Skip to main content

Future of Biosensors: A Personal View

  • Chapter
  • First Online:
Biosensors Based on Aptamers and Enzymes

This is a preview of subscription content, log in via an institution to check access.

Access this chapter

Chapter
USD 29.95
Price excludes VAT (USA)
  • Available as PDF
  • Read on any device
  • Instant download
  • Own it forever
eBook
USD 169.00
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Hardcover Book
USD 219.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Purchases are for personal use only

Institutional subscriptions

Abbreviations

2D:

Two-Dimensional

BCC:

Business Communications Company, Inc

DNA:

Deoxyribonucleic Acid

ELISA:

Enzyme-Linked Immunosorbent Assay

ESBL:

Extended-Spectrum Beta-Lactamase

FDA:

Food and Drug Administration

FETs:

Field Effect Transistors

GO:

Graphene Oxide

HER-2:

Human Epidermal Growth Factor Receptor 2

HVA:

Homovanillic Acid

IUPAC:

International Union of Pure and Applied Chemistry

IVD:

In Vitro Diagnostics

KRAS:

V-Ki-ras2 Kirsten Rat Sarcoma Viral Oncogene Homologue

LOD:

Limit of Detection

MIP:

Molecularly Imprinted Polymer

MRE:

Molecular Recognition Element

NGS:

Next-Generation Sequencing

pAP:

p-Aminophenol

POC:

Point of Care

PCR:

Polymerase Chain Reaction

rGO:

Reduced Graphene Oxide

RNA:

Ribonucleic Acid

RT-PCR:

Real-Time Polymerase Chain Reaction

SELEX:

Systematic Evolution of Ligands by Exponential Enrichment

TSA:

Transition State Analogue

TCP:

2, 4, 6-Trichlorophenol

UV:

