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Reducing the risk of infection associated with vascular access devices through nanotechnology: a perspective

机译:通过纳米技术降低与血管通路装置相关的感染风险

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摘要

Intravascular catheter-related infections are still a major problem in health care and are associated with significant morbidity, mortality, and additional cost. The formation of microbial biofilm on catheters makes these infections particularly complicated, as microbial cells that detach from the biofilm can lead to infection, and because these microorganisms are highly resistant to many antimicrobial agents; thus, catheter removal is often required to successfully treat infection. To reduce the risks of catheter-related infections, many strategies have been applied, such as improvements in aseptic insertion and post-insertion care practices, implantation techniques, and antibiotic coated or impregnated materials. However, despite significant advances in using these methods, it has not been possible to completely eradicate biofilm infections. Currently, nanotechnology approaches seem to be among the most promising for preventing biofilm formation and resultant catheter-related bloodstream infection (especially with multi-resistant bacterial strains). In this review, current knowledge about catheter technology and design, the mechanisms of catheter-related bloodstream infection, and the insertion and care practices performed by medical staff, are discussed, along with novel, achievable approaches to infection prevention, based on nanotechnology.
机译:血管内导管相关的感染仍然是卫生保健中的主要问题,并且与明显的发病率,死亡率和额外费用相关。导管上微生物生物膜的形成使这些感染特别复杂,因为与生物膜分离的微生物细胞会导致感染,并且因为这些微生物对许多抗菌剂具有高度抵抗力;因此,通常需要移除导管才能成功治疗感染。为了减少与导管相关的感染的风险,已采用了许多策略,例如改进了无菌插入和插入后护理措施,植入技术以及涂有抗生素的材料或浸渍的材料。然而,尽管在使用这些方法方面取得了重大进展,但仍不可能完全根除生物膜感染。当前,纳米技术方法似乎是防止生物膜形成和由此产生的导管相关的血流感染(特别是多耐药细菌菌株)最有希望的方法之一。在这篇综述中,讨论了有关导管技术和设计的最新知识,与导管相关的血流感染的机制以及医务人员进行的插入和护理实践,以及基于纳米技术的新颖,可实现的预防感染的方法。

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