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1.
宋晓燕  李真  杨念  艾志录 《食品科学》2010,31(17):182-185
采用黏度速测仪和分光光度计测定糯玉米淀粉和大米淀粉辛烯基琥珀酸酐改性前后糊的性质,并将其按照不同比例分别添加到面粉中,研究其对速冻水饺品质的影响。结果表明:辛烯基琥珀酸酐改性使糯玉米淀粉和大米淀粉糊的透明度提高、凝沉性降低、冻融稳定性得到改善。添加不同比例的糯玉米辛烯基琥珀酸淀粉酯和大米辛烯基琥珀酸淀粉酯可增大面粉的黏度,提高饺子皮的硬度、弹性和咀嚼性(P < 0.05);其中添加5% 预糊化糯玉米辛烯基琥珀酸淀粉酯的饺子冻裂率最低,并且饺子的色泽、透明度、韧性和细腻度最好。  相似文献   

2.
Native and acid‐hydrolyzed wx corn starches were modified by octenyl succinic anhydride (OSA) in aqueous slurry systems. The characteristics of the modified wx corn starches and their effects on chicken meat sausages were evaluated by means of FT‐IR, rapid visco analyser, SEM, and texture profile analysis. FT‐IR spectroscopy indicated that the ester carbonyl groups in the OSA modified native and acid‐hydrolyzed starches were characterized at 1725 cm−1. The process of OSA modification could achieve starch derivatives, which had higher viscosities, better paste clarity and freeze–thaw stability than the native counterparts. Texture results showed that the hardness, springiness, cohesiveness, and chewiness of the sausage increased as OSA‐H0 was added (p < 0.05). SEM revealed that the sausages with native wx corn starch had larger and uneven pores, while it was comparatively compact for the sausages with OSA starches. The OSA modified wx corn starch offered a great potential to be used in meat products to enhance textural quality.  相似文献   

3.
通过体外模拟消化,研究以辛烯基琥珀酸酯化(octenyl succinic anhydride,OSA)变性淀粉、乳清分离蛋白(whey protein isolate,WPI)、酪蛋白酸钠(sodium caseinate,SC)为乳化剂构建的番茄红素纳米乳液的消化规律。结果表明,消化过程中纳米乳液的液滴大小、Zeta电位和微观结构取决于乳化剂类型,OSA变性淀粉和蛋白质类乳化剂构建的纳米乳液分别在肠和胃阶段发生水解,液滴聚集,乳液平均粒径增大,同时Zeta电位绝对值达到最小。经胃肠消化后3 种乳化剂构建的番茄红素纳米乳液游离脂肪酸释放率的大小排序为OSA变性淀粉(92.25%)>SC(86.53%)>WPI(79.88%),高于对照组的48.7%,表明纳米乳液包埋体系能有效改善番茄红素的消化特性,且以OSA变性淀粉构建的纳米乳液表现出比蛋白质类乳化剂更高的番茄红素生物利用率,达到(25.60±3.08)%。  相似文献   

4.
The objective of the present study was to investigate the structural and rheological properties of octenyl succinic anhydrate (OSA) modified potato starch. Potato starch was modified with different concentrations of OSA (0, 1, 3, and 5%, v/v). X-ray results suggested that OSA modification did not disrupt the crystallinity of the native starch, and esterification occurs primarily in the amorphous regions. The use of 1H-NMR spectra confirmed the presence of methyl protons in substituted OSA groups, which interacted with the starch molecules. In steady shear rheological analysis, OSA modified starch pastes showed a pronounced shear thinning behavior (n = 0.47–0.54). The consistency index (K) and yield stress (σoc) values of OSA modified starch pastes were significantly lower than those of the native starch. Dynamic shear rheological tests indicated that OSA modified starch pastes had weak gel-like behavior with storage moduli (G’) higher than loss moduli (G’’). OSA potato starch pastes were more viscous as compared to the native potato starch paste, as evidenced by their higher tan δ values.  相似文献   

