Preparation and Characterization of Bovine Small Intestine Submucosa (SIS) ‎Hydrogel

Saddam K Hummadi, Nadia HR Al-Falahi
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Abstract

The aim of this study was to prepare and characterize a small intestine submucosa (SIS) hydrogel as ‎a bio-scaffold. In this study, SIS from five calves, aged 8-12 months and weighing 250-300 kg, was ‎obtained from a slaughterhouse immediately after slaughtering. The SIS was then decellularized, ‎powdered, and subsequently transformed into a hydrogel. This transformation was achieved by ‎dissolving the decellularized SIS powder in phosphate-buffered saline (PBS) at a concentration of ‎‎50% w/v, and allowing it to form a hydrogel over a 12-hour period at 37 °C. Characterization of the ‎SIS hydrogel was conducted using various techniques. Fourier Transform Infrared Spectroscopy ‎‎(FTIR) was employed to identify the chemical structure of the hydrogel, revealing three primary peaks ‎at 1639 cm-1, 1571 cm-1, and 1338 cm-1, corresponding to amide I, II, and III bands, respectively. ‎Additionally, a broad signal at 3440 cm-1 was observed, indicative of the hydroxyproline side chain. ‎The hydrogel's swelling capacity was evaluated, showing an expansion of 437% after a 12-hour ‎immersion in PBS at a pH of 7.4. Scanning Electron Microscopy (SEM) analysis of the lyophilized ‎hydrogel revealed a highly porous and interconnected architecture, resembling a honeycomb ‎structure. Moreover, the hydrogel's antibacterial efficacy was assessed against Staphylococcus ‎aureus using an agar diffusion test, which demonstrated a zone of inhibition measuring 16.11 mm. ‎The combined chemical, morphological, and antibacterial properties of the SIS hydrogel developed ‎in this study suggest its potential as a promising bio-scaffold for inducing tissue regeneration and ‎restoring tissue function‎.
牛小肠粘膜下(SIS)水凝胶的制备与表征
本研究的目的是制备小肠粘膜下(SIS)水凝胶作为生物支架,并确定其特性。在这项研究中,从屠宰场获得了五头小牛的小肠粘膜,这些小牛年龄在 8-12 个月,体重在 250-300 公斤之间。然后对 SIS 进行脱细胞、粉末化,随后将其转化为水凝胶。这种转化是通过将脱细胞的 SIS 粉末溶解在浓度为 50% w/v 的磷酸盐缓冲盐水(PBS)中,然后在 37 °C下放置 12 小时使其形成水凝胶来实现的。SIS 水凝胶的表征采用了多种技术。傅立叶变换红外光谱(FTIR)用于确定水凝胶的化学结构,在 1639 cm-1、1571 cm-1 和 1338 cm-1 处发现了三个主峰,分别对应于酰胺 I、II 和 III 带。此外,在 3440 cm-1 处还观察到一个宽信号,表明存在羟脯氨酸侧链。在 pH 值为 7.4 的 PBS 中浸泡 12 小时后,水凝胶的膨胀能力达到了 437%。对冻干水凝胶的扫描电子显微镜(SEM)分析表明,它具有高度多孔和相互连接的结构,类似于蜂巢结构。此外,还使用琼脂扩散试验评估了水凝胶对金黄色葡萄球菌的抗菌效果,结果显示抑制区为 16.11 毫米。本研究中开发的 SIS 水凝胶具有化学、形态和抗菌等综合特性,表明它有望成为一种诱导组织再生和恢复组织功能的生物支架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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