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Original Articles

Tuning hierarchical architecture of 3D polymeric scaffolds for cardiac tissue engineering

, , , , , , , , , , & show all
Pages 97-110 | Received 01 Aug 2007, Accepted 29 Sep 2007, Published online: 13 Aug 2008

References

  • Langer , R and Vacanti , JP . 1993 . Tissue engineering . Science , 260 : 920
  • Petite , H , Viateau , V , Bensaïd , W , Meunier , A , de Pollak , C , Bourguignon , M , Oudina , K , Sedel , L and Guillemin , G . 2000 . Tissue-engineered bone regeneration . Nature Biotechnol. , 18 : 959
  • Cao , Y , Vacanti , JP , Paige , KT , Upton , J and Vacanti , CA . 1997 . Transplantation of chondrocytes utilising a polymer-cell construct to produce tissue engineered cartilage in the shape of a human ear . Plast. Reconstruct. Surg. , 100 : 297
  • Nishida , K , Yamato , M , Hayashida , Y , Watanabe , K , Yamamoto , K , Adachi , E , Nagai , S , Kikuchi , A , Maeda , N Watanabe , H . 2004 . Corneal reconstruction with tissue-engineered cell sheets composed of autologous oral mucosal epithelium . N. Eng. J. Med. , 351 : 12
  • Banta , MN and Kirsner , RS . 2002 . Modulating diseased skin with tissue engineering: actinic purpura treated with Apligraf ® . Dermatol. Surg. , 28 : 1103
  • Carrier , RL , Papadaki , M , Rupnick , M , Schoen , FJ , Bursac , N , Langer , R , Freed , LE and Vunjak-Novakovic , G . 1999 . Cardiac tissue engineering: cell seeding, cultivation parameters, and tissue construct characterization . Biotech. Bioeng. , 64 : 580
  • Zimmermann , WH , Fink , C , Kralisch , D , Remmers , U , Weil , J and Eschenhagen , T . 2000 . Three-dimensional engineered heart tissue from neonatal rat cardiac myocytes . Biotechnol. Bioeng. , 68 : 106
  • Miyahara , Y , Nagaya , N , Kataoka , M , Yanagawa1 , B , Tanaka , K , Hao , H , Ishino , K , Ishida , H , Shimizu , T Kangawa , K . 2006 . Monolayered mesenchymal stem cells repair scarred myocardium after myocardial infarction . Nature Med. , 12 : 459
  • Pasumarthi , KB and Field , LJ . 2002 . Cardiomyocyte cell cycle regulation . Circ. Res. , 90 : 1044; H.M. Blau, T.R. Brazelton, J.M. Weimann. The evolving concept of a stem cell: entity or function? Cell, 105 (2001), p. 829
  • Wobus , AM , Wallukat , G and Hescheler , J . 1991 . Pluripotent mouse embryonic stem cells are able to differentiate into cardiomyocytes expressing chronotropic responses to adrenergic and cholinergic agents and Ca2+ channel blockers . Differentiation , 48 : 173
  • Malouf , NN , Coleman , WB , Grisham , JW , Lininger , RA , Madden , VJ , Sproul , M and Anderson , PA . 2001 . Adult-derived stem cells from the liver become myocytes in the heart in vivo . Am. J. Pathol. , 158 : 1929
  • Cohen , S , Bano , MC , Cima , LG , Allcock , HR , Vacanti , JP , Vacanti , CA and Langer , R . 1993 . Design of synthetic polymeric structures for cell transplantation and tissue engineering . Clin. Mater. , 13 : 3
  • Cima , LG , Vacanti , JP , Vacanti , C , Ingber , D , Mooney , D and Langer , R . 1991 . Tissue engineering by cell transplantation using degradable polymer substrates . J. Biomech. Eng. , 113 : 143
  • Engler , AJ , Sen , S , Sweeney , HL and Discher , DE . 2006 . Matrix elasticity directs stem cell lineage specification . Cell , 126 : 677
  • Hsu , S , Chang , S , Yen , H , Whu , S , Tsai , C and Chen , D . 2006 . Evaluation of biodegradable polyesters modified by type II collagen and Arg-Gly-Asp as tissue engineering scaffolding materials for cartilage regeneration . Art. Org. , 30 : 42
  • Fiaccavento , R , Carotenuto , F , Minieri , M , Fantini , C , Forte , G , Carbone , A , Carosella , L , Bei , R , Masuelli , L Palumbo , C . 2005 . Stem cell activation sustains hereditary hypertrophy in hamster cardiomyopathy . J. Pathol. , 205 : 397
  • Stevens , MM and George , JH . 2005 . Exploring and engineering the cell surface interface . Science , 310 : 1135