5.
酶解辛烯基琥珀酸淀粉酯的性质及应用   总被引:1,自引:0,他引:1  
利用蜡质玉米淀粉为原料,辛烯基琥珀酸酐为亲核试剂,制备了辛烯基琥珀酸淀粉酯,并利用α-淀粉酶对制得的淀粉酯进行了降解处理。全面研究了辛烯基琥珀酸淀粉酯的性质,探讨了淀粉酯的应用性能。实验结果表明:本研究制备的辛烯基琥珀酸淀粉酯,应用性能良好。  相似文献   

6.
The objective of this study was to investigate the rheological, thermal and microstructural properties of whey protein isolate (WPI)‐hydroxypropylated cassava starch (HPCS) gels and WPI‐cross‐linked cassava starch (CLCS) gels at different pH values (5.75, 7.00 and 9.00). The rheological results showed that the WPI‐modified starch gels had greater storage modulus (G?) values than the WPI‐native cassava starch gels at pH 5.75 and 7.00. Differential scanning calorimetry curves suggested that the phase transition order of the WPI and modified starch changed as the pH increased. Scanning electron microscopy images showed that the addition of HPCS and CLCS contributed to the formation of a compact microstructure at pH 5.75 and 7.00. A comprehensive analysis showed that the gelling properties of the WPI‐modified starch were affected by the difference between the WPI denaturation temperature and modified starch gelatinisation temperature and by the granular properties of the modified starch during gelatinisation. These results may contribute to the application of WPI‐modified starch mixtures in food preparation.  相似文献   

7.
Waxy corn starch was esterified with 2-octen-1-ylsuccinic anhydride (OSA) using response surface methodology. The molecular structure and paste properties were also investigated. Results indicated that the optimum parameters for esterification were as follows: reaction period 4 h, temperature 36.7 °C, pH of reaction system 8.3, concentration of starch slurry 36.9%, and amount of OSA 3%. The degree of substitution was 0.0187 and the reaction efficiency was 80.6%. The ester carbonyl group in OSA starch was characterized by Fourier Transform Infrared Spectroscopy at 1723 cm(-1). Compared with native starch, OSA derivative had higher peak viscosity, better freeze-thaw stability, and decreased gelatinization temperature and digestibility by porcine pancreatic alpha-amylase. Scanning electron microscopy showed that the gels from OSA starch had less and smaller pores; however, the native starch gels changed to sponge-like structure after 4 freezing/thawing cycles. The OSA modified waxy corn starch offered a potential to be used in frozen foods. PRACTICAL APPLICATION: (a) To optimize operating conditions to achieve OSA modified waxy corn starch with a high degree of substitution; (b) to give a deeper insight into the physicochemical properties of OSA modified waxy corn starch, which offered a potential to be used in frozen foods.  相似文献   

8.
辛烯基琥珀酸淀粉酯的制备及其酶法降解的研究   总被引:2,自引:0,他引:2  
以蜡质玉米淀粉为原料,辛烯基琥珀酸酐为亲核试剂,用正交试验方法确定了在不同条件下,制备辛烯基琥珀酸淀粉酯的最佳工艺参数,着重研究了酯化反应条件对反应取代度的影响。实验结果表明:在辛烯基琥珀酸酐添加量(淀粉干基重的3%)不变的条件下,淀粉乳的浓度、反应温度、反应体系pH值、反应时间对反应取代度均有较大影响。对制备的淀粉酯中的辛烯基琥珀酸酐残留量进行了测定,结果表明,利用本文确定的最佳反应条件制得的淀粉酯辛烯基琥珀酸残留量低于规定标准。利用α-淀粉酶对制得的淀粉酯进行了降解处理,探讨了利用不同的酶解时间,获得不同DE值样品的酶解条件。利用最佳工艺条件,进行了辛烯基琥珀酸淀粉酯的中试放大并获得了预期产品。  相似文献   

