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Atomic force microscopy as a multifunctional molecular toolbox in nanobiotechnology

Nature nanotechnology, v.3 no.5, 2008년, pp.261 - 269  

Müller, Daniel J. ,  Dufrêne, Yves F.

초록이 없습니다.

참고문헌 (103)

  1. CM Niemeyer 2004 Nanobiotechnology: Concepts, Applications and Perspectives 10.1002/3527602453 Niemeyer, C. M. & Mirkin, C. A. Nanobiotechnology: Concepts, Applications and Perspectives (Wiley-VCH, Weinheim, 2004). 

  2. Nanobiotechnology: Report of the National Nanotechnology Initiative Workshop, October 2003; available at http://www.nano.gov . 

  3. Chem. Soc. Rev. Y Shirai 35 1043 2006 10.1039/b514700j Shirai, Y., Morin, J. F., Sasaki, T., Guerrero, J. M. & Tour, J. M. Recent progress on nanovehicles. Chem. Soc. Rev. 35, 1043-1055 (2006). 

  4. Nano Today V Balzani 2 18 2007 10.1016/S1748-0132(07)70055-5 Balzani, V., Credi, A. & Venturi, M. Molecular devices and machines. Nano Today 2, 18-25 (April 2007). 

  5. Nature H Bayley 413 226 2001 10.1038/35093038 Bayley, H. & Cremer, P. S. Stochastic sensors inspired by biology. Nature 413, 226-230 (2001). 

  6. Curr. Pharm. Biotechnol. RG Panchal 3 99 2002 10.2174/1389201023378418 Panchal, R. G., Smart M. L., Bowser D. N., Williams D. A. & Petrou S. Pore-forming proteins and their application in biotechnology. Curr. Pharm. Biotechnol. 3, 99-115 (2002). 

  7. Nature K Kitamura 397 129 1999 10.1038/16403 Kitamura, K., Tokunaga, M., Iwane, A. H. & Yanagida, T. A single myosin head moves along an actin filament with regular steps of 5.3 nanometres. Nature 397, 129-134 (1999). 

  8. Nano Lett. H Hess 3 1651 2003 10.1021/nl0347435 Hess, H. et al. Molecular shuttles operating undercover: A new photolithographic approach for the fabrication of structured surfaces supporting directed motility. Nano Lett. 3, 1651-1655 (2003). 

  9. Science MD Wang 282 902 1998 10.1126/science.282.5390.902 Wang, M. D. et al. Force and velocity measured for single molecules of RNA polymerase. Science 282, 902-907 (1998). 

  10. Science RK Soong 290 1555 2000 10.1126/science.290.5496.1555 Soong, R. K. et al. Powering an inorganic nanodevice with a biomolecular motor. Science 290, 1555-1558 (2000). 

  11. Phys. Rev. Lett. G Binnig 56 930 1986 10.1103/PhysRevLett.56.930 Binnig, G., Quate, C. F. & Gerber, C. Atomic force microscope. Phys. Rev. Lett. 56, 930-933 (1986). 

  12. Nature Nanotech. C Gerber 1 3 2006 10.1038/nnano.2006.70 Gerber, C. & Lang, H. P. How the doors to the nanoworld were opened. Nature Nanotech. 1, 3-5 (2006). 

  13. Nature Struct. Biol. A Engel 7 715 2000 10.1038/78929 Engel, A. & Mller, D. J. Observing single biomolecules at work with the atomic force microscope. Nature Struct. Biol. 7, 715-718 (2000). 

  14. Nature Rev. Microbiol. YF Dufrne 2 451 2004 10.1038/nrmicro905 Dufrne, Y. F. Using nanotechniques to explore microbial surfaces. Nature Rev. Microbiol. 2, 451-60 (2004). 

  15. Curr. Opin. Struct. Biol. DJ Müller 16 489 2006 10.1016/j.sbi.2006.06.001 Müller, D. J. et al. Single-molecule studies of membrane proteins. Curr. Opin. Struct. Biol. 16, 489-495 (2006). 

