【脓毒症分类及脓毒症相关脏器功能障碍的研究进展】。

Q3 Medicine
Jinhao Hu, Guangju Zhao
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引用次数: 0

摘要

脓毒症是一种危及生命的器官功能障碍综合征,由宿主对感染的反应失调引起。脓毒症患者由于感染源、病原菌及患者基础条件不同,其临床表现、治疗反应及预后存在显著异质性。脓毒症的准确分类和个体化治疗有助于进一步改善脓毒症患者的预后。近年来,人工智能与生物信息学的融合为败血症分类研究带来了新的机遇。本文系统介绍了脓毒症的各种分类方法及其临床应用价值。电子病历中的临床数据,如体温等生命体征的动态变化,可作为败血症分类的依据。不同亚型的体温轨迹在生理特征和预后方面存在差异,这有助于预测患者的预后并指导液体管理策略。生物标志物分类能更全面地反映患者的病理生理状态。免疫指标分类有助于识别免疫功能低下患者,开展针对性免疫治疗。转录组数据和基因分型揭示了脓毒症在分子水平上的异质性,为精准医疗提供了新的视角。此外,对脓毒症相关的器官功能损害,如急性呼吸窘迫综合征(ARDS)、急性肾损伤(AKI)、急性肝损伤也进行了详细的系统综述,有助于制定有针对性的器官保护和治疗策略。这些分型方法在临床实践中具有良好的应用前景。然而,目前的研究仍存在局限性,如分型稳定性和生物标志物选择等,需要进一步探索。未来的研究应着眼于开发稳定、高效的分型工具,以实现败血症的精准治疗,改善患者预后。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Research progress on the classification of sepsis and sepsis-related organ dysfunction].

Sepsis is a life-threatening organ dysfunction syndrome caused by a dysregulated host response to infection. Due to different infection sources, pathogens and basic conditions of patients, there is significant heterogeneity in clinical manifestations, response to treatment and prognosis of patients with sepsis. Accurate classification and individualized treatment of sepsis will help to further improve the prognosis of patients with sepsis. In recent years, the integration of artificial intelligence and bioinformatics has brought new opportunities for the research of sepsis classification. This review systematically introduces a variety of sepsis classification methods and their clinical application value. The clinical data in the electronic medical record, such as the dynamic changes of vital signs such as body temperature, can be used as the basis for sepsis classification. Different subtypes of body temperature trajectories have differences in physiological characteristics and prognosis, which contributes to predict the prognosis of patients and guide fluid management strategies. Biomarker classification can more comprehensively reflect the pathophysiological state of patients. Immune index classification is helpful to identify immunocompromised patients so as to carry out targeted immunotherapy. Transcriptome data and genotyping reveal the heterogeneity of sepsis at the molecular level and provide a new perspective for precision medicine. In addition, a detailed systematic review of sepsis-related organ function damage, such as acute respiratory distress syndrome (ARDS), acute kidney injury (AKI), and acute liver injury, has also been conducted, which is helpful to develop targeted organ protection and treatment strategies. These typing methods have shown good application prospects in clinical practice. However, there are still limitations in the current research, such as typing stability and biomarker selection, which need to be further explored. Future research should focus on the development of stable and efficient typing tools to achieve precise treatment of sepsis and improve the prognosis of patients.

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来源期刊
Zhonghua wei zhong bing ji jiu yi xue
Zhonghua wei zhong bing ji jiu yi xue Medicine-Critical Care and Intensive Care Medicine
CiteScore
1.00
自引率
0.00%
发文量
42
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