中文
Announcement
More
Progress in Chemistry 2009, Vol. 21 Issue (04): 705-714 Previous Articles   Next Articles

• Review •

Study of Soy Protein by Mid-infrared Spectroscopy and Near-infrared Spectroscopy

Jiang Yan; Wu Peiyi*   

  1. (The Key Laboratory of Molecular Engineering of Polymers, Department of Macromolecular Science,
    Fudan University, Shanghai 200433, China)
  • Received: Revised: Online: Published:
  • Contact: Wu Peiyi E-mail:peiyiwu@fudan.edu.cn
PDF ( 2473 ) Cited
Export

EndNote

Ris

BibTeX

Extensive attention has been given to the application of soy protein in various field. Thus, studies on the structures and properties of soy protein and related modified materials have become more and more important. Mid-infrared spectroscopy(MIR) and near-infrared spectroscopy(NIR) are powerful analytical tools for qualitative and quantitative analysis of protein. MIR spectroscopy can be utilized to analyze the secondary structures of soy protein in solution and membrane and the changes in structure of the protein in derived materials effectively, while NIR spectroscopy owns unique advantages in the quantitative analysis of protein. In this review, some research works conducted with these two spectral techniques are introduced. All the examples show the great values in the applications of mid-infrared and near-infrared spectroscopy in the field of soy protein.

Contents
1 Application of MIR Spectroscopy in the Analysis of Soy Protein Structure
1.1 Study of Soy Protein Solution and Film by MIR Spectroscopy
1.2 Study of Soy Protein Materials by MIR Spectroscopy
2 Application of NIR Spectroscopy in the Analysis of Soy Protein
3 Summary

CLC Number: 

