CIEPQPF, Chemical Engineering Department, FCTUC, University of Coimbra, Rua Sílvio Lima, Pólo II - Pinhal de Marrocos, 3030-790 Coimbra, Portugal.
Acta Biomater. 2012 Mar;8(3):1366-79. doi: 10.1016/j.actbio.2011.10.034. Epub 2011 Nov 4.
This work reports and discusses the influence of four phosphonium-based ionic liquids (PhILs), namely trihexyl(tetradecyl) phosphonium dicyanamide, [P(6,6,6,14)][dca]; trihexyl(tetradecyl) phosphonium bis(trifluoromethylsulfonyl)imide, [P(6,6,6,14)][Tf(2)N]; tetrabutyl phosphonium bromide, [P(4,4,4,4)][Br]; and tetrabutyl phosphonium chloride, [P(4,4,4,4)][Cl], on some of the chemical, physical and biological properties of a biomedical-grade suspension of poly(vinyl chloride) (PVC). The main goal of this work was to evaluate the capacity of these PhILs to modify some of the properties of neat PVC, in particular those that may allow their use as potential alternatives to traditional phthalate-based plasticizers in PVC biomedical applications. PVC films having different PhIL compositions (0, 5, 10 and 20 wt.%) were prepared (by solvent film casting) and characterised by Fourier transform infrared, thermogravimetric analysis, differential scanning calorimetry, dynamical mechanical thermal analysis, scanning electron microscopy/energy-dispersive X-ray/electron probe microanalysis, X-ray diffraction, transmittance, permeability towards oxygen and carbon dioxide, thermal degradation, contact angle measurement, water and vapour uptake, leachability and biocompatibility (haemolytic potential, thrombogenicity and cytotoxicity). A conventional organic plasticizer (di-isononyl phthalate) was used for comparison purposes. The results obtained showed that it was possible to change the neat PVC hydrophobicity, and consequently its water uptake capacity and plasticizer leachability, just by changing the PhIL employed and its composition. It was also possible to significantly change the thermal and mechanical properties of PVC films by choosing appropriate PhIL cation/anion combinations. However, a specific PhIL may not always be capable of simultaneously keeping and/or improving both physical properties. In addition, ionic halide salts were found to promote PVC dehydrochlorination. Finally, none of the prepared materials presented toxicity against Caco-2 cells, though pure [P(6,6,6,14)][dca] decreased HepG2 cells viability. Moreover, PVC films with [P(6,6,6,14)][dca] and [P(4,4,4,4)][Cl] were found to be haemolytic and thus these PhILs must be avoided as PVC modifiers if biomedical applications are envisaged. In conclusion, from all the PhILs tested, [P(6,6,6,14)][Tf(2)N] showed the most promising results regarding blood compatibility, leaching and permeability to gases of PVC films. The results presented are a strong indicator that adequate PhILs may be successfully employed as PVC multi-functional plasticizers for a wide range of potential applications, including those in the biomedical field.
本文报告并讨论了四种磷鎓基离子液体(PhILs),即三己基(十四烷基)磷双氰胺盐 [P(6,6,6,14)][dca];三己基(十四烷基)双(三氟甲基磺酰基)亚胺盐 [P(6,6,6,14)][Tf(2)N];四丁基溴化磷 [P(4,4,4,4)][Br] 和四丁基氯化磷 [P(4,4,4,4)][Cl] 对医用级聚氯乙烯(PVC)悬浮液某些化学、物理和生物学性质的影响。本工作的主要目的是评估这些 PhILs 改变纯 PVC 某些性质的能力,特别是那些可能允许它们在 PVC 生物医学应用中作为传统邻苯二甲酸酯类增塑剂的潜在替代品的性质。通过溶剂涂膜法制备了具有不同 PhIL 组成(0、5、10 和 20wt%)的 PVC 薄膜,并通过傅里叶变换红外光谱、热重分析、差示扫描量热法、动态力学热分析、扫描电子显微镜/能量色散 X 射线/电子探针微分析、X 射线衍射、透光率、对氧气和二氧化碳的渗透性、热降解、接触角测量、水和水蒸气吸收、浸出和生物相容性(溶血潜力、血栓形成和细胞毒性)进行了表征。使用传统的有机增塑剂(邻苯二甲酸二异壬酯)进行了比较。结果表明,仅通过改变所使用的 PhIL 及其组成,就可以改变纯 PVC 的疏水性,从而改变其吸水性和增塑剂浸出率。通过选择合适的 PhIL 阳离子/阴离子组合,也可以显著改变 PVC 薄膜的热和机械性能。然而,特定的 PhIL 可能并不总是能够同时保持和/或改善物理性能。此外,离子卤化物盐被发现促进了 PVC 的脱氯化氢。最后,尽管纯 [P(6,6,6,14)][dca] 降低了 HepG2 细胞的活力,但所制备的材料均未表现出对 Caco-2 细胞的毒性。此外,发现含有 [P(6,6,6,14)][dca] 和 [P(4,4,4,4)][Cl] 的 PVC 薄膜具有溶血作用,因此如果考虑到生物医学应用,则必须避免将这些 PhIL 用作 PVC 改性剂。总之,在所测试的所有 PhILs 中,[P(6,6,6,14)][Tf(2)N] 显示出对 PVC 薄膜血液相容性、浸出和气体渗透性最有前途的结果。所呈现的结果强烈表明,适当的 PhILs 可成功用作 PVC 的多功能增塑剂,适用于广泛的潜在应用,包括生物医学领域。
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