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Volumn 110, Issue 4, 2013, Pages 1221-1230

In silico multi-scale model of transport and dynamic seeding in a bone tissue engineering perfusion bioreactor

Author keywords

Bone tissue engineering; Lattice Boltzmann; Mathematical model; Perfusion bioreactor; Wall shear stress

Indexed keywords

BIOREACTOR DESIGN; BONE TISSUE; BONE TISSUE ENGINEERING; CELLULAR DISTRIBUTIONS; COMPLEX SCAFFOLDS; COUPLED MODELS; DYNAMIC SEEDING; FLOW PROPERTIES; FUTURE DESIGNS; IN-SILICO; LATTICE BOLTZMANN; MICROCOMPUTED TOMOGRAPHY; MODERN HIGH PERFORMANCE; MULTISCALE MODELS; PERFUSION BIOREACTOR; POLY-L-LACTIDE; PORE SCALE; POROUS FLOW; POROUS SCAFFOLD; SEEDING METHOD; TIME-SCALES; VESSEL DESIGN; WALL SHEAR STRESS;

EID: 84874221067     PISSN: 00063592     EISSN: 10970290     Source Type: Journal    
DOI: 10.1002/bit.24777     Document Type: Article
Times cited : (30)

References (36)
  • 3
    • 0018101150 scopus 로고
    • Models for specific adhesion of cells to cells
    • Bell GI. 1978. Models for specific adhesion of cells to cells. Science 200(4342): 618- 627.
    • (1978) Science , vol.200 , Issue.4342 , pp. 618-627
    • Bell, G.I.1
  • 4
    • 29744456039 scopus 로고    scopus 로고
    • Prediction of the micro-fluid dynamic environment imposed to three-dimensional engineered cell systems in bioreactors
    • Boschetti F, Raimondi MT, Migliavacca F, Dubini G. 2006. Prediction of the micro-fluid dynamic environment imposed to three-dimensional engineered cell systems in bioreactors. J Biomech 39(3): 418- 425.
    • (2006) J Biomech , vol.39 , Issue.3 , pp. 418-425
    • Boschetti, F.1    Raimondi, M.T.2    Migliavacca, F.3    Dubini, G.4
  • 5
    • 0345015415 scopus 로고    scopus 로고
    • Effects of medium perfusion rate on cell-seeded three-dimensional bone constructs in vitro
    • Cartmell SH, Porter BD, Garcia AJ, Guldberg RE. 2003. Effects of medium perfusion rate on cell-seeded three-dimensional bone constructs in vitro. Tissue Eng 9(6): 1197- 1203.
    • (2003) Tissue Eng , vol.9 , Issue.6 , pp. 1197-1203
    • Cartmell, S.H.1    Porter, B.D.2    Garcia, A.J.3    Guldberg, R.E.4
  • 6
    • 34547613758 scopus 로고    scopus 로고
    • Enhancement of cell growth in tissue-engineering constructs under direct perfusion: Modeling and simulation
    • Chung CA, Chen CW, Chen CP, Tseng CS. 2007. Enhancement of cell growth in tissue-engineering constructs under direct perfusion: Modeling and simulation. Biotechnol Bioeng 97(6): 1603- 1616.
    • (2007) Biotechnol Bioeng , vol.97 , Issue.6 , pp. 1603-1616
    • Chung, C.A.1    Chen, C.W.2    Chen, C.P.3    Tseng, C.S.4
  • 7
    • 32544432849 scopus 로고    scopus 로고
    • Modeling evaluation of the fluid-dynamic microenvironment in tissue-engineered constructs: A micro-CT based model
    • Cioffi M, Boschetti F, Raimondi MT, Dubini G. 2006. Modeling evaluation of the fluid-dynamic microenvironment in tissue-engineered constructs: A micro-CT based model. Biotechnol and Bioeng 93(3): 500- 510.
    • (2006) Biotechnol and Bioeng , vol.93 , Issue.3 , pp. 500-510
    • Cioffi, M.1    Boschetti, F.2    Raimondi, M.T.3    Dubini, G.4
  • 8
    • 33845335851 scopus 로고    scopus 로고
    • Mathematical modeling of three-dimensional cell cultures in perfusion bioreactors
