1,551
Views
189
CrossRef citations to date
0
Altmetric
Reviews

Towards organ printing: engineering an intra-organ branched vascular tree

, PhD, , PhD, , , MD, , PhD & , MD PhD
Pages 409-420 | Published online: 04 Feb 2010

Bibliography

  • Ogawa R, Oki K, Hyakusoku H. Vascular tissue engineering and vascularized 3D tissue regeneration. Regen Med 2007;2(5):831-7
  • Lokmic Z, Mitchell GM. Engineering the microcirculation. Tissue Eng Part B Rev 2008;14(1):87-103
  • Rivron NC, Liu JJ, Rouwkema J, Engineering vascularised tissues in vitro. Eur Cell Mater 2008;15:27-40
  • Rouwkema J, Rivron NC, van Blitterswijk CA. Vascularization in tissue engineering. Trends Biotechnol 2008;26(8):434-41
  • Mironov V, Kasyanov V. Emergence of clinical vascular tissue engineering. Lancet 2009;373(9673):1402-4
  • Mironov V, Kasyanov V, Drake C, Markwald RR. Organ printing: promises and challenges. Regen Med 2008;3(1):93-103
  • Mironov V, Visconti RP, Kasyanov V, Organ printing: tissue spheroids as building blocks. Biomaterials 2009;30(12):2164-74
  • Risau W, Flamme I. Vasculogenesis. Annu Rev Cell Dev Biol 1995;11:73-91
  • Risau W. Mechanisms of angiogenesis. Nature 1997;386(6626):671-4
  • Carmeliet P. Mechanisms of angiogenesis and arteriogenesis. Nat Med 2000;6(4):389-95
  • Mooney DJ, Mikos AG. Growing new organs. Sci Am 1999;280(4):60-5
  • Langer R, Vacanti JP. Tissue engineering. Science 1993;260(5110):920-6
  • Mironov V, Reis N, Derby B. Review: bioprinting: a beginning. Tissue Eng 2006;12(4):631-4
  • Macchiarini P, Jungebluth P, Go T, Clinical transplantation of a tissue-engineered airway. Lancet 2008;372(9655):2023-30
  • Ott HC, Matthiesen TS, Goh SK, Perfusion-decellularized matrix: using nature's platform to engineer a bioartificial heart. Nat Med 2008;14(2):213-21
  • Atala A, Bauer SB, Soker S, Tissue-engineered autologous bladders for patients needing cystoplasty. Lancet 2006;367(9518):1241-6
  • Kasyanov VA, Hodde J, Hiles MC, Rapid biofabrication of tubular tissue constructs by centrifugal casting in a decellularized natural scaffold with laser-machined micropores. J Mater Sci Mater Med 2009;20(1):329-37
  • Rotmans JI, Heyligers JM, Verhagen HJ, In vivo cell seeding with anti-CD34 antibodies successfully accelerates endothelialization but stimulates intimal hyperplasia in porcine arteriovenous expanded polytetrafluoroethylene grafts. Circulation 2005;112(1):12-8
  • Shimizu T, Sekine H, Yang J, Polysurgery of cell sheet grafts overcomes diffusion limits to produce thick, vascularized myocardial tissues. FASEB J 2006;20(6):708-10
  • Lokmic Z, Stillaert F, Morrison WA, An arteriovenous loop in a protected space generates a permanent, highly vascular, tissue-engineered construct. FASEB J 2007;21(2):511-22
  • Morritt AN, Bortolotto SK, Dilley RJ, Cardiac tissue engineering in an in vivo vascularized chamber. Circulation 2007;115(3):353-60
  • Polykandriotis E, Tjiawi J, Euler S, The venous graft as an effector of early angiogenesis in a fibrin matrix. Microvasc Res 2008;75(1):25-33
  • Mironov V, Boland T, Trusk T, Organ printing: computer-aided jet-based 3D tissue engineering. Trends Biotechnol 2003;21(4):157-61
  • Jakab K, Neagu A, Mironov V, Forgacs G. Organ printing: fiction or science. Biorheology 2004;41(3-4):371-5
  • Murray CD. The physiological principle of minimum work: I. the vascular system and the cost of blood volume. Proc Natl Acad Sci USA 1926;12(3):207-14
  • Burrowes KS, Hunter PJ, Tawhai MH. Anatomically based finite element models of the human pulmonary arterial and venous trees including supernumerary vessels. J Appl Physiol 2005;99(2):731-8
  • Dankelman J, Cornelissen AJ, Lagro J, Relation between branching patterns and perfusion in stochastic generated coronary arterial trees. Med Biol Eng Comput 2007;45(1):25-34
  • Kaimovitz B, Lanir Y, Kassab GS. Large-scale 3-D geometric reconstruction of the porcine coronary arterial vasculature based on detailed anatomical data. Ann Biomed Eng 2005;33(11):1517-35
