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Sepsis Multiomic Analysis & Risk sTratification in China (China SMART-1)

2026年7月7日 更新者:Pingsen Zhao、Yuebei People's Hospital

Sepsis Multiomic Analysis & Risk sTratification in China (China SMART-1): A Prospective Observational Cohort Study

Sepsis is a life-threatening organ dysfunction caused by a dysregulated host response to infection, and delayed diagnosis remains a major driver of mortality, while traditional biomarkers (PCT, CRP, lactate) have limited early sensitivity and timeliness. This prospective, single-center, observational cohort study at Yuebei People's Hospital will enroll approximately 1400 ICU patients (1000 with sepsis and 400 non-sepsis controls) to build a comprehensive multi-omics biobank and identify early diagnostic and risk-stratification biomarkers for sepsis. Using bulk RNA sequencing, targeted proteomics (PRM), targeted metabolomics, and ELISA validation, the study aims to: (1) screen mRNA diagnostic biomarkers and establish a molecular risk-stratification system; (2) develop and validate an RT-LAMP rapid bedside detection method; and (3) identify and validate plasma and urine protein/metabolite biomarkers and build a combined diagnostic model. The specific candidate biomarker identities are maintained confidentially and will be disclosed with the primary results.

研究概览

地位

招聘中

条件

详细说明

Sepsis is a life-threatening organ dysfunction caused by a dysregulated host response to infection and is listed by the World Health Organization as one of the top 10 causes of death worldwide. According to the Global Burden of Disease Study (GBD 2017), there are approximately 48.9 million cases of sepsis globally each year, resulting in about 11 million deaths, with a case fatality rate as high as 20%-40%. In China, the incidence of sepsis is approximately 240 cases per 100,000 population, and the sepsis-related mortality rate in ICU patients reaches 35.5%, significantly higher than that in developed countries. Although international guidelines (such as the Surviving Sepsis Campaign) emphasize the "golden 6 hours" early intervention concept, clinical practice still faces two core problems: delayed diagnosis and insufficient biomarker efficacy. The current diagnostic criteria (Sepsis-3) rely on the SOFA score and evidence of infection, but the SOFA score depends on laboratory indicators (such as platelets and bilirubin), which are difficult to obtain quickly in emergency settings. Commonly used clinical biomarkers such as procalcitonin (PCT) and C-reactive protein (CRP) have significant limitations: although PCT has certain specificity for bacterial infections, its sensitivity is low (approximately 60%-70%) in local infections (such as abscesses) or infections caused by atypical pathogens (such as viruses and fungi); as an acute-phase reactant, CRP elevation lags behind the inflammatory response (6-12 hours after infection) and is interfered with by non-infectious factors such as surgery and trauma; lactate reflects tissue hypoperfusion, but its elevation mostly indicates that the patient has entered the stage of septic shock, missing the window for early intervention.

Studies have shown that each 1-hour delay in the diagnosis of sepsis increases patient mortality by 7.6%. Therefore, the development of highly sensitive and specific early diagnostic tools is a key breakthrough to improve prognosis.

Although microbial culture is the gold standard for sepsis diagnosis, it takes too long and may delay the diagnosis of sepsis. In addition, microbial culture tests may be negative in approximately 30-50% of sepsis patients. Current research indicates that in the intensive care process of sepsis patients, clinical electronic medical record data are increasingly being used to construct multivariate clinical early warning models. Mining these data may accelerate clinical monitoring of sepsis and provide new ideas for the early identification of post-traumatic sepsis.

Peripheral blood mRNA expression levels can directly reflect the host's gene regulatory response to infection and theoretically show detectable systemic changes within hours after infection, having higher early diagnostic potential than protein biomarkers. With the maturity of RNA sequencing technology and the significant reduction in costs, biomarker screening based on whole transcriptome data has become an important strategy for discovering novel sepsis diagnostic biomarkers. However, existing transcriptome studies are mostly based on small-scale cohorts with limited sample sizes and mainly focus on European and American populations, lacking large-sample prospective studies that systematically screen and validate mRNA diagnostic biomarkers in Chinese ICU populations. In addition to diagnostic dilemmas, sepsis patients show significant differences in response to standardized treatment regimens, suggesting the existence of internal molecular subtypes with different biological characteristics. Transcriptomic studies have confirmed the molecular basis of this heterogeneity: Scicluna et al. identified four genomic intrinsic subtypes (MARS classification) in a European multicenter cohort, with significant differences in immune characteristics and 28-day mortality among subtypes; Seymour et al. described two robust clinical phenotypes (α-type and β-type), with β-type characterized by immunosuppression and multiple organ injury. These studies have laid the theoretical foundation for the precise stratification of sepsis, but their samples are all from European and American populations, and there are systematic differences in genetic background, pathogen spectrum, and medical practice compared with Chinese patients, limiting the direct extrapolation applicability of the classification results. Currently, there are no large-sample transcriptome-based stratification studies of sepsis in Chinese ICU populations. Therefore, we propose Substudy 1: Screening of early diagnostic molecular biomarkers and molecular stratification biomarkers for sepsis based on Bulk RNA-seq transcriptome sequencing.

