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1.
酶解虾壳蛋白制备ACE 抑制剂的工艺优化   总被引:1,自引:0,他引:1  
以虾壳粉为原料,以水解度和ACE抑制率为指标,利用中性蛋白酶、碱性蛋白酶、菠萝蛋白酶和木瓜蛋白酶进行酶解,其中中性蛋白酶和碱性蛋白酶有较高的ACE抑制活性,因此对碱性蛋白酶和中性蛋白酶的工艺条件进一步优化。结果表明:碱性蛋白酶酶解工艺优化条件为:温度60℃、pH9.5、底物质量浓度2.5g/100mL、加酶量4000U/g、酶解时间2.5h,在此条件下ACE抑制率最高,为67.70%,水解度为69.79%;中性蛋白酶酶解工艺优化条件为:温度50℃、pH7.0、底物质量浓度2.5g/100mL、加酶量2000U/g、酶解时间2h,在此条件下ACE抑制率最高,为84.04%,水解度为26.76%。提示中性蛋白酶酶解能够产生更多的ACE抑制肽,是酶解虾壳蛋白制备ACE抑制肽的较优酶。  相似文献   

2.
本试验以脱脂后的酸枣仁渣通过碱溶酸沉法提取得到的酸枣仁蛋白为研究对象,以血管紧张素转化酶(ACE)抑制率和水解度为指标,筛选复合酶种类,采用响应面分析法,以中性蛋白酶/碱性蛋白酶比例、pH、底物浓度、酶解温度、酶解时间为试验因素,优化酸枣仁ACE抑制肽最佳酶解工艺参数。结果表明:筛选出中性蛋白酶和碱性蛋白酶作为复合酶,最适酶添加量确定为6000 U/g,5个因素对ACE抑制率和水解度的影响由大到小的顺序为:酶解温度、酶解时间、pH、中性蛋白酶/碱性蛋白酶比例、底物浓度。通过拟合方程分析,得到酸枣仁ACE抑制肽酶解的最佳工艺条件为:中性蛋白酶/碱性蛋白酶比例为2.1:1、酶解温度为54 ℃,底物浓度为3.1%,pH为7.5,酶解时间为62 min。在此条件下,复合酶解酸枣仁蛋白酶解液的实际ACE抑制率和水解度分别为(79.46%±0.49%)和(31.45%±0.85%),与理论值接近。制备得到酸枣仁ACE抑制肽与阳性对照组卡托普利对比,酸枣仁ACE抑制肽的ACE抑制率大小为(79.46%±0.49%),与卡托普利的ACE抑制率偏差为(19.28%±0.12%),证明酸枣仁ACE抑制肽具有显著降压效果。本研究证明了酸枣仁蛋白通过酶解有效得到ACE抑制肽并优化其酶解工艺,旨在为酸枣仁渣废物再利用提供参考方向和理论依据。  相似文献   

3.
研究逆流超声预处理大米蛋白对其碱性蛋白酶酶解制备血管紧张素转换酶(Angiotensin-I Converting Enzyme,ACE)抑制肽的影响。首先从米渣中提取大米蛋白,以ACE抑制率为主要指标,水解度为辅助指标,运用单因素逐级优化法对酶解反应的底物浓度、时间、温度、加酶量和pH进行参数优化,在此基础上筛选逆流超声模式的最佳超声参数。结果表明最佳酶解参数为底物浓度30 g/L、加酶量(E/S)7.5%、温度50 ℃、pH8.5和酶解时间60 min,此时酶解产物ACE抑制率为45.59%,水解度为21.49%。最佳超声参数为超声频率20 kHz、功率密度170 W/L、时间12.5 min。此时酶解液ACE抑制率达72.24%,水解度为21.64%,相较于未超声组ACE抑制率提高了57.42%,相较于传统超声组,ACE抑制率提高了11.36%。结果表明逆流超声波辅助酶解法能有效提高酶解效率、减少能耗、促进ACE抑制肽制备。  相似文献   

4.
酶解鮰鱼皮明胶制备ACE抑制肽的工艺条件优化   总被引:1,自引:0,他引:1  
以斑点叉尾鮰鱼皮明胶为原料,采用风味蛋白酶对其进行水解,制备ACE抑制肽。通过单因素实验考察温度、pH、底物浓度、加酶量及酶解时间对明胶水解物ACE抑制率的影响,在此基础上,采用Box-Behnken实验设计和响应面分析对风味蛋白酶水解鮰鱼皮明胶制备ACE抑制肽的工艺条件进行优化。实验结果表明,风味蛋白酶水解鮰鱼皮明胶制备ACE抑制肽的优化工艺条件为水解温度50℃,pH7.0,底物浓度4.5%,加酶量2.5%,酶解时间3h,在此条件得到的明胶水解物的ACE抑制率为91.45%,验证实验结果为89.81%。  相似文献   

