosciences and Medicines》 2015年第10期54-58,共5页
Xylitol is an alternative sweetener which has been previously reported to have many beneficial effects such as prevention from dental caries, reduction of visceral fat and increased synthesis of collagen. However, its... Xylitol is an alternative sweetener which has been previously reported to have many beneficial effects such as prevention from dental caries, reduction of visceral fat and increased synthesis of collagen. However, its role in body weight loss management has not been uncovered before. This study sought to investigate the effects of xylitol on body weight loss management, blood glucose and lipid profile on diet-induced obesity (DOI) mice. Fifteen male mice were subjected to high fat diet (60 kcal%) and normal drinking water for 28 days and then randomly divided into three (control, glucose and xylitol) groups. Each group of mice was then fed with normal diet for another 28 days with supplied normal drinking water (control);glucose solution 10% and xylitol solution 10%. Body weight loss was found to be significantly high in xylitol mice (2.56 ± 0.21, p = 0.003) compared to the other two groups. Lowest blood glucose level was found in the control group mice with the mean 7.65 ± 0.10 (p = 0.001). Xylitol mice had also showed the lowest total cholesterol level (4.20 ± 0.90, p = 0.000) than the other groups, but highest in HDL level (2.72 ± 0.14, p = 0.000). In conclusion, these findings proved that xylitol has the potential to reduce body weight, lowering the blood glucose but yet increase the HDL level. 展开更多
关键词 xylitol Weight Loss Blood GLUCOSE LIPID Profile Diet-Induced OBESITY MICE
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Modeling of Daptomycin Release from Medium-Dose Daptomycin-Xylitol-Loaded PMMA Bone Cements
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作者 Ali Salehi Gladius Lewis +1 位作者 Ashley Cox Parker Warren O. Haggard 《Journal of Biomedical Science and Engineering》 2014年第6期351-360,共10页
Antibiotic-loaded poly (methyl methacrylate) bone cements (ALPBCs) are widely used as an agent to decrease the occurrence of periprosthetic joint infection (PJI). Most often, the antibiotic used in an ALPBC is gentami... Antibiotic-loaded poly (methyl methacrylate) bone cements (ALPBCs) are widely used as an agent to decrease the occurrence of periprosthetic joint infection (PJI). Most often, the antibiotic used in an ALPBC is gentamicin, tobramycin, or vancomycin. In many recent clinical studies, it has been reported that the pathogens that commonly present in PIJ are becoming resistant to these antibiotics. As such, a new generation of antibiotics is emerging, among which is daptomycin. Literature reports with a clinically relevant medium-dose daptomycin-loaded cement show that the daptomycin release rate from cylindrical specimens is low. Incorporation of a poragen, such as dextrose, glycine, or particulate xylitol, into the cement powder has been shown to be an effective way to increase daptomycin