中国组织工程研究 ›› 2010, Vol. 14 ›› Issue (42): 7923-7926.doi: 10.3969/j.issn.1673-8225.2010.42.032

• 生物材料学术探讨 biomaterial academic discussion • 上一篇    下一篇

高分子材料聚砜膜滤器临床应用及相容性评价

安曙光   

  1. 东莞市人民医院ICU,广东省东莞市  523000
  • 出版日期:2010-10-15 发布日期:2010-10-15
  • 作者简介:安曙光★,男,1967年生,黑龙江省宁安市人,朝鲜族,硕士,副主任医师,主要从事危重病医学研究。 anshuguang0524@sohu.com

Clinical application and compatibility evaluation of polymers polysulfone membrane filters

An Shu-guang   

  1. ntensive Care Unit, Dongguan People’s Hospital, Dongguan   523000, Guangdong Province, China
  • Online:2010-10-15 Published:2010-10-15
  • About author:An Shu-guang★, Master, Associate chief physician, Intensive Care Unit, Dongguan People’s Hospital, Dongguan 523000, Guangdong Province, China anshuguang0524@sohu.com

摘要:

目的:评价高分子材料聚砜膜滤器的性能以及置入体内与宿主的生物相容性,为其在临床上的应用提供参考依据。
方法:以“血液透析;透析膜材料;组织相容性;血液相容性;聚醚砜”为中文关键词;以“hemodialysis, dialysis membrane materials;histocompatibility;blood compatibility;polyethersulfone”为英文关键词,采用计算机检索2006-01/2010-03相关文章。纳入与有关生物材料与宿主相容性的文章;排除重复研究或Meta分析类文章。以22篇文献为重点进行探讨聚砜膜滤器材料的性能及应用前景。
结果:目前各种新型的膜材料在不断地研发,部分已在临床使用或即将问世,如维生素E 修饰的透析膜、多黏菌素B 修饰的透析膜、甲壳素膜、以及人肾单位透析器和生物活性膜等。聚砜膜滤器由于具有较好的生物相容性和封堵效果,在临床广泛应用。
结论:聚砜膜滤器通过高分子材料滤器强大的对流、黏附作用,高效清除组织损伤过程中产生的炎症递质和毒性代谢产物,排除机体内潴留的多余水分,维持水、电解质、酸碱平衡,实现内环境的稳定,改善重要脏器功能,调节免疫系统。聚砜膜滤器目前虽广泛应用,但不可避免存在着相容不良,引发附近组织发炎,产生病变,造成溶血或凝血现象等。理想的膜滤器材料无论材料本身还是其降解产物都不能产生炎症和毒性反应,所以良好生物相容性的封堵器需进一步开发研制。

关键词: 血液透析, 透析膜材料, 组织相容性, 血液相容性, 聚醚砜

Abstract:

OBJECTIVE: To evaluate the performance of polymers polysulfone membrane filter and its biocompatibility with the host after implantation, and to provide evidence for its clinical application.
METHODS: Using “hemodialysis, dialysis membrane materials, histocompatibility, blood compatibility, polyethersulfone” in English and in Chinese as the key words, a computer search was performed between January 2006 and March 2010. Articles related with the biomaterial’s compatibility with host were included; duplicated studies or Meta analysis articles were excluded. Totally 30 articles mainly discussed the properties and applications of polysulfone membrane filter material.
RESULTS: At present, various types of new membrane materials are continuously developing, some have already applied in clinical practice or comes soon, such as vitamin E modified dialysis membrane, polymyxin B modified dialysis membrane, chitin membrane, human kidney dialysis devices, and bioactive membrane. Polysulfone membrane filters have been widely used in clinical practice due to good biocompatibility and sealing effect.
CONCLUSION: Through strong convection and adhesion effect of polymers, the polysulfone membrane filter can efficiently clear inflammatory transmitter and toxic metabolite products produced in tissue injury process, exclude excess water retained in body, maintain the water, electrolyte and acid-base balance, achieve internal environment stability, improve the function of important organs, regulate immune system. Although polysulfone membrane filters have been widely used, they inevitably exhibit poor compatibility, and can cause inflammation in nearby tissues, result in disease, hemolysis or clotting phenomena. Ideal membrane filter materials, whether the material itself or its degradation products, can produce no inflammation and toxicity, the occluder with good biocompatibility needs further development.

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