Ultraviolet

References

  1. Thévenot DR, Toth K, Durst RA, Wilson GS (1999) Pure Appl Chem 71:2333–2348

    Article  Google Scholar 

  2. Clark LC Jr, Lyons C (1962) Ann N Y Acad Sci 102:29–45

    Article  CAS  Google Scholar 

  3. Turner APF (2013) Biosensors: sense and sensibility. Chem Soc Rev 42:3184–3396

    Article  CAS  Google Scholar 

  4. Vashist SK, Zheng D, Al-Rubeaan K, Luong JHT, Sheu F-S (2011) Anal Chim Acta 703:124–136

    Article  CAS  Google Scholar 

  5. Wang J (2008) Chem Rev 108:814–825

    Article  CAS  Google Scholar 

  6. Chen LQ, Zhang XE, Xie WH, Zhou YF, Zhang ZP, Cass AEG (2002) Biosens Biolectron 17:851–857

    Article  CAS  Google Scholar 

  7. Ludwig R, Oritz R, Schulz C, Harreither W, Sygmund C, Gorton L (2013) Anal Bioanal Chem 405:3637–3658

    Article  CAS  Google Scholar 

  8. Heller A, Feldman B (2008) Chem Rev 108:2482–2505

    Article  CAS  Google Scholar 

  9. Wilson GS, Hu Y (2000) Chem Rev 100:2693–2704

    Google Scholar 

  10. Chan CP, Cheung Y, Renneberg R, Seydack M (2008) Adv Biochem Eng/Biotechnol 109:123–154

    Google Scholar 

  11. Sano T, Smith CL, Cantor CR (1992) Science 258:120–122

    Article  CAS  Google Scholar 

  12. Zhou H, Fisher RJ, Papas TS (1993) Nucl Acids Res 21:6038–6039

    Article  CAS  Google Scholar 

  13. Nam JM, Thaxton CS, Mirkin CA (2003) Science 301:1884–1886

    Article  CAS  Google Scholar 

  14. Taton TA, Mirkin CA, Letsinger RL (2000) Science 289:1757–1760

    Article  CAS  Google Scholar 

  15. Leung W, Chan P, Bosgoed F, Lehmann K, Renneberg I, Lehmann M, Renneberg R (2003) J Immunol Methods 281:109–118

    Article  CAS  Google Scholar 

  16. Pulli T, Höyhtyä M, Söderlund H, Takkinen K (2005) Anal Chem 77:2637–2642

    Article  CAS  Google Scholar 

  17. BCC Research (2011) http://www.bccresearch.com/report/global-biochip-markets-bio049d.html

  18. Collins FS, Green ED, Guttmacher AE, Guyer MS (2003) Nature 24:835–847

    Article  Google Scholar 

  19. Kaddurah-Daouk R, Kristal BS, Weinshilboum RM (2008) Annu Rev Pharmacol Toxicol 48:653–683

    Article  CAS  Google Scholar 

  20. States DJ, Omenn GS, Blackwell TW, Fermin D, Eng J, Speicher DW, Hanash SM (2006) Nat Biotechnol 24:333–338

    Article  CAS  Google Scholar 

  21. Schumacher S, Nestler J, Otto T, Wegener M, Ehrentreich-Förster E, Michel D, Wunderlich K, Palzer S, Sohn K, Weber A, Burgard M, Grzesiak A, Teichert A, Brandenburg A, Koger B, Albers J, Nebling E, Bier FF (2012) Lab Chip 12:464–473

    Article  CAS  Google Scholar 

  22. Kingsmore SF (2006) Nat Rev Drug Discov 5:310–320

    Article  CAS  Google Scholar 

  23. Eid J, Fehr A, Gray J, Luong K, Lyle J, Otto G, Peluso P, Rank D, Baybayan P, Bettman B, Bibillo A, Bjornson K, Chaudhuri B, Christians F, Cicero R, Clark S, Dalal R, Dewinter A, Dixon J, Foquet M, Gaertner A, Hardenbol P, Heiner C, Hester K, Holden D, Kearns G, Kong X, Kuse R, Lacroix Y, Lin S, Lundquist P, Ma C, Marks P, Maxham M, Murphy D, Park I, Pham T, Phillips M, Roy J, Sebra R, Shen G, Sorenson J, Tomaney A, Travers K, Trulson M, Vieceli J, Wegener J, Wu D, Yang A, Zaccarin D, Zhao P, Zhong F, Korlach J, Turner S (2009) Science 323:133–138

    Article  CAS  Google Scholar 

  24. MacBeath G (2002) Nat Genet 32:526–532

    Article  CAS  Google Scholar 

  25. Editorial, Nature Nanotechnology (2013) 8(221) http://www.nature.com/nnano/journal/v8/n4/pdf/nnano.2013.64.pdf

  26. Dreyer DR, Ruoff RS, Bielawski CW (2010) Angew Chem Int Ed 49:9336–9344

    Article  CAS  Google Scholar 

  27. Stoller MD, Park S, Zhu Y, An J, Ruoff RS (2008) Nano Lett 10:3498–3502

    Article  Google Scholar 

  28. Lee C, Wei X, Kysar JW, Hone J (2008) Science 321:385–388

    Article  CAS  Google Scholar 

  29. Novoselov KS, Geim AK, Morozov SV, Jiang D, Zhang Y, Dubonos SV, Grigorieva IV, Firsov AA (2004) Science 306:666–669

    Article  CAS  Google Scholar 

  30. Novoselov KS, Fal′ko VI, Colombo L, Gellert PR, Schwab MG, Kim K (2012) Nature 490:192–200

    Google Scholar 

  31. Kim KS, Zhao Y, Jang H, Lee SY, Kim JM, Kim KS, Ahn J-H, Kim P, Choi J-Y, Hong BH (2009) Nature 457:706–710

    Google Scholar 

  32. Emtsev KV, Bostwick A, Horn K, Jobst J, Kellogg GL, Ley L, McChesney JL, Ohta T, Reshanov SA, Rohrl J, Rotenberg E, Schmid AK, Waldmann D, Weber HB, Seyller T (2009) Nat Mater 8:203–207

