Pneumonia is the leading cause of sepsis. This study aimed to compare the predictive accuracy for 28-day mortality between Sequential Organ Failure Assessment (SOFA)-2 score and SOFA score in pneumonia-associated sepsis, and to develop and externally validate a composite model incorporating SOFA-2 with key clinical variables. This retrospective cohort study analyzed data from MIMIC-IV (n = 7,150) and externally validated using an Intensive Care Unit (ICU) cohort from Shandong Provincial Hospital (n = 301). Adults meeting Sepsis-3 criteria with pneumonia as the infection source were included. The primary outcome was 28-day all-cause mortality. Multivariable Cox regression, time-dependent AUC analysis, and decision curve analysis were performed. The SOFA-2 composite model was developed and evaluated. In the MIMIC‑IV cohort, the 28‑day all-cause mortality was 28.1
Background Acute fatty liver of pregnancy (AFLP) is a rare, life-threatening obstetric emergency. Early prediction of its severe postpartum complications remains a significant clinical challenge, optimal risk stratification tools have not been established. Methods This retrospective cohort study included 106 patients with AFLP admitted to a tertiary care hospital between 2011 and 2020. Severity scores (MELD, APACHE II, SOFA) were calculated using data from 24 h before delivery or within 24 h of ICU admission. Predictive performance for six major complications—acute kidney injury (AKI), disseminated intravascular coagulation (DIC), sepsis, multiple organ dysfunction syndrome (MODS), postpartum hemorrhage (PPH), and acute liver failure (ALF) was assessed using logistic regression, with discrimination evaluated by area under the receiver operating characteristic curve (AUC-ROC) and clinical utility by decision curve analysis (DCA). Results Among 106 patients, the most common complication was AKI (71/106, 67.0%), followed by DIC (30/106, 28.3%), MODS (30/106, 28.3%), PPH (29/106, 27.4%), sepsis (28/106, 26.4%), and ALF (24/106, 22.6%). The combined MELD-SOFA score was the best predictor for DIC (AUC 0.764, 95% CI 0.662–0.856), MODS (AUC 0.757, 95% CI 0.655–0.855), and ALF (AUC 0.797, 95% CI 0.692–0.886), and also demonstrated strong predictive value for AKI (AUC 0.882,95% CI 0.803–0.943). The combined MELD-APACHE II score demonstrated excellent discrimination for AKI (AUC 0.899, 95% CI 0.815–0.967). APACHE II alone best predicted sepsis (AUC 0.748, 95% CI 0.643–0.848). All models performed poorly for PPH (AUC < 0.7). DCA confirmed greater net clinical benefit for the combined models within relevant threshold probabilities. Conclusions A complication-specific approach to score selection optimizes risk stratification in AFLP. While the combined MELD-SOFA score demonstrates broad applicability by showing high effectiveness for predicting DIC, MODS, ALF and AKI, optimal prediction for specific complications requires tailored combinations. the MELD-APACHE II score is superior for AKI, and APACHE II alone for sepsis. These findings support the targeted use of combined scoring models to guide early intervention and improve maternal outcomes.
Acute lung injury (ALI) is caused by a variety of intrapulmonary and extrapulmonary factors and is associated with high morbidity and mortality. Oxidative stress is an important part of the pathological mechanism of ALI. Ferroptosis is a mode of programmed cell death distinguished from others and characterized by iron-dependent lipid peroxidation. This article reviews the metabolic regulation of ferroptosis, its role in the pathogenesis of ALI, and the use of ferroptosis as a therapeutic target regarding the pharmacological treatment of ALI.