Reverse transcription loop-mediated isothermal amplification (RT-LAMP) has the characteristics of high sensitivity, high specificity, and fast detection speed, and has been widely used in clinical testing. In our previous work, we developed relevant detection methods. Therefore, we propose Substudy 2: Validate the diagnostic efficacy of RT-LAMP as an early rapid bedside diagnostic tool for ICU sepsis.

In addition, we previously used data-independent acquisition (DIA) proteomics and untargeted metabolomics.to screen a panel of plasma biomarkers with diagnostic potential for sepsis; the specific candidate identities are maintained confidentially and will be disclosed with the primary results. Some candidate biomarkers have been validated in our prior cohort studies. Urine has the same diagnostic value. Therefore, we propose Substudy 3: Validate the diagnostic efficacy of plasma protein/metabolic biomarkers as early diagnostic biomarkers for ICU sepsis. Substudy 4: Validate the diagnostic efficacy of urine protein/metabolic biomarkers as early diagnostic biomarkers for ICU sepsis.

This study intends to rely on the ICU of Yuebei People's Hospital to prospectively enroll 1400 subjects (1000 sepsis cases, 400 non-sepsis controls) and establish the largest comprehensive biobank for sepsis research in Chinese ICUs to date. Bulk RNA-seq, RT-LAMP, parallel reaction monitoring (PRM) proteomics, metabolomics, and ELISA-based immunological detection techniques will be used to detect and analyze whole blood, plasma, or urine samples from enrolled patients.

研究类型

观察性的

注册 (估计的)

1400

联系人和位置

本节提供了进行研究的人员的详细联系信息,以及有关进行该研究的地点的信息。

学习联系方式

学习地点

    • Guangdong
      • Shaoguan、Guangdong、中国、512026
        • 招聘中
        • Yuebei People's Hospital
        • 接触:

参与标准

研究人员寻找符合特定描述的人,称为资格标准。这些标准的一些例子是一个人的一般健康状况或先前的治疗。

资格标准

适合学习的年龄

  • 成人
  • 年长者

接受健康志愿者

不

取样方法

非概率样本

研究人群

Critically ill adult patients admitted to the ICU of Yuebei People's Hospital, Shaoguan, Guangdong, China. The study population includes patients with confirmed sepsis (Sepsis-3 criteria) and non-sepsis controls admitted during the same period. All participants had blood samples (plasma and whole blood RNA) and urine samples collected within 24 hours of ICU admission and stored at -80°C.

描述

Inclusion Criteria - Sepsis Group:

  • Age ≥ 18 years
  • Meets the Sepsis-3 diagnostic criteria: confirmed or suspected infection with an increase in SOFA score of ≥ 2 points from baseline
  • Develops sepsis within 72 hours of ICU admission
  • Voluntarily signs the informed consent form (or signed by the legal representative)

Inclusion Criteria - Non-Sepsis Group:

  • Age ≥ 18 years
  • Hospitalized in the ICU during the same period, with no clear evidence of infection and not meeting the diagnostic criteria for sepsis
  • Expected ICU treatment time ≥ 24 hours
  • Voluntarily signs the informed consent form (or signed by the legal representative)

Exclusion Criteria:

  • End-stage chronic organ failure (end-stage renal disease, decompensated liver cirrhosis [Child-Pugh Grade C], or chronic heart failure NYHA Class IV), or malignant tumor
  • Immunocompromised, autoimmune disease, or long-term use of glucocorticoids/immunosuppressants within the past 3 months
  • Pregnant or postpartum patients
  • Other conditions deemed unsuitable by the investigator (e.g., terminal state, refusal to cooperate with sample collection, or inability to cooperate with in-hospital and out-of-hospital follow-up)

学习计划

本节提供研究计划的详细信息,包括研究的设计方式和研究的衡量标准。

研究是如何设计的?

设计细节

队列和干预

团体/队列
Sepsis group
Adult ICU patients (≥18 years) meeting Sepsis-3 criteria (confirmed or suspected infection with an acute rise in SOFA ≥ 2), with sepsis onset within 72 hours of ICU admission.
Non-sepsis control group
Adult ICU patients (≥18 years) admitted during the same period with no clear evidence of infection, not meeting sepsis criteria, and an expected ICU stay ≥ 24 hours.

研究衡量的是什么?

主要结果指标

结果测量
措施说明
大体时间
Diagnostic performance of the mRNA biomarker panel for early sepsis
大体时间:Within 24 hours of ICU admission (baseline)
Whole-blood Bulk RNA-seq expression profiling of the sepsis versus non-sepsis groups. Core diagnostic mRNA biomarkers are selected by multi-algorithm cross-validation (WGCNA + LASSO + SVM-RFE). Diagnostic efficacy for early ICU sepsis is assessed against the Sepsis-3 reference classification and reported as AUC, sensitivity, specificity, PPV, and NPV.
Within 24 hours of ICU admission (baseline)
Number of sepsis molecular subtypes identified by unsupervised consensus clustering
大体时间:Baseline (within 24 hours of ICU admission)

Unsupervised consensus clustering is applied to the sepsis-group whole-blood mRNA expression profiles; the optimal number of subtypes is determined by standard criteria (consensus CDF and delta-area). The reported value is the number of molecular subtypes identified.