    Article  CAS  Google Scholar 

  33. Park S, Ruoff RS (2009) Nat Nano 4:217–224

    Article  CAS  Google Scholar 

  34. Kochmann S, Hirsch T, Wolfbeis OS (2012) TrAC-Trend. Anal Chem 39:87–113

    CAS  Google Scholar 

  35. Guo Z, Hao T, Duan J, Wang S, Wie D (2012) Talanta 89:27–32

    Article  CAS  Google Scholar 

  36. Xu S, Liu Y, Wang T, Li J (2011) Anal Chem 83:3817–3823

    Article  CAS  Google Scholar 

  37. Wang Y, Xiao Y, Ma X, Li N, Yang X (2012) Chem Commun 48:738–740

    Article  CAS  Google Scholar 

  38. Cai JM, Ruffieux P, Jaafar R, Bieri M, Braun T, Blankenburg S, Muoth M, Seitsonen AP, Saleh M, Feng XL, Müllen K, Fasel R (2010) Nature 466:470–473

    Google Scholar 

  39. Hianik T, Wang J (2009) Electroanalysis 21:1223–1235

    Article  CAS  Google Scholar 

  40. Song K-M, Lee S, Ban C (2012) Sensors 12:612–631

    Article  Google Scholar 

  41. Zhou J, Battig MR, Wang Y (2010) Anal Bioanal Chem 398:2471–2480

    Article  CAS  Google Scholar 

  42. Scheller FW, Yarman A (2012) Biomimetic Sensors. In: Bard AJ, Scholz F (eds) Electrochemical Dictionary 2nd edn. Springer, Heidelberg, pp 69–70

    Google Scholar 

  43. Malitesta C, Mazzotta E, Picca RA, Poma A, Chianella I, Piletsky SA (2012) Anal Bioanal Chem 402:1827–1846

    Article  CAS  Google Scholar 

  44. Sharma PS, Pietrzyk-Le A, D’Souza F, Kutner W (2012) Anal Bioanal Chem 402:3177–3204

    Article  CAS  Google Scholar 

  45. Servant A, Haupt K, Resmini M (2011) Chem Eur J 17:11052–11059

    Article  CAS  Google Scholar 

  46. Lettau K, Warsinke A, Katterle M, Danielsson B, Scheller FW (2006) Angew Chem Int Ed Engl 45:6986–6990

    Article  CAS  Google Scholar 

  47. Liu JQ, Wulff G (2004) Angew Chem Int Ed Engl 43:1287–1290

    Google Scholar 

  48. Lohmann W, Karst U (2008) Anal Bioanal Chem 391:79–96

    Article  CAS  Google Scholar 

  49. Lakshmi D, Bossi A, Whitcombe MJ, Chianella I, Fowler SA, Subrahmanyam S, Piletska EV, Piletsky SA (2009) Anal Chem 81:3576–3584

    Article  CAS  Google Scholar 

  50. Cheng Z, Zhang L, Li Y (2004) Chemistry 10:3555–3561

    Article  CAS  Google Scholar 

  51. de Jesus Rodrigues Santos W, Lima PR, Tarley CR, Kubota LT (2007) Anal Bioanal Chem 389:1919–1929

    Google Scholar 

  52. de Jesus Rodrigues Santos W, Lima PR, Tarley CR, Höerh NF, Kubota LT (2009) Anal Chim Acta 31:170–176

    Google Scholar 

  53. Sartori LR, de Jesus Rodrigues Santos W, Lima PR, Kubota LT, Segatelli MG, Tarley CRT (2011) Mat Sci Eng C 31:114–119

    Google Scholar 

  54. Neto JRM, de Jesus Rodrigues Santos W, Lima PR, Tanaka SMCN, Tanaka AA, Kubota LT (2011) Sensor Actuat B Chem 152:220–225

    Google Scholar 

  55. Díaz-Díaz G, Diñeiro Y, Menéndez MI, Blanco-López MC, Lobo-Castañón MJ, Miranda-Ordieres AJ, Tuñón-Blanco P (2011) Polymer 52:2468–2473

