Page 42 - Biodegradable Polyesters
P. 42
20 1 Biodegradable Polyesters: Synthesis, Properties, Applications
acid anhydrosulfites. J. Chem. Soc. B, 37. Gupta, B., Revagade, N., and Hilborn,
10, 976–980. J. (2007) Poly(lactic acid) fiber: an
25. Chujo, K., Kobayashi, H., Suzuki, J., and overview. Prog. Polym. Sci., 32 (4),
Tokuhara, S. (1967) Physical and chem- 455–482.
ical characteristics of polyglycolide. 38. Hiraishi A. Poly(Lactic Acid): Struc-
Makromol. Chem., 100, 267–270. tures, Production, Synthesis and
26. Frazza, E.J. and Schmitt, E.E. (1970) Applications, Wiley Series on Polymer
New absorbable suture. J. Biomed. Engineering and Technology, Auras
Mater. Res. Symp., 1, 43–58. R.,Lim L.T.,Selke S.E.M. andTsuji,
27. Schmitt, E.E. and Polistina, R.A. (1973) H. (eds.) Hoboken, NY, John Wiley &
inventors; (American Cyanamid Co., Sons, Inc., 2010:477–486.
USA), assignee. Surgical dressings of 39. Matuana, L.M. (2010) Poly(Lactic Acid):
absorbable polymers. US Patent 365656 Structures, Production, Synthesis and
3875937, 1975 19730531. Applications, ISBN: 978-0-470-29366-9
28. Schmitt, E.E. and Polistina, R.A. (1963) pp. 273–291.
inventors; (American Cyanamid Co.), 40. Mecking, S. (2004) Nature or petro-
assignee. Surgical sutures. US Patent chemistry? – biologically degradable
320543 3297033, 1967 19631031. materials. Angew. Chem. Int. Ed., 43
29. Chirgwin, LD, Jr, (1968) inventor (9), 1078–1085.
41. Mochizuki M. Poly(Lactic Acid):
(American Cyanamid Co.), assignee.
Structures, Production, Synthesis and
Heat treatment of poly(glycolic acid)
Applications, Wiley Series on Polymer
filaments for use as sutures. ZA Patent
6801144, 1968 19680222. Engineering and Technology, Auras
R.,Lim L.T.,Selke S.E.M. andTsuji,
30. Li, S. (2006) in Scaffolding in Tis-
H. (eds.) Hoboken, NY, John Wiley &
sue Engineering (eds P.X. Ma and J.
Sons, Inc., 2010:469–476.
Elisseeff), Taylor & Francis Group, Boca
42. Obuchi S, Ogawa S. Poly(Lactic Acid):
Raton, FL, pp. 335–352.
Structures, Production, Synthesis and
31. Tokiwa, Y. and Calabia, B.P. (2004)
Applications,Auras R.,Lim L.T.,Selke
Degradation of microbial polyesters.
S.E.M. and Tsuji, H. (eds.) Hoboken,
Biotechnol. Lett., 26 (15), 1181–1189. NJ, John Wiley & Sons, Inc., 2010:457-
32. Ikada, Y. and Tsuji, H. (2000) 467.
Biodegradable polyesters for medical
43. Suzuki S, Ikada Y. Poly(Lactic Acid):
and ecological applications. Macromol.
Structures, Production, Synthesis and
Rapid Commun., 21 (3), 117–132.
Applications, Wiley Series on Polymer
33. Sodergard, A. and Stolt, M. (2002)
Engineering and Technology, Auras
Properties of lactic acid based polymers R.,Lim L.T.,Selke S.E.M. andTsuji,
and their correlation with composition. H. (eds.) Hoboken, NY, John Wiley &
Prog. Polym. Sci., 27 (6), 1123–1163. Sons, Inc., 2010:445–456.
34. Holten, C.H., Mueller, A., and 44. Porjazoska, A., Kayaman-Apohan,
Rehbinder, D. (1971) Lactic Acid. N., Karal-Yilmaz, O., Cvetkovska, M.,
Properties and Chemistry of Lactic Baysal, K., and Baysal, B.M. (2002) Syn-
Acid and Derivatives, Verlag Chemie, thesis and characterization of glycolide,
Weinheim/Bergstr, p. xxviii, 566 p. L-lactide, and PDMS-based terpoly-
35. Kulkarni, R.K., Pani, K.C., Neuman, C., mers as a support for cell cultures.
and Leonard, F. (1966) Polylactic acid J. Biomater. Sci. Polym. Ed., 13 (10),
for surgical implants. Arch. Surg., 93 1119–1134.
(5), 839–843. 45. Stridsberg KM, Ryner M, Albertsson
36. Agrawal AK. Poly(Lactic Acid): Struc- AC. In: (ed. Albertsson AC) Degradable
tures, Production, Synthesis and Aliphatic Polyesters. Berlin: Springer-
Applications,Auras R.,Lim L.T.,Selke Verlag 2002:41-65.
S.E.M. and Tsuji, H. (eds.) Hobo- 46. Coudane, J., Ustariz-Peyret, C.,
ken, NY, John Wiley & Sons, Inc., Schwach, G., and Vert, M. (1997)
2010:477–486, 2010:323–341. More about the stereodependence of