Sharifi Simin, Maleki Dizaj Solmaz, Ahmadian Elham, Karimpour Alireza, Maleki Abdollah, Memar Mohammad Yousef, Ghavimi Mohammad Ali, Dalir Abdolahinia Elaheh, Goh Khang Wen
Dental and Periodontal Research Center, Tabriz University of Medical Sciences, Tabriz 5166/15731, Iran.
Department of Dental Biomaterials, Faculty of Dentistry, Tabriz University of Medical Sciences, Tabriz 5166/15731, Iran.
Nanomaterials (Basel). 2022 Sep 30;12(19):3436. doi: 10.3390/nano12193436.
A biodegradable micro/nano-structured porous hemostatic gelatin-based sponge as a dentistry surgery foam was prepared using a freeze-drying method. In vitro function evaluation tests were performed to ensure its hemostatic effect. Biocompatibility tests were also performed to show the compatibility of the sponge on human fetal foreskin fibroblasts (HFFF2) cells and red blood cells (RBCs). Then, 10 patients who required the extraction of two teeth were selected, and after teeth extraction, for dressing, the produced sponge was placed in one of the extracavities while a commercial sponge was placed in the cavity in the other tooth as a control. The total weight of the absorbed blood in each group was compared. The results showed a porous structure with micrometric and nanometric pores, flexibility, a two-week range for degradation, and an ability to absorb blood 35 times its weight in vitro. The prepared sponge showed lower blood clotting times (BCTs) (243.33 ± 2.35 s) and a lower blood clotting index (BCI) (10.67 ± 0.004%) compared to two commercial sponges that displayed its ability for faster coagulation and good hemostatic function. It also had no toxic effects on the HFFF2 cells and RBCs. The clinical assessment showed a better ability of blood absorption for the produced sponge (-value = 0.0015). The sponge is recommended for use in dental surgeries because of its outstanding abilities.
采用冷冻干燥法制备了一种可生物降解的微/纳米结构多孔止血明胶基海绵,作为牙科手术用泡沫材料。进行了体外功能评估测试以确保其止血效果。还进行了生物相容性测试,以显示该海绵与人胎儿包皮成纤维细胞(HFFF2)和红细胞(RBC)的相容性。然后,选择了10名需要拔除两颗牙齿的患者,拔牙后进行换药,将制备的海绵放置在其中一个拔牙窝内,而将市售海绵放置在另一颗牙齿的拔牙窝内作为对照。比较了每组吸收血液的总重量。结果表明,该海绵具有微米级和纳米级孔隙的多孔结构、柔韧性、两周的降解期以及在体外能够吸收其重量35倍的血液的能力。与两种市售海绵相比,制备的海绵显示出更低的凝血时间(BCTs)(243.33±2.35秒)和更低的凝血指数(BCI)(10.67±0.004%), 表明其具有更快的凝血能力和良好的止血功能。它对HFFF2细胞和RBCs也没有毒性作用。临床评估表明,制备的海绵具有更好的血液吸收能力(P值=0.0015)。由于其出色的性能,推荐该海绵用于牙科手术。