Comparison of different aminofunctionalization strategies for attachment of single antibodies to AFM cantilevers

被引:142
作者
Ebner, Andreas [1 ]
Hinterdorfer, Peter [1 ]
Gruber, Hermann J. [1 ]
机构
[1] Univ Linz, Inst Biophys, A-4040 Linz, Austria
基金
奥地利科学基金会;
关键词
AFM; force spectroscopy; molecular recognition; silanization; avidin/biotin interaction;
D O I
10.1016/j.ultramic.2007.02.035
中图分类号
TH742 [显微镜];
学科分类号
摘要
Atomic force microscopy (AFM) has developed into a key technique for elucidation of biological systems on the single molecular level. In particular, molecular recognition force microscopy has proven to be a powerful tool for the investigation of biological interactions under near physiological conditions. For this purpose, ligands are tethered to AFM tips and the interaction forces with cognate receptors on the sample surface are measured with pico-Newton accuracy. In the first step of tip functionalization, amino groups are typically introduced on the initially inert AFM tip. Several methods have been developed to reproducibly adjust the desired low density of amino groups on the tip surface, i.e. esterification with ethanolamine, gas-phase silanization with aminopropyl-triethoxysilane (APTES), or treatment with aminophenyl-trimethoxysilane (APhS) in toluene solution. In the present study, the usefulness of these methods for attachments of antibodies to AFM tips was characterized by a standardized test system, in which biotinylated IgG was bound to the tip and a dense monolayer of avidin on mica served as test sample. All three methods of aminofunctionalization were found fully satisfactory for attachment of single antibodies to AFM tips, only in a parallel macroscopic assay on silicon nitride chips a minor difference was found in that APTES appeared to yield a slightly lower surface density of amino groups. (c) 2007 Elsevier B.V. All rights reserved.
引用
收藏
页码:922 / 927
页数:6
相关论文
共 17 条
[1]   ATOMIC FORCE MICROSCOPE [J].
BINNIG, G ;
QUATE, CF ;
GERBER, C .
PHYSICAL REVIEW LETTERS, 1986, 56 (09) :930-933
[2]   CALCULATION OF THERMAL NOISE IN ATOMIC-FORCE MICROSCOPY [J].
BUTT, HJ ;
JASCHKE, M .
NANOTECHNOLOGY, 1995, 6 (01) :1-7
[3]  
CRAMPTON N, 2006, SENS NANOSTRUCT, V106, P765
[4]   Dynamic strength of molecular adhesion bonds [J].
Evans, E ;
Ritchie, K .
BIOPHYSICAL JOURNAL, 1997, 72 (04) :1541-1555
[5]   SYNTHESIS AND APPLICATIONS OF A NEW POLY(ETHYLENE GLYCOL) DERIVATIVE FOR THE CROSS-LINKING OF AMINES WITH THIOLS [J].
HASELGRUBLER, T ;
AMERSTORFER, A ;
SCHINDLER, H ;
GRUBER, HJ .
BIOCONJUGATE CHEMISTRY, 1995, 6 (03) :242-248
[6]   Detection and localization of single molecular recognition events using atomic force microscopy [J].
Hinterdorfer, P ;
Dufrêne, YF .
NATURE METHODS, 2006, 3 (05) :347-355
[7]   Scanning probe evolution in biology [J].
Hörber, JKH ;
Miles, MJ .
SCIENCE, 2003, 302 (5647) :1002-1005
[8]   CALIBRATION OF ATOMIC-FORCE MICROSCOPE TIPS [J].
HUTTER, JL ;
BECHHOEFER, J .
REVIEW OF SCIENTIFIC INSTRUMENTS, 1993, 64 (07) :1868-1873
[9]   Antibody linking to atomic force microscope tips via disulfide bond formation [J].
Kamruzzahan, A. S. M. ;
Ebner, Andreas ;
Wildling, Linda ;
Kienberger, Ferry ;
Riener, Christian K. ;
Hahn, Christoph D. ;
Pollheimer, Philipp D. ;
Winklehner, Peter ;
Hoelzl, Martin ;
Lackner, Bernd ;
Schoerkl, Daniela M. ;
Hinterdorfer, Peter ;
Gruber, Hermann J. .
BIOCONJUGATE CHEMISTRY, 2006, 17 (06) :1473-1481
[10]   Molecular recognition imaging and force spectroscopy of single biomolecules [J].
Kienberger, F ;
Ebner, A ;
Gruber, HJ ;
Hinterdorfer, P .
ACCOUNTS OF CHEMICAL RESEARCH, 2006, 39 (01) :29-36