Yusof Mohd Reusmaazran, Shamsudin Roslinda, Zakaria Sarani, Azmi Abdul Hamid Muhammad, Yalcinkaya Fatma, Abdullah Yusof, Yacob Norzita
Faculty of Sciences and Technology, National University of Malaysia, Bandar Baru Bangi, 43600 Selangor, Malaysia.
Institute for Nanomaterials, Advanced Technology and Innovation, Technical University of Liberec, Studentska 1402/2, 46117 Liberec, Czech Republic.
Polymers (Basel). 2020 Jul 17;12(7):1593. doi: 10.3390/polym12071593.
Nanofibrous materials produced by electrospinning processes have potential advantages in tissue engineering because of their biocompatibility, biodegradability, biomimetic architecture, and excellent mechanical properties. The aim of the current work is to study the influence of the electron beam on the poly L-lactide acid/ carboxy-methyl starch/β-tricalcium phosphate (PLLA/CMS/β-TCP) composite nanofibers for potential applications as bone-tissue scaffolds. The composite nanofibers were prepared by electrospinning in the combination of 5% / carboxy-methyl starch (CMS) and 0.25 wt% of β-TCP with the PLLA as a matrix component. The composites nanofibers were exposed under 5, 30, and 100 kGy of irradiation dose. The electron-beam irradiation showed no morphological damage to the fibers, and slight reduction in the water-contact angle and mechanical strength at the higher-irradiation doses. The chain scission was found to be a dominant effect; the higher doses of electron-beam irradiation thus increased the in vitro degradation rate of the composite nanofibers. The chemical interaction due to irradiation was indicated by the Fourier transform infrared (FTIR) spectrum and thermal behavior was investigated by a differential scanning calorimeter (DSC). The results showed that the electron-beam-induced poly L-lactide acid/carboxy-methyl starch/β-tricalcium phosphate (PLLA/CMS/β-TCP) composite nanofibers may have great potential for bone-tissue engineering.
通过静电纺丝工艺制备的纳米纤维材料因其生物相容性、生物降解性、仿生结构和优异的机械性能,在组织工程领域具有潜在优势。当前工作的目的是研究电子束对聚L-乳酸/羧甲基淀粉/β-磷酸三钙(PLLA/CMS/β-TCP)复合纳米纤维的影响,以探索其作为骨组织支架的潜在应用。复合纳米纤维通过静电纺丝制备,其中5%的羧甲基淀粉(CMS)和0.25 wt%的β-TCP与PLLA作为基质成分。复合纳米纤维分别接受5、30和100 kGy的辐照剂量。电子束辐照未对纤维造成形态损伤,但在较高辐照剂量下,水接触角和机械强度略有降低。发现链断裂是主要影响因素;因此,较高剂量的电子束辐照提高了复合纳米纤维的体外降解速率。通过傅里叶变换红外光谱(FTIR)表征辐照引起的化学相互作用,并使用差示扫描量热仪(DSC)研究热行为。结果表明,电子束诱导的聚L-乳酸/羧甲基淀粉/β-磷酸三钙(PLLA/CMS/β-TCP)复合纳米纤维在骨组织工程中可能具有巨大潜力。