  • Mittal N, Zhou Y, Ung S, A computer reconstruction of the entire coronary arterial tree based on detailed morphometric data. Ann Biomed Eng 2005;33(8):1015-26
  • Nordsletten DA, Blackett S, Bentley MD, Structural morphology of renal vasculature. Am J Physiol Heart Circ Physiol 2006;291(1):H296-309
  • Smith NP, Pullan AJ, Hunter PJ. Generation of an anatomically based geometric coronary model. Ann Biomed Eng 2000;28(1):14-25
  • Yu KC, Ritman EL, Higgins WE. System for the analysis and visualization of large 3D anatomical trees. Comput Biol Med 2007;37(12):1802-20
  • Kamiya A, Togawa T. Optimal branching structure of the vascular tree. Bull Math Biophys 1972;34(4):431-8
  • Zamir M. Optimality principles in arterial branching. J Theor Biol 1976;62(1):227-51
  • Karch R, Neumann F, Neumann M, Schreiner W. Staged growth of optimized arterial model trees. Ann Biomed Eng 2000;28(5):495-511
  • Roy S, Silacci P, Stergiopulos N. Biomechanical properties of decellularized porcine common carotid arteries. Am J Physiol Heart Circ Physiol 2005;289(4):H1567-76
  • Schreiner W, Karch R, Neumann M, Optimized arterial trees supplying hollow organs. Med Eng Phys 2006;28(5):416-29
  • Schreiner W, Neumann F, Karch R, Shear stress distribution in arterial tree models, generated by constrained constructive optimization. J Theor Biol 1999;198(1):27-45
  • Assoul N, Flaud P, Chaouat M, Mechanical properties of rat thoracic and abdominal aortas. J Biomech 2008;41(10):2227-36
  • Lagerveld BW, ter Wee RD, de la Rosette JJ, Vascular fluorescence casting and imaging cryomicrotomy for computerized three-dimensional renal arterial reconstruction. BJU Int 2007;100(2):387-91
  • Lee SH, Moon JJ, Miller JS, West JL. Poly(ethylene glycol) hydrogels conjugated with a collagenase-sensitive fluorogenic substrate to visualize collagenase activity during three-dimensional cell migration. Biomaterials 2007;28(20):3163-70
  • Mironov V, Zhang J, Gentile C, Designer 'blueprint' for vascular trees: morphology evolution of vascular tissue constructs. Virtual Phys Prototyping 2009;4(2):63-74
  • Isenberg BC, Williams C, Tranquillo RT. Small-diameter artificial arteries engineered in vitro. Circ Res 2006;98(1):25-35
  • L'Heureux N, Dusserre N, Marini A, Technology insight: the evolution of tissue-engineered vascular grafts–from research to clinical practice. Nat Clin Pract Cardiovasc Med 2007;4(7):389-95
  • L'Heureux N, Paquet S, Labbe R, A completely biological tissue-engineered human blood vessel. FASEB J 1998;12(1):47-56
  • Jarrell BE, Williams SK, Stokes G, Use of freshly isolated capillary endothelial cells for the immediate establishment of a monolayer on a vascular graft at surgery. Surgery 1986;100(2):392-9
  • Niklason LE, Gao J, Abbott WM, Functional arteries grown in vitro. Science 1999;284(5413):489-93
  • Klinger RY, Blum JL, Hearn B, Relevance and safety of telomerase for human tissue engineering. Proc Natl Acad Sci USA 2006;103(8):2500-5
  • Poh M, Boyer M, Solan A, Blood vessels engineered from human cells. Lancet 2005;365(9477):2122-4
  • Konig G, McAllister TN, Dusserre N, Mechanical properties of completely autologous human tissue engineered blood vessels compared to human saphenous vein and mammary artery. Biomaterials 2009;30(8):1542-50
  • McAllister TN, Maruszewski M, Garrido SA, Effectiveness of haemodialysis access with an autologous tissue-engineered vascular graft: a multicentre cohort study. Lancet 2009;373(9673):1440-6
  • Au P, Tam J, Fukumura D, Jain RK. Bone marrow-derived mesenchymal stem cells facilitate engineering of long-lasting functional vasculature. Blood 2008;111(9):4551-8
  • Gong Z, Niklason LE. Small-diameter human vessel wall engineered from bone marrow-derived mesenchymal stem cells (hMSCs). FASEB J 2008;22(6):1635-48
