Martínez-Sanz Marta, Bilbao-Sainz Cristina, Du Wen-Xian, Chiou Bor-Sen, Williams Tina G, Wood Delilah F, Imam Syed H, Orts William J, Lopez-Rubio Amparo, Lagaron Jose M
J Nanosci Nanotechnol. 2015 Jan;15(1):616-27. doi: 10.1166/jnn.2015.9160.
The present study reports on the development of hybrid poly(lactic acid) (PLA) fibres loaded with highly crystalline bacterial cellulose nanowhiskers (BCNW) by the novel solution blow spinning method. Furthermore, fibres with antimicrobial properties were generated by incorporating carvacrol and THC as antimicrobial agents and the biocide effect against Listeria monocytogenes was studied. Initially, PLA blow spun fibres containing BCNW were optimized in terms of morphology and thermal properties. The addition of BCNW was seen to significantly increase the viscosity and surface tension of solutions, restricting the capacity to form fibres for concentrations greater than 30 wt.-% BCNW. 15 wt.-% BCNW was selected as the optimum nanofiller loading as it led to the most uniform fibres morphology, with BCNW homogeneously distributed along the fibres' axis. Subsequently, carvacrol and THC were incorporated into the fibres to confer them with antimicrobial properties, although the hydrophobic PLA matrix did not provide an efficient release of the antimicrobials. Thus, hydrophilic substances were added in order to trigger the antimicrobials release through water sorption mechanisms. The addition of the BCNW filler was not seen to significantly increase the antimicrobial capacity of the fibres by itself and, hence, gelatin was added to help promoting further the hydrophylicity and biocide performance of the fibres. Nevertheless, for the more hydrophilic THC, the biocide capacity of the fibres with gelatin was accentuated further by the presence of the BCNW.
本研究报道了通过新型溶液吹纺法制备负载高结晶度细菌纤维素纳米晶须(BCNW)的聚乳酸(PLA)复合纤维。此外,通过加入香芹酚和四氢大麻酚作为抗菌剂制备了具有抗菌性能的纤维,并研究了其对单核细胞增生李斯特菌的杀菌效果。首先,对含有BCNW的PLA吹纺纤维的形态和热性能进行了优化。结果表明,添加BCNW会显著增加溶液的粘度和表面张力,当BCNW浓度大于30 wt.-%时,会限制纤维的形成能力。选择15 wt.-%的BCNW作为最佳纳米填料负载量,因为它能使纤维形态最均匀,BCNW沿纤维轴均匀分布。随后,将香芹酚和四氢大麻酚加入纤维中赋予其抗菌性能,尽管疏水性的PLA基体不能有效释放抗菌剂。因此,添加了亲水性物质以通过吸水机制触发抗菌剂的释放。单独添加BCNW填料并未显著提高纤维的抗菌能力,因此添加了明胶以进一步提高纤维的亲水性和杀菌性能。然而,对于亲水性更强的四氢大麻酚,BCNW的存在进一步增强了含明胶纤维的杀菌能力。