Rational design of a polymer specific for microcystin-LR using a computational approach

被引:241
作者
Chianella, I [1 ]
Lotierzo, M [1 ]
Piletsky, SA [1 ]
Tothill, IE [1 ]
Chen, BN [1 ]
Karim, K [1 ]
Turner, APF [1 ]
机构
[1] Cranfield Univ, Inst Biosci & Technol, Bedford MK45 4DT, England
关键词
D O I
10.1021/ac010840b
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
A computational approach for the design of a molecularly imprinted polymer (MIP) specific for Cyanobacterial toxin microcystin-LR is presented. By using molecular modeling software, a virtual library of functional monomers was designed and screened against the target toxin, employed as a template. The monomers giving the highest binding energy were selected and used in a simulated annealing (molecular dynamics) process to investigate their interaction with the template. The stoichiomettic ratio observed from the simulated annealing study was used in MIP preparation for microcystin-LR. The monomers were copolymerized with a cross-linker in the presence of the template. A control (blank) polymer was prepared under the same conditions but in the absence of template. A competitive assay with microcystin-horseradish peroxidase conjugate was optimized and used to evaluate the affinity and cross-reactivity of the polymer. The performance of the artificial receptor was compared to the performance of monoclonal and polyclonal antibodies raised against the toxin. The results indicate that imprinted polymer has affinity and sensitivity comparable to those of polyclonal antibodies (die detection limit for microcystin-LR using the MIP-based assay was found to be 0.1 mug L-1), while superior chemical and thermal stabilities were obtained. Moreover, cross-reactivity to other toxin analogues was very low for the imprinted polymer, in contrast to the results achieved for antibodies. It is anticipated that the polymer designed could be used in assays, sensors, and solid-phase extraction.
引用
收藏
页码:1288 / 1293
页数:6
相关论文
共 26 条
  • [1] Imprinted polymers as protecting groups for regioselective modification of polyfunctional substrates
    Alexander, C
    Smith, CR
    Whitcombe, MJ
    Vulfson, EN
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1999, 121 (28) : 6640 - 6651
  • [2] Application of molecular imprinting to the development of aqueous buffer and organic solvent based radioligand binding assays for (S)-propranolol
    Andersson, LI
    [J]. ANALYTICAL CHEMISTRY, 1996, 68 (01) : 111 - 117
  • [3] BOHM HJ, 1992, J COMPUT AID MOL DES, V6, P61, DOI 10.1007/bf00124387
  • [4] CYANOBACTERIA SECONDARY METABOLITES - THE CYANOTOXINS
    CARMICHAEL, WW
    [J]. JOURNAL OF APPLIED BACTERIOLOGY, 1992, 72 (06): : 445 - 459
  • [5] Carmichael WW, 1997, ADV BOT RES, V27, P211
  • [6] A glucose-sensing polymer
    Chen, GH
    Guan, ZB
    Chen, CT
    Fu, LT
    Sundaresan, V
    Arnold, FH
    [J]. NATURE BIOTECHNOLOGY, 1997, 15 (04) : 354 - 357
  • [7] CHU FS, 1990, J ASSOC OFF ANA CHEM, V73, P451
  • [8] Codd G. C., 1999, PHOTOTROPHIC PROKARY, P623
  • [9] 3-DIMENSIONAL QUANTITATIVE STRUCTURE-ACTIVITY-RELATIONSHIPS .2. CONFORMATIONAL MIMICRY AND TOPOGRAPHICAL SIMILARITY OF FLEXIBLE MOLECULES
    LABANOWSKI, J
    MOTOC, I
    NAYLOR, CB
    MAYER, D
    DAMMKOEHLER, RA
    [J]. QUANTITATIVE STRUCTURE-ACTIVITY RELATIONSHIPS, 1986, 5 (04): : 138 - 152
  • [10] Method for synthesis and screening of large groups of molecularly imprinted polymers
    Lanza, F
    Sellergren, B
    [J]. ANALYTICAL CHEMISTRY, 1999, 71 (11) : 2092 - 2096