  16. J. Mol. Biol. BW Hoogenboom 370 246 2007 10.1016/j.jmb.2007.04.073 Hoogenboom, B. W., Suda, K., Engel, A. & Fotiadis, D. The supramolecular assemblies of voltage-dependent anion channels in the native membrane. J. Mol. Biol. 370, 246-255 (2007). 

  17. Nature H Seelert 405 418 2000 10.1038/35013148 Seelert, H., Poetsch A., Dencher, N. A., Engel, A. & Müller, D. J. Proton powered turbine of a plant motor. Nature 405, 418-419 (2000). 

  18. EMBO Rep. D Pogoryelov 6 1040 2005 10.1038/sj.embor.7400517 Pogoryelov, D. et al. The c15 ring of the Spirulina platensis F-ATP synthase: F1/F0 symmetry mismatch is not obligatory. EMBO Rep. 6, 1040-1044 (2005). 

  19. EMBO J. DJ Mller 21 3598 2002 10.1093/emboj/cdf365 Mller, D. J., Hand, G. M., Engel, A. & Sosinsky, G. Conformational changes in surface structures of isolated Connexin26 gap junctions. EMBO J. 21, 3598-3607 (2002). 

  20. Nature D Fotiadis 421 127 2003 10.1038/421127a Fotiadis, D. et al. Atomic-force microscopy: Rhodopsin dimers in native disc membranes. Nature 421, 127-128 (2003). 

  21. Biochemistry PS Park 43 15643 2004 10.1021/bi047907k Park, P. S., Filipek, S., Wells, J. W. & Palczewski, K. Oligomerization of G protein-coupled receptors: past, present, and future. Biochemistry 43, 15643-15656 (2004). 

  22. Science S Scheuring 309 484 2005 10.1126/science.1110879 Scheuring, S. & Sturgis, J. N. Chromatic adaptation of photosynthetic membranes. Science 309, 484-487 (2005). 

  23. Curr. Biol. C Elie-Caille 17 1765 2007 10.1016/j.cub.2007.08.063 Elie-Caille, C. et al. Straight GDP-tubulin protofilaments form in the presence of taxol. Curr. Biol. 17, 1765-1770 (2007). 

  24. Science B Drake 243 1586 1989 10.1126/science.2928794 Drake, B. et al. Imaging crystals, polymers, and processes in water with the atomic force microscope. Science 243, 1586-1588 (1989). 

  25. Biochemistry S Kasas 36 461 1997 10.1021/bi9624402 Kasas, S. et al. Escherichia coli RNA ploymerase activity observed using atomic force microscopy. Biochemistry 36, 461-468 (1997). 

  26. Biophys. J. M Grandbois 74 2398 1998 10.1016/S0006-3495(98)77948-2 Grandbois, M., Clausen-Schaumann, H. & Gaub, H. Atomic force microscope imaging of phospholipid bilayer degradation by phospholipase A2. Biophys. J. 74, 2398-2404 (1998). 

  27. Nature Struct. Biol. MB Viani 7 644 2000 10.1038/77936 Viani, M. B. et al. Probing proteinprotein interactions in real time. Nature Struct. Biol. 7, 644-647 (2000). 

  28. EMBO J. M Yokokawa 25 4567 2006 10.1038/sj.emboj.7601326 Yokokawa, M. et al. Fast-scanning atomic force microscopy reveals the ATP/ADP-dependent conformational changes of GroEL. EMBO J. 25, 4567-4576 (2006). 

  29. J. Biol. Chem. J Yu 282 8895 2007 10.1074/jbc.M609317200 Yu, J., Bippes, C. A., Hand, G. M., Müller, D. J. & Sosinsky, G. E. Aminosulfonate modulated pH-induced conformational changes in connexin26 hemichannels. J. Biol. Chem. 282, 8895-8904 (2007). 

  30. Curr. Opin. Chem. Biol. PL Frederix 7 641 2003 10.1016/j.cbpa.2003.08.010 Frederix, P. L. et al. Atomic force bio-analytics. Curr. Opin. Chem. Biol. 7, 641-647 (2003). 

  31. Biophys. J. A Philippsen 82 1667 2002 10.1016/S0006-3495(02)75517-3 Philippsen, A. et al. Imaging the electrostatic potential of transmembrane channels: Atomic probe microscopy on OmpF porin. Biophys. J. 82, 1667-1676 (2002). 