Lung adenocarcinoma is the main type of lung cancer in women. Our previous findings have evidenced that 25-hydroxycholesterol (25-HC) promotes migration and invasion of lung adenocarcinoma cells (LAC), during which LXR as a 25-HC receptor plays an important role. Estrogen receptor beta (ERβ) is a receptor of 27-hydroxycholesterol that is structurally analogous to 25-HC, but its role in the functional actions of 25-HC remained largely unknown. In this study, we demonstrated that 25-HC treatment triggered ERβ expression in LAC. Knockdown of ERβ inhibited 25-HC-mediated proliferation, migration and invasion, and reduced 25-HC-induced LAC metastasis in vivo. Further investigation revealed that ERβ knockdown restrained the expression of TNFRSF17 (BCMA). In vivo experiments also confirmed that ERβ knockdown blocked 25-HC-induced TNFRSF17 expression. TNFRSF17 knockdown also restrained 25-HC-induced proliferation, migration and invasion. Bioinformatic analysis showed that the levels of ERβ and TNFRSF17 were elevated in lung adenocarcinoma, and were closely related to tumor stages and nodal metastasis status. These results suggested that 25-HC promoted the proliferation and metastasis of LAC by regulating ERβ/TNFRSF17 axis.
Sepsis is an uncontrolled host response to infection, resulting in a clinical syndrome involving multiple organ dysfunctions. Cardiac damage is the most common organ damage in sepsis. Uncontrolled inflammatory response is an important mechanism in the pathogenesis of septic cardiomyopathy (SCM). NLRP3 inflammasome promotes inflammatory response by controlling the activation of caspase-1 and the release of pro-inflammatory cytokines interleukin IL-1β and IL-18. The role of NLRP3 inflammasome has received increasing attention, but its activation mechanism and regulation of inflammation in SCM remain to be investigated.
OBJECTIVE:To investigate the correlation of procalcitonin (PCT), interleukin-6 (IL-6) and antithrombin III (AT III) with the severity of sepsis, and to compare the predictive value of the above indicators alone or in combination.METHODS:A retrospective cohort study was conducted. Eighty-five patients with sepsis admitted to the department of intensive care medicine of Shandong Provincial Hospital Affiliated to Shandong First Medical University from April 2021 to September 2022 were enrolled. General information, sequential organ failure assessment (SOFA) score and acute physiology and chronic health evaluation II (APACHE II) score within 24 hours of admission, inflammatory indicators [PCT, IL-6, serum amyloid A (SAA), neutrophil to lymphocyte ratio (NLR), and C-reactive protein (CRP)] and coagulation indicators (D-dimer and AT III) levels at admission, and 28-day prognosis were collected. The differences of the above indicators were compared among patients with different prognosis at 28 days and different severity of sepsis. The correlation between PCT, IL-6, AT III and the severity of sepsis was analyzed by Spearman rank correlation method. Receiver operator characteristic curve (ROC curve) was drawn to evaluate the predictive value of PCT, IL-6 and AT III alone or in combination on the 28-day death of patients with sepsis.RESULTS:Eighty-five patients were enrolled finally, 67 cases survived and 18 cases died at 28 days. The mortality was 21.2%. There were no statistical significant differences in gender, age and other general data between the two groups. The patients in the death group were more serious than those in the survival group, and PCT, IL-6, and CRP levels were significantly higher than those in the survival group [PCT (μg/L): 4.34 (1.99, 14.42) vs. 1.17 (0.31, 3.94), IL-6 (ng/L): 332.40 (50.08, 590.18) vs. 61.95 (31.64, 194.20), CRP (mg/L): 149.28 (75.34, 218.60) vs. 83.23 (48.22, 174.96), all P < 0.05], and AT III activity was significantly lower than that in the survival group [(53.67±28.57)% vs. (80.96±24.18)%, P < 0.01]. However, there were no significant differences in D-dimer, NLR and SAA between the two groups. Among the 85 patients, 36 had sepsis with single organ dysfunction, 29 had sepsis with multiple organ dysfunction, and 20 had septic shock with multiple organ dysfunction. With the increase of the severity of sepsis, PCT and IL-6 levels gradually increased [PCT (μg/L): 0.36 (0.19, 1.10), 3.00 (1.22, 9.94), 4.34 (2.18, 8.86); IL-6 (ng/L): 43.99 (20.73, 111.13), 100.00 (45.37, 273.00), 332.40 (124.4, 693.65)], and the activity of AT III decreased gradually [(89.81±21.42)%, (71.97±24.88)%, and (53.50±25.41)%], all with statistically significant differences (all P < 0.01). Spearman rank correlation analysis showed that PCT and IL-6 levels in sepsis patients were significantly positively correlated with the severity of the disease (r values were 0.562 and 0.517, respectively, both P < 0.01), and AT III activity was significantly negatively correlated with the severity of the disease (r = -0.523, P < 0.01). ROC curve analysis showed that PCT, IL-6, and AT III alone or in combination had some predictive value for the death of sepsis patients at 28 days. The area under the ROC curve (AUC) of the above three indicators in combination was higher than that of the individual tests (0.818 vs. 0.722, 0.725, and 0.770), with a sensitivity of 83.3% and a specificity of 73.1%.CONCLUSIONS:PCT, IL-6, and AT III were significantly correlated with the severity of sepsis patients. The combined assay of the above three indicators can effectively improve the prediction of the prognosis of sepsis patients.
