Evaluation of bioactivity and biodegradability of a biomimetic soft tissue scaffold for clinical use: An in vitro study.

Behzad Houshmand, Azadeh Esmaeil Nejad, Fatemeh Safari
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Abstract

Background: Autogenous soft-tissue graft is the gold-standard approach to augment oral soft tissues. However, tissue engineering is increasingly surveyed to overcome its substantial drawbacks, including the secondary site of operation, patient's pain and discomfort, limited tissue of donor site, and so on. Chitosan and gelatin have been utilized in this field over the years due to their great biological virtues. Zeolite, another remarkable candidate for tissue engineering, possesses outstanding biological and mechanical properties, thanks to its nanostructure. Therefore, this study aimed to investigate the biodegradability and DNA content of seeded human gingival fibroblasts on a New Chitosan-Gelatin-Zeolite Scaffold for the perspective of oral and mucosal soft tissue augmentation.

Materials and methods: DNA contents of the human gingival fibroblast cell line (HGF.1) seeded on the chitosan-gelatin (CG) and CGZ scaffolds were evaluated by propidium iodide staining on days 1, 5, and 8. Scaffolds' biodegradations were investigated on days 1, 7, 14, 28, 42, and 60.

Results: Although both scaffolds provided appropriate substrates for HGF.1 growth, significantly higher DNA contents were recorded for the CGZ scaffold. Among experimental groups, the highest mean value was recorded in the CGZ on day 8. CGZ showed a significantly lower biodegradation percentage at all time points.

Conclusions: The incorporation of zeolite into the CG scaffold at a ratio of 1:10 improved the cell proliferation and stability of the composite scaffold. CGZ scaffold may offer a promising alternative to soft-tissue grafts due to its suitable biological features.

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临床用仿生软组织支架的生物活性和生物降解性评价:体外研究。
背景:自体软组织移植是增强口腔软组织的金标准方法。然而,越来越多的人对组织工程进行研究,以克服其实质性的缺点,包括手术的次要部位、患者的疼痛和不适、供体部位的组织有限等。壳聚糖和明胶由于其巨大的生物学优点,多年来已在该领域得到应用。沸石是组织工程的另一个杰出候选者,由于其纳米结构,它具有卓越的生物和机械性能。因此,本研究旨在研究新型壳聚糖-明胶-沸石支架上接种的人牙龈成纤维细胞的生物降解性和DNA含量,以增强口腔和粘膜软组织。材料和方法:接种在壳聚糖-明胶(CG)和CGZ支架上的人牙龈成纤维细胞系(HGF1)在第1、5和8天通过碘化丙啶染色评估DNA含量。在第1、7、14、28、42和60天对支架的生物降解进行了研究。结果:尽管两种支架都为HGF1的生长提供了合适的底物,但CGZ支架的DNA含量明显较高。在实验组中,CGZ在第8天的平均值最高。CGZ在所有时间点都显示出显著较低的生物降解百分比。结论:以1:10的比例将沸石掺入CG支架中,可提高复合支架的细胞增殖和稳定性。CGZ支架由于其合适的生物学特性,可能为软组织移植物提供一种有前途的替代品。
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来源期刊
CiteScore
1.70
自引率
0.00%
发文量
87
审稿时长
44 weeks
期刊介绍: The Journal of Indian Society of Periodontology publishes original scientific articles to support practice , education and research in the dental specialty of periodontology and oral implantology. Journal of Indian Society of Periodontology (JISP), is the official publication of the Society and is managed and brought out by the Editor of the society. The journal is published Bimonthly with special issues being brought out for specific occasions. The ISP had a bulletin as its publication for a large number of years and was enhanced as a Journal a few years ago
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