BIODEGRADATION OF NOVEL OPTICALLY-ACTIVE POLYESTERS SYNTHESIZED BY COPOLYMERIZATION OF (R)-MOHEL WITH LACTONES
Citation
H. Shirahama et al., BIODEGRADATION OF NOVEL OPTICALLY-ACTIVE POLYESTERS SYNTHESIZED BY COPOLYMERIZATION OF (R)-MOHEL WITH LACTONES, Macromolecules, 29(14), 1996, pp. 4821-4828
Categorie Soggetti
Polymer Sciences
SICI code
0024-9297(1996)29:14<4821:BONOPS>2.0.ZU;2-X
Abstract
Biodegradations of random copolymers of (R)-3-methyl-4-oxa-6-hexanolid
e [(R)-MOHEL] with various lactones such as epsilon-caprolactone (24/7
6 ratio), delta-valerolactone (22/78), and beta-propiolactone (31/69)
were examined with normal or acclimated activated sludge. As a consequ
ence, the biodegradability was found to increase in the order poly[(R)
-MOHEL-ran-epsilon-caprolaetone] > poly[(R)-MOHEL-ran-delta-valerolact
one] > poly[(R)-MOKEL-ran-beta-propiolactone]. The mode of biodegradat
ion of (R)-MOHEL/lactone copolymers with enzymes (cholesterol esterase
etc.) resembles that of biodegradation with activated sludge. All the
copolymers degraded better than the homopoly[(R)-MOHEL] or homopoly(l
actone)s. In contrast, these latter polymers are inert to hydrolytic d
egradation by basic or acidic buffer solution. The major biodegradatio
n product of poly[(R)-MOHEL-ran-epsilon-caprolaetone] (15/85) by enzym
es is 6-hydroxycaproic acid as revealed by NMR spectroscopy and mass s
pectrometry, while the biodegradation product from poly[(R)-MOHEL-ran-
delta-valerolactone] (18/82) is a linear delta-valeric acid dimer.