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首页> 外文期刊>Journal of biomaterials science >Regenerated silk fibroin nanofibrous matrices treated with 75% ethanol vapor for tissue-engineering applications
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Regenerated silk fibroin nanofibrous matrices treated with 75% ethanol vapor for tissue-engineering applications

机译:经75%乙醇蒸气处理的再生丝素蛋白纳米纤维基质,用于组织工程应用

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As an excellent biocompatible and biodegradable protein polymer, silk fibroin (SF) has found wide applications, particularly serving as therapeutic agent for tissue-engineering applications, on which both post-spin treatment and sterilization processing are crucial to drug-loaded matrices. To find a safe, effective and appropriate post-spin treatment and sterilization approach for drug-loaded biomaterial matrices is one of the major problems in the field of tissue engineering at present. In this work, a simple, safe and effective approach skillfully integrating post-spin treatment with sterilization processing was developed to drug-loaded SF nanofibrous matrices. Electrospun SF nanofibrous matrices from its aqueous solution were post-treated with 75% ethanol vapor. ~(13)C-NMR and WAXD analysis demonstrated that such post-spin treatment rendered the structure of SF nanofibrous matrices transform from the silk I form to the silk II form. Furthermore, biological assays suggested that as-treated SF nanofibrous matrices significantly promoted the development of murine connective tissue fibroblasts. Skillfully integrated with novel sterilization processing, 75% ethanol vapor treatment could be a potential approach to designing and fabricating diverse drug-loaded SF nanofibrous matrices serving as therapeutic agents for tissue-engineering applications in that it can effectively protect the drug from losing compared with traditional post-spin treatment and sterilization processing.
机译:作为一种出色的生物相容性和可生物降解的蛋白质聚合物,丝素蛋白(SF)已发现了广泛的应用,特别是用作组织工程应用的治疗剂,在其上旋转后处理和灭菌处理对于载药基质都是至关重要的。对于载有药物的生物材料基质,找到一种安全,有效和适当的旋转后处理和灭菌方法是目前组织工程领域的主要问题之一。在这项工作中,开发了一种简单,安全,有效的方法,巧妙地将纺丝后处理与灭菌处理相结合,用于载药的SF纳米纤维基质。将其水溶液中的静电纺丝SF纳米纤维基质用75%的乙醇蒸气进行后处理。 〜(13)C-NMR和WAXD分析表明,这种自旋后处理使得SF纳米纤维基质的结构从丝I形式转变为丝II形式。此外,生物学测定表明,经处理的SF纳米纤维基质显着促进了小鼠结缔组织成纤维细胞的发育。巧妙地与新型灭菌工艺相结合,75%乙醇蒸气处理可能是设计和制造用作组织工程应用治疗剂的多种载有药物的SF纳米纤维基质的潜在方法,因为与传统技术相比,它可以有效地保护药物免受损失旋转后处理和灭菌处理。

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