  • Kadner A, Hoerstrup SP, Zund G, A new source for cardiovascular tissue engineering: human bone marrow stromal cells. Eur J Cardiothorac Surg 2002;21(6):1055-60
  • Matsumura G, Miyagawa-Tomita S, Shin'oka T, First evidence that bone marrow cells contribute to the construction of tissue-engineered vascular autografts in vivo. Circulation 2003;108(14):1729-34
  • Roh JD, Brennan MP, Lopez-Soler RI, Construction of an autologous tissue-engineered venous conduit from bone marrow-derived vascular cells: optimization of cell harvest and seeding techniques. J Pediatr Surg 2007;42(1):198-202
  • Zwaginga JJ, Doevendans P. Stem cell-derived angiogenic/vasculogenic cells: possible therapies for tissue repair and tissue engineering. Clin Exp Pharmacol Physiol 2003;30(11):900-8
  • Ross JJ, Hong Z, Willenbring B, Cytokine-induced differentiation of multipotent adult progenitor cells into functional smooth muscle cells. J Clin Invest 2006;116(12):3139-49
  • Zuk PA, Zhu M, Mizuno H, Multilineage cells from human adipose tissue: implications for cell-based therapies. Tissue Eng 2001;7(2):211-28
  • Jeon ES, Moon HJ, Lee MJ, Sphingosylphosphorylcholine induces differentiation of human mesenchymal stem cells into smooth-muscle-like cells through a TGF-beta-dependent mechanism. J Cell Sci 2006;119(Pt 23):4994-5005
  • Lee WC, Rubin JP, Marra KG. Regulation of alpha-smooth muscle actin protein expression in adipose-derived stem cells. Cells Tissues Organs 2006;183(2):80-6
  • Rodriguez LV, Alfonso Z, Zhang R, Clonogenic multipotent stem cells in human adipose tissue differentiate into functional smooth muscle cells. Proc Natl Acad Sci USA 2006;103(32):12167-72
  • Mironov V, Visconti RP, Markwald RR. What is regenerative medicine? Emergence of applied stem cell and developmental biology. Expert Opin Biol Ther 2004;4(6):773-81
  • Ferreira LS, Gerecht S, Shieh HF, Vascular progenitor cells isolated from human embryonic stem cells give rise to endothelial and smooth muscle like cells and form vascular networks in vivo. Circ Res 2007;101(3):286-94
  • Levenberg S, Golub JS, Amit M, Endothelial cells derived from human embryonic stem cells. Proc Natl Acad Sci USA 2002;99(7):4391-6
  • Yamashita J, Itoh H, Hirashima M, Flk1-positive cells derived from embryonic stem cells serve as vascular progenitors. Nature 2000;408(6808):92-6
  • Draper JS, Smith K, Gokhale P, Recurrent gain of chromosomes 17q and 12 in cultured human embryonic stem cells. Nat Biotechnol 2004;22(1):53-4
  • Pera MF. Unnatural selection of cultured human ES cells? Nat Biotechnol 2004;22(1):42-3
  • Byrne JA, Pedersen DA, Clepper LL, Producing primate embryonic stem cells by somatic cell nuclear transfer. Nature 2007;450(7169):497-502
  • Hall VJ, Stojkovic P, Stojkovic M. Using therapeutic cloning to fight human disease: a conundrum or reality? Stem Cells 2006;24(7):1628-37
  • Amariglio N, Hirshberg A, Scheithauer BW, Donor-derived brain tumor following neural stem cell transplantation in an ataxia telangiectasia patient. PLoS Med 2009;6(2):e1000029. Published online 17 February 2009, doi: 10.1371/journal.pmed.1000029
  • Choi KD, Yu J, Smuga-Otto K, Hematopoietic and endothelial differentiation of human induced pluripotent stem cells. Stem Cells 2009;27(3):559-67
  • Schenke-Layland K, Rhodes KE, Angelis E, Reprogrammed mouse fibroblasts differentiate into cells of the cardiovascular and hematopoietic lineages. Stem Cells 2008;26(6):1537-46
  • Yu J, Hu K, Smuga-Otto K, Human induced pluripotent stem cells free of vector and transgene sequences. Science 2009;324(5928):797-801
  • Boland MJ, Hazen JL, Nazor KL, Adult mice generated from induced pluripotent stem cells. Nature 2009;461(7260):91-4
  • Lin RZ, Chang HY. Recent advances in three-dimensional multicellular spheroid culture for biomedical research. Biotechnol J 2008;3(9-10):1172-84
  • Kelm JM, Fussenegger M. Microscale tissue engineering using gravity-enforced cell assembly. Trends Biotechnol 2004;22(4):195-202
