References
1. Dalton PD (2017) Melt electrowriting with
additive manufacturing principles. Curr Opin
Biomed Eng 2:49–57
2. Wei C, Dong JY (2013) Direct fabrication of
high-resolution three-dimensional polymeric
scaffolds using electrohydrodynamic hot jet
plotting. J Micromech Microeng 23:2
3. Hutmacher DW, Dalton PD (2011) Melt electrospinning. Chem Asian J 6:44–56
4. Brown TD, Dalton PD, Hutmacher DW
(2016) Melt electrospinning today: an opportune time for an emerging polymer process.
Prog Polym Sci 56:116–166
5. Muerza-Cascante ML, Haylock D, Hutmacher
DW, Dalton PD (2014) Melt electrospinning
and its technologization in tissue engineering.
Tissue Eng Part B Rev 21:187–202
6. Dalton PD, Muerza-Cascante ML, Hutmacher
DW (2015) Chapter 6. Design and fabrication
of scaffolds via melt electrospinning for applications in tissue engineering. 100-120. In:
Mitchell G (ed) Electrospinning: principles,
practice and possibilities, RSC polymer chemistry series. RSC Publishing, Cambridge
7. Hochleitner G, Youssef A, Hrynevich A, Haigh
JN, Jungst T, Groll J, Dalton PD (2016) Fibre
pulsing during melt electrospinning writing.
BioNanoMaterials 17:159–171
8. Youssef AB, Hollister SJ, Dalton PD (2017)
Additive manufacturing of polymer melts for
implantable medical devices and scaffolds. Biofabrication 9:012002
9. Pashuck ET, Stevens MM (2012) Designing
regenerative biomaterial therapies for the
clinic. Sci Transl Med 4:160sr4
10. Farrugia BL, Brown TD, Upton Z, Hutmacher
DW, Dalton PD, Dargaville TR (2013) Dermal
fibroblast
infiltration
of
poly(epsiloncaprolactone) scaffolds fabricated by melt electrospinning in a direct writing mode. Biofabrication 5:025001
11. Muerza-Cascante ML, Shokoohmand A,
Khosrotehrani K, Haylock D, Dalton PD, Hutmacher DW, Loessner D (2017) Endosteal-like
extracellular matrix expression on melt electrospun written scaffolds. Acta Biomater
52:145–158
12. Brown TD, Slotosch A, Thibaudeau L,
Taubenberger A, Loessner D, Vaquette C, Dalton PD, Hutmacher DW (2012) Design and
fabrication of tubular scaffolds via direct
writing in a melt electrospinning mode. Biointerphases 7:1–16
13. Castilho M, Feyen D, Flandes-Iparraguirre M,
Hochleitner G, Groll J, Doevendans PAF,
Vermonden T, Ito K, Sluijter JPG, Malda J
hydroxymethylglycolide-co-epsilon-caprolactone-based scaffolds for cardiac tissue engineering. Adv Healthc Mater 6:1700311
14. Delalat B, Harding F, Gundsambuu B, DeJuan-Pardo EM, Wunner FM, Wille M-L,
Jasieniak M, Malatesta KAL, Griesser HJ,
Simula A, Hutmacher DW, Voelcker NH,
Barry SC (2017) 3D printed lattices as an activation and expansion platform for T cell therapy. Biomaterials 140:58–68
15. Weigand A, Boos AM, Tasbihi K, Beier JP,
Dalton PD, Schrauder M, Horch RE, Beckmann MW, Strissel PL, Strick R (2016) Selective isolation and characterization of primary
cells from normal breast and tumors reveal
plasticity of adipose derived stem cells. Breast
Cancer Res 18:32
16. Hochleitner G, Jungst T, Brown TD, Hahn K,
Moseke C, Jakob F, Dalton PD, Groll J (2015)
Additive manufacturing of scaffolds with
sub-micron filaments via melt electrospinning
writing. Biofabrication 7:035002
17. Brown TD, Edin F, Detta N, Skelton AD,
Hutmacher DW, Dalton PD (2014) Melt electrospinning of poly(ε-caprolactone) scaffolds:
phenomenological observations associated
with collection and direct writing. Mater Sci
Eng C Mater Biol Appl 45:698–708
18. Jungst T, Muerza-Cascante ML, Brown TD,
Standfest M, Hutmacher DW, Groll J, Dalton
PD (2015) Melt electrospinning onto cylinders: effects of rotational velocity and collector
diameter on morphology of tubular structures.
Polym Int 64:1086–1095
19. Bas O, D’Angella D, Baldwin JG, Castro NJ,
Wunner FM, Saidy NT, Kollmannsberger S,
Reali A, Rank E, De-Juan-Pardo EM, Hutmacher DW (2017) An integrated design, material, and fabrication platform for engineering
biomechanically and biologically functional
soft tissues. ACS Appl Mater Interfaces
9:29430–29437
20. Bas O, De-Juan-Pardo EM, Chhaya MP, Wunner FM, Jeon JE, Klein TJ, Hutmacher DW
(2015) Enhancing structural integrity of
hydrogels by using highly organised melt electrospun fibre constructs. Eur Polym J
72:451–463
21. Visser J, Melchels FPW, Jeon JE, van Bussel
EM, Kimpton LS, Byrne HM, Dhert WJA,
Dalton PD, Hutmacher DW, Malda J (2015)
Reinforcement of hydrogels using threedimensionally printed microfibres. Nature
Melt Electrospinning Writing
123
Précédent

- 130/191

Suivant