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Investigation of soy protein hydrogels for biomedical applications: Materials characterization, drug release, and biocompatibility

机译:生物医学应用大豆蛋白水凝胶的研究:材料表征,药物释放和生物相容性

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摘要

Soy protein is emerging as a novel material for biomedical applications due to its abundance in nature, ease of isolation and processing, and inherent properties for mediating cell adhesion and growth. In this study, mechanically robust soy protein hydrogels were fabricated with varying weight percentages in water (15, 18, and 20 wt.%) without the use of chemical modifiers or crosslinkers. This fabrication method is beneficial because it allows for the direct injection of these soy hydrogels in vivo. The material properties, drug releasing capability, and biocompatibility in vitro and in vivo were assessed. The different concentrations of soy protein varied the rheological, swelling, and mechanical properties and affected the release of the model drug fluorescein from the hydrogels in vitro. Higher weight percent of soy increased the robustness of the hydrogels and released a lower amount of fluorescein over one week. Viability and growth of seeded L929 mouse fibroblasts demonstrated that the hydrogels were biocompatible in vitro for one week. Soy hydrogels were injectable in vivo into the subcutaneous pocket of mice, and histological staining showed minimal fibrous capsule formation for up to 20 days. The ease of fabrication and tailorable properties of soy hydrogels render it a promising biomaterial for tissue engineering and drug delivery applications, particularly for wound healing.
机译:由于其在性质中的丰富性,易于分离和加工,以及用于介导细胞粘附和生长的固有性质,因此为生物医学应用的新材料被涌现为生物医学应用的新材料。在该研究中,在不使用化学改性剂或交联剂的情况下,在水(15,18和20重量%)中,在水(15,18和20重量%)中,制造机械鲁棒大豆蛋白水凝胶。这种制造方法是有益的,因为它允许在体内直接注射这些大豆水凝胶。评估材料特性,药物释放能力和体内体内的生物相容性。不同浓度的大豆蛋白质变化了流变,肿胀和机械性能,并影响了在体外从水凝胶的模型药物荧光素的释放。较高的大豆重量百分比增加了水凝胶的稳健性,并在一周内释放了较低量的荧光素。种子L929小鼠成纤维细胞的活力和生长证明了水凝胶在体外生物相容性一周。将大豆水凝胶在体内注射到小鼠的皮下袋中,组织学染色显示最小纤维胶囊形成,最多20天。大豆水凝胶的制造和可定制性质的易于制造和可定制的性质使其成为组织工程和药物递送应用的有希望的生物材料,特别是对于伤口愈合。

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