## Abstract Directly starting from L‐lactic acid (LA) and L‐aspartic acid (Asp), biodegradable material poly(lactic acid‐__co__‐aspartic acid) [P(LA‐__co__‐Asp)] was synthesized via melt polycondensation. The synthetic conditions, including type and dosage of catalyst, temperature, and time of copo
Synthesis and characterization of amphiphilic biodegradable poly(glutamic acid-co-lactic acid-co-glycolic acid) by direct polycondensation
✍ Scribed by Dedai Lu; Zongli Ren; Tianhong Zhou; Shoufeng Wang; Ziqiang Lei
- Publisher
- John Wiley and Sons
- Year
- 2007
- Tongue
- English
- Weight
- 114 KB
- Volume
- 107
- Category
- Article
- ISSN
- 0021-8995
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✦ Synopsis
Abstract
Poly(glutamic acid‐co‐lactic acid‐co‐glycolic acid) (PGLG), an amphiphilic biodegradable copolymer, was synthesized by simply heating a mixture of L‐glutamic acid (Glu), DL‐lactic acid, and glycolic acid with the present of stannous chloride. The unique branched architecture comprising of glutarimide unit, polyester unit, and polyamide unit was confirmed by NMR spectrum. The PGLG was soluble in many organic solvents and aqueous solution of sodium hydroxide (pH ≥ 9.0). The thermal properties were evaluated using thermogravimetric analysis and differential scanning calorimetry. Molecular weights were determined by ^1^H NMR end‐group analysis and GPC, respectively, and the results indicated that the higher Glu content resulted in a decrease of the molecular weight. © 2007 Wiley Periodicals, Inc. J Appl Polym Sci, 2008
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## Abstract The optimal synthetic conditions of poly(lactic acid‐__co__‐glycolic acid) (PLGA) via melt copolycondensation directly from L‐lactic acid (L‐LA) and glycolic acid (GA) with a feed molar ratio of 50/50 are discussed; the important drug‐delivery carrier PLGA50/50 is used as a special exam
4).
The melt polycondensation reaction of the prepolymer prepared from N-(benzyloxycarbonyl)-L-aspartic acid anhydride (N-CBz-L-aspartic acid anhydride) and low molecular weight poly(ethylene glycol) (PEG) using titanium isopropoxide (TIP) as a catalyst produced the new biodegradable poly(L-aspartic aci