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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Injectable biomaterials for incontinence and vesico-ureteral reflux: current status and future promise.
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Injectable biomaterials for incontinence and vesico-ureteral reflux: current status and future promise.

机译:用于失禁和膀胱输尿管反流的可注射生物材料:现状和未来前景。

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摘要

Many injectable biomaterials have been produced as bulking agents for compression of urethral sphincter or ureteral orifice for treating adult stress incontinence or vesico-ureteral reflux in pediatrics. The agents being developed include glutaraldehyde crosslinked collagen, dextranomer/hyaluronic acid copolymer, pyrolytic carbon-coated zirconium oxide beads, polydimethyl-siloxane microparticles, polytetrafluoroethylene paste, autologous fats, autologous chondrocytes, and others. Though less invasive nature of these agents has gained their popularity as a quick solution of the disease symptoms, most of such treatments fail to produce good long-term efficacy. The failure is likely caused by the rapid degradation of material implants and the lack of tissue regeneration/integration properties. We thus believe that a good injectable biomaterial for incontinence should possess the following two properties: (1) to resist degradation and to reside in the implantation sites for a long period of time or (2) to enhance tissue regeneration and to establish permanent periurethral or subureteric tissue. Here we report some recent results for supporting this hypothesis.
机译:已经生产出许多可注射的生物材料作为填充剂,用于压迫尿道括约肌或输尿管口,以治疗儿科的成人压力性尿失禁或膀胱输尿管反流。正在开发的试剂包括戊二醛交联的胶原蛋白,葡聚糖/透明质酸共聚物,热解碳包覆的氧化锆珠,聚二甲基硅氧烷微粒,聚四氟乙烯糊剂,自体脂肪,自体软骨细胞等。尽管这些药物的侵入性较小,已作为一种快速解决疾病症状的方法而受到欢迎,但大多数此类治疗方法均无法产生良好的长期疗效。该失败可能是由于材料植入物的快速降解以及缺乏组织再生/整合特性引起的。因此,我们认为,用于失禁的良好的可注射生物材料应具有以下两个特性:(1)抵抗降解并在植入部位长期放置;(2)增强组织再生并建立永久性尿道周围或输尿管下组织。在这里,我们报告了一些支持该假设的最新结果。

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