release rate. There are, however, no studies on modeling of daptomycin release from specimens of either a daptomycin-loaded cement or a daptomycin-poragen-loaded cement. In the present work, we determine the profiles of daptomycin release from cylindrical medium-dose daptomycin-xylitol-loaded cement specimens, as a function of the particulate xylitol loading. We used these results and relationships that have been shown to model antibiotic release from ALPBC specimens to obtain the best-fit relationship for the present cements. Through this approach, we demonstrated that, regardless of the xylitol loading, the daptomycin release profile is a mixture of initial burst followed by a slow Fickian diffusion. 展开更多
关键词 Poly (Methyl Methacrylate) Bone Cement DAPTOMYCIN xylitol ELUTION
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小儿推拿对厌食症患儿血清D-木糖及中医证候积分的影响 被引量:1
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作者 吴英 高汉媛 +1 位作者 赵霞 程娟 《西部中医药》 2025年第8期152-155,共4页
目的:观察厌食症患儿血清D-木糖水平和中医证候积分的变化,探究小儿推拿对其血清D-木糖含量、中医证候积分的影响及临床疗效。方法:将招募的60例健康体检儿童纳入空白组,120例厌食症患儿依据随机数字表法分为推拿组和药物组,每组60例。... 目的:观察厌食症患儿血清D-木糖水平和中医证候积分的变化,探究小儿推拿对其血清D-木糖含量、中医证候积分的影响及临床疗效。方法:将招募的60例健康体检儿童纳入空白组,120例厌食症患儿依据随机数字表法分为推拿组和药物组,每组60例。空白组不予干预;推拿组采用小儿推拿疗法;药物组口服江中健胃消食片。推拿组、药物组均以7天为1个疗程,疗程间间隔1天,共治疗4个疗程。3组患儿于治疗前后空腹采血,运用高效液相色谱-蒸发光散射检测法测定血清D-木糖含量。对比推拿组和药物组治疗前后的中医证候积分、临床疗效及不良反应发生情况。结果:治疗前推拿组和药物组血清D-木糖含量均显著低于空白组(P<0.05);治疗后推拿组及药物组血清D-木糖含量均较治疗前升高(P<0.05),且推拿组高于药物组(P<0.05);治疗后两组与空白组比较,差异无统计学意义(P>0.05)。治疗后推拿组和药物组中医证候积分均低于治疗前(P<0.05),且推拿组低于药物组(P<0.05)。推拿组临床总有效率[91.5%(55/59)]高于药物组[84.3%(43/51)](P<0.05)。推拿组和药物组在治疗过程中均未出现不良反应。结论:小儿推拿可改善厌食症患儿的小肠吸收功能,降低中医证候积分,提升临床疗效,是治疗小儿厌食症的有效方法。 展开更多
关键词 厌食症 推拿 木糖醇 临床疗效 小儿
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一种低致龋软糖的制备方法研究 被引量:1
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作者 潘晓琴 蓝先灵 +4 位作者 肖珊 蔡燕雪 方芝漾 王际辉 薛巍 《食品安全质量检测学报》 2025年第11期96-102,共7页
目的采用糖原替代与牙菌斑生物膜调控双重干预策略,探讨一种低致龋软糖的制备方法。方法通过木糖醇取代部分糖原、添加精氨酸、葡聚糖酶等食品辅料制备不同凝胶软糖,使用全质构质地剖面分析明确不同功能因子对软糖质构的影响,葡聚糖分... 目的采用糖原替代与牙菌斑生物膜调控双重干预策略,探讨一种低致龋软糖的制备方法。方法通过木糖醇取代部分糖原、添加精氨酸、葡聚糖酶等食品辅料制备不同凝胶软糖,使用全质构质地剖面分析明确不同功能因子对软糖质构的影响,葡聚糖分解实验评估样品分解牙菌斑基质的能力,变异链球菌抗菌实验评价样品低致龋效果。结果使用木糖醇替代部分麦芽糖可以起到减低软糖黏性的作用;在75℃条件下添加的食品级β-葡聚糖酶依旧能够发挥分解葡聚糖的作用;食品级L-精氨酸是抑制变异链球菌生长的主要功能因子。以蔗糖处理下的病菌生长率为100%进行计算,本研究制备的最佳复配软糖促进变异链球菌生长的作用是蔗糖的50.10%,对照软糖的29.19%。结论本研究所制备的软糖有助于预防龋齿,有助于实现预防口腔问题的儿童食品的创制。 展开更多
关键词 软糖 预防龋齿 L-精氨酸 木糖醇 Β-葡聚糖酶
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三种天然甜味剂在红烧肉中的应用研究
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作者 李杨 李想 +2 位作者 曾凤玲 戢得蓉 段丽丽 《农产品加工》 2025年第3期17-22,共6页
为探讨天然甜味剂替代蔗糖制作红烧肉的品质变化,选择木糖醇、赤藓糖醇和罗汉果糖3种天然甜味剂制作红烧肉并进行感官、色差、电子舌、GC-MS分析,得到最佳的甜味剂替代比例后分析对红烧肉风味的影响。结果表明,木糖醇的相对甜度最接近蔗... 为探讨天然甜味剂替代蔗糖制作红烧肉的品质变化,选择木糖醇、赤藓糖醇和罗汉果糖3种天然甜味剂制作红烧肉并进行感官、色差、电子舌、GC-MS分析,得到最佳的甜味剂替代比例后分析对红烧肉风味的影响。结果表明,木糖醇的相对甜度最接近蔗糖,添加木糖醇制作的红烧肉感官品质优于赤藓糖醇和罗汉果糖,当其替代比例为20%时,感官评分高于其他替代比例,且色差和电子舌结果也与纯蔗糖制作的红烧肉最为相近。GC-MS结果表明,挥发性风味物质更多,特别是醛类、酸类、酚类、胺类等成分的种类和含量更为丰富。为深入研究天然甜味剂替代蔗糖作为食物甜味剂在红烧肉中的应用提供基础数据支撑。 展开更多
关键词 天然甜味剂 木糖醇 红烧肉 电子舌 气相色谱-质谱法
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