As one of the serious complications of sepsis, septic cardiomyopathy has gained more and more attention, because of its high morbidity and mortality. With the in-depth study of septic cardiomyopathy, several methods have been adopted clinically but have poor therapeutic effects due to failure to find precise therapeutic targets. In recent years, microRNAs have been found to be related to the pathogenesis, diagnosis, and treatment of septic cardiomyopathy via regulating immunity and programmed cell death. This paper reviews the role of microRNAs in septic cardiomyopathy, aiming to provide new targets for the diagnosis and treatment of septic cardiomyopathy.
目的 基于数据库数据分析泛癌组织中T-box转录因子19(TBX19)表达水平与患者预后和肿瘤免疫微环境(免疫细胞浸润、免疫检查点基因、肿瘤突变负荷和微卫星不稳定性)之间的关系.方法 从癌症基因组图谱(TCGA)数据库中获取泛癌组织及相应正常组织中TBX19表达水平,比较不同WHO分级和TNM分期泛癌组织中TBX19表达水平,使用Cox回归分析TBX19表达水平与肿瘤患者预后的关系.基于肿瘤免疫估算数据库(TIMER2)数据,采用Pearson法分析TBX19表达水平与免疫细胞浸润丰度的相关性;在Sanger Box 网站中利用TCGA数据库采用Pearson方法分析TBX19表达水平与免疫评分、肿瘤突变负荷和微卫星不稳定性的相关性;基于临床生信之家数据库数据,采用Spearman法分析TBX19表达水平与免疫检查点基因的相关性.结果 在膀胱尿路上皮癌、胆管癌、结肠癌(COAD)、结直肠癌(COADREAD)、食管癌、头颈鳞状细胞癌、肾透明细胞癌、肾乳头状细胞癌、混合肾癌、肝细胞癌(LIHC)、肺腺癌、肺鳞癌、嗜铬细胞瘤和副神经节瘤、直肠腺癌、胃癌、胃和食管癌癌组织中TBX19高表达(P均<0.05),在乳腺浸润癌、肾嫌色细胞癌、前列腺癌、子宫内膜癌癌组织中TBX19低表达(P均<0.05).不同WHO分级以及TNM分期的COAD、COADREAD癌组织中TBX19表达差异有统计学意义(P均<0.05).与TBX19低表达者比较,LIHC癌组织TBX19高表达者的总体生存期、疾病特异性生存期、无疾病间隔期和无进展间隔期短(P均<0.05).在COAD、KIRC、LIHC等多种癌组织中,TBX19的表达与免疫细胞浸润、免疫检查点基因、肿瘤突变负荷、微卫星不稳定性密切相关(P均<0.05).结论 泛癌组织中TBX19表达水平以升高为主,TBX19高表达者预后差;癌组织中TBX19高表达与肿瘤免疫微环境有关,在多种肿瘤中免疫浸润水平升高、肿瘤突变负荷增大、微卫星不稳定性增加.