    Google Scholar 

  56. Yarman A, Scheller FW (2013) Angew Chem Int Ed. doi:10.1002/anie.201305368

  57. Nirenberg M, Matthaei J (1961) Proc Natl Acad Sci USA 47:1588–1602

    Article  CAS  Google Scholar 

  58. Katzen F, Chang G, Kudlicki W (2005) Trends Biotechnol 23:150–156

    Article  CAS  Google Scholar 

  59. Swartz J (2006) J Ind Microbiol Biotechnol 33:476–485

    Article  CAS  Google Scholar 

  60. Goerke AR, Swartz JR (2008) Biotechnol Bioeng 99:351–367

    Article  CAS  Google Scholar 

  61. Kanter G, Yang J, Voloshin A, Levy S, Swartz J, Levy R (2007) Blood 109:3393–3399

    Google Scholar 

  62. Yang J, Kanter G, Voloshin A, Michel-Reydellet N, Velkeen H, Levy R, Swartz JR (2005) Biotechnol Bioeng 89:503–511

    Article  CAS  Google Scholar 

  63. Zawada JF, Yin G, Steiner AR, Yang J, Naresh A, Roy SM, Gold DS, Heinsohn HG, Murray CJ (2011) Biotechnol Bioeng 108:1570–1578

    Article  CAS  Google Scholar 

  64. Gourdon P, Alfredsson A, Pedersen A, Malmerberg E, Nyblom M, Widell M, Berntsson R, Pinhassi J, Braiman M, Hansson Ö, Bonander N, Karlsson G, Neutze R (2008) Protein Expr Purif 58:103–113

    Article  CAS  Google Scholar 

  65. Kalmbach R, Chizhov I, Schumacher MC, Friedrich T, Bamberg E, Engelhard M (2007) J Mol Biol 371:639–648

    Article  CAS  Google Scholar 

  66. Klammt C, Löhr F, Schäfer B, Haase W, Dötsch V, Rüterjans H, Glaubitz C, Bernhard F (2004) Eur J Biochem 271:568–580

    Article  CAS  Google Scholar 

  67. Kubick S, Gerrits M, Merk H, Stiege W, Erdmann VA (2009) In vitro synthesis of posttranslationally modified membrane proteins. “Membrane Protein Crystallization” Current Topics in Membranes Vol 63, Chapter 2, Academic Press Elsevier, 25–49

    Google Scholar 

  68. Sachse R, Wüstenhagen D, Šamalíková M, Gerrits M, Bier FF, Kubick S (2013) Eng Life Sci 13:39–48

    Google Scholar 

  69. Savage DF, Anderson CL, Robles-Colmenares Y, Newby ZE, Stroud RM (2012) Protein Sci 16:966–976

    Article  Google Scholar 

  70. von Groll U, Kubick S, Merk H, Stiege W, Schäfer F (2007) Advances in insect-based cell-free protein expression. In: Kudlicki W, Katzen F, Bennett P (eds) Cell-free protein expression landes bioscience

    Google Scholar 

  71. Carlson ED, Gan R, Hodgman CE, Jewett MC (2012) Biotechnol Adv 30:1185–1194

    Google Scholar 

  72. Goshima N, Kawamura Y, Fukumoto A, Miura A, Honma R, Satoh R, Wakamatsu A, Yamamoto J, Kimura K, Nishikawa T, Andoh T, Iida Y, Ishikawa K, Ito E, Kagawa N, Kaminaga C, Kanehori K, Kawakami B, Kenmochi K, Kimura R, Kobayashi M, Kuroita T, Kuwayama H, Maruyama Y, Matsuo K, Minami K, Mitsubori M, Mori M, Morishita R, Murase A, Nishikawa A, Nishikawa S, Okamoto T, Sakagami N, Sakamoto Y, Sasaki Y, Seki T, Sono S, Sugiyama A, Sumiya T, Takayama T, Takayama Y, Takeda H, Togashi T, Yahata K, Yamada H, Yanagisawa Y, Endo Y, Imamoto F, Kisu Y, Tanaka S, Isogai T, Imai J, Watanabe S, Nomura N (2008) Nat Methods 5:1011–1017

