Nanotechnology and Integrated Bioengineering Centre (NIBEC), School of Engineering, Ulster University 2-24 York Street, Belfast, BT15 1AP, United Kingdom.
Nanotechnology and Integrated Bioengineering Centre (NIBEC), School of Engineering, Ulster University 2-24 York Street, Belfast, BT15 1AP, United Kingdom; Healthcare Technology Hub, School of Engineering, Ulster University, 2-24 York Street, Belfast, BT15 1AP, United Kingdom.
Biosens Bioelectron. 2023 May 1;227:115181. doi: 10.1016/j.bios.2023.115181. Epub 2023 Feb 24.
Sepsis is a life-threatening immune response which is caused by a wide variety of sources and is a leading cause of mortality globally. Rapid diagnosis and appropriate antibiotic treatment are critical for successful patient outcomes; however, current molecular diagnostic techniques are time-consuming, costly and require trained personnel. Additionally, there is a lack of rapid point-of-care (POC) devices available for sepsis detection despite the urgent requirements in emergency departments and low-resource areas. Recent advances have been made toward developing a POC test for early sepsis detection that will be more rapid and accurate compared to conventional techniques. Within this context, this review discusses the use of current and novel biomarkers for early sepsis diagnosis using microfluidics devices for POC testing.
脓毒症是一种危及生命的免疫反应,由多种来源引起,是全球死亡的主要原因。快速诊断和适当的抗生素治疗对患者的良好预后至关重要;然而,目前的分子诊断技术既耗时、昂贵,又需要经过培训的人员。此外,尽管在急诊科和资源匮乏地区存在紧急需求,但仍缺乏用于脓毒症检测的即时检测 (POC) 设备。最近在开发用于早期脓毒症检测的 POC 测试方面取得了一些进展,与传统技术相比,该测试将更加快速和准确。在这种情况下,本综述讨论了使用微流控设备进行 POC 检测时,当前和新型生物标志物在早期脓毒症诊断中的应用。