Serum uric acid can affect endothelial function, and hyperuricaemia-induced endothelial dysfunction is involved in the pathogenesis of cardiovascular diseases. As endothelial dysfunction is also a main pathogenic mechanism of erectile dysfunction (ED), the present study aims to evaluate the relationship between hyperuricaemia and ED via systemic review and meta-analysis. Five cohort studies and six cross-sectional studies on hyperuricaemia and ED, including a total of 454,510 participants, were recruited. Odds ratio (OR) and the 95% confidence intervals (CI) were adopted to estimate the relationship between hyperuricaemia and ED. Overall risk on effects of urate-lowering therapy (ULT) were analysed. In addition, subgroup analyses on study design, populations, age stratification and the object were conducted. In the patients with hyperuricaemia, the risk of ED was 1.59-fold higher than (pooled OR = 1.59, 95% CI [1.29, 1.97]) the non-hyperuricaemia counterparts. Urate-lowing therapy (ULT) in these hyperuricaemia patients reduced the risk of ED by 27% (OR = 1.27, 95% CI [1.14, 1.41]). After subgroup analysis, the association between hyperuricaemia and ED remained significant apart from the >60 years subgroup. Hyperuricaemia is an important risk factor of ED, while ULT can reduce the risk of ED in hyperuricaemia. This study suggests that hyperuricaemia-associated endothelial dysfunction may also underlie the pathogenesis of ED in these patients.
Background and Aims: Serum uric acid can affect endothelial function, and hyperuricemia-induced endothelial dysfunction is involved in the pathogenesis of cardiovascular diseases. As endothelial dysfunction is also a main pathogenic mechanism of erectile dysfunction (ED), the present study aims to evaluate the relationship between hyperuricemia and ED via systemic review and meta-analysis. Methods: Five cohort studies and five cross-sectional studies on hyperuricemia and ED, including a total of 454256 participants, were recruited. Odds ratio (OR) and the 95% confidence intervals (CI) were adopted to estimate the relationship between hyperuricemia and ED. Overall risk were effects of urate-lowering therapy (ULT) analyzed. In addition, subgroup analyses on study design, populations, age stratification and the object were conducted. Results: In the patients with hyperuricemia, the risk of ED was 1.55-fold higher than (pooled OR=1.55, 95%CI (1.24,1.94)) the non-hyperuricemia counterparts. urate-lowing therapy (ULT) in these hyperuricemia patients reduced the risk of ED by 27% (OR=1.27, 95%CI (1.14,1.41)). After subgroup analysis and meta-regression, the association between hyperuricemia and ED remained significant apart from in the ≥55y subgroup. Conclusions: Hyperuricemia is an independent risk factor of ED, while ULT can reduce the risk of ED in hyperuricemia. This study suggests that hyperuricemia-associated endothelial dysfunction may also underlie the pathogenesis of ED in these patients.
Septic cardiomyopathy (SCM) is common in septic patients and results in cardiovascular failure. The pathogenesis of SCM is complicated, and patients with SCM have high mortality because current treatment methods are limited. The cholinergic anti-inflammatory pathway (CAP) modulates inflammatory responses through vagus nerve stimulation that leads to the release of acetylcholine (ACh), which binds to the alpha7 nicotinic acetylcholine receptor (α7nAChR). Moreover, α7nAChR activation by its agonists at the tissue level inhibits inflammatory mediators and regulates the function of immune cells in sepsis. Therefore, the α7nAChR can maintain balance of the inflammatory-immune response in sepsis. CAP has been elucidated as a critical regulator of anti-inflammation in many diseases, including rheumatoid arthritis, inflammatory bowel disease and SCM. Additionally, some clinical and preclinical trials show therapeutic potential via regulating CAP. There are excellent studies regarding the beneficial role of CAP activation, especially α7nAChR, in experimental SCM. This review aims to discuss the CAP in attenuating inflammation and the potential role of α7nAChR activation in regulating immune and reducing inflammation in SCM.