    Article  CAS  Google Scholar 

  73. Griffiths AD, Tawfik DS (2003) EMBO J 22:24–35

    Article  CAS  Google Scholar 

  74. Schwarz D, Klammt C, Koglin A, Löhr F, Schneider B, Dötsch V, Bernhard F (2007) Methods 41:355–369

    Article  CAS  Google Scholar 

  75. Chang H-C, Kaiser CM, Hartl FU, Barral JM (2005) J Mol Biol 353:397–409

    Google Scholar 

  76. Hillebrecht JR, Chong SA (2008) BMC Biotechnol 8:1790–1793

    Article  Google Scholar 

  77. Mann M, Jensen ON (2003) Nat Biotech 21:255–261

    Article  CAS  Google Scholar 

  78. Blobel G, Dobberstein B (1975) J Cell Biol 67:835–851

    Article  CAS  Google Scholar 

  79. Walter P, Blobel G (1983) Preparation of microsomal membranes for cotranslational protein translocation. Methods Enzymol 96:84–93

    Article  CAS  Google Scholar 

  80. Kubick S, Schacherl J, Fleischer-Notter H, Royall E, Roberts LO, Stiege W (2003) In vitro translation in an insect-based cell-free system. In: Swartz JR (ed) Cell-Free Protein Expression. Springer, New York, pp 209–217

    Google Scholar 

  81. Brödel AK, Raymond JA, Duman JG, Bier FF, Kubick S (2013) J Biotechnol 163:301–310

    Article  Google Scholar 

  82. Merk H, Gless C, Maertens B, Gerrits M, Stiege W (2012) Biotechniques 53:153–160

    Google Scholar 

  83. Shaklee PM, Semrau S, Malkus M, Kubick S, Dogterom M, Schmidt T (2010) Chem Biochem 11:175–179

    CAS  Google Scholar 

  84. Stech M, Merk H, Schenk J, Stöcklein W, Wüstenhagen D, Micheel B, Duschl C, Bier F, Kubick S (2012) J Biotechnol 164:220–231

    Article  CAS  Google Scholar 

  85. Khnouf R, Olivero D, Jin S, Coleman MA, Fan ZH (2010) Cell-Free expression of soluble and membrane proteins in an array device for drug screening. Anal Chem 82:7021–7026

    Article  CAS  Google Scholar 

  86. Casteleijn MG, Urtti A, Sarkhel S (2013) Int J Pharm 440:39–47

    Google Scholar 

  87. Zanders ED, Kai L, Roos C, Haberstock S, Proverbio D, Ma Y, Junge F, Karbyshev M, Dötsch V, Bernhard F (2012) Systems for the cell-free synthesis of proteins, chemical genomics and proteomics, Humana Press, New York, pp 201–225

    Google Scholar 

  88. Klammt C, Schwarz D, Fendler K, Haase W, Dötsch V, Bernhard F (2005) FEBS J 272:6024–6038

    Article  CAS  Google Scholar 

  89. Wuu JJ, Swartz JR (2008) Biochim Biophys Acta (BBA)—Biomembranes 1778:1237–1250

    Google Scholar 

  90. Doyle S, Cappuccio J, Hinz A, Kuhn E, Fletcher J, Arroyo E, Henderson P, Blanchette C, Walsworth V, Corzett M, Law R, Pesavento J, Segelke B, Sulchek T, Chromy B, Katzen F, Peterson T, Bench G, Kudlicki W, Hoeprich P Jr, Coleman M (2009) Cell-Free expression for nanolipoprotein particles: building a high-throughput membrane protein solubility platform, high throughput protein expression and purification. Humana Press, New Jersey, pp 273–295

    Google Scholar 

  91. Goren MA, Nozawa A, Makino S, Wrobel RL, Fox BG (2009) Methods Enzymol 463:647–673

    Article  CAS  Google Scholar 

  92. Spear BB, Heath-Chiozzi M, Huff J (2001) Trends. Mol Med 5:201–204

    Google Scholar 

  93. Editorial, Nature Biotechnology (2012) 30(1) http://www.nature.com/nbt/journal/v30/n1/pdf/nbt.2096.pdf

  94. Roche Business Overview (2011) www.roche.com/diagnosticsbrochure.pdf

  95. Blair ED (2009) Predictive tests and personalised medicine. Drug Discov World 22:27–31

    Google Scholar 

  96. The Case for Personalized Medicine http://www.personalizedmedicinecoalition.org/sites/default/files/files/Case_for_PM_3rd_edition.pdf