  • Zhou , WY , Lee , SH , Wang , M , Cheung , WL and Ip , WY . Selective laser sintering of porous tissue engineering scaffolds from poly(L-lactide)/carbonated hydroxyapatite nanocomposite microspheres . J. Mater. Sci.: Mater. Med. , DOI 10.1007/s10856-007-3089-3
  • Palin , E , Liu , H and Webster , TJ . 2005 . Mimicking the nanofeatures of bone increases bone-forming cell adhesion and proliferation . Nanotechnol. , 16 : 1828
  • Welle , A , Kröger , M , Döring , M , Niederer , K , Pindel , E and Chronakis , IS . 2007 . Electrospun aliphatic polycarbonates as tailored tissue scaffold materials . Biomater. , 28 : 2211
  • Ghosh , S , Viana , JC , Reis , RL and Mano , JF . 2007 . The double porogen approach as a new technique for the fabrication of interconnected poly(L-lactic acid) and starch based biodegradable scaffolds . J. Mater. Sci.: Mater. Med. , 18 : 185
  • Yang , F , Qu , X , Cui , W , Bei , J , Yu , F , Lu , S and Wang , S . 2006 . Manufacturing and morphology structure of polylactide-type microtubules orientation-structured scaffolds . Biomater. , 27 : 4923
  • Forte , G , Carotenuto , F , Pagliari , F , Pagliari , S , Cossa , P , Fiaccavento , R , Ahluwalia , A , Vozzi , G , Vinci , B Serafino , A . Polymeric scaffold guidance to stem cell differentiation and tissue warping . Nature Mater. , (submitted Septemeber 2007)
  • Mikos , AG , Thorse , AJ , Czerwonka , LA , Bao , Y , Langer , R , Winslow , DN and Vacanti , JP . 1994 . Polymer , 35 : 1068
  • Tanaka , T and Lloyd , DR . 2004 . Formation of poly(L-lactic acid) microfiltration membranes via thermally induced phase separation . J. Memb. Sci. , 238 : 65
  • Nam , YS and Park , TG . 1999 . Porous biodegradable polymeric scaffolds prepared by thermally induced phase separation . J. Biomed. Mat. Res. , 47 : 8
  • Wei , G and Ma , PX . 2004 . Structure and properties of nano-hydroxyapatite/polymer composite scaffolds for bone tissue engineering . Biomater. , 25 : 4749
  • Ho , M , Kuo , P , Hisieh , H , Hsien , T , Hou , L , Lai , J and Wang , D . 2004 . Preparation of porous scaffolds by using freeze-extraction and freeze-gelation methods . Biomater. , 25 : 129
  • Sarazin , P , Roy , X and Favis , BD . 2004 . Controlled preparation and properties of porous poly(l-lactide) obtained from a co-continuous blend of two biodegradable polymers . Biomater. , 25 : 5965
  • Dan , L and Younan , X . 2004 . Electrospinning of nanofibers: reinverting the wheel? . Adv. Mater. , 16 : 1151
  • Wei , G , Jin , Q , Giannobile , WV and Ma , PX . 2006 . Nano-fibrous scaffold for controlled delivery of recombinant human PDGF-BB . J. Controlled Release , 112 : 103
  • Sigmund , W , Yuh , J , Park , H , Maneeratana , V , Pyrgiotakis , G , Daga , A , Taylor , J and Nino , JC . 2006 . Processing and structure relationships in electrospinning of ceramic fiber systems . J. Amer. Cer. Soc. , 89 ( 2 ) : 395
  • Zong , X , Bien , H , Chung , C-Y , Yin , L , Fang , D , Hsiao , BS , Chu , B and Entcheva , E . 2005 . Electrospun fine-textured scaffolds for heart tissue constructs . Biomater. , 26 : 5330
  • Boland , ED , Wnek , GE , Simpson , GD , Pawlowski , KJ and Bowlin , GL . 2001 . Tailoring tissue engineering scaffolds using electrostatic processing techniques: a study of poly(glycolic acid) electrospinning . J. Macromol. Sci. Pure Appl. Chem. , A38 : 1231
  • Li , W-J , Laurencin , CT , Caterson , EJ , Tuan , RS and Ko , FK . 2002 . Electrospun nanofibrous structure: a novel scaffold for tissue engineering . J. Biomed. Mater. Res. , 60 : 613
  • Kadler , KE , Holmes , DF , Trotter , JA and Chapman , JA . 1996 . Collagen fibril formation . Biochem. J. , 316 : 1
  • Pham , QP , Sharma , U and Mikos , AG . 2006 . Electrospun poly(E-caprolactone) microfiber and multilayer nanofiber/microfiber scaffolds: characterization of scaffolds and measurement of cellular infiltration . Biomacromolecules , 7 : 2796

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