[1]
Khandhadia S,
Cipriani V,
Yates JR,
Lotery AJ. Age-related macular degeneration and the complement system
. Immunobiology 2012; 217(2): 127-46.
[2]
Radtke ND,
Aramant RB,
Seiler MJ,
Petry HM,
Pidwell D. Vision change after sheet transplant of fetal retina with retinal pigment epithelium to a patient with retinitis pigmentosa.
Arch Ophthalmol 2004; 122(8): 1159-65.
[3]
Silva EA,
Mooney DJ. Synthetic extracellular matrices for tissue engineering and regeneration.
Curr Top Dev Biol 2004; 64: 181-205
[4]
Fischbach C,
Spruss T,
Weiser B,
Neubauer M,
Becker C,
Hacker M,
Göpferich A,
Blunk T. Generation of mature fat pads in vitro and in vivo utilizing 3-D long-term culture of 3T3-L1 preadipocytes.
Exp Cell Res 2004; 300(1): 54-64.
[5]
Lou X,
Munro S,
Wang S. Drug release characteristics of phase separation pHEMA sponge materials.
Biomaterials 2004; 25(20): 5071-80.
[6]
García Cruz DM,
Coutinho DF,
Costa Martinez E,
Mano JF,
Gómez Ribelles JL,
Salmerón Sánchez M. Blending polysaccharides with biodegradable polymers. II. Structure and biological response of chitosan/ polycaprolactone blends.
J Biomed Mater Res B Appl Biomater 2008; 87(2): 544-54.
[7]
von Heimburg D,
Zachariah S,
Heschel I,
Kühling H,
Schoof H,
Hafemann B,
Pallua N. Human preadipocytes seeded on freeze-dried collagen scaffolds investigated in vitro and in vivo
. Biomaterials 2001; 22(5): 429-38.
[8]
Pike DB,
Cai S,
Pomraning KR,
Firpo MA,
Fisher RJ,
Shu XZ,
Prestwich GD,
Peattie RA. Heparin-regulated release of growth factors in vitro and angiogenic response in vivo to implanted hyaluronan hydrogels containing VEGF and bFGF
. Biomaterials 2006; 27(30): 5242-51.
[9] Dragusin DM,
Vlierberghe SV,
Dubruel P, Dierick M, Hoorebeke LV, Declercq HA, Cornelissen MM, Stancu IC. Novel gelatin–PHEMA porous scaffolds for tissue engineering applications. Soft Matter 2012; 8(37): 9589-602.
[10]
Stancu IC,
Dragusin DM,
Vasile E,
Trusca R,
Antoniac I,
Vasilescu DS. P Porous calcium alginate-gelatin interpenetrated matrix and its biomineralization potential
. J Mater Sci Mater Med 2011; 22(3): 451-60.
[11]
Jordan SW,
Chaikof EL. Novel thromboresistant materials
. J Vasc Surg 2007; 45 Suppl A: A104-15.
[12]
Matthew IR,
Browne RM,
Frame JW,
Millar BG. Subperiosteal behaviour of alginate and cellulose wound dressing materials.
Biomaterials 1995; 16(4): 275-8.
[13]
Park JK,
Chang HN. Microencapsulation of microbial cells
. Biotechnol Adv 2000; 18(4): 303-19.
[14]
Tønnesen HH,
Karlsen J. Alginate in drug delivery systems
. Drug Dev Ind Pharm 2002; 28(6): 621-30.
[15]
Dhoot NO,
Tobias CA,
Fischer I,
Wheatley MA. Peptide-modified alginate surfaces as a growth permissive substrate for neurite outgrowth.
J Biomed Mater Res A 2004; 71(2): 191-200.
[16]
Rowley JA,
Madlambayan G,
Mooney DJ. Alginate hydrogels as synthetic extracellular matrix materials.
Biomaterials 1999; 20(1): 45-53.
[17]
Boanini E,
Rubini K,
Panzavolta S,
Bigi A. Chemico-physical characterization of gelatin films modified with oxidized alginate.
Acta Biomater 2010; 6(2): 383-8.
[18] Gruber HE, Hanley EN. Human disc cells in monolayer vs 3D culture: cell shape, division and matrix formation. BMC 2000; 1(1): 1471-4.
[19]
Candiello J,
Singh SS,
Task K,
Kumta PN,
Banerjee I. Early differentiation patterning of mouse embryonic stem cells in response to variations in alginate substrate stiffness.
J Biol Eng 2013; 7(1): 9.
[20]
Guo WH,
Frey MT,
Burnham NA,
Wang YL. Substrate rigidity regulates the formation and maintenance of tissues.
Biophys J 2006; 90(6): 2213-20.
[21]
Rosellini E,
Cristallini C,
Barbani N,
Vozzi G,
Giusti P. Preparation and characterization of alginate/gelatin blend films for cardiac tissue engineering.
J Biomed Mater Res A 2009; 91(2): 447-53.
[22]
Wang L,
Shelton RM,
Cooper PR,
Lawson M,
Triffitt JT,
Barralet JE. Evaluation of sodium alginate for bone marrow cell tissue engineering.
Biomaterials 2003; 24(20): 3475-81.
[23]
Xia Y,
Mei F,
Duan Y,
Gao Y,
Xiong Z,
Zhang T,
Zhang H. Bone tissue engineering using bone marrow stromal cells and an injectable sodium alginate/gelatin scaffold.
J Biomed Mater Res A 2012; 100(4): 1044-50.
[24]
Tonsomboon K,
Oyen ML. Composite electrospun gelatin fiber-alginate gel scaffolds for mechanically robust tissue engineered cornea
. J Mech Behav Biomed Mater 2013; 21: 185-94.
[25]
Candiello JE,
Jaramillo M,
Goh SK,
Banerjee I. Role of substrates in diabetes therapy: stem cell differentiation and islet transplantation.
Crit Rev Biomed Eng 2011; 39(6): 535-55.
[26]
Yamamoto M,
James D,
Li H,
Butler J,
Rafii S,
Rabbany S. Generation of stable co-cultures of vascular cells in a honeycomb alginate scaffold.
Tissue Eng Part A 2010; 16(1): 299-308.