5.
潘道东  郭宇星 《食品科学》2009,30(11):138-143
目的:本实验以WPC-80 乳清浓缩蛋白为原料,对瑞士乳杆菌蛋白酶水解乳清蛋白产生血管紧张素转移酶(ACE)抑制肽工艺条件进行研究。方法:通过单因素条件和响应面方法研究水解pH 值、水解温度、酶与底物比、底物浓度和水解时间对水解度和ACE 抑制率的影响。结果:研究发现,五个工艺条件对ACE 抑制肽的产生都有影响,通过响应面法分析,确定瑞士乳杆菌蛋白酶酶解乳清蛋白的最佳水解条件为:[E]/[S] 0.6%、底物浓度6%、pH9.18、温度38.90℃,时间8.0h,在此条件下水解,产物ACE 抑制率达到92.21% ,IC50 为0.375mg/ml,水解度为18.76%。结论:应用响应面方法优化水解工艺条件是可行的。  相似文献   

6.
为进一步提高辣木籽蛋白资源的开发利用,采用盐提法提取辣木籽蛋白,再采用超声波辅助酶法制备辣木籽ACE抑制肽。以水解度和ACE抑制率为评价指标,通过单因素实验探究超声波功率、超声酶解时间、超声酶解温度及料液比对制备ACE抑制肽的影响,采用响应面法对制备工艺条件进行优化。结果表明:超声波辅助酶法制备辣木籽ACE抑制肽的最佳酶解工艺条件为碱性蛋白酶添加量5.5 mg/mL、pH 9、超声波功率500 W、超声酶解时间1.7 h、超声酶解温度55℃、料液比1∶45,在此条件下制备的酶解物ACE抑制率达到78.32%,水解度为7.78%。以辣木籽为原料制备ACE抑制肽作为功能性蛋白肽产品,可有效提高辣木籽蛋白资源的开发利用。  相似文献   

7.
以核桃分离蛋白(WPI)为原料,利用Alcalase 2.4L酶解制备高活性的ACE抑制肽.以水解度和ACE抑制率为指标,通过单因素和二次回归正交旋转组合试验,优化了Alcalase 2.4L酶解核桃分离蛋白制备ACE抑制肽的工艺.得到的最佳酶解工艺条件为pH 7.94,酶解温度60℃,底物质量浓度20g/L,酶与底物质量比3.69∶100,酶解3h后,酶解产物的水解度达到24.78%,ACE抑制率达到76.58%,且在此条件下获得的ACE抑制肽具有一定的抗体内消化酶特性.  相似文献   

8.
为制备低钠盐含量的葵花籽粕蛋白血管紧张素转换酶抑制肽(ACEI抑制肽),建立了以Ca(OH)2溶液调节酶解反应pH值的制备工艺并进行了工艺参数优化。以蛋白水解度、产物ACE抑制率和苦味值为评价指标通过选酶试验从6种商业蛋白酶中确定胰蛋白酶为水解用酶。通过对葵花籽粕蛋白酶解试验,发现在其他酶解条件相同情况下,以Ca(OH)2调节酶解pH值的葵花籽粕水解多肽的ACE抑制率和水解度优于NaOH调节的,而苦味值相近。通过对底物浓度、加酶量、pH、温度和时间进行单因素试验和对时间、温度、pH等因素进行的正交优化试验,确定用Ca(OH)2调节酶解pH值的制备葵花籽粕蛋白ACEI抑制肽工艺参数为:底物的质量浓度为3.5%,加酶量2.85%(E/S),pH7.5、温度45℃和酶解时间5min,所得ACEI抑制肽产品的IC50值为6.06mg/mL。  相似文献   

9.
采用碱性蛋白酶Alcalase 2.4L对鳙鱼鱼肉蛋白进行水解,制备血管紧张素转化酶(ACE)抑制肽。以酶解物ACE抑制率为指标,先进行单因素实验,确定底物浓度([S])、温度、pH、酶用量及水解时间5个因素的最适水平范围,再通过响应面分析法(RSM)对加酶量、温度和水解时间3个酶解工艺参数进行优化。结果表明:Alcalase水解鳙鱼鱼肉蛋白制备ACE抑制肽的最佳酶解条件为:[S]6%、加酶量2.2%、温度57℃,pH9.0及水解时间6.4h,此条件下酶解物ACE抑制率理论值为81.77%,验证实验结果ACE抑制率为81.52%,与理论值相符合。  相似文献   