    • Coletti F, Macchietto S, Elvassore N. 2006. Mathematical modeling of three-dimensional cell cultures in perfusion bioreactors. Ind Eng Chem Res 45(24): 8158- 8169.
    • (2006) Ind Eng Chem Res , vol.45 , Issue.24 , pp. 8158-8169
    • Coletti, F.1    Macchietto, S.2    Elvassore, N.3
  • 9
    • 34848881862 scopus 로고    scopus 로고
    • Computational modeling of combined cell population dynamics and oxygen transport in engineered tissue subject to interstitial perfusion
    • Galbusera F, Cioffi M, Raimondi MT, Pietrabissa R. 2007. Computational modeling of combined cell population dynamics and oxygen transport in engineered tissue subject to interstitial perfusion. Comput Methods Biomech Biomed Eng 10(4): 279- 287.
    • (2007) Comput Methods Biomech Biomed Eng , vol.10 , Issue.4 , pp. 279-287
    • Galbusera, F.1    Cioffi, M.2    Raimondi, M.T.3    Pietrabissa, R.4
  • 10
    • 47749110681 scopus 로고    scopus 로고
    • An in silico bioreactor for simulating laboratory experiments in tissue engineering
    • Galbusera F, Cioffi M, Raimondi MT. 2008. An in silico bioreactor for simulating laboratory experiments in tissue engineering. Biomed Microdevices 10(4): 547- 554.
    • (2008) Biomed Microdevices , vol.10 , Issue.4 , pp. 547-554
    • Galbusera, F.1    Cioffi, M.2    Raimondi, M.T.3
  • 11
    • 60749102699 scopus 로고    scopus 로고
    • Validation of multicomponent lattice Boltzmann equation simulations using theoretical calculations of immiscible drop shape
    • Halliday I, Spencer TJ, Care CM. 2009. Validation of multicomponent lattice Boltzmann equation simulations using theoretical calculations of immiscible drop shape. Phys Rev E Stat Nonlin Soft Matter Phys 79(1 Pt 2): 016706.
    • (2009) Phys Rev E Stat Nonlin Soft Matter Phys , vol.79 , Issue.1 PART 2 , pp. 016706
    • Halliday, I.1    Spencer, T.J.2    Care, C.M.3
  • 12
    • 77955081211 scopus 로고    scopus 로고
    • Mesenchymal stem cell, osteoblasts and extracellular matrix proteins: Enhancing cell adhesion and differentiation for bone tissue engineering
    • Hidalgo-Bastida LA, Cartmell SH. 2010. Mesenchymal stem cell, osteoblasts and extracellular matrix proteins: Enhancing cell adhesion and differentiation for bone tissue engineering. J Tissue Eng Part B Rev 16(4): 405- 412.
    • (2010) J Tissue Eng Part B Rev , vol.16 , Issue.4 , pp. 405-412
    • Hidalgo-Bastida, L.A.1    Cartmell, S.H.2
  • 14
    • 0004574861 scopus 로고
    • Simulation of cavity flow by the lattice Boltzmann method
    • Hou SL, Zou Q, Chen SY, Doolen G, Cogley AC. 1995. Simulation of cavity flow by the lattice Boltzmann method. J Comput Phys 118(2): 329- 347.
    • (1995) J Comput Phys , vol.118 , Issue.2 , pp. 329-347
    • Hou, S.L.1    Zou, Q.2    Chen, S.Y.3    Doolen, G.4    Cogley, A.C.5
  • 15
    • 56549102202 scopus 로고    scopus 로고
    • On the lattice Boltzmann method simulation of a two-phase flow bioreactor for artificially grown cartilage cells
    • Hussein MA, Esterl S, Portner R, Wiegandt K, Becker T. 2008. On the lattice Boltzmann method simulation of a two-phase flow bioreactor for artificially grown cartilage cells. J Biomech 41(16): 3455- 3461.
    • (2008) J Biomech , vol.41 , Issue.16 , pp. 3455-3461
    • Hussein, M.A.1    Esterl, S.2    Portner, R.3    Wiegandt, K.4    Becker, T.5
  • 19
    • 65549164186 scopus 로고    scopus 로고
    • Modeling fluid flow through irregular scaffolds for perfusion bioreactors