  32. Nanotechnology PLTM Frederix 16 997 2005 10.1088/0957-4484/16/8/001 Frederix, P. L. T. M. et al. Assessment of insulated conductive cantilevers for biology and electrochemistry. Nanotechnology 16, 997-1005 (2005). 

  33. Science VT Moy 266 257 1994 10.1126/science.7939660 Moy, V.T., Florin, E. L. & Gaub, H. E. Intermolecular forces and energies between ligands and receptors. Science 266, 257-259 (1994). 

  34. Langmuir GU Lee 10 354 1994 10.1021/la00014a003 Lee, G. U, Kidwell, D. A. & Colton, R. J. Sensing discrete streptavidin-biotin interactions with atomic force microscopy. Langmuir 10, 354-357 (1994). 

  35. Science M Rief 276 1109 1997 10.1126/science.276.5315.1109 Rief, M., Gautel, M., Oesterhelt, F., Fernandez, J. M. & Gaub, H. E. Reversible unfolding of individual titin immunoglobulin domains by AFM. Science 276, 1109-1112 (1997). 

  36. PLoS Biol. ML Smith 5 e268 2007 10.1371/journal.pbio.0050268 Smith, M. L. et al. Force-induced unfolding of fibronectin in the extracellular matrix of living cells. PLoS Biol. 5, e268 (2007). 

  37. Science PG Wolynes 267 1619 1995 10.1126/science.7886447 Wolynes, P. G., Onuchic, J. N. & Thirumalai, D. Navigating the folding routes. Science 267, 1619-1620 (1995). 

  38. Nature Struct. Biol. DJ Brockwell 10 731 2003 10.1038/nsb968 Brockwell, D. J. et al. Pulling geometry defines the mechanical resistance of a beta-sheet protein. Nature Struct. Biol. 10, 731-737 (2003). 

  39. Nature Struct. Biol. M Carrion-Vazquez 10 738 2003 10.1038/nsb965 Carrion-Vazquez, M. et al. The mechanical stability of ubiquitin is linkage dependent. Nature Struct. Biol. 10, 738-743 (2003). 

  40. Proc. Natl Acad. Sci. USA H Dietz 103 12724 2006 10.1073/pnas.0602995103 Dietz, H., Berkemeier, F., Bertz, M. & Rief, M. Anisotropic deformation response of single protein molecules. Proc. Natl Acad. Sci. USA 103, 12724-12728 (2006). 

  41. Nature G Lee 440 246 2006 10.1038/nature04437 Lee, G. et al. Nanospring behaviour of ankyrin repeats. Nature 440, 246-249 (2006). 

  42. Nature Mater. I Schwaiger 1 232 2002 10.1038/nmat776 Schwaiger, I., Sattler, C., Hostetter, D. R. & Rief, M. The myosin coiled-coil is a truly elastic protein structure. Nature Mater. 1, 232-235 (2002). 

  43. Nature Mater. N Becker 2 278 2003 10.1038/nmat858 Becker, N. et al. Molecular nanosprings in spider capture-silk threads. Nature Mater. 2, 278-283 (2003). 

  44. Nature Mater. Y Cao 6 109 2007 10.1038/nmat1825 Cao, Y. & Li, H. Polyprotein of GB1 is an ideal artificial elastomeric protein. Nature Mater. 6, 109-114 (2007). 

  45. Annu. Rev. Biophys. Biomol. Struct. E Evans 30 105 2001 10.1146/annurev.biophys.30.1.105 Evans, E. Probing the relation between forcelifetime-and chemistry in single molecular bonds. Annu. Rev. Biophys. Biomol. Struct. 30, 105-128 (2001). 

  46. Proc. Natl Acad. Sci. USA AF Oberhauser 98 468 2001 10.1073/pnas.98.2.468 Oberhauser, A. F., Hansma, P. K., Carrion-Vazquez, M. & Fernandez, J. M. Stepwise unfolding of titin under force-clamp atomic force microscopy. Proc. Natl Acad. Sci. USA 98, 468-472 (2001). 