10.
以高粱为原料,通过碱法提取制备高粱碱溶蛋白,利用不同蛋白酶对其进行酶解,结果表明Alcalase碱性蛋白酶水解高粱蛋白得到的水解产物水解度和血管紧张素转化酶(ACE)抑制率最高。在此基础上进一步考察了碱性蛋白酶酶量、pH值、温度、反应时间这4个因素对水解产物ACE抑制率的影响,并通过响应面实验优化酶解条件,得到Alcalase碱性蛋白酶水解高粱碱溶蛋白制备ACE抑制肽最优工艺为:酶解温度55.5℃,酶解时间1.68 h,pH值7.95,酶量2 360 U/g,此条件下实测ACE抑制率达到75.98%,该ACE抑制肽具有良好的热稳定性和酸碱稳定性,并且在体外经胃肠道酶系消化酶解后,依然能保持良好的抑制活性。  相似文献   

11.
Since grapevine ( Vitis spp .) rootstock material is being traded increasingly as disbudded woody material a lack of distinctive morphological features on such material necessitates an alternative and reliable means of identification. Methods described here were developed for rapid and efficient extraction of DNA from woody samples rich in phenolic compounds and polysaccharides, and for subsequent identification of varieties by RAPD PCR. Using these methods, and with the application of only one selected RAPD primer, we were able to differentiate sixteen rootstock varieties, including the seven varieties most commonly used in Germany. Problems commonly encountered with reproducibility of RAPD patterns were avoided by choosing primers with a dinucleotide sequence and a high G/C content that allowed a rather high annealing temperature of 45°C. Methods described here should also be useful for other horticultural crops, especially those with woody tissues rich in phenolic compounds and polysaccharides.  相似文献   

12.
An internet website (http://cpf.jrc.it/smt/) has been produced as a means of dissemination of methods of analysis and supporting spectroscopic information on monomers and additives used for food contact materials (principally packaging). The site which is aimed primarily at assisting food control laboratories in the European Union contains analytical information on monomers, starting substances and additives used in the manufacture of plastics materials. A searchable index is provided giving PM and CAS numbers for each of 255 substances. For each substance a data sheet gives regulatory information, chemical structures, physico-chemical information and background information on the use of the substance in particular plastics, and the food packaging applications. For monomers and starting substances (155 compounds) the infra-red and mass spectra are provided, and for additives (100 compounds); additionally proton NMR are available for about 50% of the entries. Where analytical methods have been developed for determining these substances as residual amounts in plastics or as trace amounts in food simulants these methods are also on the website. All information is provided in portable document file (PDF) format which means that high quality copies can be readily printed, using freely available Adobe Acrobat Reader software. The website will in future be maintained and up-dated by the European Commission's Joint Research Centre (JRC) as new substances are authorized for use by the European Commission (DG-ENTR formerly DGIII). Where analytical laboratories (food control or other) require reference substances these can be obtained free-ofcharge from a reference collection housed at the JRC and maintained in conjunction with this website compendium.  相似文献   

13.
The characterization of the aromatic profile of several apricot cultivars with molecular tracers in order to obtain objective data concerning the aromatic quality of this fruit was undertaken using headspace–solid phase microextraction (HS–SPME). Six apricot cultivars were selected according to their organoleptic characteristics: Iranien, Orangered, Goldrich, Hargrand, Rouge du Roussillon and A4025. The aromatic intensity of these varieties measured by HS–SPME–Olfactometry were defined and classified according to the presence and the intensity of grassy, fruity and apricot like notes. In the six varieties, 23 common volatile compounds were identified by HS–SPME–GC–MS. Finally, 10 compounds, ethyl acetate, hexyl acetate, limonene, β-cyclocitral, γ-decalactone, 6-methyl-5-hepten-2-one, linalool, β-ionone, menthone and (E)-hexen-2-al were recognized by HS–SPME–GC–O as responsible of the aromatic notes involved in apricot aroma and considered as molecular tracers of apricot aromatic quality which could be utilized to discriminate apricot varieties.  相似文献   

14.
The advent of the functional barrier concept in food packaging has brought with it a requirement for fast tests of permeation through potential barrier materials. In such tests it would be convenient for both foodstuffs and materials below the functional barrier (sub-barrier materials) to be represented by standard simulants. By means of inverse gas chromatography, liquid paraffin spiked with appropriate permeants was considered as a potential simulant of sub-barrier materials based on polypropylene (PP) or similar polyolefins. Experiments were performed to characterize the kinetics of the permeation of low molecular weight model permeants (octene, toluene and isopropanol) from liquid paraffin, through a surrogate potential functional barrier (25 μm-thick oriented PP) into the food simulants olive oil and 3% (w/v) acetic acid. These permeation results were interpreted in terms of three permeation kinetic models regarding the solubility of a particular model permeant in the post-barrier medium (i.e. the food simulant). The results obtained justify the development and evaluation of liquid sub-barrier simulants that would allow flexible yet rigorous testing of new laminated multilayer packaging materials.  相似文献   

