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首页> 外文期刊>Journal of Applied Polymer Science >The effects of processing variables on electrospun poly(ethylene glycol) fibrous hydrogels formed from the thiol-norbornene click reaction
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The effects of processing variables on electrospun poly(ethylene glycol) fibrous hydrogels formed from the thiol-norbornene click reaction

机译:用硫醇 - 降冰片烯咔哒反应形成的电纺器聚(乙二醇)纤维水凝胶的处理变量的影响

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摘要

Electrospinning has been used to create scaffolds with tunable micro/nano architecture, stiffness, and porosity to mimic native extracellular matrix. This study investigated the effects of electrospinning parameters and hydrogel formulation (solvent and crosslinker type) on the architecture and properties of fibrous poly(ethylene glycol) (PEG) hydrogels formed from a photoclick thiol-norbornene reaction. Fibrous hydrogels were prepared using hydrogel precursors (four-arm PEG norbornene and multi-thiol crosslinker), sacrificial poly(ethylene oxide) (PEO, 400 kDa), and photoinitiator (I2959) in either 2,2-triflouroethanol (TFE) or water. Three thiol crosslinkers- 2,2 '-(ethylenedioxy)diethanethiol (EDT), pentaerythritol tetrakis(3mercaptopropionate) (PTMP), and PEG dithiol (PEGDT)- were investigated. Fibrous PEG networks with uniform fibers were produced at applied voltages of 10 or 12 kV for TFE and 16 kV for water. Fiber diameters of electrospun hydrogels were largely affected by the solvent when combined with PEO concentration and ranged from 0.5 to 3.5 mm in dry state. While the effect of crosslinker type on fiber diameter, morphology, and porosity of the fibrous hydrogel was minimal, it did modulate its shear modulus. To this end, this study provides the groundwork for selecting processing parameters to achieve desired properties of fibrous PEG thiol-norbornene hydrogels for intended tissue engineering applications ranging from neural, cardiovascular to musculoskeletal.
机译:静电纺丝技术已被用于制造具有可调微/纳米结构、刚度和孔隙率的支架,以模拟天然细胞外基质。本研究考察了静电纺丝参数和水凝胶配方(溶剂和交联剂类型)对光舔巯基降冰片烯反应形成的纤维状聚乙二醇(PEG)水凝胶的结构和性能的影响。在2,2-三氟乙醇(TFE)或水中使用水凝胶前体(四臂PEG降冰片烯和多硫醇交联剂)、牺牲聚环氧乙烷(PEO,400 kDa)和光引发剂(I2959)制备纤维水凝胶。研究了三种硫醇交联剂-2,2'-(亚乙基二氧基)二乙硫醇(EDT)、季戊四醇四(3-巯基丙酸酯)(PTMP)和聚乙二醇二硫醇(PEGDT)。在10或12 kV的TFE和16 kV的水外加电压下,产生了具有均匀纤维的纤维PEG网络。当与PEO浓度结合时,静电纺丝水凝胶的纤维直径在很大程度上受溶剂的影响,在干燥状态下的范围为0.5至3.5 mm。虽然交联剂类型对纤维水凝胶的纤维直径、形态和孔隙率的影响最小,但它确实调节了其剪切模量。为此,本研究为选择工艺参数提供了基础,以实现PEG-巯基降冰片烯纤维水凝胶的预期性能,用于神经、心血管和肌肉骨骼等组织工程应用。

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