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Unravelling the potential of nitric acid as a surface modifier for improving the hemocompatibility of metallocene polyethylene for blood contacting devices

机译:挖掘硝酸作为表面改性剂的潜力以改善用于血液接触装置的茂金属聚乙烯的血液相容性

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摘要

Design of blood compatible surfaces is obligatory to minimize platelet surface interactions and improve the thromboresistance of foreign surfaces when they are utilized as biomaterials particularly for blood contacting devices. Pure metallocene polyethylene (mPE) and nitric acid (HNO3) treated mPE antithrombogenicity and hydrophilicity were investigated. The contact angle of the mPE treated with HNO3 decreased. Surface of mPE and HNO3 treated mPE investigated with FTIR revealed no major changes in its functional groups. 3D Hirox digital microscopy, SEM and AFM images show increased porosity and surface roughness. Blood coagulation assays prothrombin time (PT) and activated partial thromboplastin time (APTT) were delayed significantly (P < 0.05) for HNO3 treated mPE. Hemolysis assay and platelet adhesion of the treated surface resulted in the lysis of red blood cells and platelet adherence, respectively indicating improved hemocompatibility of HNO3 treated mPE. To determine that HNO3 does not deteriorate elastic modulus of mPE, the elastic modulus of mPE and HNO3 treated mPE was compared and the result shows no significant difference. Hence, the overall observation suggests that the novel HNO3 treated mPE may hold great promises to be exploited for blood contacting devices like grafts, catheters, and etc.
机译:当将血液相容性表面用作生物材料(特别是用于血液接触装置)时,必须设计血液相容性表面,以最大程度地减少血小板表面相互作用,并改善异物表面的抗血栓形成性。研究了纯金属茂聚乙烯(mPE)和硝酸(HNO3)处理的mPE的抗血栓形成性和亲水性。 HNO3处理的mPE的接触角减小。用FTIR研究的mPE和HNO3处理过的mPE的表面未发现其官能团发生重大变化。 3D Hirox数字显微镜,SEM和AFM图像显示出增加的孔隙率和表面粗糙度。对于HNO3处理的mPE,凝血试验的凝血酶原时间(PT)和活化的部分凝血活酶时间(APTT)显着延迟(P <0.05)。溶血测定和处理表面的血小板粘附导致红细胞溶解和血小板粘附,分别表明HNO3处理的mPE的血液相容性得到改善。为了确定HNO3不会降低mPE的弹性模量,将mPE的弹性模量与HNO3处理的mPE进行了比较,结果没有显着差异。因此,总体观察结果表明,经HNO3处理的新型mPE可能具有广阔的前景,可用于诸如移植物,导管等血液接触装置。

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