Unit of Measure: subtypes (count)

Baseline (within 24 hours of ICU admission)
Diagnostic accuracy (AUC) of the RT-LAMP assay for early sepsis
大体时间:Within 24 hours of ICU admission (baseline)

The RT-LAMP assay targeting core sepsis mRNA markers is applied to whole-blood samples. Diagnostic accuracy for distinguishing sepsis from non-sepsis (against the Sepsis-3 reference classification) is summarized by the area under the ROC curve (AUC). Sensitivity, specificity, PPV, and NPV at the optimal cut-off are reported as supporting measures in the Description.

Unit of Measure: AUC (0-1)

Within 24 hours of ICU admission (baseline)
Diagnostic accuracy (AUC) of the combined protein/metabolic biomarker model for sepsis
大体时间:Within 24 hours of ICU admission (baseline)

Plasma/urine protein biomarkers (measured by PRM/ELISA) and metabolic biomarkers are combined by multivariable logistic regression into a multi-marker diagnostic model. Diagnostic accuracy for distinguishing sepsis from non-sepsis (against the Sepsis-3 reference classification) is summarized by the area under the ROC curve (AUC). Sensitivity, specificity, PPV, and NPV at the optimal cut-off are reported as supporting measures in the Description.

Unit of Measure: AUC (0-1)

Within 24 hours of ICU admission (baseline)

次要结果测量

结果测量
措施说明
大体时间
28-day all-cause mortality
大体时间:28 days from baseline

ll-cause mortality within 28 days after enrollment, confirmed via the medical record system and telephone follow-up.

Unit of Measure: participants (percentage)

28 days from baseline
ICU length of stay
大体时间:From ICU admission through ICU discharge, up to 28 days

Duration of the ICU stay for enrolled patients, from ICU admission to ICU discharge.

Unit of Measure: days

From ICU admission through ICU discharge, up to 28 days
Incidence of new-onset organ dysfunction
大体时间:Through 28 days from baseline

Proportion of patients developing new-onset organ dysfunction during the observation period, defined by an increase in the SOFA score in an organ system not already dysfunctional at baseline.

Unit of Measure: participants (percentage)

Through 28 days from baseline
Correlation of core biomarker expression with 28-day mortality and SOFA score
大体时间:28 days from baseline
Correlation between the mRNA and protein expression levels of core biomarkers and (a) 28-day all-cause mortality and (b) the Sequential Organ Failure Assessment (SOFA) score. The SOFA score ranges from 0 to 24, with higher scores indicating more severe organ dysfunction (a worse outcome).
28 days from baseline
Comparative diagnostic performance versus PCT and CRP
大体时间:Within 24 hours of ICU admission (baseline)
Comparison of diagnostic efficacy (AUC, compared by DeLong's test) between the novel biomarkers/combined diagnostic model and the traditional indicators PCT and CRP.
Within 24 hours of ICU admission (baseline)
Subgroup analysis of biomarker diagnostic performance
大体时间:Within 24 hours of ICU admission (baseline)
Diagnostic efficacy (AUC, sensitivity, specificity) of biomarkers across pre-specified subgroups (infection site, pathogen type, organ injury).
Within 24 hours of ICU admission (baseline)
Immune-inflammatory pathway characteristics across molecular strata
大体时间:Baseline (within 24 hours of ICU admission)
Analysis of immune-inflammatory pathway features (e.g., by GSEA) that differentiate the sepsis molecular strata.
Baseline (within 24 hours of ICU admission)

合作者和调查者

在这里您可以找到参与这项研究的人员和组织。

研究记录日期

这些日期跟踪向 ClinicalTrials.gov 提交研究记录和摘要结果的进度。研究记录和报告的结果由国家医学图书馆 (NLM) 审查,以确保它们在发布到公共网站之前符合特定的质量控制标准。

研究主要日期

学习开始 (实际的)

2026年6月1日

初级完成 (估计的)

2027年12月30日

研究完成 (估计的)

2028年12月30日

研究注册日期

首次提交

2026年5月14日

首先提交符合 QC 标准的

2026年5月14日

首次发布 (实际的)

2026年5月20日

研究记录更新

最后更新发布 (实际的)

2026年7月10日

上次提交的符合 QC 标准的更新

2026年7月7日

最后验证

2026年7月1日

更多信息

与本研究相关的术语

计划个人参与者数据 (IPD)

计划共享个人参与者数据 (IPD)?

未定

药物和器械信息、研究文件

研究美国 FDA 监管的药品

不

研究美国 FDA 监管的设备产品

不

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