Poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (P(3HB-co-3HV))/Bacterial Cellulose (BC) Biocomposites for Potential Use in Biomedical Applications

被引:6
|
作者
Rapa, Maria [1 ]
Stefan, Laura Mihaela [2 ]
Seciu-Grama, Ana-Maria [2 ]
Gaspar-Pintiliescu, Alexandra [2 ]
Matei, Ecaterina [1 ]
Zaharia, Catalin [3 ]
Stanescu, Paul Octavian [3 ]
Predescu, Cristian [1 ]
机构
[1] Univ Politehn Bucuresti, Fac Mat Sci & Engn, 313 Splaiul Independentei, Bucharest 060042, Romania
[2] Natl Inst Res & Dev Biol Sci, 296 Splaiul Independentei, Bucharest 060031, Romania
[3] Univ Politehn Bucuresti, Fac Chem Engn & Biotechnol, Adv Polymer Mat Grp, 1-7 Gh Polizu St, Bucharest 011061, Romania
关键词
poly(hydroxybutyrate-co-valerate); bacterial cellulose; melt processing; biocomposite; crystallinity; in vitro cytocompatibility; BACTERIAL CELLULOSE; COMPOSITE; POLYHYDROXYALKANOATES; SCAFFOLD; PHBV; POLYHYDROXYBUTYRATE; BIOCOMPATIBILITY; NANOPARTICLES; DEGRADATION; COLLAGEN;
D O I
10.3390/polym14245544
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
The aim of this study was to obtain biocomposites consisting of poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV), bacterial cellulose (BC) and alpha-tocopherol by a melt processing technique for potential use in biomedical applications. The melt processing and roughness of biocomposites were evaluated and compared to sample without BC. The degradation rate of PHBV/BC biocomposites was measured in phosphate buffer saline (PBS) by determining the mass variation and evidencing of thermal and structural changes by differential scanning calorimetry (DSC) and attenuated total reflectance-Fourier transformed infrared spectrometry (ATR-FTIR). The cell viability, cell morphology, cell cycle distribution and total collagen content were investigated on murine NCTC fibroblasts. Overall, the adding of BC to polyester matrix led to an adequate melt processing of biocomposites and increased surface roughness and cytocompatibility, allowing the cells to secrete the extracellular matrix (collagen) and stimulate cell proliferation. Results showed that the PHBV/BC biocomposites were favorable for long-term degradation and could be used for the design of medical devices with controlled degradability.
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页数:19
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