Septic cardiomyopathy (SCM) is a complication that is sepsis-associated cardiovascular failure. In the last few decades, there is progress in diagnosis and treatment despite the lack of consistent diagnostic criteria. According to current studies, several hypotheses about pathogenic mechanisms have been revealed to elucidate the pathophysiological characteristics of SCM. The objective of this manuscript is to review literature from the past 5 years to provide an overview of current knowledge on pathogenesis, diagnosis and treatment in SCM.
Measurement of fractional exhaled nitric oxide (FeNO) is a quantitative and non-invasive approach to examine airway inflammation, which is a powerful aid in diagnosing chronic disorders of airways like asthma. Diagnostic value of FeNO and relevant indices on pulmonary function in the patients with asthma and chronic obstructive pulmonary disease (COPD) was evaluated. A total of 164 patients [58 asthma, 49 COPD and 57 asthma-COPD overlap (ACO)] were randomly recruited. FeNO, pulmonary ventilation function, and bronchial diastolic function were performed. Eight indicators including FeNO, vital capacity percentage (VC%), forced vital capacity percentage (FVC%), forced expiratory volume in one second percentage (FEV1%), forced expiratory volume in one second to forced vital capacity percentage (FEV1/FVC%), maximum independent ventilation volume percentage (MVV%), the increased percentage of FEV1 after bronchial diastolic test, the increased absolute value of FEV1 after bronchial diastolic test were examined. Significant difference in VC%, FVC%, FEV1%, FEV1/FVC%, MVV%, the increased absolute value of FEV1 after bronchial diastolic test and FeNO were significantly different between patients with asthma and patients with COPD (P<0.05). There were significant differences of VC%, FVC%, FEV1%, FEV1/FVC%, MVV% and the increased percentage of FEV1 after bronchial diastolic test in cases of patients with asthma compared to ACO patients (P<0.05). There was no statistical significance on VC%, FVC%, FEV1%, FEV1/FVC%, MVV% between COPD patients and ACO patients (P>0.05). However, more importantly, the increased percentage of FEV1 after bronchial diastolic test, the increased absolute value of FEV1 after bronchial diastolic test and the alterations on FeNO were found significantly different in ACO group compared with COPD alone (P<0.05). We compared the results from pulmonary ventilation function, bronchial diastolic function examination as well as FeNO detection among 3 groups of asthma, COPD and ACO. The examination of pulmonary ventilation function and bronchial diastolic function combined with FeNO detection is helpful in the early screening of ACO.
Traced back to December 2019, an unexpected outbreak of a highly contagious new coronavirus pneumonia (COVID-19) has rapidly swept around China and the globe. There have now been an estimated 2 580 000 infections and more than 170 000 fatal cases around the world. The World Health Organization (WHO) estimated that approximately 14% of infections developed into severe disease, 5% were critically ill, and the mortality rate of critically ill patients is reported to be over 50%. The shortage of specific anti-viral treatment and vaccines remains a huge challenge. In COVID-19, refractory hypoxemia is common among the critically ill with acute respiratory distress syndrome (ARDS) despite invasive mechanical ventilation, and is further complicated by respiratory and circulatory failure. This difficult situation calls for the use of extracorporeal membrane oxygenation (ECMO) for assisting respiration and circulation if necessary. This article reviews the pertinent clinical literature, technical guidance, and expert recommendations on use of ECMO in critically ill cases of COVID-19. Here, we present basic knowledge and opinions about COVID-19 and ECMO, review the evidence on ECMO use in Middle East Respiratory Syndrome (MERS) and H1N1 influenza, share the technical guidance and recommendations on use of ECMO in COVID-19, summarize the current use of ECMO against COVID-19 in China, and discuss the issues in use of ECMO in COVID-19.
