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向藻酸盐水凝胶中添加全氟碳化合物会显著影响分子传递和断裂应力。

Addition of perfluorocarbons to alginate hydrogels significantly impacts molecular transport and fracture stress.

机构信息

Department of Chemical Engineering, University of Massachusetts Amherst, 159 Goessmann Lab, 686 North Pleasant St. Amherst, Massachusetts 01003-9303, USA.

出版信息

J Biomed Mater Res A. 2013 Feb;101(2):438-46. doi: 10.1002/jbm.a.34344. Epub 2012 Aug 3.

Abstract

Perfluorocarbons (PFCs) are used in biomaterial formulations to increase oxygen (O(2) ) tension and create a homogeneous O(2) environment in three-dimensional tissue constructs. It is unclear how PFCs affect mechanical and transport properties of the scaffold, which are critical for robustness, intracellular signaling, protein transport, and overall device efficacy. In this study, we investigate composite alginate hydrogels containing a perfluorooctyl bromide (PFOB) emulsion stabilized with Pluronic(®) F68 (F68). We demonstrate that PFC addition significantly affects biomaterial properties and performance. Solution and hydrogel mechanical properties and transport of representative hydrophilic (riboflavin), hydrophobic (methyl and ethyl paraben), and protein (bovine serum albumin, BSA) solutes were compared in alginate/F68 composite hydrogels with or without PFOB. Our results indicate that mechanical properties of the alginate/F68/PFOB hydrogels are not significantly affected under small strains, but a significant decrease fracture stress is observed. The effective diffusivity D(eff) of hydrophobic small molecules decreases with PFOB emulsion addition, yet the D(eff) of hydrophilic small molecules remained unaffected. For BSA, the D(eff) increased and the loading capacity decreased with PFOB emulsion addition. Thus, a trade-off between the desired increased O(2) supply provided by PFCs and the mechanical weakening and change in transport of cellular signals must be carefully considered in the design of biomaterials containing PFCs.

摘要

全氟碳化合物 (PFCs) 被用于生物材料配方中,以增加氧气 (O(2) ) 张力并在三维组织构建物中创造均匀的 O(2) 环境。目前尚不清楚 PFCs 如何影响支架的机械和传输特性,这些特性对于稳健性、细胞内信号转导、蛋白质传输和整体设备功效至关重要。在这项研究中,我们研究了含有全氟辛基溴 (PFOB) 乳液的藻酸盐复合水凝胶,该乳液由 Pluronic(®) F68 (F68) 稳定。我们证明了 PFC 的添加显著影响生物材料的性质和性能。在含有或不含有 PFOB 的藻酸盐/F68 复合水凝胶中,比较了代表性亲水性(核黄素)、疏水性(甲基和乙基对羟基苯甲酸酯)和蛋白质(牛血清白蛋白,BSA)溶质在溶液和水凝胶中的机械性能和传输。我们的结果表明,藻酸盐/F68/PFOB 水凝胶在小应变下的机械性能没有显著影响,但观察到断裂应力显著降低。疏水分子的有效扩散系数 D(eff) 随着 PFOB 乳液的添加而降低,而亲水分子的 D(eff) 则保持不变。对于 BSA,随着 PFOB 乳液的添加,D(eff) 增加,载药量降低。因此,在设计含有 PFCs 的生物材料时,必须仔细考虑增加 O(2) 供应所带来的益处与机械弱化和细胞信号传输变化之间的权衡。

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