4
1 Reactive Platforms for Controllable Fabrication …
Based on the full control of surface chemistry and interfacial organic coupling chemistry on these polymer-derived platforms, array-based screening formats with ultrahigh information content, as well as tailored biointerfaces for cell–surface studies
would become possible in the long run.
References
1. Kasemo B (2002) Biological surface science. Surf Sci 500:656–677
2. Knoll W, Yu F, Neumann T, Schiller S, Naumann R (2003) Supramolecular functional interfacial
architectures for biosensor applications. Phys Chem Chem Phys 5:5169–5176
3. Lehnert D, Wahrel-Haller B, David C, Weiland U, Ballestrem C, Imhof BA, Bastmeyer MJ
(2004) Cell behaviour on micropatterned substrate: limits of extracellular matrix geometry for
spreading and adhesion. J Cell Sci 117:41–52
4. Castner DG, Ratner BD (2002) Biomedical surface science: foundations to frontiers. Surf Sci
500:28–60
5. Agrawal S, Iyer RP (1995) Modified oligonucleotides as therapeutic and diagnostic agents.
Curr Opin Biotech 6:12–19
6. Smith RK, Lewis PA, Weiss PS (2004) Patterning self-assembled monolayers. Prog. Surf Sci
75:1–68
7. Revell DJ, Knight JR, Blyth DJ, Haines AH, Russell DA (1998) Self-assembled carbohydrate
monolayers: formation and surface selective molecular recognition. Langmuir 14:4517–4524
8. Clegg RS, Reed SM, Smith RK, Barron BL, Rear JA, Hutchison JE (1999) The interplay
of lateral and tiered interactions in stratified self-organized molecular assemblies. Langmuir
15:8876–8883
9. Chen CS, Mrksich M, Huang S, Whitesides GM, Ingber DE (1997) Geometric control of cell
life and death. Science 276:1425–1428
10. Husemann M, Morrison M, Benoit D, Frommer KJ, Mate CM, Hinsberg WD, Hedrick JL,
Hawker CJ (2000) Manipulation of surface properties by patterning of covalently bound
polymer brushes. J Am Chem Soc 122:1844–1845
11. Bruening ML, Zhou Y, Aguilar G, Agee R, Bergbreiter DE, Crooks RM (1997) Synthesis
and characterization of surface-grafted, hyperbranched polymer films containing fluorescent,
hydrophobic, ion-binding, biocompatible, and electroactive groups. Langmuir 13:770–778
12. Mueller A, Schumann F, Koksch M, Sewald N (1997) Synthesis of cyclic RGD-peptides
containing beta-amino acids. Lett Peptide Sci 4:275–281
13. Micoulet A, Spatz JP, Ott A (2005) Mechanical response analysis and power generation by
single-cell stretching. Chem Phys Chem 6:663–670
14. Geppert L (1996) Semiconductor lithography for the next millennium. IEEE Spectr 33:33–38
15. Xia YN, Whitesides GM (1998) Soft lithography. Angew Chem Int Ed 37:550–575
16. Michel R, Lussi JW, Csucs G, Reviakine I, Danuser G, Ketterer B, Hubbell JA, Textor M,
Spencer ND (2002) Selective molecular assembly patterning: a new approach to micro- and
nanochemical patterning of surfaces for biological applications. Langmuir 18:3281–3287
17. Falconnet D, Koenig A, Assi F, Textor M (2004) A combined photolithographic and molecularassembly approach to produce functional micropatterns for applications in the biosciences. Adv
Funct Mater 14:749–756
18. Crooks RM, Ricco AJ (1998) Chemical sensors. Acc Chem Res 31:219–227
19. Xia YN, Rogers JA, Paul KE, Whitesides GM (1999) Unconventional methods for fabricating
and patterning nanostructures. Chem Rev 99:1823–1848
20. Kumar A, Abbott NL, Biebuyck HA, Kim E, Whitesides GM (1995) Patterned self-assembled
monolayers and meso-scale phenomena. Acc Chem Res 28:219–226
1 Reactive Platforms for Controllable Fabrication …
Based on the full control of surface chemistry and interfacial organic coupling chemistry on these polymer-derived platforms, array-based screening formats with ultrahigh information content, as well as tailored biointerfaces for cell–surface studies
would become possible in the long run.
