Emerging applications of 3D engineered constructs from plant seed extracts.

Sedat Odabaş, Bora Garipcan, Rihab Ksouri
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Abstract

Seeds, by-products derived from various plants such as mango, quince, and apples, are considered waste, though they have emerging commercial potential, and have been used in biological, industrial, and physiological research. Seed-derived natural macromolecules- mainly polysaccharides, mucilage, gums, and cellulose-have physicochemical and structural diversification, giving the potential for forming gels, texturing, thickening, and providing interfacial adsorption. Seed-derived natural macromolecules have been widely used during the last few years in cell research and tissue engineering applications. Their widespread approachability and safety, high rate of biodegradability, biocompatibility, supporting cell proliferation, and extracellular matrix synthesis are the main properties making plant seed derivatives appropriate for use. The gel-forming ability of these derivatives gives them the capability of creating natural polymer-based scaffolds with the aptitude to resemble extracellular matrices (ECM). These ECM exhibit the high potential in scaffolds for tissue renewal. A deeper knowledge of the physicochemical characteristics of seed-derived mucilage and gum has been indicated as a key ingredient in several pharmaceutical preparations, but it has been remarkably utilized in nanomedicine for the last few years as a drug carrier for drug delivery, in gene therapy, and as scaffold components for tissue engineering purposes. Here, we afford up-to-date data about the different extracts from plant seeds-mainly mucilage and gum, we summarize the extraction techniques used to isolate these macromolecules, and we focus on their application in scaffold fabrication for tissue engineering purposes and regenerative medicine applications.

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从植物种子提取物中提取的3D工程结构的新兴应用。
种子是来自各种植物的副产品,如芒果、木瓜和苹果,虽然它们具有新兴的商业潜力,并已被用于生物、工业和生理学研究,但被认为是废物。种子衍生的天然大分子-主要是多糖,粘液,树胶和纤维素-具有物理化学和结构多样化,具有形成凝胶,变形,增稠和提供界面吸附的潜力。种子来源的天然大分子近年来在细胞研究和组织工程中得到了广泛的应用。植物种子衍生物具有广泛的可接近性和安全性、高生物降解率、生物相容性、支持细胞增殖和细胞外基质合成等特点。这些衍生物的凝胶形成能力使它们能够创建具有类似于细胞外基质(ECM)能力的天然聚合物基支架。这些ECM在组织更新的支架中表现出很高的潜力。对种子衍生黏液和树胶的理化特性的深入了解已被指出是几种药物制剂的关键成分,但在过去几年中,它已被显著地用于纳米医学,作为药物输送的药物载体,基因治疗和组织工程用途的支架组件。在此,我们提供了从植物种子中提取的不同物质的最新数据,主要是粘液和树胶,我们总结了分离这些大分子的提取技术,并重点介绍了它们在组织工程和再生医学中支架制造中的应用。
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