Degradation of P(3HB-co-4HB) Films in Simulated Body Fluids

Author:

Vodicka JurajORCID,Wikarska MonikaORCID,Trudicova MonikaORCID,Juglova Zuzana,Pospisilova AnetaORCID,Kalina MichalORCID,Slaninova Eva,Obruca StanislavORCID,Sedlacek PetrORCID

Abstract

A novel model of biodegradable PHA copolymer films preparation was applied to evaluate the biodegradability of various PHA copolymers and to discuss its biomedical applicability. In this study, we illustrate the potential biomaterial degradation rate affectability by manipulation of monomer composition via controlling the biosynthetic strategies. Within the experimental investigation, we have prepared two different copolymers of 3-hydroxybutyrate and 4-hydroxybutyrate—P(3HB-co-36 mol.% 4HB) and P(3HB-co-66 mol.% 4HB), by cultivating the thermophilic bacterial strain Aneurinibacillus sp. H1 and further investigated its degradability in simulated body fluids (SBFs). Both copolymers revealed faster weight reduction in synthetic gastric juice (SGJ) and artificial colonic fluid (ACF) than simple homopolymer P3HB. In addition, degradation mechanisms differed across tested polymers, according to SEM micrographs. While incubated in SGJ, samples were fragmented due to fast hydrolysis sourcing from substantially low pH, which suggest abiotic degradation as the major degradation mechanism. On the contrary, ACF incubation indicated obvious enzymatic hydrolysis. Further, no cytotoxicity of the waste fluids was observed on CaCO-2 cell line. Based on these results in combination with high production flexibility, we suggest P(3HB-co-4HB) copolymers produced by Aneurinibacillus sp. H1 as being very auspicious polymers for intestinal in vivo treatments.

Funder

Ministry of Education Youth and Sports

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Natural Renewable Polymers Part I: Polysaccharides;Reference Module in Chemistry, Molecular Sciences and Chemical Engineering;2024

2. Microbial PolyHydroxyAlkanoate (PHA) Biopolymers—Intrinsically Natural;Bioengineering;2023-07-19

3. Polyhydroxyalkanoate (PHA) Bio-polyesters – Circular Materials for Sustainable Development and Growth;Chemical and Biochemical Engineering Quarterly;2023-02-14

4. Biosynthesis of versatile PHA copolymers by thermophilic members of the genus Aneurinibacillus;International Journal of Biological Macromolecules;2023-01

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