Evaluation of photografted charged sites within polymer monoliths in capillary columns using contactless conductivity detection

被引:34
|
作者
Connolly, Damian
O'Shea, Vincent
Clark, Paul
O'Connor, Brendan
Paull, Brett [1 ]
机构
[1] Dublin City Univ, Sch Chem Sci, Ctr Bioanalyt Sci, Dublin 9, Ireland
[2] Dublin City Univ, Sch Biotechnol, Ctr Bioanalyt Sci, Dublin 9, Ireland
关键词
contactless conductivity detection; polymer monolithic phase; photografted protein;
D O I
10.1002/jssc.200700365
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Capacitively coupled contactless conductivity detection ((CD)-D-4) is presented as a novel and versatile means of visualising discrete zones of charged functional groups grafted onto polymer based monoliths. Monoliths were first formed within 100 mu m UV-transparent fused silica capillaries. Photografting methods were subsequently used to graft a charged functional monomer, 2-acrylamido-2-methyl-1-propanesulfonic acid, onto discrete regions of the monolith using a photomask. Post-modification monolith evaluation involves scanning the (CD)-D-4 detector along the length of the monolith to obtain a profile of the exact spatial location of grafted charged functionalities with millimetre accuracy. The methodology was extended to the visualisation of several zones of immobilised protein (bovine serum albumin) using photografted azlactone groups to enable covalent attachment of the protein to the monolith at precise locations along its length. In addition, the extent of non-specific binding of protein to the ungrafted regions of the monolith due to hydrophobic interactions could be monitored as an increase in background conductivity of the stationary phase. Finally, the technique was cross-validated using digital photography in combination with a UV light source by immobilising green fluorescent protein in discrete zones and comparing the results obtained using both complementary techniques.
引用
收藏
页码:3060 / 3068
页数:9
相关论文
共 50 条
  • [31] Rapid separation of fatty acids using a poly(vinyl alcohol) coated capillary in nonaqueous capillary electrophoresis with contactless conductivity detection
    Buglione, Lucia
    See, Hong Heng
    Hauser, Peter C.
    ELECTROPHORESIS, 2013, 34 (14) : 2072 - 2077
  • [32] Quantification of terbinafine in pharmaceutical tablets using capillary electrophoresis with contactless conductivity detection and batch injection analysis with amperometric detection
    Felix, Fabiana S.
    Ferreira, Luis M. C.
    Rossini, Pamela de O.
    do Lago, Claudimir L.
    Angnes, Lucio
    TALANTA, 2012, 101 : 220 - 225
  • [33] Determination of inorganic cations in biological fluids using a hybrid capillary electrophoresis device coupled with contactless conductivity detection
    Lobo-Junior, Eulicio Oliveira
    Chagas, Cyro L. S.
    Coltro, Wendell K. T.
    JOURNAL OF SEPARATION SCIENCE, 2018, 41 (16) : 3310 - 3317
  • [34] Analysis of Pharmacologic Adulteration in Dietary Supplements by Capillary Zone Electrophoresis Using Simultaneous Contactless Conductivity and UV Detection
    Larissa Sabo Müller
    Diana Tomazi Muratt
    Thaís Ramos Dal Molin
    Carolina Gonzalez Urquhart
    Carine Viana
    Leandro Machado de Carvalho
    Chromatographia, 2018, 81 : 689 - 698
  • [35] Analysis of amphetamine-type substances by capillary zone electrophoresis using capacitively coupled contactless conductivity detection
    Epple, Rochelle
    Blanes, Lucas
    Beavis, Alison
    Roux, Claude
    Doble, Philip
    ELECTROPHORESIS, 2010, 31 (15) : 2608 - 2613
  • [36] Screening determination of food additives using capillary electrophoresis coupled with contactless conductivity detection: A case study in Vietnam
    Thi Hong Hao Le
    Thi Quynh Hoa Nguyen
    Cao Son Tran
    Thi Trang Vu
    Thi Lien Nguyen
    Van Hoang Cao
    Thi Thao Ta
    Thi Ngoc Mai Pham
    Thi Anh Huong Nguyen
    Thanh Duc Mai
    FOOD CONTROL, 2017, 77 : 281 - 289
  • [37] Efficient separation of organic anions in beverages using aminosilane-functionalized capillary electrophoresis with contactless conductivity detection
    Obma, Apinya
    Bumrungpuech, Rawiwan
    Hemwech, Pattamaporn
    Detsangiamsak, Sasinun
    Wirasate, Supa
    Hauser, Peter C.
    Chantiwas, Rattikan
    ANALYTICA CHIMICA ACTA, 2024, 1316
  • [38] Determination of fluoroacetate and fluoride in blood serum by capillary zone electrophoresis using capacitively coupled contactless conductivity detection
    Rajh Vidal, Denis Tadeu
    Augelli, Marcio Antonio
    Hotta, Guilherme Minoru
    Lopes, Fernando Silva
    do Lago, Claudimir Lucio
    ELECTROPHORESIS, 2011, 32 (08) : 896 - 899
  • [39] Analysis of Pharmacologic Adulteration in Dietary Supplements by Capillary Zone Electrophoresis Using Simultaneous Contactless Conductivity and UV Detection
    Mueller, Larissa Sabo
    Muratt, Diana Tomazi
    Dal Molin, Thais Ramos
    Urquhart, Carolina Gonzalez
    Viana, Carine
    de Carvalho, Leandro Machado
    CHROMATOGRAPHIA, 2018, 81 (04) : 689 - 698
  • [40] Following the Lipase Catalyzed Enantioselective Hydrolysis of Amino Acid Esters with Capillary Electrophoresis Using Contactless Conductivity Detection
    Schuchert-Shi, Aiping
    Hauser, Peter C.
    CHIRALITY, 2010, 22 (03) : 331 - 335