  47. Science JM Fernandez 303 1674 2004 10.1126/science.1092497 Fernandez, J. M. & Li, H. Force-clamp spectroscopy monitors the folding trajectory of a single protein. Science 303, 1674-1678 (2004). 

  48. Nature CM Dobson 426 884 2003 10.1038/nature02261 Dobson, C. M. Protein folding and misfolding. Nature 426, 884-890 (2003). 

  49. Annu. Rev. Biophys. Biomol. Struct. A Kedrov 36 233 2007 10.1146/annurev.biophys.36.040306.132640 Kedrov, A., Janovjak, H., Sapra, K. T. & Müller, D. J. Deciphering molecular interactions of native membrane proteins by single-molecule force spectroscopy. Annu. Rev. Biophys. Biomol. Struct. 36, 233-260 (2007). 

  50. ChemPhysChem Harald Janovjak 9 7 954 2008 10.1002/cphc.200700662 Janovjak, H., Sapra, K. T., Kedrov, A. & Müller, D. J. From valleys to ridges: Exploring the dynamic energy landscape of single membrane proteins. Chem. Phys. Chem. (in the press); doi:10.1002/cphc.200700662. 

  51. EMBO Rep. A Kedrov 6 668 2005 10.1038/sj.embor.7400455 Kedrov, A., Krieg, M., Ziegler, C., Kuhlbrandt, W. & Mller, D. J. Locating ligand binding and activation of a single antiporter. EMBO Rep. 6, 668-674 (2005). 

  52. J. Mol. Biol. A Kedrov 362 925 2006 10.1016/j.jmb.2006.07.049 Kedrov, A., Ziegler, C. & Mller, D. J. Differentiating ligand and inhibitor interactions of a single antiporter. J. Mol. Biol. 362, 925-932 (2006). 

  53. J. Mol. Biol. A Kedrov 375 1258 2008 10.1016/j.jmb.2007.11.032 Kedrov, A., Appel, M., Baumann, H., Ziegler, C. & Muller, D. J. Examining the dynamic energy landscape of an antiporter upon inhibitor binding. J. Mol. Biol. 375, 1258-1266 (2008). 

  54. Pharmacol. Rev. DJ Mller 60 4378 2008 Mller, D. J., Wu, N. & Palczewski, K. Vertebrate membrane proteins: Structure, function and insights from biophysical approaches. Pharmacol. Rev. 60, 4378 (2008). 

  55. Biophys. J. RB Best 81 2344 2001 10.1016/S0006-3495(01)75881-X Best, R. B., Li, B., Steward, A., Daggett, V. & Clarke, J. Can non-mechanical proteins withstand force? Stretching barnase by atomic force microscopy and molecular dynamics simulation. Biophys. J. 81, 2344-2356 (2001). 

  56. Nature Cell Biol. M Benoit 2 313 2000 10.1038/35014000 Benoit, M., Gabriel, D., Gerisch, G. & Gaub, H. E. Discrete interactions in cell adhesion measured by single-molecule force spectroscopy. Nature Cell Biol. 2, 313-317 (2000). 

  57. Nature Cell Biol. M Krieg 10 429 2008 10.1038/ncb1705 Krieg, M. et al. Tensile forces govern germ layer organization during gastrulation. Nature Cell Biol. 10, 429-436 (2008). 

  58. J. Mol. Biol. FA Fierro 377 1082 2008 10.1016/j.jmb.2008.01.085 Fierro, F. A. et al. BCR/ABL expression of myeloid progenitors increases b1-integrin mediated adhesion to stromal cells. J. Mol. Biol. 377, 1082-1093 (2008). 

  59. Biophys. J. F Li 84 1252 2003 10.1016/S0006-3495(03)74940-6 Li, F., Redick, S. D., Erickson, H. P. & Moy, V. T. Force measurements of the alpha5beta1 integrin-fibronectin interaction. Biophys. J. 84, 1252-1262 (2003). 

  60. Mol. Biol. Cell A Taubenberger 18 1634 2007 10.1091/mbc.e06-09-0777 Taubenberger, A. et al. Revealing early steps of alpha2beta1 integrin-mediated adhesion to collagen type I by using single-cell force spectroscopy. Mol. Biol. Cell 18, 1634-1644 (2007). 

