Literature DB >> 24904930

Biocatalytic synthesis of δ-gluconolactone and ε-caprolactone copolymers.

Anamaria Todea1, Valentin Badea1, Lajos Nagy2, Sándor Kéki, Carmen G Boeriu3, Francisc Péter1.   

Abstract

The biodegradability and biocompatibility properties of ε-caprolactone homopolymers place it as a valuable raw material, particularly for controlled drug delivery and tissue engineering applications. However, the usefulness of such materials is limited by their low hydrophilicity and slow biodegradation rate. In order to improve polycaprolactone properties and functionalities, copolymerization of ε-caprolactone with δ-gluconolactone was investigated. Since enzymatic reactions involving sugars are usually hindered by the low solubility of these compounds in common organic solvents, finding the best reaction medium was a major objective of this research. The optimal copolymerization conditions were set up by using different organic media (solvent and solvents mixtures), as well as solvent free systems that are able to dissolve (completely or partially) sugars, and are nontoxic for enzymes. Native and immobilized lipases by different immobilization techniques from Candida antarctica B and Thermomyces lanuginosus have been used as biocatalyst at 80°C. Although the main copolymer amount was synthesized in DMSO:t-BuOH (20:80) medium, the highest polymerization degrees, up to 16 for the copolymer product, were achieved in solventless conditions. The products, cyclic and linear polyesters, have been characterized by FT-IR and MALDI-TOF MS analysis. The reaction product analysis revealed the formation of cyclic products that could be the major impediment of further increase of the chain length.

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Year:  2014        PMID: 24904930

Source DB:  PubMed          Journal:  Acta Biochim Pol        ISSN: 0001-527X            Impact factor:   2.149


  1 in total

1.  Biodegradable Oligoesters of ε-Caprolactone and 5-Hydroxymethyl-2-Furancarboxylic Acid Synthesized by Immobilized Lipases.

Authors:  Anamaria Todea; Ioan Bîtcan; Diana Aparaschivei; Iulia Păușescu; Valentin Badea; Francisc Péter; Vasile Daniel Gherman; Gerlinde Rusu; Lajos Nagy; Sándor Kéki
Journal:  Polymers (Basel)       Date:  2019-08-26       Impact factor: 4.329

  1 in total

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