OBJECTIVE:This study is designed as prospective and observational research of patients with sepsis. It was carried out in the intensive care unit (ICU). We investigated the shape change index (SCI) of inferior vena cava (IVC) measured with trans-abdominal ultrasound to detect the signs of septic shock. The aim of this research was to find the most effective tool in predicting shock in patients compared with that of other parameters such as brain natriuretic peptide (BNP), lactate, variation index of inferior vena cava IVC-VI, and extravascular lung water index (EVLWI).PATIENTS AND METHODS:We suppose that SCI can be used as the safest and most sensitive tool in the early recognition of septic dysfunction. The observational study was conducted in the Department of ICU, Shandong Provincial Hospital Affiliated to Shandong University from January 2016 to December 2017. SCI of IVC, serum lactate, BNP, IVC-VI, and EVLWI concentrations were measured in 30 sepsis patients. All studied biomarkers were analyzed and contrasted according to the score of the Sequential Organ Failure Assessment (SOFA). Pearson correlation analysis was analyzed to statistic the relationship between variables.RESULTS:We showed the correlation of BNP value, lactic acid value, IVC-VI, EVLWI, and SCI of IVC in sick patients suffering septic shock. Positive correlation was observed in the BNP value, lactic acid value, IVC-VI, EVLWI, and SCI of IVC (r=0.447, p=0.013; r=0.484, p=0.007; r=0.423, p=0.023; r=0.638, p<0.001; r=0.599, p<0.001; respectively). However, the SCI and EVLWI showed a stronger correlation with the SOFA than the others. SCI of IVC, as estimated by transabdominal ultrasound, was more accurate than the other commonly used non-invasive predictors. EVLWI, as an accurate and classical predictor, was an invasive predictor. SCI of IVC was faster, more convenient and safer than the other.CONCLUSIONS:SCI of IVC was faster, more convenient and safer than the other commonly used non-invasive predictors. Early recognition and diagnosis of sepsis may improve patient outcome.
BACKGROUND:We explored the effects of high-volume hemofiltration(HVHF) by different ultrasound directing on the plasma N-terminal pro-B-type natriuretic peptide(NT-Pro-BNP), extra vascular lung water index (EVLWI), liquid net balance quantity and prognosis in patients with septic shock.METHODS:Overall, 107 intensive patients with septic shock were enrolled by retrospective analysis from Department of Intensive Care Unit (ICU) of the Shandong Provincial Hospital affiliated to Shandong University from 2014-2017. According to HVHF by different ultrasound directing, all the patients were divided into two groups ((ultrasonic cardiac output monitor (USCOM), group A, n=51cases)) and ((critical bedside ultrasound (CBU), group B, n=56cases)).RESULTS:The value of CI in group A had a significant positive correlation with the value of PCCI by the PiCCO2 monitoring (P<0.05). The lung ultrasound water B lines in group B also had a significant positive correlation with the value of EVLWI by the PiCCO2 monitoring. The cumulative liquid net balance quantity in group B had a more significant elevation than group A after treatment 7th d. The level of EVLWI after treatment 48 h and 72 h, the level of plasma NT-Pro-BNP, the levels of P(A-a)DO2,OI and blood lactic after treatment 72 h, and the APACHE II scores and SOFA scores after treatment 7thd were reduced more significantly in group B than group A (P<0.001). The mortality at 28th day had a more significant decrease in group B than group A.CONCLUSION:It could decrease the level of NT-Pro-BNP, EVLWI, P(A-a)DO2, which then improves pulmonary oxygenation. Consequently, it decreased the APACHE II and SOFA scores and improved the 28th survival rate of patients.
Objective To investigate the impact of weekly data feedback and full-time supervision on nosocomial infection control.Methods A retrospective study was conducted to analyze the incidence of nosocomial infection in our ICU and the rate of missing report from January,2014 to December,2016.A weekly nosocomial infection data feedback included:publicity of nosocomial infection data of each beds from each doctor in charge,i.e.incidence of nosocomial infection,nosocomial pathogens,multidrug-resistant bacteria,reporting of infection,isolation and notification of nosocomial infection.Daily full-time supervision included:hand hygiene of all medical staff,aseptic medical procedures,coordination and supervision of auxiliary person (guards,caregivers,cleaners),daily disinfection of equipments,environment in the unit.Results The nosocomial infection rate before and after the implementation of weekly data feedback were 9.90% (199/2019) and 5.50% (124/2239) respectively,with a statistically significant difference (x2=28.239,P < 0.001).The nosocomial infection rate before and after the implementation of full-time supervision were 8.40% (83/993) and 3.30% (41/1246) respectively,with a statistically significant difference (x2=27.131,P < 0.001).The rate of missing report for nosocomial infection decreased to 0 after the implementation of weekly data feedback and full-time supervision (Z=-4.538,P=0.00).Conclusion Weekly data feedback may reduce nosocomial infection rate.Full-time supervision may further reduce the nosocomial infection rate.Weekly data feedback weekly and full-time supervision may improve the compliance of nosocomial infection control and quality of management.