  61. Nature Nanotech. A Tinazli 2 220 2007 10.1038/nnano.2007.63 Tinazli, A., Piehler, J., Beuttler, M., Guckenberger, R. & Tampe, R. Native protein nanolithography that can write, read and erase. Nature Nanotech. 2, 220-225 (2007). 

  62. Nature Nanotech. K Salaita 2 145 2007 10.1038/nnano.2007.39 Salaita, K., Wang, Y. H. & Mirkin, C. A. Applications of dip-pen nanolithography. Nature Nanotech. 2, 145-155 (2007). 

  63. Science SK Kufer 319 594 2008 10.1126/science.1151424 Kufer, S. K., Puchner, E., Gumpp, H., Liedl, T. & Gaub, H. E. Single molecule cut and paste. Science 319, 594-596 (2008). 

  64. Nanotechnology AL Weisenhorn 4 106 1993 10.1088/0957-4484/4/2/006 Weisenhorn, A. L., Khorsandi, M., Kasas, S., Gotzos, V. & Butt, H.-J. Deformation and height anomaly of soft surfaces studied with an AFM. Nanotechnology 4, 106-113 (1993). 

  65. Biophys. J. C Rotsch 78 520 2000 10.1016/S0006-3495(00)76614-8 Rotsch, C. & Radmacher, M. Drug-induced changes of cytoskeletal structure and mechanics in fibroblasts: An atomic force microscopy study. Biophys. J. 78, 520-535 (2000). 

  66. Proc. Natl Acad. Sci. USA C Rotsch 96 921 1999 10.1073/pnas.96.3.921 Rotsch, C., Jacobson, K. & Radmacher M. Dimensional and mechanical dynamics of active and stable edges in motile fibroblasts investigated by using atomic force microscopy. Proc. Natl Acad. Sci. USA 96, 921-926 (1999). 

  67. Biophys. J. M Radmacher 70 556 1996 10.1016/S0006-3495(96)79602-9 Radmacher, M., Fritz, M., Kacher, C. M., Cleveland, J. P. & Hansma, P. K. Measuring the viscoelastic properties of human platelets with the atomic force microscope. Biophys. J. 70, 556-567 (1996). 

  68. Nature Cell Biol. R Matzke 3 607 2001 10.1038/35078583 Matzke, R., Jacobson, K. & Radmacher, M. Direct, high-resolution measurement of furrow stiffening during division of adherent cells. Nature Cell Biol. 3, 607-610 (2001). 

  69. Nature Nanotech. SE Cross 2 780 2007 10.1038/nnano.2007.388 Cross, S. E, Jin, Y. S., Rao, J. & Gimzewski, J. K. Nanomechanical analysis of cells from cancer patients. Nature Nanotech. 2, 780-783 (2007). 

  70. J. Phycol. MJ Higgins 39 722 2003 10.1046/j.1529-8817.2003.02163.x Higgins, M. J., Sader, J. E., Mulvaney, P. & Wetherbee, R. Probing the surface of living diatoms with atomic force microscopy: The nanostructure and nanomechanical properties of the mucilage layer. J. Phycol. 39, 722-734 (2003). 

  71. Env. Microbiol. G Francius 10 1344 2008 10.1111/j.1462-2920.2007.01551.x Francius, G., Tesson, B., Dague, E., Martin-Jézéquel, V. & Dufrêne, Y. F. Nanostructure and nanomechanics of live Phaeodactylum tricornutum morphotypes Env. Microbiol. 10, 1344-1356 (2008). 

  72. Langmuir A Touhami 19 4539 2003 10.1021/la034136x Touhami, A., Nysten, B. & Dufrêne, Y. F. Nanoscale mapping of the elasticity of microbial cells by atomic force microscopy. Langmuir 19, 4539-4543 (2003). 

  73. Acta Biomater. S Suresh 3 413 2007 10.1016/j.actbio.2007.04.002 Suresh, S. Biomechanics and biophysics of cancer cells. Acta Biomater. 3, 413-438 (2007). 

  74. Science CD Frisbie 265 2071 1994 10.1126/science.265.5181.2071 Frisbie, C. D., Rozsnyai, L. F., Noy, A., Wrighton, M. S. & Lieber, C. M. Functional-group imaging by chemical force microscopy. Science 265, 2071-2074 (1994). 

