首页> 外文期刊>Journal of biomedical materials research, Part A >Producing hybrid nanofiber‐based on /PAN/Fe 3 3 O 4 4 /zeolite/nettle plant extract/urease and a deformed coaxial natural polymer to reduce toxicity materials in the blood of dialysis patients
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Producing hybrid nanofiber‐based on /PAN/Fe 3 3 O 4 4 /zeolite/nettle plant extract/urease and a deformed coaxial natural polymer to reduce toxicity materials in the blood of dialysis patients

机译:基于/平移/ Fe 3 3 O 4/4 /沸石/荨麻植物提取物/脲酶和变形同轴天然聚合物的生产杂交纳米纤维基于/锅/锅植物提取物,以减少透析患者血液中的毒性材料

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Abstract On incidence of kidney failure, the concentration of urea increases and there is need for patients to visit the hospital all through the week for blood purification. However, current hemodialysis has been found to reduce only 66‐75% urea in the blood of patients. The main goal of this article is to observe the effect of biocompatible and high mechanical hemodiafiltration in reducing urea and creatinine within the shortest time frame, using two methods of Nano electrospinning fiber (hybrid and coaxial). Hybrid electrospinning was made by zeolite 940‐HOA(beta), Fe 3 O 4 , polyacrylonitrile as well as the addition of nettle plant's leaf extract. Dispersing solution and enzymes were added to two different syringes and was used in making hybrid nanofibers by the electrospinning process. Nessler's Reagent adsorption method was used for measuring the concentration of ammonia after urease enzyme activation. Second coaxial filter was made by the core‐shell electrospinning system and cellulose acetate phthalate (CAP) as well as polyurethane (PU) were utilized. The data show hybrid hemodiafiltration with enzyme coating, decomposed urea and enzymes were activated for two days after electrospinning. The core‐shell filtration can also reduce creatinine. Core‐shell CAP‐PU nanofiber was previously used for intravaginal drug delivery and PU was used as an artificial renal microfluidic chip. Thus, our study focused on using CAP‐PU to reduce creatinine in dialysis patients. ? 2019 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 107A: 1736–1743, 2019.
机译:摘要肾衰竭的发病率,尿素的浓度增加,并且需要患者通过本周血液净化来访问该医院。然而,已发现目前的血液透析仅在患者的血液中仅减少66-75%的尿素。本文的主要目的是使用两种纳米静电纺丝纤维(杂化和同轴)的方法观察在最短时间框架中减少尿素和肌酐的生物相容性和高机械血液过滤的影响。通过沸石940-HOA(β),Fe 3 O 4,聚丙烯腈以及添加荨麻植物的叶子提取物制备杂化静电纺丝。将分散的溶液和酶加入两种不同的注射器中,用静电纺丝工艺制备杂化纳米纤维。 Nessler的试剂吸附方法用于测量尿素酶活化后氨的浓度。第二同轴过滤器由核壳静电纺丝系统制成,醋酸纤维素(帽)以及聚氨酯(PU)。在静电纺丝后,数据显示用酶涂料,分解尿素和酶进行分解尿素和酶的杂化血液过滤。核壳过滤也可以减少肌酐。核心壳Cap-Pu纳米纤维以前用于阴道药物递送,PU被用作人工肾微流体芯片。因此,我们的研究重点是使用Cap-PU减少透析患者的肌酐。还2019 Wiley期刊,Inc.J生物保解员A部分:107A:1736-1743,2019。

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