7Mikos A G, Lyman M D, Freed L E, et al. Wetting of poly (L-lactic acid) and poly (DL-lactic-co glycolic acid) foams for tissue culture[J ]. Biornaterials, 1994, 15( 1 ) : 55.
8Cook A D, Hrkach J S, Gao N N, et al. Characterization and development of RGD-peptide-modified poly (lacrtic acidco-lysine) as an interactive, resorbable biomaterial [ J ]. J Biomed Mater Res, 1997, 35(4) : 513.
9Kubies D, Ryapeek F, Kovarova J, et al. Mierodomain st ructure in polytactide- block - poly(ethylene oxide) copolymet films[J]. Biomaterials, 2000, 21: 529.
10Cannizzaro S M, Padera R F, Langer R, et al. A novel biotinylated degradable polymer for cell-interactive applications [J]. Biotechnol & Bioengeng, 1998, 58. (5): 529- 535.
2Tessmar J,Mikos A G,Goepferich A. A new biodegradable polymer for the modification of surfaces:H2N- poly(ethylene glycol) - poly (D,L-lactide acid)[A]. Sixth world biomaterials congress transactions[C]. Hawaii:SFB,2000. 595.
3Pitt C G. Biodegradable polymers as drug delivery systems[ M]. New York: Marcel Dekker Inc, 1990.71 - 119.
4Song C X, Feng X D. Synthesis of ABA triblock copolymers of caprolactone and lactide[J ]. Macromolecular, 1984,17:2764- 2769.
5Grijpnma D W, Zondervan G J, Pennings A J. High molecular weight copolymers of L - lactide and ε - caprolactone as biodegradable elastomeric implant materials[ J ]. Polymer Bulletin, 1991,25 : 327 - 333.
6Ben M,Czapla B,Dobrzynski P. Copolymerization of glycolide and ε- caprolactone:2 randorn copolymerization in the presence of tin octoate[J]. Macromol Chem Phys, 1999,200:911 - 916.
7Wang S G, Qiu B. Polpcaprolactone - poly ( ethylene glycol ) block copolymer Ⅰ : Synthesis and degradability in vitro [J]. Poly Advanced Technologies, 1993,4 : 363 - 366.
8Holmes P A. Applications of PHB- a microbially produced biodegradable thermoplastic[J]. Phys Technol, 1985,16: 32 - 36.
9Miller N D, Williams D F. On the biodegradation of poly-β- hydroxybutyrate (PHB) homopolymer and poly- β - hydroxybutyrate -hydroxyvaleratee copolymers[J ]. Biomaterials, 1987,8:129 - 131.
10Cappello J. Genetic production of synthetic protein polymers[J]. MRS Bulletin, 1992,17:48 - 53.
3Dai T,Tegos GP,Burkatovskaya M,et al.Chitosan acetate bandage as a topical antimicrobial dressing for infected burns[J].Antimicrob Agents Chemother,2009,53(2):393-400.
4Gelse K,Aigner T.Collagens-structure,function and biosynthesis[J].Adv Drug Deliv Rev,2003,55(12):1531-1546.
5Burke JF,Yannas IV,Quinby WC,Successful use of a physiologically acceptable artificial skin in the treatment of extensive burn injury[J].Ann Surg,1981,194(4):413-428.
6Enoch S,Gery J E,Harding KG.ABC of wound healing:recent advances and emerging treatments[J].BMJ,2006,332(22):962-965.
7Gabay M.Absorbable hemostatic agents[J].Am J Health Syst Pharm,2006,63(13):1244-1253.
8Yamanaka S,Watanabe K,Kitamura N,et al.The structure and mechanical properties of sheets prepared from bacterial cellulose[J].J Mater Sci,1989,24:3141-3145.
9Czaja W,Krystynowicz A,Bielecki S,et al.Microbial cellulose-the natural power to heal wounds[J].Biomaterials,2006,27:145-151.
10Anderson AJ,Dawes EA.Occurrence,metabolism,metabolic role and industrial uses of bacterial polyhydroxyalkanoates[J].Microbiol Rev,1990,54(4):450-472.