  97. Arteaga CL, Sliwkowski MX, Osborne CK, Perez EA, Puglisi F, Gianni L (2011) Nat Rev Clin Oncol 2011(9):16–32

    Article  Google Scholar 

  98. Yarman A, Wollenberger U, Scheller FW (2013) Electrochim. Acta doi: org/10.1016/j.electacta.2013.03.154

  99. Carrara S, Cavallini A, Erokhin V, De Micheli G (2011) Biosens Bioelectron 26:3914–3919

    Article  CAS  Google Scholar 

  100. Liu SQ, Peng L, Yang XD, Wu YF, He L (2008) Anal Biochem 375:209–216

    Article  CAS  Google Scholar 

  101. Panicco P, Dodhia VR, Fantuzzi A, Gilardi G (2011) Anal Chem 83:2179–2186

    Article  CAS  Google Scholar 

  102. Yang ML, Kabulski JL, Wollenberg L, Chen XQ, Subramanian M, Tracy TS, Lederman D, Gannett PM, Wu N (2009) Drug Metab Dispos 37:892–899

    Article  CAS  Google Scholar 

  103. Huang M, Xu X, Yang H, Liu S (2012) RSC Adv 2:12844–12850

    Article  CAS  Google Scholar 

  104. Krishnan S, Wasalathanthri D, Zhao LL, Schenkman JB, Rusling JF (2011) J Am Chem Soc 133:1459–1465

    Article  CAS  Google Scholar 

  105. Mie Y, Suzuki M, Komatsu Y (2009) J Am Chem Soc 131:6646–6647

    Article  CAS  Google Scholar 

  106. Allison M (2008) Nat Biotechnol 26:509–517

    Article  CAS  Google Scholar 

  107. Myung S, Solanki A, Kim C, Park J, Kim KS, Lee KB (2011) Adv Mater 23:2221–2225

    Google Scholar 

  108. Loo L, Capobianco JA, Wu W, Gao X, Shih WY, Shih WH, Pourrezaei K, Robinson MK, Adams GP (2011) Anal Chem 83:3392–3399

    Article  CAS  Google Scholar 

  109. Munzone E, Nolé F, Goldhirsch A, Botteri E, Esposito A, Zorzino L, Curigliano G, Minchella I, Adamoli L, Cassatella MC, Casadio C, Sandri MT (2010) Clin Breast Cancer 10:392–397

    Article  CAS  Google Scholar 

  110. Baj-Rossi C, De Micheli C, Carrara S (2012) Sensors 12:6520–6537

    Google Scholar 

  111. Hirani R, Connolly AR, Putral L, Dobrovic A, Trau M (2011) Anal Chem 83:8215–8221

    Article  CAS  Google Scholar 

  112. Jeong S, Han SR, Lee YJ, Kim JH, Lee SW (2010) Oligonucleotides 20:155–161

    Article  CAS  Google Scholar 

  113. Nonaka Y, Yoshida W, Abe K, Ferri S, Schulze H, Bachmann TT, Ikebukuro K (2013) Anal Chem 85:1132–1137

    Article  CAS  Google Scholar 

  114. Shen F, Du W, Kreutz JE, Fok A, Ismagilov RF (2010) Lab Chip 10:2666–2672

    Article  CAS  Google Scholar 

  115. Théry C, Ostrowski M, Segura E (2009) Nat Rev Immunol 9:581–593

    Article  Google Scholar 

  116. ECDC/EMEA Joint Technical Report (2009) http://www.ecdc.europa.eu/en/publications/Publications/0909_TER_The_Bacterial_Challenge_Time_to_React.pdf

  117. World More at Risk from Markets and Mother Nature—Global Risks (2013) Report. http://www.weforum.org/globalrisks2013

  118. Annual Report of the Chief Medical Officer (2011) Volume Two, UK Department of Health https://www.gov.uk/government/uploads/system/uploads/attachment_data/file/138331/CMO_Annual_Report_Volume_2_2011.pdf