9.
Whey protein nanoparticles (NPs) were prepared by heat‐induced method. The influences of whey protein isolates (WPIs) and concentrates (WPCs) on the formation of NPs were first investigated. Then Pickering emulsions were produced by protein NPs and their properties were evaluated. After heat treatment, WPC NPs showed larger particle size, higher stability against NaCl, lower negative charge and contact angle between air and water. Dispersions of WPC NPs appeared as higher turbidity and viscosity than those of WPI NPs. The interfacial tension of WPC NPs (~7.9 mN/m at 3 wt% NPs) was greatly lower than that of WPI NPs (~12.1 mN/m at 3 wt% NPs). WPC NPs‐stabilised emulsions had smaller particle size and were more homogeneous than WPI NPs‐stabilised emulsions. WPC NPs‐stabilised emulsions had higher stability against NaCl, pH and coalescence during storage.  相似文献   

10.
ABSTRACT: Dairy proteins are amenable to structural modifications induced by high temperature, shear, and moisture; in particular, whey proteins can change conformation to new unfolded states. The change in protein state is a basis for creating new foods. The dairy products, nonfat dried milk (NDM), whey protein concentrate (WPC), and whey protein isolate (WPI) were modified using a twin-screw extruder at melt temperatures of 50, 75, and 100 °C, and moistures ranging from 20 to 70 wt%. Viscoelasticity and solubility measurements showed that extrusion temperature was a more significant (P < 0.05) change factor than moisture content. The degree of texturization, or change in protein state, was characterized by solubility (R2= 0.98). The consistency of the extruded dairy protein ranged from rigid (2500 N) to soft (2.7 N). Extruding at or above 75 °C resulted in increased peak force for WPC (138 to 2500 N) and WPI (2.7 to 147.1 N). NDM was marginally texturized; the presence of lactose interfered with its texturization. WPI products extruded at 50 °C were not texturized; their solubility values ranged from 71.8% to 92.6%. A wide possibility exists for creating new foods with texturized dairy proteins due to the extensive range of states achievable. Dairy proteins can be used to boost the protein content in puffed snacks made from corn meal, but unmodified, they bind water and form doughy pastes with starch. To minimize the water binding property of dairy proteins, WPI, or WPC, or NDM were modified by extrusion processing. Extrusion temperature conditions were adjusted to 50, 75, or 100 °C, sufficient to change the structure of the dairy proteins, but not destroy them. Extrusion modified the structures of these dairy proteins for ease of use in starchy foods to boost nutrient levels. Practical Application: Dairy proteins can be used to boost the protein content in puffed snacks made from corn meal, but unmodified, they bind water and form doughy pastes with starch. To minimize the water binding property of dairy proteins, whey protein isolate, whey protein concentrate, or nonfat dried milk were modified by extrusion processing. Extrusion temperature conditions were adjusted to 50, 75, or 100 °C, sufficient to change the structure of the dairy proteins, but not destroy them. Extrusion modified the structures of these dairy proteins for ease of use in starchy foods to boost nutrient levels.  相似文献   

11.
Octenyl succinate starches are commonly used as emulsifiers and texturizing agents in many food-systems. Rice, tapioca, corn, wheat and potato starches were modified with octenyl succinic anhydride (OSA) at 3% level. Structural characterization, molecular weight, starch digestibility and physical properties of starch granule stabilized emulsions were studied for modified starches. Modified potato (0.022) and wheat (0.018) starches had the highest and lowest degrees of OSA substitution, respectively. For all starches, amylose and amylopectin molecular mass was significantly (P < 0.05) lower for OSA starches. OSA modification may have hydrolyzed the small amylose and amylopectin chains, or caused rearrangement of the starch molecules. Although the starch modification improved emulsification properties, botanical source showed more influence on this parameter. Overall, botanical source had more influence on functional properties than degree of substitution. Further studies on OSA group distribution and fine molecular structure of amylopectin and relationship with functional properties will be important.  相似文献   

