2005Unpublished venueRequires access

DEGRADITION OF POLY (D,L-LACTIDE-CO-GLYCOLIDE) 50:50 IMPLANT IN AQUEOUS MEDIUM

T. Darestani Farahani, Mojtaba Abtahi, Ali Akbar Entezami, Hamid Mobedi

Open publisher page 25 citations

Abstract

rently investigated for making controlled drug delivery devices. In spite of the large number of investigations dealing with LA/GA polymers which have been reported in the literature, only little is known about the degradation mechanism of these polyesters in solid state. In this study poly(L,D-lactide-co-glycolide) 50:50 (PLGA) was hydrolyzed at 37C for periods up to 56 days. PLGA discs were prepared in 60C and the results of their in vitro biodegradation behaviour are reported. We observed that hydrolysis of PLGA proceeds in 7 stages: surface hydrolysis, outer layers hydrolysis, outer layers water soluble oligomers formation, exiting water soluble oligomers, bulk hydrolysis and exiting degradation products, bulk catalyzed hydrolysis, and at the last step fragile porous structure formation. The remained porous structure is crystallized and shows more resistance to further degradation. Degradation of Poly(D,L-lactide-co-glycolide) 50:50 Implant in Aqueous Medium

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rently investigated for making controlled drug delivery devices. In spite of the large number of investigations dealing with LA/GA polymers which have been reported in the literature, only little is known about the degradation mechanism of these polyesters in solid state. In this study poly(L,D-lactide-co-glycolide) 50:50 (PLGA) was hydrolyzed at 37C for periods up to 56 days. PLGA discs were prepared in 60C and the results of their in vitro biodegradation behaviour are reported. We observed that hydrolysis of PLGA proceeds in 7 stages: surface hydrolysis, outer layers hydrolysis, outer layers water soluble oligomers formation, exiting water soluble oligomers, bulk hydrolysis and exiting degradation products, bulk catalyzed hydrolysis, and at the last step fragile porous structure formation. The remained porous structure is crystallized and shows more resistance to further degradation. Degradation of Poly(D,L-lactide-co-glycolide) 50:50 Implant in Aqueous Medium

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Available abstract

rently investigated for making controlled drug delivery devices. In spite of the large number of investigations dealing with LA/GA polymers which have been reported in the literature, only little is known about the degradation mechanism of these polyesters in solid state. In this study poly(L,D-lactide-co-glycolide) 50:50 (PLGA) was hydrolyzed at 37C for periods up to 56 days. PLGA discs were prepared in 60C and the results of their in vitro biodegradation behaviour are reported. We observed that hydrolysis of PLGA proceeds in 7 stages: surface hydrolysis, outer layers hydrolysis, outer layers water soluble oligomers formation, exiting water soluble oligomers, bulk hydrolysis and exiting degradation products, bulk catalyzed hydrolysis, and at the last step fragile porous structure formation. The remained porous structure is crystallized and shows more resistance to further degradation. Degradation of Poly(D,L-lactide-co-glycolide) 50:50 Implant in Aqueous Medium

Key concepts: Hydrolysis, Hydrolytic degradation, PLGA, Lactide, Biodegradation, Degradation (telecommunications), Polyester, Polymer

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