Controlled preparation and properties of porous poly(L-lactide) obtained from a co-continuous blend of two biodegradable polymers

被引:189
作者
Sarazin, P [1 ]
Roy, X [1 ]
Favis, BD [1 ]
机构
[1] Ecole Polytech, CRASP, Dept Chem Engn, Montreal, PQ H3C 3A7, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
poly(L-lactide); porous; polymer blends; co-continuous; annealing;
D O I
10.1016/j.biomaterials.2004.01.065
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
This study prepares porous PLLA from a blend of two biodegradable polymers. This approach is based on a detailed and quantitative morphology control of the blends. Co-continuous blends comprised Of poly(L-lactide)/poly(,epsilon,-caprolactone) PLLA/PCL, were prepared via melt processing. Through a judicious combination of concentration control and a subsequent annealing step it is possible to generate a wide range of sizes for the co-continuous phases. Subsequent extraction of the PCL porogen phase generates a fully interconnected porous PLLA material with a void volume between 50% and 60%. The volume average pore diameter is controlled from 1.5 to 88 mum as measured by mercury intrusion porosimetry. Through static annealing it is also possible to generate porous structures well beyond that upper limit of pore size. The upper limit of pore size reported above is in the range required for scaffolds for tissue engineering. Micrographs of porous polyglycolide and PCL derived from co-continuous blends of PLLA/polyglycolide and PCL/poly(ethylene oxide) are also shown and demonstrate the versatility and wide applicability of this preparation protocol. The porous structures produced from PLLA/PCL blends possess a high level of mechanical integrity and a degree of crystallinity between 25% and 38%. High values of both compressive modulus and strength at 10%-strain are obtained, greater than 190 and I I MPa, respectively. The compressive modulus is found to be from 10% to 20% of that of the pure PLLA material. A series of loading studies were also carried out and it was shown that under a pressure of 40 atm applied for I h, the pores of a 1.5 pm porous PLLA structure were filled to approximately 80% by water. In addition, the loading of an aqueous solution of a model drug compound, bovine serum albumin (BSA), was carried out at 40 atm and the results indicate that large quantities of BSA (up to 25% of the weight of the original porous capsule) can be driven into the pores. These results indicate that the internal porous structure is accessible to aqueous solution and that this material also has potential as a substrate for controlled release applications. (C) 2004 Elsevier Ltd. All rights reserved.
引用
收藏
页码:5965 / 5978
页数:14
相关论文
共 76 条
[1]   PROTEIN RELEASE KINETICS OF A BIODEGRADABLE IMPLANT FOR FRACTURE NON-UNIONS [J].
AGRAWAL, CM ;
BEST, J ;
HECKMAN, JD ;
BOYAN, BD .
BIOMATERIALS, 1995, 16 (16) :1255-1260
[2]  
Agrawal CM, 2001, J BIOMED MATER RES, V55, P141, DOI 10.1002/1097-4636(200105)55:2<141::AID-JBM1000>3.0.CO
[3]  
2-J
[4]   Preparation of poly(L-lactic acid) and poly(DL-lactic-co-glycolic acid) foams by use of ice microparticulates [J].
Chen, GP ;
Ushida, T ;
Tateishi, T .
BIOMATERIALS, 2001, 22 (18) :2563-2567
[5]   GEL CASTING OF RESORBABLE POLYMERS .2. INVITRO DEGRADATION OF BONE-GRAFT SUBSTITUTES [J].
COOMBES, AGA ;
HECKMAN, JD .
BIOMATERIALS, 1992, 13 (05) :297-307
[6]   Immiscible polymer blends of semicrystalline biocompatible components: thermal properties and phase morphology analysis of PLLA/PCL blends [J].
Dell'Erba, R ;
Groeninckx, G ;
Maglio, G ;
Malinconico, M ;
Migliozzi, A .
POLYMER, 2001, 42 (18) :7831-7840
[7]   INVESTIGATION OF STRUCTURE OF SOLUTION GROWN CRYSTALS OF LACTIDE COPOLYMERS BY MEANS OF CHEMICAL-REACTIONS [J].
FISCHER, EW ;
STERZEL, HJ ;
WEGNER, G .
KOLLOID-ZEITSCHRIFT AND ZEITSCHRIFT FUR POLYMERE, 1973, 251 (11) :980-990
[8]   NEOCARTILAGE FORMATION INVITRO AND INVIVO USING CELLS CULTURED ON SYNTHETIC BIODEGRADABLE POLYMERS [J].
FREED, LE ;
MARQUIS, JC ;
NOHRIA, A ;
EMMANUAL, J ;
MIKOS, AG ;
LANGER, R .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH, 1993, 27 (01) :11-23
[9]   JOINT RESURFACING USING ALLOGRAFT CHONDROCYTES AND SYNTHETIC BIODEGRADABLE POLYMER SCAFFOLDS [J].
FREED, LE ;
GRANDE, DA ;
LINGBIN, Z ;
EMMANUAL, J ;
MARQUIS, JC ;
LANGER, R .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH, 1994, 28 (08) :891-899
[10]   RESORBABLE MATERIALS OF POLY(L-LACTIDE) .3. POROUS MATERIALS FOR MEDICAL APPLICATION [J].
GOGOLEWSKI, S ;
PENNINGS, AJ .
COLLOID AND POLYMER SCIENCE, 1983, 261 (06) :477-484