References
1. Kasemo B (2002) Biological surface science. Surf Sci 500:656–677
2. Knoll W, Yu F, Neumann T, Schiller S, Naumann R (2003) Supramolecular functional interfacial
architectures for biosensor applications. Phys Chem Chem Phys 5:5169–5176
3. Lehnert D, Wahrel-Haller B, David C, Weiland U, Ballestrem C, Imhof BA, Bastmeyer MJ
(2004) Cell behaviour on micropatterned substrate: limits of extracellular matrix geometry for
spreading and adhesion. J Cell Sci 117:41–52
4. Castner DG, Ratner BD (2002) Biomedical surface science: foundations to frontiers. Surf Sci
500:28–60
5. Agrawal S, Iyer RP (1995) Modified oligonucleotides as therapeutic and diagnostic agents.
Curr Opin Biotech 6:12–19
6. Smith RK, Lewis PA, Weiss PS (2004) Patterning self-assembled monolayers. Prog. Surf Sci
75:1–68
7. Revell DJ, Knight JR, Blyth DJ, Haines AH, Russell DA (1998) Self-assembled carbohydrate
monolayers: formation and surface selective molecular recognition. Langmuir 14:4517–4524
8. Clegg RS, Reed SM, Smith RK, Barron BL, Rear JA, Hutchison JE (1999) The interplay
of lateral and tiered interactions in stratified self-organized molecular assemblies. Langmuir
15:8876–8883
9. Chen CS, Mrksich M, Huang S, Whitesides GM, Ingber DE (1997) Geometric control of cell
life and death. Science 276:1425–1428
10. Husemann M, Morrison M, Benoit D, Frommer KJ, Mate CM, Hinsberg WD, Hedrick JL,
Hawker CJ (2000) Manipulation of surface properties by patterning of covalently bound
polymer brushes. J Am Chem Soc 122:1844–1845
11. Bruening ML, Zhou Y, Aguilar G, Agee R, Bergbreiter DE, Crooks RM (1997) Synthesis
and characterization of surface-grafted, hyperbranched polymer films containing fluorescent,
hydrophobic, ion-binding, biocompatible, and electroactive groups. Langmuir 13:770–778
12. Mueller A, Schumann F, Koksch M, Sewald N (1997) Synthesis of cyclic RGD-peptides
containing beta-amino acids. Lett Peptide Sci 4:275–281
13. Micoulet A, Spatz JP, Ott A (2005) Mechanical response analysis and power generation by
single-cell stretching. Chem Phys Chem 6:663–670
14. Geppert L (1996) Semiconductor lithography for the next millennium. IEEE Spectr 33:33–38
15. Xia YN, Whitesides GM (1998) Soft lithography. Angew Chem Int Ed 37:550–575
16. Michel R, Lussi JW, Csucs G, Reviakine I, Danuser G, Ketterer B, Hubbell JA, Textor M,
Spencer ND (2002) Selective molecular assembly patterning: a new approach to micro- and
nanochemical patterning of surfaces for biological applications. Langmuir 18:3281–3287
17. Falconnet D, Koenig A, Assi F, Textor M (2004) A combined photolithographic and molecularassembly approach to produce functional micropatterns for applications in the biosciences. Adv
Funct Mater 14:749–756
18. Crooks RM, Ricco AJ (1998) Chemical sensors. Acc Chem Res 31:219–227
19. Xia YN, Rogers JA, Paul KE, Whitesides GM (1999) Unconventional methods for fabricating
and patterning nanostructures. Chem Rev 99:1823–1848
20. Kumar A, Abbott NL, Biebuyck HA, Kim E, Whitesides GM (1995) Patterned self-assembled
monolayers and meso-scale phenomena. Acc Chem Res 28:219–226
