Abstract

References
1.
Boyle VJ
,
Simonet WS
,
Lacey DL.
Osteoclast differentiation and activation. Nature 2003 ; 423 : 337 –42 .
2.
Burg KJL
,
Porter S
,
Kellam JF.
Biomaterial developments for bone tissue engineering. Biomaterials 2000 ; 21 : 2347 –59 .
3.
Xie J
,
Li X
,
Xia Y.
Putting electrospun nanofibers to work for biomedical research. Macromol Rapid Commun 2008 ; 29 : 1775 –92 .
4.
Agarwal S
,
Wendorff JH
,
Greiner A.
Use of electrospinning technique for biomedical applications. Polymer 2008 ; 49 : 5603 –21 .
5.
Jang JH
,
Castano O
,
Kim HW.
Electrospun materials as potential platforms for bone tissue engineering. Adv Drug Deliv Rev 2009 ; 61 : 1065 –83 .
6.
Pagliara S
,
Camposeo A
,
Polini A
,
Cingolani R
,
Pisignano D.
Electrospun light-emitting nanofibers as excitation source in microfluidics devices. Lab Chip 2009 ; 9 : 2851 –6 .
7.
Polini A
,
Pagliara S
,
Stabile R
, Collagen-functionalised electrospun polymer fibers for bioengineering applications. Soft Matter , in press, DOI: 10.1039/b921932c .
8.
Hermanson GT
, ed. Bioconjugate Techniques. New York : Academic Press 2008 ; 215 –27 .
9.
Fixe F
,
Dufva M
,
Telleman P
,
Christensen CBV.
Functionalization of poly(methyl methacrylate) (PMMA) as a substrate for DNA microarrays. Nucleic Acids Res 2004 ; 32 : e9 .
10.
Patel S
,
Thakara RJ
,
Wong J
,
McLeod SD
,
Li S.
Control of cell adhesion on poly(methyl methacrylate). Biomaterials 2006 ; 27 : 2890 –7 .
11.
Barnes CP
,
Sell SA
,
Boland ED
,
Simpson DG
,
Bowlin GL.
Nanofiber technology: designing the next generation of tissue engineering scaffolds. Adv Drug Deliv Rev 2007 ; 59 : 1413 –33 . N Engl J Med 1954; 250: 547–54.
12.
Chai J
,
Lu F
,
Li B
,
Kwok DY.
Wettability interpretation of oxygen plasma modified poly(methyl methacrylate). Langmuir 2004 ; 20 : 10919 –27 .