  • Hsiao AY, Torisawa YS, Tung YC, Microfluidic system for formation of PC-3 prostate cancer co-culture spheroids. Biomaterials 2009;30(16):3020-7
  • Watanabe M, Takagi A. Biological behavior of prostate cancer cells in 3D culture systems. Yakugaku Zasshi 2008;128(1):37-44
  • Perez-Pomares JM, Foty RA. Tissue fusion and cell sorting in embryonic development and disease: biomedical implications. Bioessays 2006;28(8):809-21
  • Rago AP, Dean DM, Morgan JR. Controlling cell position in complex heterotypic 3D microtissues by tissue fusion. Biotechnol Bioeng 2009;102(4):1231-41
  • Lin RZ, Chu WC, Chiang CC, Magnetic reconstruction of three-dimensional tissues from multicellular spheroids. Tissue Eng Part C Methods 2008;14(3):197-205
  • Jakab K, Neagu A, Mironov V, Engineering biological structures of prescribed shape using self-assembling multicellular systems. Proc Natl Acad Sci USA 2004;101(9):2864-9
  • Fedorovich NE, Alblas J, de Wijn JR, Hydrogels as extracellular matrices for skeletal tissue engineering: state-of-the-art and novel application in organ printing. Tissue Eng 2007;13(8):1905-25
  • Tsang VL, Bhatia SN. Three-dimensional tissue fabrication. Adv Drug Deliv Rev 2004;56(11):1635-47
  • Steinberg MS. Differential adhesion in morphogenesis: a modern view. Curr Opin Genet Dev 2007;17(4):281-6
  • Foty RA, Steinberg MS. The differential adhesion hypothesis: a direct evaluation. Dev Biol 2005;278(1):255-63
  • Davis GS, Phillips HM, Steinberg MS. Germ-layer surface tensions and "tissue affinities" in Rana pipiens gastrulae: quantitative measurements. Dev Biol 1997;192(2):630-44
  • Jakab K, Norotte C, Damon B, Tissue engineering by self-assembly of cells printed into topologically defined structures. Tissue Eng Part A 2008;14(3):413-21
  • Neagu A, Jakab K, Jamison R, Forgacs G. Role of physical mechanisms in biological self-organization. Phys Rev Lett 2005;95(17):178104
  • Marga F, Neagu A, Kosztin I, Forgacs G. Developmental biology and tissue engineering. Birth Defects Res C Embryo Today 2007;81(4):320-8
  • Schenke-Layland K. Non-invasive multiphoton imaging of extracellular matrix structures. J Biophotonics 2008;1(6):451-62
  • Dean DM, Rago AP, Morgan JR. Fibroblast elongation and dendritic extensions in constrained versus unconstrained microtissues. Cell Motil Cytoskeleton 2009;66(3):129-41
  • Chokalingam K, Juncosa-Melvin N, Hunter SA, Tensile stimulation of murine stem cell-collagen sponge constructs increases collagen type I gene expression and linear stiffness. Tissue Eng Part A 2009;15(9):2561-70
  • Chang E, Miller JS, Sun J, Protease-activated quantum dot probes. Biochem Biophys Res Commun 2005;334(4):1317-21
  • Zannad F, Rossignol P, Iraqi W. Extracellular matrix fibrotic markers in heart failure. Heart Fail Rev 2009, Published online 29 April 2009, doi: 10.1007/s10741-009-9143-0
  • Nie X, Yang MJ, Deng MJ, Innovative strategies for tissue engineered skin based on multiple growth factors gene transfection. Med Hypotheses 2009;73(4):516-8
  • Kostrominova TY, Calve S, Arruda EM, Larkin LM. Ultrastructure of myotendinous junctions in tendon-skeletal muscle constructs engineered in vitro. Histol Histopathol 2009;24(5):541-50
  • Landis WJ, Jacquet R, Lowder E, Tissue engineering models of human digits: effect of periosteum on growth plate cartilage development. Cells Tissues Organs 2009;189(1-4):241-4
  • McAllister TN, Dusserre N, Maruszewski M, L'Heureux N. Cell-based therapeutics from an economic perspective: primed for a commercial success or a research sinkhole? Regen Med 2008;3(6):925-37
  • Rees J. The problem with academic medicine: engineering our way into and out of the mess. PLoS Med 2005;2(4):e111. Published online 26 April 2005, doi: 10.1371/journal.pmed.0020111
  • Mironov V, Trusk T, Little S, Biofabrication: a 21st century manufacturing paradigm. Biofabrication 2009;1(2):1-26

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.