12.
Rice bran oil (RBO) is used in foods, cosmetics, and pharmaceuticals due to its desirable health, flavor, and functional attributes. We investigated the effects of biopolymer emulsifier type and environmental stresses on the stability of RBO emulsions. Oil-in-water emulsions (5% RBO, 10 mM citrate buffer) stabilized by whey protein isolate (WPI), gum arabic (GA), or modified starch (MS) were prepared using high-pressure homogenization. The new MS used had a higher number of octenyl succinic anhydride (OSA) groups per starch molecule than conventional MS. The droplet diameters produced by WPI and MS were considerably smaller (d < 300 nm) than those produced by GA (d > 1000 nm). The influence of pH (3 to 8), ionic strength (0 to 500 mM NaCl), and thermal treatment (30 to 90 °C) on the physical stability of the emulsions was examined. Extensive droplet aggregation occurred in WPI-stabilized emulsions around their isoelectric point (4 < pH < 6), at high salt (> 200 mM, pH 7), and at high temperatures (>70 °C, pH 7, 150 mM NaCl), which was attributed to changes in electrostatic and hydrophobic interactions between droplets. There was little effect of pH, ionic strength, and temperature on emulsions stabilized by GA or MS, which was attributed to strong steric stabilization. In summary: WPI produced small droplets at low concentrations, but they had poor stability to environmental stress; GA produced large droplets and needed high concentrations, but they had good stability to stress; new MS produced small droplets at low concentrations, with good stability to stress. Practical Application: This study showed that stable rice bran oil-in-water emulsions can be formed using biopolymer emulsifiers. These emulsions could be used to incorporate RBO into a wide range of food products. We compared the relative performance of whey protein, GA, and a new MS at forming and stabilizing the emulsions. The new OSA MS was capable of forming small stable droplets at relatively low concentrations.  相似文献   

13.
The functionality of whey proteins can be modified by many approaches; for example, via complexation with carbohydrates, enzymatic cross-linking, or hydrolysis, and the objective of this work was to research the effects of supercritical carbon dioxide (scCO2) treatments on the functionalities of commercial whey protein products including whey protein isolates (WPI) and whey protein concentrates (WPC). The WPI and WPC powders and a 10% (wt/vol) WPI solution were treated with scCO2. The WPI solution was treated at 40°C and 10 MPa for 1 h, whereas WPI and WPC powders were treated with scCO2 at 65°C and 10 or 30 MPa for 1 h. Dynamic rheological tests were used to characterize gelation properties before and after processing. Compared with the unprocessed samples and samples processed with N2 under similar conditions, scCO2-treated WPI, whether dispersed in water or in the powder form during treatments, formed a gel with increased strength. The improvement in gelling properties was more significant for the scCO2-treated WPC. In addition, the scCO2-processed WPI and WPC powders appeared to be fine and free-flowing, in contrast to the clumps in the unprocessed samples. Proximate compositional and surface hydrophobicity analyses indicated that both compositional and structural changes may have contributed to enhanced whey protein functionalities. The results suggest that functionalities of whey proteins can be improved by scCO2 treatment to produce novel ingredients.  相似文献   

14.
BACKGROUND: Esterified starch is an important type of modified starch. In particular, octenyl succinic anhydride‐modified starch (OSA starch) is widely used in the food industry. However, there has been little research on the properties of products with different degrees of substitution (DS). Therefore the aim of this study was to analyse the physicochemical properties of products with different DS. RESULTS: OSA starch samples with different DS were prepared from potato starch. Two new peaks were observed in the Fourier transform infrared spectrum, one at 1724 cm?1 due to C?O and one at 1572 cm?1 due to RCOO? . Emulsifying capacity and emulsion stability improved with increasing DS. Rheological analysis showed the occurrence of the ‘shear‐thinning’ phenomenon, the viscosity of the sample with DS = 0.0211 being even lower than that of native starch. A decrease in syneresis rate from 88.3% (native starch) to 39.0% (DS = 0.0211) indicated that freeze–thaw stability was improved. CONCLUSION: The physicochemical properties of OSA potato starch were better than those of native potato starch. Freeze–thaw stability, emulsifying capacity and emulsion stability improved with increasing DS. Viscosity increased at lower DS but decreased at DS = 0.0211. Copyright © 2009 Society of Chemical Industry  相似文献   