  75. Surf. Interf. Anal. A Noy 38 1429 2006 10.1002/sia.2374 Noy, A. Chemical force microscopy of chemical and biological interactions. Surf. Interf. Anal. 38, 1429-1441 (2006). 

  76. Nano Lett. E Dague 7 3026 2007 10.1021/nl071476k Dague, E. et al. Chemical force microscopy of single live cells. Nano Lett. 7, 3026-3030 (2007). 

  77. Biophys. J. E Dague 94 656 2008 10.1529/biophysj.107.116491 Dague, E., Alsteens, D., Latgé, J. P. & Dufrêne, Y. F. High-resolution cell surface dynamics of germinating Aspergillus fumigatus conidia. Biophys. J. 94, 656-660 (2008). 

  78. Langmuir D Alsteens 23 11977 2007 10.1021/la702765c Alsteens, D., Dague, E., Rouxhet, P. G., Baulard, A. R. & Dufrêne, Y. F. Direct measurement of hydrophobic forces on cell surfaces using AFM. Langmuir 23, 11977-11979 (2007). 

  79. Pflugers Arch. Eur. J. Physiol. D Alsteens 456 117 2008 10.1007/s00424-007-0386-0 Alsteens, D. et al. Organization of the mycobacterial cell wall: a nanoscale view. Pflugers Arch. Eur. J. Physiol. 456, 117-125 (2008). 

  80. Nat. Methods P Hinterdorfer 3 347 2006 10.1038/nmeth871 Hinterdorfer, P. & Dufrêne, Y. F. Detection and localization of single molecular recognition events using atomic force microscopy. Nat. Methods 3, 347-355 (2006). 

  81. Proc. Natl Acad. Sci. USA P Hinterdorfer 93 3477 1996 10.1073/pnas.93.8.3477 Hinterdorfer, P., Baumgartner, W., Gruber, H. J., Schilcher, K. & Schindler, H. Detection and localization of individual antibody-antigen recognition events by atomic force microscopy. Proc. Natl Acad. Sci. USA 93, 3477-3481 (1996). 

  82. Science GU Lee 266 771 1994 10.1126/science.7973628 Lee, G. U., Chrisey, L. A. & Colton, R. J. Direct measurement of the forces between complementary strands of DNA. Science 266, 771-773 (1994). 

  83. Proc. Natl Acad. Sci. USA J Fritz 95 12283 1998 10.1073/pnas.95.21.12283 Fritz, J., Katopidis, A. G., Kolbinger, F. & Anselmetti, D. Force-mediated kinetics of single P-selectin/ligand complexes observed by atomic force microscopy. Proc. Natl Acad. Sci. USA 95, 12283-12288 (1998). 

  84. Biophys. J. M Ludwig 72 445 1997 10.1016/S0006-3495(97)78685-5 Ludwig, M., Dettmann, W. & Gaub, H. E. Atomic force microscope imaging contrast based on molecular recognition. Biophys. J. 72, 445-448 (1997). 

  85. Nature Biotechnol. A Raab 17 902 1999 10.1038/12898 Raab, A. et al. Antibody recognition imaging by force microscopy. Nature Biotechnol. 17, 902-905 (1999). 

  86. Biophys. J. LA Chtcheglova 93 L11 2007 10.1529/biophysj.107.109751 Chtcheglova, L. A., Waschke, J., Wildling, L., Drenckhahn, D. & Hinterdorfer, P. Nano-scale dynamic recognition imaging on vascular endothelial cells. Biophys. J. 93, L11-L13 (2007). 

  87. Proc. Natl Acad. Sci. USA S Lee 104 9609 2007 10.1073/pnas.0702668104 Lee, S., Mandic, J. & Van Vliet K. J. Chemomechanical mapping of ligand-receptor binding kinetics on cells. Proc. Natl Acad. Sci. USA 104, 9609-9614 (2007). 

  88. Nature Meth. V Dupres 2 515 2005 10.1038/nmeth769 Dupres, V. et al. Nanoscale mapping and functional analysis of individual adhesins on living bacteria. Nature Meth. 2, 515-520 (2005). 

