BIBLIOGRAFIA
1. Nikoloz Tsikolia, “What is a Role of the Morphogens gradients in development?”.
2. J. Cooper McDonald, David C. Duffy, Jannelle R. Amderson, Daniel T. Chiu, Hongkai Wu, Olivier J. A. Schueller, George M. Whitesides,
“Fabrication of mimicrofluidic systems in poly(dimethylsiloxane)”,
Electrophoresis 2000, 21, 27-40.
3. Daniel T Chiu, “A microfluidics platform for cell fusion”, Current Opinion in Chem. Bio. 2001, 5, 60.
4. Taylor, A. M.; Rhee, S. W.; Tu, C. H.; Cribbs, D. H.; Cotman, C. W.; Jeon, N. L., “Microfluidic multicompartment device for neuroscience
research”, Langmuir, 2003, 19(5):1551-1556.
5. Shuichi Takayama, Emanuele Ostuni, Philip LeDuc, Keiji Naruse, Donald E. Ingber, and George M. Whitesides, “Selective chemical
treatment of cellular microdomains using multiple laminar streams”,
Chemistry & Biology, Vol. 10, 123–130, February, 2003.
6. Matthew A Holden1, Saurabh Kumar, Ali Beskok and Paul S Cremer,
“Microfluidic diffusion diluter: bulging of PDMS microchannels under pressure-driven flow”, Journal Of Micromechanics And
Microengineering 13 (2003) 412–418.
7. Stephan K. W. Dertinger, Xingyu Jiang, Zhiying Li, Venkatesh N. Murthy, and George M. Whitesides, “Gradients of substrate-bound
laminin orient axonal specification of neurons”, PNAS (12542–12547)
8. Paul J. A. Kenis, Rustem F. Ismagilov, Shuichi Takayama, And George M. Whitesides, “Fabrication inside microchannels using fluid flow”, Account of Chemical. Ressearch. 2000, 33, 841-847.
9. Poh A., Karunaratne A., Kolle G., Huang N., Smith E., Starkey J., Wen D., Wilson I., Yamada T., Hargrave M., “Patterning of the vertebral
spinal cord”, Int. J. Dev Biol. 46, 597-608 (2002).
10. Strigini M., Cohen S.M., “Wingless gradient formation in Drosophila
wing”, Curr. Biol. 10, 293-300 (2000).
11. Zicha D., Dunn G.A., Jones G.E., “Analysing chemotaxis using the
dunn direct-viewing chamber”, Pollard J.W. Ed., Vol.75, pp449-458
(1997).
12. Weiner O.D., Servant G., Welch N.D., Mitchison T.J., Sedat J.W., Bourne H.R., “Nature cell biol”, 1, 75-81 (1999).
13. Noo Li Jeon, Harihara Baskaran, Staphan K. W. Dertinger, George M. Whitesides, Livingston Van De Water, and Mehmet Toner,
“Neutrophil chemotaxis in linear and complex gradients of interleukin-8 formed in a microfabricated device”, Nature Biotechnology, vol. 20,
826-830, 2002.
14. Bong Geun Chung, Lisa A. Flanagan, Seog Woo Rhee, Philip H. Schwartz, Abraham P. Lee, Edwin S. Monuki and Noo Li Jeon,
“Human neural stem cell growth and differentiation in a gradient-generating microfluidic devices”, Lab Chip, 2005, 5, 401-406.
solution and surface gradient using microfluidic system”, Langmuir 2000, 16, 8311-8316.
16. Roberto Mauri, “Fenomeni di trasporto”, capitolo 2, Pisa 2003.
17. Stephan K. W. Dertinger, Daniel T. Chiu, Noo Li Jeon, and George M. Whitesides, “Generation of gradient having complex shapes using
microfluidic networks”, Anal. Chem. 2001, 73, 1240-1246.
18. Martin I, Obradovic B, Treppo S, Grodzinsky AJ, Langer R, Freed LE, Vunjak-Novakovic G., “Modulation of the mechanical properties of
Tissue Engineered cartilage”, Biorheology 2000;37(1-2):141-7.