15.
A 9% whey protein (WP) isolate solution at pH 7.0 was heat-denatured at 80°C for 30 min. Size-exclusion HPLC showed that native WP formed soluble aggregates after heat-treatment. Additions of CaCl2 (10–40 mM), NaCl (50–400 mM) or glucono-delta-lactone (GDL, 0.4–2.0%, w/v) or hydrolysis by a protease from Bacillus licheniformis caused gelation of the denatured solution at 45°C. Textural parameters, hardness, adhesiveness, and cohesiveness of the gels so formed changed markedly with concentration of added salts or pH by added GDL. Maximum gel hardness occurred at 200 mM NaCl or pH 4.7. Increasing CaCl2 concentration continuously increased gel hardness. Generally, GDL-induced gels were harder than salt-induced gels, and much harder than the protease-induced gel.  相似文献   

16.
17.
The levels of bisphenol-F-diglycidyl ether (BFDGE) were quantified as part of a European survey on the migration of residues of epoxy resins into oil from canned fish. The contents of BFDGE in cans, lids and fish collected from all 15 Member States of the European Union and Switzerland were analysed in 382 samples. Cans and lids were separately extracted with acetonitrile. The extraction from fish was carried out with hexane followed by re-extraction with acetonitrile. The analysis was performed by reverse phase HPL C with fluorescence detection. BFDGE could be detected in 12% of the fish, 24% of the cans and 18% of the lids. Only 3% of the fish contained BFDGE in concentrations considerably above 1mg/kg. In addition to the presented data, a comparison was made with the levels of BADGE (bisphenol-A-diglycidyl ether)analysed in the same products in the context of a previous study.  相似文献   

18.
19.
This paper describes the second part of a project undertaken to develop certified mussel reference materials for paralytic shellfish poisoning toxins. In the first part two interlaboratory studies were undertaken to investigate the performance of the analytical methodology for several PSP toxins, in particular saxitoxin and decarbamoyl-saxitoxin in lyophilized mussels, and to set criteria for the acceptance of results to be applied during the certification exercise. Fifteen laboratories participated in this certification study and were asked to measure saxitoxin and decarbamoyl-saxitoxin in rehydrated lyophilized mussel material and in a saxitoxin-enriched mussel material. The participants were allowed to use a method of their choice but with an extraction procedure to be strictly followed. The study included extra experiments to verify the detection limits for both saxitoxin and decarbamoyl-saxitoxin. Most participants (13 of 15) were able to meet all the criteria set for the certification study. Results for saxitoxin.2HCl yielded a certified mass fraction of <0.07 mg/kg in the rehydrated lyophilized mussels. Results obtained for decarbamoyl-saxitoxin.2HCl yielded a certified mass fraction of 1.59+/-0.20 mg/kg. The results for saxitoxin.2HCl in enriched blank mussel yielded a certified mass fraction of 0.48 +/- 0.06 mg/kg. These certified reference materials for paralytic shellfish poisoning toxins in lyophilized mussel material are the first available for laboratories to test their method for accuracy and performance.  相似文献   

20.
The European Commission's, Quality of Life Research Programme, Key Action 1—Health, Food & Nutrition is mission-oriented and aims, amongst other things, at providing a healthy, safe and high-quality food supply leading to reinforced consumer confidence in the safety of European food. Its objectives also include the enhancing of the competitiveness of the European food supply. Key Action 1 is currently supporting a number of different types of European collaborative projects in the area of risk analysis. The objectives of these projects range from the development and validation of prevention strategies including the reduction of consumers risks; development and validation of new modelling approaches; harmonization of risk assessment principles, methodologies, and terminology; standardization of methods and systems used for the safety evaluation of transgenic food; providing of tools for the evaluation of human viral contamination of shellfish and quality control; new methodologies for assessing the potential of unintended effects of genetically modified (genetically modified) foods; development of a risk assessment model for Cryptosporidium parvum related to the food and water industries; to the development of a communication platform for genetically modified organism, producers, retailers, regulatory authorities and consumer groups to improve safety assessment procedures, risk management strategies and risk communication; development and validation of new methods for safety testing of transgenic food; evaluation of the safety and efficacy of iron supplementation in pregnant women; evaluation of the potential cancer-preventing activity of pro- and pre-biotic ('synbiotic') combinations in human volunteers. An overview of these projects is presented here.  相似文献   

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