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Use of ozone for the preparation of functional silk fibroin-based biomaterial loaded with bioactive compounds for biomedical applications

机译:臭氧用于制备含有丝绸纤维素的生物材料,用于生物医学应用的生物活性化合物

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Silk fibroin (SF) can be used for the preparation of porous functional biomaterials due to its biocompatibility, biodegradability, and minimal inFLammatory reactions. High porosity and homogenous interconnected pore structure is a challenge for the preparation of porous biomaterials. Porous SF foam materials can be formed by bubbling inert gases through aqueous solutions and subsequent freeze drying process. In this study, SF foam structures were prepared by first purging ozone gas and then freeze drying of this ozone-treated aqueous SF solution. Resulting porous materials were efficiently loaded with plant extract for the preparation of functional biomaterials having antimicrobial properties. The interactions of SF with ozone led to chemical modifications that improved both foaming and hydrophobic properties. Intensive ozone treatment caused the crystallinity degree of untreated SF to decrease from 48% to 42%. Ozone treatment also resulted in a significant reduction in surface tyrosine content from 55% to 43%. The use of ozone gas for the preparation of SF foam material enhanced the adsorption capacity of phenolic compounds. The enhancement in the adsorption of phenolic compounds on SF foam structure can be attributed to the oxidation-dependent increase in hydrophobicity.
机译:由于其生物相容性,生物降解性和最小的炎症反应,丝素蛋白(SF)可用于制备多孔官能化生物材料。高孔隙度和均匀的相互连接的孔结构是制备多孔生物材料的挑战。可以通过将惰性气体通过水溶液和随后的冷冻干燥过程鼓泡惰性气体来形成多孔的SF泡沫材料。在该研究中,通过第一吹扫臭氧气体制备SF泡沫结构,然后冷冻干燥该臭氧处理的SF溶液。用植物提取物有效地装载所产生的多孔材料,用于制备具有抗微生物性质的功能生物材料。 SF与臭氧的相互作用导致化学修饰,改善了发泡和疏水性质。密集臭氧处理导致未处理的SF的结晶度从48%降至42%。臭氧处理也导致表面酪氨酸含量显着降低55%至43%。使用臭氧气体用于制备SF泡沫材料,增强了酚类化合物的吸附能力。在SF泡沫结构上吸附酚类化合物的增强可归因于疏水性依赖性增加。

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