[ 1 ]  Kumar R , Choudhary V , Mishra S , et al . Ind. Crop. Prod. , 2002 ,16 : 155 —172
[ 2 ]  Brother GH , McKinneyL L. Ind. Eng. Chem. , 1939 , 31 : 84 —87
[ 3 ]  Brother GH , McKinneyL L. Ind. Eng. Chem. , 1938 , 30 : 1236 —1240
[ 4 ]  Smith A K, Circle S J , Brother G H. J . Am. Chem. Soc. , 1938 ,60 : 1316 —1320
[ 5 ]  Wang W H , Li X P , Zhang X Q. Pigm. Resin Technol . , 2008 ,37 : 93 —97
[ 6 ]  Hettiarachchy N S , Kalapathy U , Myers D J . J . Am. Oil Chem.Soc. , 1995 , 72 : 1461 —1464
[ 7 ]  Chin KB , Keeton J T, Longnecker M T, et al . Meat Sci . , 1999 ,53 : 45 —57
[ 8 ]  Garcia M C , Marina ML , Laborda F , et al . Food Chem. , 1998 ,62 : 325 —331
[ 9 ]  Zhang J , Mungara P , Jane J . Polymer , 2001 , 42 : 2569 —2578
[10 ]  Zhang Y, Ghasemzadeh S , Kotliar A M, et al . J . Appl . Polym.Sci . , 1999 , 71 : 11 —19
[11 ]  Badley R A , Atkinson D , Hauser H , et al . Biochim. Biophys.Acta , 1975 , 412 : 214 —228
[12 ]  Peng I C , Quass D W, Dayton W R , et al . Cereal Chem. , 1984 ,61 : 480 —490
[13 ]  Kinsella J E. J . Am. Oil Chem. Soc. , 1979 , 56 : 242 —258
[14 ]  Brandenburg A H , Weller C L , Testin R F. J . Food Sci . , 1993 ,58 : 1086 —1089
[15 ]  Gennadios A , Brandenburg A H , Weller CL , et al . J . Agric. Food Chem. , 1993 , 41 : 1835 —1839
[16 ]  Abbott T P , Nabetani H , Sessa D J , et al . J . Agric. Food Chem. ,1996 , 44 : 2220 —2224
[17 ]  Koenig J L , Desposito L , Antoon M K. Appl . Spectrosc. , 1977 ,31 : 292 —295
[18 ]  Subirade M, Kelly I , Gueguen J , et al . Int . J . Biol . Macromol . ,1998 , 23 : 241 —249
[19 ]  Arrondo J L R , Muga A , Castresana J , et al . Prog. Biophys. Mol .Biol . , 1993 , 59 : 23 —56
[20 ]  Surewicz W K, Mantsch H H , Chapman D. Biochemistry , 1993 ,32 : 389 —394
[21 ]  Pezolet M, Bonenfant S , Dousseau F , et al . FEBS Letters , 1992 ,299 : 247 —250
[22 ]  Carrier D , Mantsch H H , Wong P T T. Biopolymers , 1990 , 29 :837 —844
[23 ]  L’Hocine L , Boye J I , Jouve S. J . Agric. Food Chem. , 2007 , 55 :5819 —5826
[24 ]  Kakalis L T, Baianu I C. J . Agric. Food Chem. , 1989 , 37 :1222 —1228
[25 ]  Nelson J W, Kallenbach N R. Biochemistry , 1989 , 28 : 5256 —5261
[26 ]  Lefevre T, Subirade M, Pezolet M. Biomacromolecules , 2005 , 6 :3209 —3219
[27 ]  Bao XL , LüY, Yang B C , et al . J . Food Sci . , 2008 , 73 : C117 —C121
[28 ]  Martin A H , Meinders M B J , Bos M A , et al . Langmuir , 2003 ,19 : 2922 —2928
[29 ]  Zhao X Y, Chen F S , Xue W T, et al . Food Hydrocolloids , 2008 ,22 : 568 —575
[30 ]  Shih MD , Lin S D , Hsieh J S , et al . Plant Mol . Biol . , 2004 , 56 :689 —703
[31 ]  Boatright WL , St Pyrek J , Song J , et al . J . Am. Oil Chem. Soc. ,1998 , 75 : 1651 —1655
[32 ]  Forato L A , Bernardes R , Colnago L A. Anal . Biochem. , 1998 ,259 : 136 —141
[33 ]  Wang S , Sue HJ , Jane J . Journal of Macromolecular Science : Pure and Applied Chemistry , 1996 , A33 : 557 —569
[34 ]  Mo X Q , Sun X S , Wang YQ. J . Appl . Polym. Sci . , 1999 , 73 :2595 —2602
[35 ]  Zhong Z K, Sun X Z S. Polymer , 2001 , 42 : 6961 —6969
[36 ]  Shih F F. J . Am. Oil Chem. Soc. , 1994 , 71 : 1281 —1285
[37 ]  Chang L C , Xue Y, Hsieh F H. J . Appl . Polym. Sci . , 2001 , 81 :2027 —2035
[38 ]  John J , Bhattacharya M. Polym. Int . , 1999 , 48 : 1165 —1172
[39 ]  Foulk J A , Bunn J M. Ind. Crop. Prod. , 2001 , 14 : 11 —22
[40 ]  El2Adawy T A. Food Chem. , 2000 , 70 : 83 —91
[41 ]  Zhong Z K, Sun X S. J . Appl . Polym. Sci . , 2000 , 78 : 1063 —1070
[42 ]  Mo X Q , Sun X Z. J . Am. Oil Chem. Soc. , 2001 , 78 : 867 —872
[43 ]  Park S K, Bae D H , Rhee K C. J . Am. Oil Chem. Soc. , 2000 ,77 : 879 —883
