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首页> 外文期刊>Molecules >Phase Behaviour and Miscibility Studies of Collagen/Silk Fibroin Macromolecular System in Dilute Solutions and Solid State
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Phase Behaviour and Miscibility Studies of Collagen/Silk Fibroin Macromolecular System in Dilute Solutions and Solid State

机译:胶原/丝素蛋白大分子系统在稀溶液和固态中的相行为及混溶性研究

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Miscibility is an important issue in biopolymer blends for analysis of the behavior of polymer pairs through the detection of phase separation and improvement of the mechanical and physical properties of the blend. This study presents the formulation of a stable and one-phase mixture of collagen and regenerated silk fibroin (RSF), with the highest miscibility ratio between these two macromolecules, through inducing electrostatic interactions, using salt ions. For this aim, a ternary phase diagram was experimentally built for the mixtures, based on observations of phase behavior of blend solutions with various ratios. The miscibility behavior of the blend solutions in the miscible zones of the phase diagram was confirmed quantitatively by viscosimetric measurements. Assessing the effects of biopolymer mixing ratio and salt ions, before and after dialysis of blend solutions, revealed the importance of ion-specific interactions in the formation of coacervate-based materials containing collagen and RSF blends that can be used in pharmaceutical, drug delivery, and biomedical applications. Moreover, the conformational change of silk fibroin from random coil to beta sheet, in solution and in the final solid films, was detected by circular dichroism (CD) and Fourier transform infrared spectroscopy (FTIR), respectively. Scanning electron microscopy (SEM) exhibited alterations of surface morphology for the biocomposite films with different ratios. Surface contact angle measurement illustrated different hydrophobic properties for the blended film surfaces. Differential scanning calorimetry (DSC) showed that the formation of the beta sheet structure of silk fibroin enhances the thermal stability of the final blend films. Therefore, the novel method presented in this study resulted in the formation of biocomposite films whose physico-chemical properties can be tuned by silk fibroin conformational changes by applying different component mixing ratios.
机译:混溶性是生物聚合物共混物中的一个重要问题,用于通过检测分离和改善混合物的机械和物理性质的分离和改善来分析聚合物对的行为。该研究表明,通过使用盐离子诱导静电相互作用,在胶原和再生丝素蛋白(RSF)的稳定和单相混合物的制剂具有最高的混溶性,通过诱导静电相互作用。为此目的,基于具有各种比率的共混溶液的相位行为的观察,实验地构建了三元相图。通过粘度测量定量地,通过粘度测量定量地确认了相图的混溶区域中混合溶液的混溶性行为。评估生物聚合物混合比和盐离子的影响,在混合溶液的透析之前和透析的透析之前和之后,揭示了在含有胶原蛋白和RSF共混物的凝聚层的基础材料中形成的离子特异性相互作用的重要性,其可用于药物,药物递送,和生物医学应用。此外,通过圆形二中中(CD)和傅里叶变换红外光谱(FTIR)检测来自随机线圈至β片的丝素蛋白从随机线圈到β板的构象变化。扫描电子显微镜(SEM)表现出具有不同比例的生物复合膜的表面形态的改变。表面接触角测量显示混合膜表面的不同疏水性质。差分扫描量热法(DSC)表明,丝素蛋白的β板结构的形成增强了最终共混膜的热稳定性。因此,本研究中提出的新方法导致形成生物复合膜,其通过施加不同的组分混合比来通过丝素蛋白构象变化来调节物理化学性质。

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