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氧化咖啡酸交联乳清蛋白膜的物理性能 被引量:2

Physical Properties of Oxidized Caffeic Acid Cross-Linked Whey Protein Films
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摘要 咖啡酸氧化后与乳清蛋白交联成膜,对膜的机械性能、吸水性能、浸出率及其浸出物分子质量进行测试。结果显示:氧化后的咖啡酸能够作为交联剂提高乳清蛋白膜拉伸强度、杨氏模量及膜材料的吸水率,但对膜的断裂伸长率没有显著影响。蛋白膜在pH 3~5的Mc Ilvaine缓冲液浸出率略微降低,而在pH 6和pH 7条件下则显著提高;SDS-PAGE实验表明,在pH 6时,浸出物主要是由二硫键支配的聚合物。 Oxidized caffeic acid (OCA) was used to cross-link whey proteins for making cast films. The prepared films were analyzed for mechanical properties, water binding capacity, and protein solubility in Mc' Ilvaine buffer (pH 3 to 7) and the molecular weight of leached fractions. The results showed that the tensile strength, Young's modulus and water binding capacity of films was markedly increased but its extensibility was not affected by the OCA incorporation. The degree of swelling significantly increased with increasing OCA concentrations. The protein solubility (leachability) of OCA-treated films slightly decreased at pH 3 -- 5 but noticeably increased at pH 6 and 7 compared to untreated (control) films. Electrophoresis indicated that disulfide-linked proteins were the dominant components in leached fractions in pH 6 buffer solution.
出处 《食品科学》 EI CAS CSCD 北大核心 2012年第17期125-128,共4页 Food Science
基金 江南大学食品科学与技术国家重点实验室目标导向课题(SKLF-MB-200803)
关键词 氧化咖啡酸 乳清蛋白 交联 物理性能 oxidized caffeic acid whey protein isolate cross-linking films physical properties
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参考文献16

  • 1GENNADIOS A. Protein-based films and coatings[M]. New York: CRC Press, 2002: 1-42.
  • 2ANKER M, STADING M, HERMANSSON A M. Effects ofpH and the gel state on the mechanical properties, moisture contents, and glass transition temperatures of whey protein films[J]. Journal of Agricultural and Food Chemistry, 1999, 47(5): 1878-1886.
  • 3RAMOS 6 L, FERNANDES J C, SILVA S I, et al. Edible films and coatings from whey proteins: a review on formulation, and on mechani- cal and bioactive properties[J]. Critical Reviews in Food Science and Nutrition, 2012, 52(6): 533-552.
  • 4BUCHERT J, CURA D E, MA H, et al. Crosslinking food proteins for improved functionality[J]. Annual Review of Food Science and Technology, 2010, 1: 113-138.
  • 5RAWEL H, ROHN S, KROLL J. Reactions of selected secondary plant metabolites (glucosinolates and phenols) with food proteins and en- zymes-influence on physico-cbemical protein properties, enzyme activ- ity and proteolytic degradation[J]. In Recent Research Developments in Phytochemistry, 2000, 4:115-142.
  • 6ZHANG X, DO M D, CASEY P, et al. Chemical modification of gelatin by a natural phenolic cross-linker, tannic acid[J]. Journal of Agricultural and Food Chemistry, 2010, 58(11): 6809-6815.
  • 7NUTHONG P, BENJAKUL S, PRODPRAN T. Characterization of porcine plasma protein-based films as affected by pretreatment and cross- linking agents[J]. International Journal of Biological Macromolecules, 2009, 44(2): 143-148.
  • 8CAO Na, FU Yuhua, HE Junhui. Mechanical properties of gelatin films cross-linked, respectively, by ferulic acid and tannin acid[J]. Food Hydrocolloids, 2007, 21(4): 575-584.
  • 9American Society for Testing and Materials. Annual book of ASTM standards[S]. Philadelphia, PA, USA: ASTM, 1989.
  • 10CHAWLA S P, VENUGOPAL V, NAIR P M. Gelation of proteins from washed muscle of threadfin bream (Nemipterusjaponicus) under mild acidic conditions[J]. Journal of Food Science, 1996, 61(2): 262-367.

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  • 1GB 4789.2-2010,食品安全国家标准食品微生物学检验菌落总数的测定[S].
  • 2GB/T 9695.5—2008,肉与肉制品 pH 测定[S]. 2008.
  • 3Chum HL. Polymers from biobased materials[Z]. Park Ridge, N.J: Noyes Data Corporation; 1991.
  • 4Mchugh TH, Krochta JM. Milk protein based edible films and coating[J]. Food Technology, 1994( 1 ) :97-103.
  • 5Soazo M, Rubiolo A C, Verdini R A. Effect of drying temperature and beeswax content on physical properties of whey protein emulsion films[J]. Food Hydrocolloids, 2011,25 (5) : 1251-1255.
  • 6Garlotta D. A literature review of poly(lactic acid)[J]. Journal of Polymers and the Environment, 2001,9( 2 ) : 63-84.
  • 7Liu B, Jiang L, Liu H, et al. Synergetic effect of dual eompatibilizers on in situ formed poly(lactic acid)/soy protein composites[J], Industrial & Engineering Chemistry Research, 2010,49(14) : 6399-6406.
  • 8Rhim J W, Lee J H, Ng P K W. Mechanical and barrier properties of biodegradable soy protein isolate-based films coated with polylactic acid[J]. LWT-Food Science and Technology, 2007,40(2).232-238.
  • 9Rhim J W,Mohanty K A,Singh S P,et al. Preparation and properties of biodegradable multilayer films based on soy protein isolate and poly(lactide)[J]. Industrial & Engineering Chemistry Research, 2006,45 (9) : 3059-3066.
  • 10ASTM: D882-09: Standard Test Method for Tensile Properties of Thin Plastic Sheeting[S]. 2009.

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