Sahiner Nurettin, Sagbas Selin, Sahiner Mehtap, Silan Coskun
Faculty of Science & Arts, Chemistry Department, Canakkale Onsekiz Mart University, Terzioglu Campus, 17100 Canakkale, Turkey; Nanoscience and Technology Research and Application Center (NANORAC), Canakkale Onsekiz Mart University, Terzioglu Campus, 17100 Canakkale, Turkey.
Faculty of Science & Arts, Chemistry Department, Canakkale Onsekiz Mart University, Terzioglu Campus, 17100 Canakkale, Turkey.
Mater Sci Eng C Mater Biol Appl. 2017 Jan 1;70(Pt 1):317-326. doi: 10.1016/j.msec.2016.09.025. Epub 2016 Sep 13.
Super porous poly(2-hydroxy ethyl methacrylate) (p(HEMA)) cryogel was successfully synthesized by using polyethylene glycol diacrylate (p(EGDA)) crosslinker under cryogenic conditions. Poly(Tannic acid) (p(TA)) macro-, micro-, and nanoparticles prepared from a natural polyphenol, tannic acid (TA), were embedded into p(HEMA) cryogel networks to obtain composite p(TA) particle-embedded p(HEMA) cryogel. Different size ranges of spherical p(TA) particles, 2000-500μm, 500-200μm, 200-20μm, and 20-0.5μm size, were included in the cryogel network and illustrated by digital camera, optic microscope, and SEM images of the microgel-cryogel network. The swelling properties and moisture content of p(TA) microgel-embedded p(HEMA) cryogel were investigated at wound healing pH conditions such as pH5.4, 7.4, and 9 at 37.5°C, and the highest swelling capacity was found at pH9 with 972±2% swelling in 30s. Higher amounts of DI water were quickly absorbed by p(HEMA)-based cryogel, and moisture retention within the cryogel structure for a longer time period at room temperature is due to existence of p(TA) particles. Degradation profiles of p(TA) particle-embedded p(HEMA) cryogel were shown to be controlled by different pH conditions, and a linear release profile was found with total cumulative release of 5.8±0.8mg/g TA up to 12days at pH7.4 and 37.5°C. The antioxidant behavior of degraded p(TA) particles from p(HEMA) cryogel were found as 46±1μgmL gallic acid equivalent and 165±18mMtroloxequivalentg. The p(TA) particle-embedded p(HEMA) cryogel has high hemocompatibility with 0.0158±0.0126% hemolysis ratio, and effective hemostatic properties with 8.1±0.9 blood clotting index.
通过在低温条件下使用聚乙二醇二丙烯酸酯(p(EGDA))交联剂成功合成了超多孔聚甲基丙烯酸2-羟乙酯(p(HEMA))冷冻凝胶。由天然多酚单宁酸(TA)制备的聚单宁酸(p(TA))宏观、微观和纳米颗粒被嵌入到p(HEMA)冷冻凝胶网络中,以获得复合的嵌入p(TA)颗粒的p(HEMA)冷冻凝胶。不同尺寸范围的球形p(TA)颗粒,2000 - 500μm、500 - 200μm、200 - 20μm和20 - 0.5μm尺寸,被包含在冷冻凝胶网络中,并通过数码相机、光学显微镜以及微凝胶 - 冷冻凝胶网络的扫描电子显微镜图像进行展示。在伤口愈合的pH条件下,如pH5.4、7.4和9,于37.5°C研究了嵌入p(TA)微凝胶的p(HEMA)冷冻凝胶的溶胀特性和水分含量,发现在pH9时溶胀能力最高,在30秒内溶胀率为972±2%。基于p(HEMA)的冷冻凝胶能快速吸收更多的去离子水,并且由于p(TA)颗粒的存在,在室温下冷冻凝胶结构内的水分保留时间更长。嵌入p(TA)颗粒的p(HEMA)冷冻凝胶的降解曲线显示受不同pH条件控制,在pH7.4和37.5°C下,发现其具有线性释放曲线,在长达12天的时间内总累积释放量为5.8±0.8mg/g TA。从p(HEMA)冷冻凝胶降解的p(TA)颗粒的抗氧化行为表现为46±1μg/mL没食子酸当量和165±18mM Trolox当量/g。嵌入p(TA)颗粒的p(HEMA)冷冻凝胶具有高血液相容性,溶血率为0.0158±0.0126%,并且具有有效的止血性能,凝血指数为8.1±0.9。