    • Maes F, Ransbeeck P, Van Oosterwyck H, Verdonck P. 2009. Modeling fluid flow through irregular scaffolds for perfusion bioreactors. Biotechnol Bioeng 103(3): 621- 630.
    • (2009) Biotechnol Bioeng , vol.103 , Issue.3 , pp. 621-630
    • Maes, F.1    Ransbeeck, P.2    Van Oosterwyck, H.3    Verdonck, P.4
  • 20
    • 50249130750 scopus 로고    scopus 로고
    • Tortuosity-porosity relation in porous media flow
    • Matyka M, Khalili A, Koza Z. 2008. Tortuosity-porosity relation in porous media flow. Phys Rev E 78(2 Pt 2): 026306.
    • (2008) Phys Rev E , vol.78 , Issue.2 PART 2 , pp. 026306
    • Matyka, M.1    Khalili, A.2    Koza, Z.3
  • 21
    • 67649884736 scopus 로고    scopus 로고
    • Computational modelling of the mechanical environment of osteogenesis within a polylactic acid-calcium phosphate glass scaffold
    • Milan J-L, Planell JA, Lacroix D. 2009. Computational modelling of the mechanical environment of osteogenesis within a polylactic acid-calcium phosphate glass scaffold. Biomaterials 30: 4219- 4226.
    • (2009) Biomaterials , vol.30 , pp. 4219-4226
    • Milan, J.-L.1    Planell, J.A.2    Lacroix, D.3
  • 22
    • 77953539725 scopus 로고    scopus 로고
    • An innovative lattice Boltzmann model for simulating Michaelis-Menten-based diffusion-advection kinetics and its application within a cartilage cell bioreactor
    • Moaty Sayed AA, Hussein MA, Becker T. 2010. An innovative lattice Boltzmann model for simulating Michaelis-Menten-based diffusion-advection kinetics and its application within a cartilage cell bioreactor. Biomech Model Mechanobiol 9(2): 141- 151.
    • (2010) Biomech Model Mechanobiol , vol.9 , Issue.2 , pp. 141-151
    • Moaty Sayed, A.A.1    Hussein, M.A.2    Becker, T.3
  • 23
    • 0035551108 scopus 로고    scopus 로고
    • Measurement of oxygen uptake and carbon dioxide production rates of mammalian cells using membrane mass spectrometry
    • Oezemre A, Heinzle E. 2001. Measurement of oxygen uptake and carbon dioxide production rates of mammalian cells using membrane mass spectrometry. Cytotechnology 37(3): 153- 162.
    • (2001) Cytotechnology , vol.37 , Issue.3 , pp. 153-162
    • Oezemre, A.1    Heinzle, E.2
  • 24
    • 79551526443 scopus 로고    scopus 로고
    • Optimal homogenization of perfusion flows in microfluidic bio-reactors: A numerical study
    • Okkels F, Dufva M, Bruus H. 2011. Optimal homogenization of perfusion flows in microfluidic bio-reactors: A numerical study. PLoS ONE 6(1): e14574.
    • (2011) PLoS ONE , vol.6 , Issue.1
    • Okkels, F.1    Dufva, M.2    Bruus, H.3
  • 25
    • 12344284982 scopus 로고    scopus 로고
    • 3-D computational modeling of media flow through scaffolds in a perfusion bioreactor
    • Porter B, Zauel R, Stockman H, Guldberg R, Fyhrie D. 2005. 3-D computational modeling of media flow through scaffolds in a perfusion bioreactor. J Biomech 38: 543- 549.
    • (2005) J Biomech , vol.38 , pp. 543-549
    • Porter, B.1    Zauel, R.2    Stockman, H.3    Guldberg, R.4    Fyhrie, D.5
  • 27
    • 37349111414 scopus 로고    scopus 로고
    • Experimental characterization and computational modelling of two-dimensional cell spreading for skeletal regeneration
    • Sengers BG, Please CP, Oreffo ROC. 2007. Experimental characterization and computational modelling of two-dimensional cell spreading for skeletal regeneration. J R Soc Interface 4(17): 1107- 1117.
