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用于人工心脏瓣膜抗菌保护的银改性聚酯的生物相容性

Biocompatibility of silver-modified polyester for antimicrobial protection of prosthetic valves.

作者信息

Tweden K S, Cameron J D, Razzouk A J, Holmberg W R, Kelly S J

机构信息

St. Jude Medical, Inc., St. Paul, Minnesota 55117, USA.

出版信息

J Heart Valve Dis. 1997 Sep;6(5):553-61.

PMID:9330181
Abstract

BACKGROUND AND AIMS OF THE STUDY

The biocompatibility of a silver-coated polyethylene terephthlate (PET, polyester) fabric for the inhibition of prosthetic valve endocarditis (PVE) associated with mechanical heart valves (MHVs) was assessed. The infrequency of PVE is outweighed by mortality rates commonly exceeding 50%. These high mortality rates have been attributed to the poor effect of antibiotic therapy on colonized valves and infected myocardial tissue. Silver has been used as an antimicrobial for centuries due to its general effectiveness and relative lack of toxicity. Our previous work has shown PET polyester fabric coated with metallic silver by an ion beam-assisted deposition (IBAD) process to: (i) be effective in vitro in the inhibition of microbial attachment and colonization; (ii) be tightly adherent and low leaching; and (iii) promote tissue ingrowth and the organization of tissue pannus in a short-duration (five weeks) sheep mitral mechanical heart valve model.

METHODS

This paper addresses additional biocompatibility assessment consisting of a cell compatibility assay in which serum extracts of silver-coated fabric were exposed to fibroblasts for 48 hours, after which cell viability and function were measured. The amount of silver in the extract was measured using elemental analysis techniques.

RESULTS

No signs of toxicity were seen in the cells until the extract concentration reached 1200 p.p.m. Ten-week duration mechanical valve replacement studies in sheep with uncoated or coated polyester sewing cuffs showed comparable tissue ingrowth and mature pannus with a suggestion of a thinner pannus on the silver-coated fabric. Additional antimicrobial testing confirmed the effectiveness of this coating in inhibiting colonization of polyester fabric.

CONCLUSIONS

These current results, together with the earlier data, suggest that IBAD silver coating on polyester facilitates healing and may provide protection against PVE.

摘要

研究背景与目的

评估一种镀银聚对苯二甲酸乙二酯(PET,聚酯)织物对抑制与机械心脏瓣膜(MHV)相关的人工瓣膜心内膜炎(PVE)的生物相容性。PVE发病率较低,但死亡率通常超过50%,使得前者相形见绌。这些高死亡率归因于抗生素治疗对定植瓣膜和受感染心肌组织效果不佳。几个世纪以来,银因其普遍有效性和相对低毒性一直被用作抗菌剂。我们之前的研究表明,通过离子束辅助沉积(IBAD)工艺在PET聚酯织物上镀金属银,能够:(i)在体外有效抑制微生物附着和定植;(ii)紧密附着且银浸出率低;(iii)在短期(五周)绵羊二尖瓣机械心脏瓣膜模型中促进组织向内生长和组织心内膜形成。

方法

本文进行了额外的生物相容性评估,包括细胞相容性试验,即将镀银织物的血清提取物与成纤维细胞接触48小时,之后测量细胞活力和功能。使用元素分析技术测量提取物中的银含量。

结果

在提取物浓度达到1200 ppm之前,细胞未出现毒性迹象。在绵羊中进行的为期十周的未涂层或涂层聚酯缝合袖口机械瓣膜置换研究表明,组织向内生长和成熟心内膜形成情况相当,不过镀银织物上心内膜似乎更薄。额外的抗菌测试证实了这种涂层对抑制聚酯织物定植的有效性。

结论

目前这些结果与早期数据表明,聚酯上的IBAD镀银有助于愈合,并可能为PVE提供防护。

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