  119. Kumarasamy KK, Toleman MA, Walsh TR, Bagaria J, Butt F, Balakrishnan R, Chaudhary U, Doumith M, Giske CG, Irfan S, Krishnan P, Kumar AV, Maharjan S, Mushtaq S, Noorie T, Pater-son DL, Pearson A, Perry C, Pike R, Rao B, Ray U, Sarma JB, Sharma M, Sheridan E, Thirunara-yan MA, Turton J, Upadhyay S, Warner M, Welfare W, Livermore DM, Woodford N (2010) Lancet Infect Dis 10:597–602

    Google Scholar 

  120. Elander RP (2003) Appl Microbiol Biotechnol 61:385–392

    CAS  Google Scholar 

  121. Pichichero ME (2002) JAMA 287:3133–3135

    Google Scholar 

  122. Centers for Disease Control and Prevention (CDC) (2011) MMWR Morb Mortal Wkly Rep 60:1153–1156

    Google Scholar 

  123. Leinberger DM, Grimm V, Rubtsova M, Weile J, Schröppel K, Wichelhaus TA, Knabbe C, Schmid RD, Bachmann TT (2010) J Clin Microbiol 48:460–471

    Article  CAS  Google Scholar 

  124. Pierce KE, Peter H, Bachmann TT, Volpe C, Mistry R, Rice JE, Wangh LJ (2013) J Mol Diagn 15:291–298

    Article  CAS  Google Scholar 

  125. Corrigan DK, Schulze H, Henihan G, Ciani I, Giraud G, Terry JG, Walton AJ, Pethig R, Ghazal P, Crain J, Campbell CJ, Mount AR, Bachmann TT (2012) Biosens Bioelectron 34:178–184

    Article  CAS  Google Scholar 

  126. Gerlinger M, Rowan AJ, Horswell S, Larkin J, Endesfelder D, Gronroos E, Martinez P, Matthews N, Stewart A, Tarpey P, Varela I, Phillimore B, Begum S, McDonald NQ, Butler A, Jones D, Raine K, Latimer C, Santos CR, Nohadani M, Eklund HNCAC, Spencer-Dene B, Clark G, Pickering L, Stamp G, Gore M, Szallasi Z, Downward J, Futreal A, Swanton C (2012) N Engl J Med 366:883–892

    Article  CAS  Google Scholar 

  127. Harris SR, Cartwright EJ, Török ME, Holden MT, Brown NM, Ogilvy-Stuart AL, Ellington MJ, Quail MA, Bentley SD, Parkhill J, Peacock SJ (2013) Lancet Infect Dis 13:130–136

    Article  CAS  Google Scholar 

  128. Purushothaman S, Toumazou C, Georgiou J (2002) Towards fast solid state DNA sequencing, IEEE international symposium on circuits and systems, Phoenix, Arizona, 26–29 May 2002, New York, IEEE 2002, pp 169–172

    Google Scholar 

  129. Schneider GF, Dekker C (2012) Nat Biotechnol 30:326–328

    Article  CAS  Google Scholar 

  130. Bergveld P (2003) Sensor Actuat B Chem 88:1–20

    Article  CAS  Google Scholar 

  131. Wise KD, Angell JB, Starr A (1970) IEEE Trans Biomed Eng BME 17:238–247

    Google Scholar 

  132. Windmiller J, Wang J (2013) Electroanalysis 25:29–46

    Article  CAS  Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to Frieder W. Scheller .

Editor information

Editors and Affiliations

Rights and permissions

Reprints and permissions

Copyright information

© 2013 Springer-Verlag Berlin Heidelberg

About this chapter

Cite this chapter

Scheller, F.W. et al. (2013). Future of Biosensors: A Personal View. In: Gu, M., Kim, HS. (eds) Biosensors Based on Aptamers and Enzymes. Advances in Biochemical Engineering/Biotechnology, vol 140. Springer, Berlin, Heidelberg. https://doi.org/10.1007/10_2013_251

Download citation

Publish with us

Policies and ethics