Page 85 - IJB-3-1
P. 85

Hang  Liu,  Sanjairaj  Vijayavenkataraman,  Dandan  Wang,  et al.

            15 scaffolds were fabricated for each combination of   and  spreading  of  normal  human  keratinocytes  and  fi-
            process  parameters  and  used  for  SEM  measurement   broblasts in vitro. Biomaterials, vol.25(7): 1289–1297.
            and  cell  culture  study.  The  SEM  results  show  that   http://dx.doi.org/10.1016/j.biomaterials.2003.08.045
            around 80% of the samples show very similar micro-  5.  Megelski S, Stephens J S, Chase D B, et al. 2002, Micro
            structure patterns under the same fabrication condition   and  nanostructured  surface  morphology  on e lectrospun
            combination.                                           polymer fibers. Macromolecules, vol.35(22): 8456–8466.
                                                                   http://dx.doi.org/10.1021/ma02044a
            4. Conclusion                                       6.  Jin H J, Fridrikh S V, Rutledge G C, et al. 2002, Elec-
                                                                   trospinning bombyx mori silk with poly (ethylene oxide).
            EHD-jetting  technique  can  be  used  to  direct-write   Biomacromolecules, vol.3(6): 1233–1239.
            high-viscosity  solution  into  continuous  high-resolu-  http://dx.doi.org/10.1021/bm025581u
            tion  fibres.  Thus,  EHD-jetting  could  be  used  for  fa-  7.  Vijayavenkataraman  S,  Lu  W  F,  and  Fuh  J  Y  H,  2016,
            brication  of  multi-layer  scaffolds  with  various  mor-  3D bioprinting of skin: A state-of-the-art review on mod-
            phology and resolution that could be achieved by tun-  elling, materials, and processes. Biofabrication, vol.8(3):
            ing key process parameters: the stage speed, the solu-  p032001.
            tion  concentration,  the  nozzle-to-substrate  distance,   http://dx.doi.org/10.1088/1758-5090/8/3/032001
            the  temperature,  and  the  applied  voltage.  The  me-  8.  Chizhik S A, Wierzcholski K, Trushko A V, et al. 2011,
            chanical drawing force controlled by the stage speed   Properties of cartilage on micro- and nanolevel. Advances
            plays a critical role in the determination of resolution,   in Tribology, vol.2010.
            positioning, and alignment  of the fibres. Arrayed di-  http://dx.doi.org/10.1155/2010/243150
            verse  structures  like  the  coiled  scaffolds  can  poten-  9.  Teo W E, and Ramakrishna S, 2006, A review on elec-
            tially be applied in soft tissue repair and 3D cell cul-  tro-spinning design and nanofibre assemblies. Nanotech-
                                                                   nology, vol.17(14): R89.
            ture  in  regenerative  medicine.  Cell  attachment  and   http://dx.doi.org/10.1088/0957-4484/17/14/R01
            proliferation  has  to  be  investigated  in  the  future  by   10.  Theron A, Zussman E, and Yarin A, 2001, Electro-static
            further cell culture studies on these multi-layer coiled   field-assisted alignment of electrospun nanofibers. Nano-
            scaffolds.                                             technology, vol.12(3): 384.

            Conflict of Interest and Funding                       http://dx.doi.org/10.1088/0957-4484/12/3/329
                                                                11.  Bhattarai N, Edmondson D, Veiseh O, et al. 2005, Elec-
            No conflict of interest was reported by the authors. This   trospun  chitosan-based  nanofibers  and  their  cellular
            research is supported by the Jiangsu Province Science   compatibility. Biomaterials, vol.26(31): 6176–6184.
                                                                   http://dx.doi.org/10.1016/j.biomaterials.2005.03.027
            and  Technology  Support  Programme,  China  under   12.  Teo W E, Kotaki M, Mo X, et al. 2005, Porous tubular
            Grant No BE2013057 and Suzhou Science and Tech-        structures with controlled fibre orientation using a mod-
            nology Program under Grant No. SYG201418.
                                                                   ified electrospinning method. Nanotechnology, vol.16 (6):
            References                                             918.
                                                                   http://dx.doi.org/10.1088/0957-4484/16/6/049
              1.  Yeong W Y,  Chua C K, Leong K F, et al. 2004, Rapid   13.  Baker B M, and Mauck R L, 2007, The effect of nanofi-
                 prototyping in tissue engineering: challenges and poten-  ber alignment on the maturation of engineered meniscus
                 tial. Trends in Biotechnology, vol.22(12): 643–652.     constructs. Biomaterials, vol.28(11): 1967–1977.
                 http://dx.doi.org/10.1016/j.tibtech.2004.10.004   http://dx.doi.org/10.1016/j.biomaterials, 2007.01.004
              2.  Wang X, Drew C, Lee S H, et al. 2002, Electrospun na-  14.  Sun  D,  Chang C, Li S, et al. 2006,  Near-field electros-
                 nofibrous membranes for highly sensitive optical sensors.   pinning. Nano Letters, vol.6(4): 839–842.
                 Nano Letters, vol.2(11): 1273–1275.               http://dx.doi.org/10.1021/nl0602701
                 http://dx.doi.org/10.1021/nl020216u            15.  Sun  D,  Lin  L,  Wu  D,  et al.  2007,  Electrospun  ordered
                                                                                                 nd
              3.  Li W J, Laurencin C T, Caterson E J, et al. 2002, Elec-  nanofibers on Si and SiO 2  substrate. In 2  IEEE Interna-
                 trospun nanofibrous structure: a novel scaffold for tissue   tional Conference on Nano/Micro Engineered and Mole-
                 engineering. Journal of Biomedical Materials Research,   cular Systems, NEMS’07, IEEE, pp.72–76.
                 vol.60(4): 613–621.                            16.  Chang C, Limkrailassiri K, and Lin L, 2008, Continuous
                 http://dx.doi.org/10.1002/jbm.10167               near-field electrospinning for large area deposition of or-
              4.  Min B M, Lee G, Kim S H, et al. 2004, Electrospinning   derly nanofiber patterns. Applied Physics Letters, vol.93
                 of silk fibroin nanofibers and its effect on t he adhesion   (12): 123111.
                                        International Journal of Bioprinting (2017)–Volume 3, Issue 1      81
   80   81   82   83   84   85   86   87   88   89   90