BACKGROUND:Red blood cell distribution width (RDW) has been shown to predict mortality in critically ill patients. To our knowledge, whether or not RDW is associated with clinical outcomes of obstetric patients requiring critical care has not been evaluated. METHODS:This was a single centre, retrospective, observational study of obstetric patients admitted to the intensive care unit (ICU). Patients were excluded from the analysis if they had known haematological diseases or recently underwent blood transfusion. Patients who died or were discharged from the ICU within 24 hours of admission were also excluded. Patient clinical characteristics at ICU admission were retrieved from the medical charts. Multiple logistic regression was used to estimate OR and 95% CI for inhospital mortality associated with RDW. The receiver operating characteristic curve was used to examine the performance of RDW, alone or in combination with the Acute Physiology and Chronic Health Evaluation II score (APACHE II), in predicting inhospital mortality. RESULTS:A total of 376 patients were included in the study. The hospital mortality rate was 5.32%. A significant association was found between baseline RDW levels and hospital mortality (OR per per cent increase in RDW, 1.31; 95% CI 1.15 to 1.49). Further adjustment for haematocrit and other potential confounders did not appreciably alter the result (p<0.001). The area under the curve (AUC) for inhospital mortality based on RDW was similar to that based on the APACHE II score (0.752 vs 0.766). A combination of these two factors resulted in substantial improvement in risk prediction, with an AUC value of 0.872 (p<0.001). CONCLUSIONS:The study suggests that RDW is an independent predictor for inhospital mortality among ICU admitted obstetric patients. Combining RDW and APACHE II score could significantly improve inhospital prognostic prediction among these critically ill obstetric patients.
Objective:To investigate the influence of combined use of atorvastatin (ATO) and low molecular weight heparin (LMWH) on the inflammatory reaction and pulmonary protection functions in rats with sepsis.Methods:A total of 122 healthy male Sprague-Dawley (SD) rats were divided into five groups using a random number table: sham-operated group (sham group, n =10),sepsis group (n =10),ATO group (n =34),LMWH group (n =34),and ATO combined with LMWH group (ATO+LMWH group, n =34).The rat model of sepsis was reproduced by cecal ligation and puncture (CLP),while in sham group, rats were only subjected to laparotomy without cecum ligation and puncture. The rats of each pretreatment group received relevant therapies for 5 days, either gastric perfusion with ATO 20 mg/kg or subcutaneous injection with LMWH 100 U/kg or both before operation. The sepsis severities of the model animals were scored according to the modified sepsis severity assessment standards of experimental animals. Ten rats in each group were calculated the 7-day cumulative mortality rate. Blood samples from 6 rats in each group were collected to determine the levels of tumor necrosis factor-α (TNF-α),interleukin-1 β (IL-1 β) and high mobility group protein box-1 (HMGB1) contents in plasma using enzyme linked immunosorbent assay (ELISA)before operation (0 hour) and 4,8,12,and 24 hours post operation. The lung tissue was harvested 24 hours after operation, and the pulmonary pathology was assayed by hematoxylin and eosin (HE) staining using optical microscope.Results:① The sepsis severity grades of sepsis group were significantly higher than those of sham group at 4 hours after operation (score:12.2 ± 2.0 vs.7.2 ± 0.5,P < 0.05).Furthermore, they displayed a gradually increasing tendency, with the 7-day cumulative mortality rate being 90% (9/10).The sepsis severity grades in ATO group, LMWH group, and ATO+LMWH group showed a significant decrease compared with sepsis group at 8 hours after operation (12.2± 2.0,11.2±2.2,10.0± 1.7 vs.16.6±2.5,all P < 0.05).The 7-day cumulative mortality rates in ATO group, LMWH group, and ATO+LMWH group were 60% (6/10),60% (6/10),and 40% (4/10),respectively, all of which was significantly lower than that of sepsis group (all P < 0.05).