    • (2007) J R Soc Interface , vol.4 , Issue.17 , pp. 1107-1117
    • Sengers, B.G.1    Please, C.P.2    Oreffo, R.O.C.3
  • 30
    • 77951978888 scopus 로고    scopus 로고
    • Computational modeling of flow-induced shear stresses within 3D salt-leached porous scaffolds imaged via micro-CT
    • Voronov R, Van Gordon S, Sikavitsas VI, Papavassiliou DV. 2010. Computational modeling of flow-induced shear stresses within 3D salt-leached porous scaffolds imaged via micro-CT. J Biomech 43(7): 1279- 1286.
    • (2010) J Biomech , vol.43 , Issue.7 , pp. 1279-1286
    • Voronov, R.1    Van Gordon, S.2    Sikavitsas, V.I.3    Papavassiliou, D.V.4
  • 31
    • 0036150538 scopus 로고    scopus 로고
    • Fluid flow induction of cyclo-oxygenase 2 gene expression in osteoblasts is dependent on an extracellular signal-regulated kinase signaling pathway
    • Wadhwa S, Godwin SL, Peterson DR, Epstein MA, Raisz LG, Pilbeam CC. 2002. Fluid flow induction of cyclo-oxygenase 2 gene expression in osteoblasts is dependent on an extracellular signal-regulated kinase signaling pathway. J Bone Miner Res 17(2): 266- 274.
    • (2002) J Bone Miner Res , vol.17 , Issue.2 , pp. 266-274
    • Wadhwa, S.1    Godwin, S.L.2    Peterson, D.R.3    Epstein, M.A.4    Raisz, L.G.5    Pilbeam, C.C.6
  • 32
    • 0141596127 scopus 로고    scopus 로고
    • Oscillating perfusion of cell suspensions through three-dimensional scaffolds enhances cell seeding efficiency and uniformity
    • Wendt D, Marsano A, Jakob M, Heberer M, Martin I. 2003. Oscillating perfusion of cell suspensions through three-dimensional scaffolds enhances cell seeding efficiency and uniformity. Biotechnol Bioeng 84(2): 205- 214.
    • (2003) Biotechnol Bioeng , vol.84 , Issue.2 , pp. 205-214
    • Wendt, D.1    Marsano, A.2    Jakob, M.3    Heberer, M.4    Martin, I.5
  • 33
    • 31844451096 scopus 로고    scopus 로고
    • Uniform tissues engineered by seeding and culturing cells in 3D scaffolds under perfusion at defined oxygen tensions
    • Wendt D, Stroebel S, Jakob M, John GT, Martin I. 2006. Uniform tissues engineered by seeding and culturing cells in 3D scaffolds under perfusion at defined oxygen tensions. Biorheology 43(3/4): 481- 488.
    • (2006) Biorheology , vol.43 , Issue.3-4 , pp. 481-488
    • Wendt, D.1    Stroebel, S.2    Jakob, M.3    John, G.T.4    Martin, I.5
  • 35
    • 78650976757 scopus 로고    scopus 로고
    • Bone tissue engineering bioreactors: Dynamic culture and the influence of shear stress
    • Yeatts AB, Fisher JP. 2011. Bone tissue engineering bioreactors: Dynamic culture and the influence of shear stress. Bone 48(2): 171- 181.
    • (2011) Bone , vol.48 , Issue.2 , pp. 171-181
    • Yeatts, A.B.1    Fisher, J.P.2
  • 36
    • 84861188537 scopus 로고    scopus 로고
    • Macro-scale topology optimization for controlling internal shear stress in a porous scaffold bioreactor
    • Youssef K, Mack JJ, Iruela-Arispe ML, Bouchard L-S. 2012. Macro-scale topology optimization for controlling internal shear stress in a porous scaffold bioreactor. Biotechnol Bioeng 109(7): 1844- 1854.
    • (2012) Biotechnol Bioeng , vol.109 , Issue.7 , pp. 1844-1854
    • Youssef, K.1    Mack, J.J.2    Iruela-Arispe, M.L.3    Bouchard, L.-S.4


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