[44 ]  RhimJ W, Gennadios A , Weller C L , et al . Ind. Crop. Prod. ,1998 , 8 : 195 —203
[45 ]  Schmidt V , Soldi V. Polym. Degrad. Stab. , 2006 , 91 : 3124 —3130
[46 ]  Soares R M D , Scremin F F , Soldi V. Macromol . Symp. , 2005 ,229 : 258 —265
[47 ]  Schmidt V , Giacomelli C , Soldi V. Polym. Degrad. Stab. , 2005 ,87 : 25 —31
[48 ]  Lodha P , Netravali A N. Polym. Degrad. Stab. , 2005 , 87 : 465 —477
[49 ]  Lodha P , Netravali A N. Ind. Crop. Prod. , 2005 , 21 : 49 —64
[50 ]  Chen Y, Zhang L , Deng R , et al . Macromol . Mater. Eng. , 2007 ,292 : 484 —494
[51 ]  Chen Y, Zhang L N. J . Appl . Polym. Sci . , 2004 , 94 : 748 —757
[52 ]  Chen P , ZhangL N , Peng S P , et al . J . Appl . Polym. Sci . , 2006 ,101 : 334 —341
[53 ]  Chen P , Zhang L. Biomacromolecules , 2006 , 7 : 1700 —1706
[54 ]  Wang N G, ZhangL N , Gu J M. J . Appl . Polym. Sci . , 2005 , 95 :465 —473
[55 ]  Chen Y, Zhang L N , Gu J M, et al . J . Membr. Sci . , 2004 , 241 :393 —402
[56 ]  Wang N G, Zhang L. Polym. Int . , 2005 , 54 : 233 —239
[57 ]  Chen Y, Zhang L N , Lu YS , et al . J . Appl . Polym. Sci . , 2003 ,90 : 3790 —3796
[58 ]  Deng R , Chen Y, Chen P , et al . Polym. Degrad. Stab. , 2006 ,91 : 2189 —2197
[59 ]  Chen Y, Zhang L N , Du L B. Ind. Eng. Chem. Res. , 2003 , 42 :6786 —6794
[60 ]  Zhang L , Chen P , Huang J , et al . J . Appl . Polym. Sci . , 2003 ,88 : 422 —427
[61 ]  Moharram M A , Abdelnour K N , Abdelraof G. Polym. Degrad.Stab. , 1994 , 45 : 429 —434
[62 ]  National Institute of Standards and Technology. Chemistry WebBook.[2008-04 ] . http://webbook.nist.gov/chemistry
[63 ]  Ozaki Y, Siesler HW, Kawata S , et al . Near2Infrared Spectroscopy.Germany Weinheim: Wiley-VCH , 2002. 1 —7
[64 ]  Wang J , Sowa M G, Ahmed M K, et al . J . Phys. Chem. , 1994 ,98 : 4748 —4755
[65 ]  Kovalenko I V , Rippke G R , Hurburgh C R. J . Agric. Food Chem. , 2006 , 54 : 3485 —3491
[66 ]  Pazdernik D L , Plehn S J , Halgerson J L , et al . J . Agric. Food Chem. , 1996 , 44 : 2278 —2281
[67 ]  Bennett J O , Krishnan A H , Wiebold WJ , et al . J . Agric. Food Chem. , 2003 , 51 : 6882 —6886
[68 ]  Delwiche S R , Pordesimo L O , Panthee D R , et al . J . Am. Oil Chem. Soc. , 2007 , 84 : 1107 —1115
[69 ]  Delwiche S R , Pordesimo L O , Scaboo A M, et al . J . Agric. Food Chem. , 2006 , 54 : 6951 —6956
[70 ]  朱文静(Zhu WJ ) , 陈斌(Chen B) , 邹贤勇(Zou X Y) . 现代仪器(Mod. Instrum. ) , 2007 , (6) : 44 —46
[71 ]  Naeve S L , Proulx R A , Hulke B S , et al . Agron. J . , 2008 , 100 :231 —234
[72 ]  Franco D , Nunez MJ , Pinelo M, et al . Eur. Food Res. Technol . ,2006 , 222 : 443 —450
[73 ]  Maraboli A , Cattaneo T M P , Giangiacomo R. J . Near Infrared Spectrosc. , 2002 , 10 : 63 —69
[74 ]  Morimoto S , McClure W F , Stanfield DL. Appl . Spectrosc. , 2001 ,55 : 182 —189
[75 ]  Fontaine J , Horr J , Schirmer B. J . Agric. Food Chem. , 2001 , 49 :57 —66

[1] . Moving Window Two-Dimensional(MW2D)Correlation Spectroscopy [J]. Progress in Chemistry, 2010, 22(05): 962-974.
[2] Yang Yang Zheng Wen Cheng Dangguo Chen Fengqiu Zhan Xiaoli. The Application of in Situ FT-IR in the Research of Methane Oxidation [J]. Progress in Chemistry, 2009, 21(10): 2205-2211.
[3]

Jiang Yan, Wu Peiyi**

. Application of Near-infrared Spectroscopy in the Study of Protein and Polymer with Amide Group [J]. Progress in Chemistry, 2008, 20(12): 2021-2033.
[4] Chu Xiaoli*,Yuan Hongfu,Lu Wanzhen. Progress and Application of Spectral Data Pretreatment and Wavelength Selection Methods in NIR Analytical Technique [J]. Progress in Chemistry, 2004, 16(04): 528-.