Potential use of extracted flax seed mucilage in the construction of macroporous cryo-scaffolds.

Didem Demir
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Abstract

Mucilage is a natural source of polysaccharides that has recently attracted attention for use in biomaterial production. It attracts attention with its easy and fast extraction, biocompatibility, high water retention capacity, and biodegradability. Although there are studies on the characterization of mucilage obtained from different plant sources, the interaction of this polymer with other polymers and its potential to form new biomaterials have not yet been sufficiently investigated. Based on this, in this study, the potential of mucilage extracted from flaxseed for the production of cryogels for tissue engineering applications was demonstrated. Firstly, yield, basic physicochemical properties, morphology, and surface charge-dependent isoelectric point determination studies were carried out for the characterization of the extracted mucilage. The successful preparation of mucilage was evaluated for the construction of cryo-scaffolds and 3D, spongy, and porous structures were obtained in the presence of chitosan and polyvinyl alcohol polymers. A heterogeneous morphology with interconnected macro and micro porosity in the range of approximately 85-115 m pore diameter was exhibited. Due to the high hydrophilic structure of the mucilage, which is attached to the structure with weak hydrogen bonds, the contact angle values of the scaffolds were obtained below 80° and they showed the ability to absorb 1000 times their dry weight in approximately 30 min. As a preliminary optimization study for the evaluation of mucilage in cryogel formation, this work introduced a new construct to be developed as wound dressing scaffold for deep and chronic wounds.

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提取的亚麻籽粘液在构建大孔冷冻支架中的潜在用途。
粘液质是一种天然多糖来源,最近在生物材料生产中的应用引起了人们的关注。粘液质因其提取方便快捷、生物相容性好、保水能力强和可生物降解而备受关注。虽然有研究对从不同植物中提取的粘液进行了表征,但这种聚合物与其他聚合物的相互作用及其形成新生物材料的潜力尚未得到充分研究。基于此,本研究证明了从亚麻籽中提取的粘液用于生产组织工程应用的低温凝胶的潜力。首先,对提取的粘液进行了产率、基本理化性质、形态和表面电荷依赖性等电点测定研究。在壳聚糖和聚乙烯醇聚合物的作用下,成功制备出了三维、海绵状和多孔结构的低温支架。在孔隙直径约为 85-115 m 的范围内,呈现出大孔和微孔相互连接的异质形态。由于粘液具有高亲水性结构,并以弱氢键附着在结构上,因此支架的接触角值低于 80°,并能在约 30 分钟内吸收其干重的 1000 倍。作为对低温凝胶形成中的粘液进行评估的初步优化研究,这项工作引入了一种新的结构,可用作深层和慢性伤口的伤口敷料支架。
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