15.
In order to minimize the evaporative flavor loss and to improve flavor stability, the encapsulation potential of native corn and barley starches [waxy corn starch (CW), regular corn starch (CR), waxy barley starch (BW), regular barley starch (BR)] and their chemically modified counterparts (succinylated starches: CWS; CRS; BWS; BRS and octenyl succinylated starches: CWOS; CROS; BWOS; BROS) were investigated. Four different types of synthetic flavors, namely benzaldehyde, dimethyl trisulfide, 2-mercaptopropionic acid and benzothiazole, were selected. Succinylated corn and barley starches were more effective than the native starches and octenyl succinylated starches in the flavor retention. Succinylated regular starches (CRS and BRS), in particular, showed better retention ability than waxy starches. As compared to β-cyclodextrin (βCD, which is a widely used wall material in the microencapsulation of essential oils or flavors), the succinylated regular starches showed better flavor retention capabilities. Benzaldehyde and benzothiazole were retained to a higher extent by all starches (native and modified) as compared to dimethyl trisulfide and 2-mercaptopropionic acid (as measured just after preparation). None of the starches (native or modified) showed substantial decreases in flavor retention during their 4-week storage at 50 °C. In contrast, βCD showed a rapid decrease in flavor retention during the first 2 weeks of storage (from 88 to 49%) and the amount reached ∼45% at the end of 4 weeks. Also, the flavor retained by succinylated starches, based on extraction of volatile flavors in headspace, were higher than those of native and octenyl succinylated starches. CRS and BRS were noticeably superior to others. Findings showed that all starches investigated are potential wall materials for microencapsulation of volatile flavors with CRS and BRS being the best.  相似文献   

16.
17.
Starch hydrophobically modified with octenyl succinic anhydride (OSA starch) has strong surface activity and capability to modify viscosity of continuous phase. The influences of OSA starch, used as emulsifier, on stability, disperse and rheological properties of oil-in-water emulsions were examined in this work. The oil content in emulsions varied from 5 to 60% and OSA starch concentrations were 8, 10, 12, 14 and 16% expressed relative to the water mass.  相似文献   

18.
Addition of whey protein concentrate (WPC), whey protein isolate (WPI) or soy protein isolate (SPI) to salt-soluble muscle proteins (SSP) decreased the gel strength. WPI:SSP gels had higher water-holding capacity than SSP, SSP:WPC or SSP:SPI gels. Myosin heavy chain was a principal contributor to gel network formation in SSP, SSP:WPC, SSP:WPI and SSP:SPI systems. The characteristic fibrous network formed by SSP was the dominant feature of the microstructure of SSP:WPC and SSP:WPI gels. SSP:SPI gels had a more aggregated appearance due to the occurrence of clusters of SPI throughout the gel matrix.  相似文献   

19.
Substantial progress has been made in understanding the basic chemical and structural properties of the principal whey proteins, that is, β‐lactoglobulin β‐Lg), α‐lactalbumin (α‐La), bovine serum albumin (BSA), and immunoglobulin (Ig). This knowledge has been acquired in terms of: (1) procedures for isolation, purification, and characterization of the individual whey proteins in buffer solutions; and (2) whey fractionation technologies for manufacturing whey protein concentrates (WPC) with improved chemical and functional properties in food systems. This article is a critical review of selected publications related to (1) whey fractionation technology for manufacturing WPC and WPI; (2) fundamental properties of whey proteins; and (3) factors that affect protein functionality, that is, composition, protein structure, and processing.  相似文献   

20.
以糯玉米淀粉为原料,先对其氧化处理,然后用辛烯基琥珀酸酐对氧化淀粉进行酯化.在单因素基础上选取影响酯化取代度明显的四个因素(pH值、反应温度、淀粉乳浓度、反应时间)在酸酐加入量为3%及酸酐用乙醇稀释5倍的前提下进行响应面设计,得出了最优条件:pH值为8.4,反应温度为36%,淀粉乳质量分数为40%,反应时间为3.5 h,酯化剂用量3%(占淀粉干基比),此时制备产品的取代度可达0.0196.  相似文献   

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