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Assessment of the characteristics and biocompatibility of gelatin sponge scaffolds prepared by various crosslinking methods

机译:评估各种交联方法制备的明胶海绵支架的特性和生物相容性

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摘要

This comparative study aims to identify a biocompatible and effective crosslinker for preparing gelatin sponges. Glutaraldehyde (GTA), genipin (GP), 1-ethyl-3-(3-dimethyl aminopropyl)carbodiimide (EDC), and microbial transglutaminase (mTG) were used as crosslinking agents. The physical properties of the prepared samples were characterized, and material degradation was studied in vitro with various proteases and in vivo through subcutaneous implantation of the sponges in rats. Adipose-derived stromal stem cells (ADSCs) were cultured and inoculated onto the scaffolds to compare the cellular biocompatibility of the sponges. Cellular seeding efficiency and digestion time of the sponges were also evaluated. Cellular viability and proliferation in scaffolds were analyzed by fluorescence staining and MTT assay. All the samples exhibited high porosity, good swelling ratio, and hydrolysis properties; however, material strength, hydrolysis, and enzymolytic properties varied among the samples. GTA–sponge and GP–sponge possessed high compressive moduli, and EDC–sponge exhibited fast degradation performance. GTA and GP sponge implants exerted strong in vivo rejections, and the former showed poor cell growth. mTG–sponge exhibited the optimal comprehensive performance, with good porosity, compressive modulus, anti-degradation ability, and good biocompatibility. Hence, mTG–sponge can be used as a scaffold material for tissue engineering applications.
机译:这项比较研究旨在确定生物相容性和有效的交联剂,用于制备明胶海绵。戊二醛(GTA),京尼平(GP),1-乙基-3-(3-二甲基氨基丙基)碳二亚胺(EDC)和微生物转谷氨酰胺酶(mTG)被用作交联剂。表征了所制备样品的物理性质,并在体外通过各种蛋白酶研究了材料降解,并通过皮下植入大鼠海绵体内研究了材料降解。培养脂肪来源的基质干细胞(ADSC),并将其接种到支架上,以比较海绵的细胞生物相容性。还评估了海绵的细胞播种效率和消化时间。通过荧光染色和MTT分析来分析支架中的细胞活力和增殖。所有样品均显示出高孔隙率,良好的溶胀率和水解性能。但是,样品之间的材料强度,水解和酶解性质各不相同。 GTA海绵和GP海绵具有较高的压缩模量,而EDC海绵具有较快的降解性能。 GTA和GP海绵植入物在体内具有较强的排斥反应,前者显示出较差的细胞生长。 mTG-海绵具有最佳的综合性能,具有良好的孔隙率,压缩模量,抗降解能力和良好的生物相容性。因此,mTG海绵可用作组织工程应用的支架材料。

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