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Formation of cell spheroids using Standing Surface Acoustic Wave (SSAW)


            61   Devendran  C,  Albrecht  T,  Brenker  J,  et  al.,  2016,  The   spheroid  size,  and  hepatocellular  functions.  Biotechnol
                 importance  of  travelling  wave  components  in  standing   Bioeng, 86(6): 672–680.
                 surface  acoustic  wave  (SSAW)  systems.  Lab  Chip,      http://dx.doi.org/10.1002/bit.20086
                 16(19): 3756–3766. http://dx.doi.org/10.1039/c6lc00798h   67.   Lee J, Cuddihy M J, Cater G M, et al., 2009, Engineering
            62.   Drasdo D, Hohme S, 2005, A single-cell-based model of   liver  tissue  spheroids  with  inverted  colloidal  crystal
                 tumor growth  in vitro:  Monolayers and spheroids.  Phys   scaffolds. Biomaterials, 30(27): 4687–4694. http://dx.doi.
                                                                   org/10.1016/j.biomaterials.2009.05.024
                 Biol, 2(3): 133–147. http://dx.doi.org/10.1088/1478-3975   68.  Curcio  E,  Salerno  S,  Barbieri  G,  et  al.,  2007,  Mass
                 /2/3/001                                          transfer and metabolic reactions in hepatocyte spheroids
            63.  Engelberg J A, Ropella G E, Hunt C A, 2008, Essential   cultured  in  rotating  wall  gas-permeable  membrane
                 operating  principles  for  tumor  spheroid  growth.  BMC   system.  Biomaterials,  28(36):  5487–5497.  http://dx.doi.
                 Syst  Biol,  2:  110.  http://dx.doi.org/10.1186/1752–0509–  org/10.1016/j.biomaterials.2007.08.033
                 2–110                                         69.   Fukuda  J,  Okamura  K,  Nakazawa  K,  et  al.,  2003,
            64.   Zanoni M, Piccinini F, Arienti C, et al., 2016, 3D tumor   Efficacy of a polyurethane foam/spheroid artificial liver
                 spheroid  models  for  in  vitro  therapeutic  screening:  A   by using human hepatoblastoma cell line (Hep G2). Cell
                 systematic approach to enhance the biological relevance   Transplant, 12(1): 51–58. http://dx.doi.org/10.3727/0000
                 of data obtained. Sci Rep, 6: 19103. http://dx.doi.org/10.   00003783985151
                 1038/srep19103                                70.   Tamura  T,  Sakai  Y,  Nakazawa  K,  2008,  Two-
            65.  Anada  T,  Fukuda  J,  Sai  Y,  et  al.,  2012,  An  oxygen-  dimensional  microarray  of  HepG2  spheroids  using
                 permeable spheroid culture system for the prevention of   collagen/polyethylene  glycol  micropatterned  chip.  J
                                                                   Mater Sci Mater M, 19(5): 2071–2077. http://dx.doi.org/
                 central hypoxia and necrosis of spheroids. Biomaterials,   10.1007/s10856–007–3305–1
                 33(33):  8430–8441.  http://dx.doi.org/10.1016/j.biomate-  71.  Hirschhaeuser  F,  Menne  H,  Dittfeld  C,  et  al.,  2010,
                 rials.2012.08.040                                 Multicellular tumor spheroids:An underestimated tool is
            66.  Glicklis R, Merchuk J C, Cohen S, 2004, Modeling mass   catching  up  again.  JBiotechnol,  148(1):3–15.  http://dx.
                 transfer in hepatocyte spheroids via cell viability,    doi.org/10.1016/j.jbiotec.2010.01.012



























            12                               International Journal of Bioprinting (2018)–Volume 4, Issue 1
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