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Smart Wound Dressings for Diabetic Chronic Wounds

机译:糖尿病慢性伤口的智能伤口敷料

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摘要

Given their severity and non-healing nature, diabetic chronic wounds are a significant concern to the 30.3 million Americans diagnosed with diabetes mellitus (2015). Peripheral arterial diseases, neuropathy, and infection contribute to the development of these wounds, which lead to an increased incidence of lower extremity amputations. Early recognition, debridement, offloading, and controlling infection are imperative for timely treatment. However, wound characterization and treatment are highly subjective and based largely on the experience of the treating clinician. Many wound dressings have been designed to address particular clinical presentations, but a prescriptive method is lacking for identifying the particular state of chronic, non-healing wounds. The authors suggest that recent developments in wound dressings and biosensing may allow for the quantitative, real-time representation of the wound environment, including exudate levels, pathogen concentrations, and tissue regeneration. Development of such sensing capability could enable more strategic, personalized care at the onset of ulceration and limit the infection leading to amputation. This review presents an overview of the pathophysiology of diabetic chronic wounds, a brief summary of biomaterial wound dressing treatment options, and biosensor development for biomarker sensing in the wound environment.
机译:鉴于其严重性和不愈合的性质,糖尿病慢性伤口是3030万被诊断患有糖尿病的美国人的重大关切(2015年)。周围动脉疾病,神经病变和感染助长了这些伤口的发展,从而导致下肢截肢的发生率增加。尽早发现,清创,减轻负担和控制感染对于及时治疗势在必行。然而,伤口的表征和治疗是高度主观的,并且主要基于治疗临床医生的经验。已经设计了许多伤口敷料来解决特定的临床表现,但是缺乏一种确定性的方法来识别慢性非愈合伤口的特定状态。作者认为,伤口敷料和生物传感技术的最新发展可能允许对伤口环境进行定量,实时的表征,包括渗出液水平,病原体浓度和组织再生。这种感测能力的发展可以在溃疡发作时实现更具战略意义的个性化护理,并限制导致截肢的感染。这篇综述介绍了糖尿病慢性伤口的病理生理学概述,生物材料伤口敷料治疗选择的简要概述,以及在伤口环境中用于生物标记感测的生物传感器开发。

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