References
183
14. Araque A, Navarrete M (2011) Electrically driven insulation in the central nervous system.
Science 333:1587–1588
15. Liu XL, Wang ST (2014) Three-dimensional nano-biointerfaces as a new platform for guiding
cell fate. Chem Soc Rev 43:2385–2401
16. Meng JX, Liu HL, Liu XL, Yang G, Zhang PC, Wang ST, Jiang L (2014) Hierarchical biointerfaces assembled by leukocyte-inspired particles for specifically recognizing cancer cells.
Small 10:3735–3741
17. Zhang FL, Jiang Y, Liu XL, Meng JX, Zhang PC, Liu HL, Yang G, Li GN, Jiang L,
Wan LJ, Hu JS, Wang ST (2016) Hierarchical nanowire arrays as three-dimensional fractal
nanobiointerfaces for high efficient capture of cancer cells. Nano Lett 16:766–772
18. Kwak W, Hwang W (2016) Facile method for preparing superoleophobic surfaces with
hierarchical microcubic/nanowire structures. Nanotechnology 27:055301
19. Tang C, Li BQ, Zhang Q, Zhu L, Wang HF, Shi JL, Wei F (2016) CaO-templated growth of
hierarchical porous graphene for high-power lithium-sulfur battery applications. Adv Funct
Mater 26:577–585
20. Liu XL, Zhang FL, Wang Q, Gao J, Meng JX, Wang ST, Yang ZZ, Jiang L (2014) Plateletinspired multiscaled cytophilic interfaces with high specificity and efficiency toward point-ofcare cancer diagnosis. Small 10:4677–4683
21. Ma L, Yang G, Wang N, Zhang PC, Guo FY, Meng JX, Zhang FL, Hu ZJ, Wang ST, Zhao Y
(2015) Trap effect of three-dimensional fibers network for high efficient cancer-cell capture.
Adv Healthcare Mater 4:838–843
22. Hasan H, Schroers J, Kumar G (2015) Functionalization of metallic glasses through hierarchical
patterning. Nano Lett 15:963–968
23. Morariu MD, Voicu NE, Schäffer E, Lin ZQ, Russell TP, Steiner U (2003) Hierarchical structure
formation and pattern replication induced by an electric field. Nat Mater 2:48–52
24. Dou XQ, Zhang D, Feng CL, Jiang L (2015) Bioinspired hierarchical surface structure with
tunable wettability for regulating bacteria adhesion. ACS Nano 9:10664–10672
25. Rogers JA, Nuzzo RG (2005) Recent progress in soft lithography. Mater Today 8:50–56
26. Discher DE, Mooney DJ, Zandstra PW (2009) Growth factors, matrices, and forces combine
and control stem cells. Science 324:1673–1677
27. Went PT, Lugli A, Meier S, Bundi M, Mirlacher M, Sauter G, Dimhofer S (2004) Frequent
EpCAM protein expression in human carcinomas. Hum Pathol 35:122–128
28. Dou XQ, Li P, Jiang SY, Bayat H, Schönherr (2017) Bioinspired hierarchically structured
surfaces for efficient capture and release of circulating tumor cells. ACS Appl Mater Interf 9:
8508–8518
29. Hou S, Zhao HC, Zhao LB, Shen QL, Wei KS, Suh DY, Nakao A, Garcia MA, Song M, Lee
M, Xiong B, Luo SC, Tseng HR, Yu HH (2013) Capture and stimulated release of circulating
tumor cells on polymer-grafted silicon nanostructures. Adv Mater 25:1547–1551
30. Hou S, Zhao LB, Shen QL, Yu JH, Ng C, Kong XJ, Wu DX, Song M, Shi XH, Xu XC, OuYang
WH, He RX, Zhao XZ, Lee T, Brunicardi FC, Garcia MA, Ribas A, Lo RS, Tseng HR (2013)
Polymer nanofiber-embedded microchips for detection, isolation, and molecular analysis of
single circulating melanoma cells. Angew Chem Int Ed 52:3379–3383
31. Mahmood MAI, Wan Y, Islam M, Ali W, Hanif M, Kim YT, Iqbal SM (2014) Micro +
Nanotexturing of substrates to enhance ligand-assisted cancer cell isolation. Nanotechnology
25:475102
Précédent

- 194/194