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首页> 外文期刊>ASAIO journal >Natural Compounds for Skin Tissue Engineering by Electrospinning of Nylon-Beta Vulgaris
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Natural Compounds for Skin Tissue Engineering by Electrospinning of Nylon-Beta Vulgaris

机译:通过尼龙-βventgaris的静电纺织术治疗皮肤组织工程的天然化合物

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摘要

Natural compounds containing polysaccharide ingredients have been employed as candidates for treatment of skin tissue. Herein, for the first time, electrospinning setup was proposed to fabricate an efficient composite nanofibrous structure of Beta vulgaris (obtained from Beet [Chenopodiaceae or Amaranthaceae]) belonged to polysaccharides and an elastic polymer named nylon 66 for skin tissue engineering. Both prepared scaffolds including noncomposite and composite types were studied by Scanning electron microscope (SEM), Fourier transform infrared (FTIR) spectroscopy, mechanical assay, and contact angle. Scanning electron microscope examinations have approved the uniform and homogeneous structure of composite nanofibers containing nylon polymer and B. vulgaris extract. FTIR spectroscopy was endorsed the presence of B. vulgaris extract within the interwoven mat of nanofibers. Also, measurement of mechanical property with cell-laden composite scaffolds approved the desirable similarity between corresponding scaffold and native skin tissue. To our surprise, it was found that compared with nylon nanofibrous scaffold, composite sample containing B. vulgaris extract has lower contact angle indicating a higher hydrophilic surface. After cell seeding process of keratinocyte cells on composite and noncomposite scaffolds, SEM and 3[4,5-dimethylthiazoyl-2-yl]-2,5 diphenyltetrazolium bromide (MTT) assays approved higher number of attached cells onto the corresponding composite electrospun membrane. Epidermal gene expression such as involucrin, cytokeratin 10, and cytokeratin 14 was observed through real-time polymerase chain reaction (PCR) technique. Furthermore, immunocytochemistry results (cytokeratin 10 and loricrin) approved that the original property of keratinocytes was strongly preserved using composite scaffold. The corresponding study tries to introduce a new type of natural-based scaffolds for dermal tissue engineering that exhibits an elastic behavior similar to native skin tissue.
机译:含有多糖成分的天然化合物已被用作治疗皮肤组织的候选物。在此,提出了静电纺丝装置,以制造β寻常β的有效复合纳米纤维结构(从甜菜[Chenopodiaceae或Amaranthaceae])属于多糖和名为尼龙66的弹性聚合物,用于皮肤组织工程。通过扫描电子显微镜(SEM),傅里叶变换红外(FTIR)光谱,机械测定和接触角来研究包括非复合材料和复合材料的两种制备的支架。扫描电子显微镜检查已经批准了含尼龙聚合物和B.Vulgaris提取物的复合纳米纤维的均匀和均匀结构。 FTIR光谱学通过B.寻常型纳米纤维的交织垫内的B.语言提取物。而且,用细胞 - 载荷脂复合支架测量机械性质批准了相应支架和天然皮肤组织之间的理想相似性。令我们奇迹,发现与尼龙纳米纤维支架相比,含有B.寻常萃取物的复合样品具有较低的接触角,表示更高的亲水性表面。在复合材料和非复合支架上的角质形成细胞的细胞播种过程中,SEM和3 [4,5-二甲基噻唑-2-基] -2,5二苯基四唑溴(MTT)测定批准了更高数量的附着细胞在相应的复合电纺器膜上。通过实时聚合酶链式反应(PCR)技术观察到表皮基因表达,例如受调科,细胞角蛋白10和细胞角蛋白14。此外,免疫细胞化学结果(Cytokeratin 10和鲁兰林)批准使用复合支架强烈地保存了角质形成细胞的原始性质。相应的研究试图为真皮组织工程引入一种新型的天然基石,其具有类似于天然皮肤组织的弹性行为。

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