  89. Nano Lett. Y Gilbert 7 796 2007 10.1021/nl0700853 Gilbert, Y. et al. Single-molecule force spectroscopy and imaging of the Vancomycin/D-Ala-D-Ala interaction. Nano Lett. 7, 796-801 (2007). 

  90. Nanotechnology HP Lang 13 R29 2002 10.1088/0957-4484/13/5/202 Lang, H. P., Hegner, M., Meyer, E. & Gerber, C. Nanomechanics from atomic resolution to molecular recognition based on atomic force microscopy technology. Nanotechnology 13, R29-R36 (2002). 

  91. Biosens. Bioelectron. N Nugaeva 21 849 2005 10.1016/j.bios.2005.02.004 Nugaeva, N. et al. Micromechanical cantilever array sensors for selective fungal immobilization and fast growth detection. Biosens. Bioelectron. 21, 849-856 (2005). 

  92. Microsc. Microanal. N Nugaeva 13 13 2007 10.1017/S1431927607070067 Nugaeva, N. et al. An antibody-sensitized microfabricated cantilever for the growth detection of Aspergillus niger spores. Microsc. Microanal. 13, 13-17 (2007). 

  93. Nature TP Burg 446 1066 2007 10.1038/nature05741 Burg, T. P. et al. Weighing of biomolecules, single cells and single nanoparticles in fluid. Nature 446, 1066-1069 (2007). 

  94. Proc. Natl Acad. Sci. USA R McKendry 99 9783 2002 10.1073/pnas.152330199 McKendry, R. et al. Multiple label-free biodetection and quantitative DNA-binding assays on a nanomechanical cantilever array. Proc. Natl Acad. Sci. USA 99, 9783-9788 (2002). 

  95. Science J Fritz 288 316 2000 10.1126/science.288.5464.316 Fritz, J. et al. Translating biomolecular recognition into nanomechanics. Science 288, 316-318 (2000). 

  96. Nature Biotechnol. GH Wu 19 856 2001 10.1038/nbt0901-856 Wu, G. H. et al. Bioassay of prostate-specific antigen (PSA) using microcantilevers. Nature Biotechnol. 19, 856-860 (2001). 

  97. Nanotechnology Y Arntz 14 86 2003 10.1088/0957-4484/14/1/319 Arntz, Y. et al. Label-free protein assay based on a nanomechanical cantilever array. Nanotechnology 14, 86-90 (2003). 

  98. Biosens. Bioelectron. F Huber 21 1599 2006 10.1016/j.bios.2005.07.018 Huber, F., Hegner, M., Gerber, C., Guntherodt, H. J. & Lang, H. P. Label free analysis of transcription factors using microcantilever arrays. Biosens. Bioelectron. 21, 1599-1605 (2006). 

  99. Nature Nanotech. J Zhang 1 214 2006 10.1038/nnano.2006.134 Zhang, J. et al. Rapid and label-free nanomechanical detection of biomarker transcripts in human RNA. Nature Nanotech. 1, 214-220 (2006). 

  100. J. Phys.: Conf. Ser. F Huber 61 450 2007 Huber, F. et al. Analyzing gene expression using combined nanomechanical cantilever sensors. J. Phys.: Conf. Ser. 61, 450-453 (2007). 

  101. Proc. Natl Acad. Sci. USA T Ando 98 12468 2001 10.1073/pnas.211400898 Ando, T., Kodera, N., Takai, E., Maruyama, D., Saito, K. & Toda, A. A high-speed atomic force microscope for studying biological macromolecules. Proc. Natl Acad. Sci. USA 98, 12468-12472 (2001). 

  102. Appl. Phys. Lett. ADL Humphris 83 6 2003 10.1063/1.1590737 Humphris, A. D. L., Hobbs, J. K. & Miles, M. J. Ultrahigh-speed scanning near-field optical microscopy capable of over 100 frames per second. Appl. Phys. Lett. 83, 6-8 (2003). 

  103. Nature Meth. KI Willig 3 721 2006 10.1038/nmeth922 Willig, K. I. et al. Nanoscale resolution in GFP-based microscopy. Nature Meth. 3, 721-723 (2006). 

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