Development of an enzymatic reactor applying spontaneously adsorbed trypsin on the surface of a PDMS microfluidic device

被引:19
作者
Kecskemeti, Adam [1 ]
Bako, Jozsef [2 ]
Csarnovics, Istvan [3 ]
Csosz, Eva [4 ]
Gaspar, Attila [1 ]
机构
[1] Univ Debrecen, Dept Inorgan & Analyt Chem, Egyet Ter 1, H-4032 Debrecen, Hungary
[2] Univ Debrecen, Dept Biomat & Prosthet Dent, Nagyerdei Krt 98, H-4032 Debrecen, Hungary
[3] Univ Debrecen, Dept Expt Phys, Bem Ter 18-A, H-4026 Debrecen, Hungary
[4] Univ Debrecen, Dept Biochem & Mol Biol, Egyet Ter 1, H-4032 Debrecen, Hungary
关键词
Immobilization; Trypsin; Digestion; Peptide mapping; Enzyme reactor; Microfluidic device; CAPILLARY ZONE ELECTROPHORESIS; EFFICIENT PROTEIN DIGESTION; IMMOBILIZED TRYPSIN; MASS-SPECTROMETRY; PEPTIDE SEPARATION; IDENTIFICATION; MICROREACTOR; PROTEOLYSIS; ADSORPTION; MICROCHIP;
D O I
10.1007/s00216-017-0295-9
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Herein, a microfluidic device (MD) containing immobilized trypsin for rapid and efficient proteolysis was described. Trypsin was immobilized via non-specific protein adsorption onto the hydrophobic poly(dimethylsiloxane) (PDMS) channel wall of the MD. Peptide mapping of bovine serum albumin (BSA) samples was carried out to estimate the stability of trypsin adsorbed on PDMS surface. Peptide maps of BSA samples were obtained by capillary zone electrophoresis (CZE), the RSD% for migration times were under 1%. Several proteins (hemoglobin, myoglobin, lysozyme, and BSA) in a wide molecular size range (15-70 kDa) were digested efficiently with similar to 50 s contact time. The number of separated peaks correlated well with the expected number of peptides formed in the complete tryptic digestion of the proteins. Peptide mass fingerprinting of BSA and human serum was carried out. Trypsin retained its activity for 2 h; within this period, the MD can be used for multiple digestions. The main properties of this device are simple channel pattern, simple immobilization procedure, regenerability, and disposability; all these features make this MD one of the simplest yet applicable enzymatic microreactors.
引用
收藏
页码:3573 / 3585
页数:13
相关论文
共 56 条
  • [21] Capillary electrophoresis mass spectrometry coupling with immobilized enzyme electrospray capillaries
    Krenkova, Jana
    Kleparnik, Karel
    Foret, Frantisek
    [J]. JOURNAL OF CHROMATOGRAPHY A, 2007, 1159 (1-2) : 110 - 118
  • [22] Efficient proteolysis strategies based on microchip bioreactors
    Liu, Shuang
    Bao, Huimin
    Zhang, Luyan
    Chen, Gang
    [J]. JOURNAL OF PROTEOMICS, 2013, 82 : 1 - 13
  • [23] Multi layer-assembled microchip for enzyme immobilization as reactor toward low-level protein identification
    Liu, Y
    Lu, HJ
    Zhong, W
    Song, PY
    Kong, JL
    Yang, PY
    Girault, HH
    Liu, BH
    [J]. ANALYTICAL CHEMISTRY, 2006, 78 (03) : 801 - 808
  • [24] Gold nanoparticle assembly microfluidic reactor for efficient on-line proteolysis
    Liu, Yun
    Xue, Yan
    Ji, Ji
    Chen, Xian
    Kong, Jilie
    Yang, Pengyuan
    Girault, Hubert H.
    Liu, Baohong
    [J]. MOLECULAR & CELLULAR PROTEOMICS, 2007, 6 (08) : 1428 - 1436
  • [25] Assembly-controlled biocompatible interface on a microchip: Strategy to highly efficient proteolysis
    Liu, Yun
    Zhong, Wei
    Meng, Sheng
    Kong, Jilie
    Lu, Haojie
    Yang, Pengyuan
    Girault, Hubert H.
    Liu, Baohong
    [J]. CHEMISTRY-A EUROPEAN JOURNAL, 2006, 12 (25) : 6585 - 6591
  • [26] Organic-inorganic hybrid silica monolith based immobilized trypsin reactor with high enzymatic activity
    Ma, Junfeng
    Liang, Zhen
    Qiao, Xiaoqiang
    Deng, Qiliang
    Tao, Dingyin
    Zhang, Lihua
    Zhang, Yukui
    [J]. ANALYTICAL CHEMISTRY, 2008, 80 (08) : 2949 - 2956
  • [27] Proteomic analysis of post-translational modifications
    Mann, M
    Jensen, ON
    [J]. NATURE BIOTECHNOLOGY, 2003, 21 (03) : 255 - 261
  • [28] Immobilization of trypsin on polyester fleece via different spacers
    Nouaimi, M
    Möschel, K
    Bisswanger, H
    [J]. ENZYME AND MICROBIAL TECHNOLOGY, 2001, 29 (8-9) : 567 - 574
  • [29] Selective deposition of proteins and cells in arrays of microwells
    Ostuni, E
    Chen, CS
    Ingber, DE
    Whitesides, GM
    [J]. LANGMUIR, 2001, 17 (09) : 2828 - 2834
  • [30] An integrated microfluidic device for influenza and other genetic analyses
    Pal, R
    Yang, M
    Lin, R
    Johnson, BN
    Srivastava, N
    Razzacki, SZ
    Chomistek, KJ
    Heldsinger, DC
    Haque, RM
    Ugaz, VM
    Thwar, PK
    Chen, Z
    Alfano, K
    Yim, MB
    Krishnan, M
    Fuller, AO
    Larson, RG
    Burke, DT
    Burns, MA
    [J]. LAB ON A CHIP, 2005, 5 (10) : 1024 - 1032