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迈向用于检测和预防慢性伤口感染的闭环、集成生物相容性生物聚合物伤口敷料贴片。

Toward a Closed Loop, Integrated Biocompatible Biopolymer Wound Dressing Patch for Detection and Prevention of Chronic Wound Infections.

作者信息

Ward Andrew C, Dubey Prachi, Basnett Pooja, Lika Granit, Newman Gwenyth, Corrigan Damion K, Russell Christopher, Kim Jongrae, Chakrabarty Samit, Connolly Patricia, Roy Ipsita

机构信息

Department of Biomedical Engineering, Faculty of Engineering, University of Strathclyde, Glasgow, United Kingdom.

School of Life Sciences, College of Liberal Arts and Sciences, University of Westminster, London, United Kingdom.

出版信息

Front Bioeng Biotechnol. 2020 Sep 1;8:1039. doi: 10.3389/fbioe.2020.01039. eCollection 2020.

Abstract

Chronic wound infections represent a significant burden to healthcare providers globally. Often, chronic wound healing is impeded by the presence of infection within the wound or wound bed. This can result in an increased healing time, healthcare cost and poor patient outcomes. Thus, there is a need for dressings that help the wound heal, in combination with early detection of wound infections to support prompt treatment. In this study, we demonstrate a novel, biocompatible wound dressing material, based on Polyhydroxyalkanoates, doped with graphene platelets, which can be used as an electrochemical sensing substrate for the detection of a common wound pathogen, . Through the detection of the redox active secondary metabolite, pyocyanin, we demonstrate that a dressing can be produced that will detect the presence of pyocyanin across clinically relevant concentrations. Furthermore, we show that this sensor can be used to identify the presence of pyocyanin in a culture of . Overall, the sensor substrate presented in this paper represents the first step toward a new dressing with the capacity to promote wound healing, detect the presence of infection and release antimicrobial drugs, on demand, to optimized healing.

摘要

慢性伤口感染给全球医疗服务提供者带来了沉重负担。通常,伤口或伤口床内的感染会阻碍慢性伤口的愈合。这可能导致愈合时间延长、医疗成本增加以及患者预后不良。因此,需要有助于伤口愈合的敷料,并结合伤口感染的早期检测以支持及时治疗。在本研究中,我们展示了一种新型的、生物相容性伤口敷料材料,它基于聚羟基脂肪酸酯,掺杂有石墨烯片,可作为电化学传感基质用于检测一种常见的伤口病原体。通过检测氧化还原活性次级代谢产物绿脓菌素,我们证明可以生产出一种敷料,它能够在临床相关浓度范围内检测绿脓菌素的存在。此外,我们表明这种传感器可用于识别培养物中绿脓菌素的存在。总体而言,本文介绍的传感基质代表了迈向新型敷料的第一步,这种敷料有能力促进伤口愈合、检测感染的存在并按需释放抗菌药物,以实现最佳愈合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/024b/7493637/4864eae2e1bc/fbioe-08-01039-g001.jpg

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