19. Carrier RL, Papadaki M, Rupnick M, Schoen FJ, Bursac N, Langer R, Freed LE, Vunjak-Novakovic G., “Cardiac tissue engineering: cell
seeding, cultivation parameters, and tissue construct characterization”, Biotechnol Bioeng. 1999 Sep 5;64(5):580-9.
20. Dispenze di: organi e protesi, Ingegneria Biomedica, università di Pisa. 21. Mazzei D. “Progettazione e realizzazione di una camera di coltura
cellulare a gradiente di concentrazione per applicazioni biomediche”,
Tesi Laurea in Ingegneria Biomedica, Facoltà di Ingegneria, Università degli Studi di Pisa.
22. Tirella A. “Cella a gradiente per la differenziazione guidata di
neuroni: progettazione, realizzazione e simulazione numerica” Tesi di
laurea in Ingegneria Biomedica, Facoltà di Ingegneri, Università degli studi di Pisa.
24. Ben G. Streetman, “Solid state electronic devices”, Prentice-Hall International, INC Edition 1999.
25. G. M. Whitesides, E. Ostuni, S. Takayama, X. Jiang, D. E. Ingber, Annu Rev, “Soft-lithography in biology and biochemistry”, Biomed Eng 2001, 3: 335-73.
26. Millmann J., Grabel A., “Microelectronics”, McGraw-Hill International Edition 1993.
27. Leclerc E., Fujii T., “PDMS microchips for applications of tissue
engineering and protein synthesis”, Abs. (2001).
28. R.J. Jakman, D.C. Duffy, O. Cherniavskaya, G.M. Whitesides, “Using
elastomeric membranes as dry resist and for dry lift-off”, Langemuir
vol. 15 (1999), pp.2973-2984.
29. E. Ostini, R.Kane, C.S. Chen, D.E. Ingber, G.M. Whitesids,
“Patterning mammalian cells using elastomeric membranes”,
Langemuir vol. 16 (2000), pp.7811-7819.
30. Vozzi G., Flaim C.J., A. Ahluwalia, F. Bianchi, S. Bhatia,
“Microfabricated PLGA scaffolds: a comparative study for application to Tissue Engineering”, Material Science and Engineering, C 760
(2002).
31. www.microchem.com.
32. Soper S.A., Ford S.M., Qi S., McCarley R.L., Kelly K., Murphy M.C.,
“Polymeric microelectromechanical systems”, Anal. Chem. 72,
33. Becker H., Gartner C., “Polymer microfabrication methods for
microfluidic analytical applications”, Electrophoresis 21, 12-26
(2000).
34. McDonald J.C., Duffy D.C., Anderson J.R., Chiu D.T., Wu H., Schueller O.J.A., Whitesides G.M., “Fabrication of microfluidic
systems in poly(dimethylsiloxane)”, Electrophoresis 21, 27-40 (2000).
35. Lanza, R., Langer, R. and Vacanti, J., Editors., “Principles of Tissue Engineering”, 2nd Edition Academic Press, 2000.
36. Todaro G.J., Green H.J., “Cell. Biol.”, 1, pp. 7-299 (1963). 37. Aaranson S., Todaro G.J., “Cell Physiol”, pp. 72-141 (1968). 38. Folkman J., Moscona A., “Nature”, pp. 273-345 (1978).
39. Ruoslahti E., Piersbacher M.D., “Science”, pp. 238-491 (1987). 40. Barnes D., Sato G., “Cell”, pp. 22-649 (1980).
41. Avers C.J., “Biologia molecolare della cellula”, Zanichelli. 42. http://anestit.unipa.it/farmalib/anloc2000.htm.
43. Wolfgang Zink, M.D., and Bernhard M. Graf, M.D., Ph. D., “Local
anestetic myotoxicity”, Regional Anestesia and Pain Medicine, Vol 29,