首页> 外文会议>International Seminar of Biomedical Engineering >In vitro Biological Evaluation of Small Intestinal Submucosa - Chitosan / Hyaluronic Acid Tridimensional Scaffolds as Deep Wound Healing Dressings
【24h】

In vitro Biological Evaluation of Small Intestinal Submucosa - Chitosan / Hyaluronic Acid Tridimensional Scaffolds as Deep Wound Healing Dressings

机译:小肠粘膜下颌骨颌骨颌骨/透明质酸串行支架的体外生物学评价为深伤愈合敷料

获取原文

摘要

In the U.S. more than 6 million patients suffer from chronic wounds (e.g., diabetic, pressure or vascular ulcers), which represent a major public health issue and an important healthcare expenditure. Chronic deep wounds lose the ability to repair without the external signals responsible for enhancing extracellular matrix (ECM) restoration and promoting sustained healing. We have previously prepared Small Intestinal Submucosa-Chitosan (SIS-Ch) and Small Intestinal SubmucosaHyaluronic Acid (SIS-HA) 3D scaffolds, in the form of porous sponges and hydrogels. Physicochemical and mechanical properties in vitro confirmed their potential as wound dressings. Here we conducted in vitro biological tests of SIS-Ch (n=3) and SIS-HA (n=3) scaffolds that included MTT assays to determined cytotoxicity and hemolysis assay to assess the tendency to damage red blood cells. Cell viability of SIS-Ch and SIS-HA sponges exceeded 80%. Nevertheless, SIS-HA hydrogels exhibited the greatest cell viability values of all formulations most likely due to the HA natural function in extracellular matrix that promotes cell migration and proliferation. The presence of Ch and HA in the scaffolds correlated with higher cell metabolic rates when compared with formulations based on SIS only (p<0.05). Hemolytic indexes below 5% were found for all formulations except for SIS_Ch Low and SIS_HA High for porous sponges, confirming thereby their limited tendency to promote hemolysis. Our in vitro biological findings suggest that both SIS-Ch and SISHA scaffolds have the characteristics to be evaluated in preclinical in vivo testing.
机译:在美国,超过600万患者患有慢性伤口(例如糖尿病,压力或血管溃疡),这代表了一个主要的公共卫生问题和重要的医疗保健支出。慢性深的伤口失去了没有负责增强细胞外基质(ECM)恢复和促进持续愈合的外部信号进行修复的能力。我们以前制备的小肠脊髓凋落 - 壳聚糖(SIS-CH)和小肠脊髓酸含量尿酸(SIS-HA)3D支架,以多孔海绵和水凝胶的形式。体外物理化学和机械性能证实了它们作为伤口敷料的潜力。在这里,我们进行了SIS-CH(n = 3)和Sis-Ha(n = 3)支架的体外生物学测试,其包括MTT测定以确定细胞毒性和溶血测定以评估损伤红细胞的趋势。 SIS-CH和SIS-HA海绵的细胞活力超过80 %。然而,Sis-HA水凝胶表现出最有可能由于细胞外基质中的HA天然功能而促进细胞迁移和增殖的所有制剂的最大细胞活力值。与仅基于SIS的配方相比(P <0.05)相比,支架中的CH和HA的存在与更高的细胞代谢速率相关联。除了用于多孔海绵的SIS_CH LOW和SIS_HA高的所有配方,发现溶血指数低于5 %,从而确认其有限的促进溶血的趋势。我们的体外生物研究结果表明,SIS-CH和SISHA支架均具有临床前在体内测试中评估的特征。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号