首页> 外文期刊>Clinical hemorheology and microcirculation >Development of polymer membranes with improved haemocompatibility for biohybrid organ technology.
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Development of polymer membranes with improved haemocompatibility for biohybrid organ technology.

机译:具有改善的血液相容性的生物膜器官技术聚合物膜的开发。

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摘要

Biomedical technology has opened up possibilities of treating the failure of internal organs like kidney and liver by artificial organ therapy. Most of these techniques are based on polymer membranes, which allow the removal of excess of water, salts and toxins from the circulation. However, haemodialysis for the replacement of kidney function results in an increased morbidity and mortality of patients after long-term application. Conventional therapy, such as haemofiltration for the treatment of acute liver failure does not improve significantly the survival rate of patients. Biohybrid organ support as a combination of the artificial organ therapy with the functional activity of immobilised cells seems to be a solution of the problem. Membranes applied in these devices have to face both tissue cells and blood. Organ cells in biohybrid organs have to make intimate contact with the surface of membrane but must also develop close cell-cell-connections as a prerequisite for their survival and high functional activity. Blood to be detoxified will contact the other side of membrane and may not become activated by the synthetic material. New polymer membranes based on acrylonitrile were developed to address these requirements by tailoring the composition of copolymers and to be applied in a specific hollow fibre bioreactor with an outer fibre for blood contact, and an inner fibre for tissue contact or vice versa.
机译:生物医学技术为通过人工器官疗法治疗诸如肾脏和肝脏等内部器官衰竭提供了可能性。这些技术大多数基于聚合物膜,可从循环中除去过量的水,盐和毒素。然而,长期应用血液透析代替肾脏功能会导致患者的发病率和死亡率增加。常规治疗,例如血液滤过治疗急性肝衰竭并不能显着提高患者的存活率。生物混合器官支持结合人工器官疗法和固定化细胞的功能活性似乎是解决该问题的方法。这些设备中使用的膜必须面对组织细胞和血液。生物杂交器官中的器官细胞必须与膜表面紧密接触,但还必须发展紧密的细胞-细胞连接,这是其存活和高功能活性的前提。要排毒的血液将接触膜的另一侧,并且可能不会被合成材料激活。开发了基于丙烯腈的新型聚合物膜,以通过调整共聚物的组成来满足这些要求,并将其用于特定的中空纤维生物反应器中,其中外纤维用于血液接触,内纤维用于组织接触,反之亦然。

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