② The levels of TNF-α,IL-1 β and HMGB1 have not shown much variations in the sham group after operation; the levels of pro-inflammatory cytokines in other 4 groups were significantly increased after operation compared with those before operation; the levels of TNF-α,IL-1β,and HMGB 1 reached peak at 4,8,and 24 hours, respectively. The levels of pro-inflammatory cytokines in sepsis group were significantly higher than those in the sham group. However, the levels of pro-inflammatory cytokines in ATO group, LMWH group, and ATO+LMWH group were significantly lower than those in sepsis group [4-hour TNF-α (ng/L):668.3 ± 124.6,536.5 ± 118.5,496.5 ± 108.5 vs.783.8 ± 134.7;8-hour IL-1 β (ng/L):2 476.7 ± 137.8,2 460.4± 171.2,2 090.0 ± 151.2 vs.2 873.9 ± 295.6;24-hour HMGB1 (μg/L):654.4± 154.4,659.0± 134.6,609.4±90.5 vs.859.3 ± 167.5,P < 0.05 or P < 0.01].③ It was showed by optical microscopy that the pulmonary tissue morphology was normal in sham group and that the damage of pulmonary pathology was relatively severe in sepsis group. Compared with sepsis group, the damage of pulmonary pathology in ATO group, LMWH group, and ATO + LMWH group was alleviated obviously, and the most obvious improvements were found in ATO + LMWH group.Conclusions:Either ATO or LMWH could decrease sepsis severity, suppress the release of plasma pro-inflammatory cytokines at the early and late stages, alleviate the damage of pulmonary pathology, and reduce the 7-day cumulative mortality rate. Therefore, the combined treatment of sepsis using both ATO and LMWH resulted in better outcomes than implemented individually.
OBJECTIVE:This study is to evaluate the effect of high-volume hemofiltration (HVHF) and early goal-directed therapy (EGDT) on alveolar-arterial oxygen exchange in patients with refractory septic shock.PATIENTS AND METHODS:Patients were classified into two groups by a prospective cohort study: 86 received both HVHF and EGDT (the HVHF group), and 81 treated with EGDT only (the control group). Alveolar-arterial oxygen pressure was taken at baseline and at days 1, 3, and 7, and respiratory index (RI, ratio of P(a)O2 alveolar-arterial oxygen pressure difference (P(A-a)DO2) to arterial oxygen pressure (P(a)O2) was calculated.RESULTS:At day 7, the levels of central venous and arterial blood oxygen content were significantly higher in the HVHF vs. the control group (both with p < 0.05). The level of oxygen extraction ratio (O2ER) was significantly higher in the HVHF than the control group (p < 0.01). The levels of P(A-a)DO2 and RI were significantly lower in the HVHF than the control group (p < 0.05 and p < 0.01, respectively). RI and the ratio of P(a)O2 to the fraction of inspired oxygen were significantly higher in the HVHF than the control group (p < 0.05 and p < 0.01, respectively). The acute physiology and chronic health evaluation score and the sequential organ failure assessment score in the HVHF group were significantly lower compared to the control group (p < 0.01 and p < 0.05, respectively). At day 28, the mortality rate was lower in the HVHF vs. the control group (p < 0.01).CONCLUSIONS:These findings demonstrated that HVHF, when used as an adjunctive therapy to the EGDP protocol, could improve alveolar-arterial oxygen exchange, clinical outcome and survival in patients with refractory septic shock.