目的:分析自诉敌草快中毒患者的临床特征,为自诉敌草快中毒的患者提供诊疗思路。方法:采用回顾性临床研究方法,收集并总结2016—2021年郑州大学第一附属医院收治的自诉敌草快中毒患者的临床数据,并根据毒物检测结果是否含有百草枯,分为单纯敌草快中毒组及毒物检测到百草枯阳性组,分析比较两组脏器损伤、治疗、预后的差异,并研究分析了单纯敌草快中毒存活组与死亡组临床特征差异以及单纯敌草快中毒患者口服摄入量与脏器损伤、预后的关系。结果:2016—2021年自诉敌草快中毒的患者数量呈逐年增多趋势。150例自诉敌草快中毒的患者中,65例毒物检测含百草枯成分,占比43.33%。百草枯阳性组病死率高于单纯敌草快组(63.08% vs. 15.29%, P<0.001)。摄入量超过100 mL,单纯敌草快组中枢神经系统损伤发生率高于百草枯阳性组。摄入量超过50 mL,单纯敌草快中毒的病死率、肾损伤及心血管损伤的发生率均升高。和存活组相比,单纯敌草快中毒死亡组的初始血白细胞水平及多脏器损伤的发生率均升高,接受血液灌流、血液透析的比例显著性较高。 结论:敌草快中毒呈逐年增多趋势;敌草快中毒病死率低于百草枯;大剂量敌草快中毒的神经系统毒性强于百草枯;摄入量超过50 mL、入院初始血白细胞显著升高、出现多脏器损伤的敌草快中毒患者预后差。
This study explored the role of metformin (MET) in regulating the polarization of alveolar macrophages to protect against acute lung injury (ALI) in rats caused by paraquat (PQ) poisoning. The in vivo studies showed that the 35 mg/kg dose of MET increased the survival rate of rats, alleviated pathological damages to the lungs and their systemic inflammation, promoted the reduction of the pro-inflammatory factors interleukin-6 (IL-6) and tumor necrosis factor-α (TNF-α) levels, and increased the anti-inflammatory factor IL-10 levels in the rat serum. At the same time, the MET intervention decreased the expression of M1 macrophage marker iNOS in the lungs of the PQ-poisoned rats while increasing the M2 macrophage marker, Arg1, expression. In vitro, the concentration of MET > 10 mmol/L affected NR8383 viability adversely and was concentration-dependent; however, no adverse impact on NR8383 viability was observed at MET ≤ 10 mmol/L concentration, resisting the reducing effect of PQ on NR8383 vitality. The PQ-induced NR8383 model with MET intervention showed significantly reduced secretions of IL-6 and TNF-α in NR8383, and lowered expressions of M1 macrophage markers iNOS and CD86. Additionally, MET increased IL-10 secretion and the M2 macrophage markers, Arg1 and Mrcl, expressions. Therefore, we speculate that MET could regulate alveolar macrophage polarization to protect against PQ-poisoning caused ALI.
Objective:To investigate the etiological diagnostic value of metagenomic sequencing in central nervous system (CNS) infectious diseases.Methods:A total of 170 patients with central nervous system infection admitted to the First Affiliated Hospital of Zhengzhou University from January 2018 to June 2020 were selected as the study subjects according to inclusion and exclusion criteria. General clinical data and pathogen test results were collected. All included patients underwent routine examination and mNGS test, and were divided into the conventional method test group and mNGS test group according to the test results. The measurement data conforming to normal distribution were represented by ± s; The measurement data that did not conform to normal distribution were represented by median and interquartile range. The classification data were expressed by the number of cases and percentage( n,%), and were compared by χ2 test or Fisher's exact test. Consistency test was represented by Kappa value. The detection of pathogenic microorganisms by the two methods and the rule of pathogen spectrum were compared and analyzed. Results:The overall positive rate of mNGS in CNS infectious diseases was higher than that of conventional methods (58.23% vs. 18.82%), and the difference was statistically significant ( P<0.01). Among the 20 samples which were both positive by the two methods, 10 cases were completely pathogenic, 5 cases were partially consistent and 5 cases were completely inconsistent. In the detection of tuberculous nervous system infection, the positive rates were 66.7%, 53.8%, 44.0%, 40.0%, 4.0% in blood T-SPOT, cerebrospinal fluid mNGS, ADA, Mycobacterium tuberculosis DNA and tuberculous specific antibody, respectively. The positive rate of acid-fast staining was 0. The positive rate of mNGS combined with conventional method was 80.8%. Conclusions:The detection rate of mNGS in CNS infection is better than that of conventional methods. However, it does not show obvious superiority in the detection rate of Mycobacterium tuberculosis associated nervous system infection. In general, mNGS detection of pathogenic bacteria is more extensive, which is conducive to a thorough and comprehensive understanding of the bacterial characteristics of central nervous system infection. The combination of the two methods can make up for the deficiency of clinical routine detection to a certain extent, and can maximize the detection rate.
Objective To study the effect of glycyrrhizin(GL) on the gene expression of high mobility group protein 1 (HMGB1) in hippocampus and serum.To evaluate the effect on the expression of neuron-specific nuclear-binding protein (Neu-N) in the hippocampus CA1,CA3 regions in the chronic stage of an immature rat epilepsy model.Methods Fifty-two 21 day-old SD rats were randomly divided into control group,model group Ⅰ and model group Ⅱ according to the random table method.Model group Ⅰ was induced epilepsy by kainic acid (KA),and the model group Ⅱ was pretreated with GL by intraperitoneal injection at 30 min before KA injection.According to the different observation time points,each group was divided into 4 subgroups:3 h,12 h,24 h and 7 d.Model group Ⅱ was divided into 3 subgroups:10 mg/kg,50 mg/kg,100 mg/kg,according to the different doses of GL.There were 3 animals in each subgroup.Score was performed according to the Racine score,and quantitative real-time polymerase chain reaction and Western blot were applied to detect the mRNA and protein expression of HMGB1 in the acute phase.Enzyme-linked immunosorbent assay(ELISA) was applied to measure the expression of HMGB1 in blood;immunohistochemical was applied to measure the expression of Neu-N in hippocampus in the chronic phase(7 d).Results Compared with model group Ⅰ,seizure onset time was obviously prolonged in model group Ⅱ [(24.08 ± 1.98) min vs.(33.39 ± 2.66) min],and the difference was statistically significant (t =9.231,P <0.05);Comparing KA model group Ⅰ with control group,the gene expression of HMGB1 significantly increased,and reached a peak at the time of 12 h (H =10.532,P < 0.05),but the protein expression of HMGB1 was changed obviously and there was no significant difference (H =5.227,P >0.05).The expression of HMGB1 in the serum also significantly increased,especially at 12 h (H =6.897,P <0.05).At the time of 12 h after KA injection,the gene expression of HMGB1 in the hippocampus was significantly decreased in model group Ⅱ compared with model group Ⅰ (H =10.721,P <0.05) (especially in the 100 mg/kg model group).Also,the expression of HMGB1 in the scrum was obviously decreased (H =6.967,P < 0.05) (especially in the 100 mg/kg model group).At the time of 7 d after KA injection,hippocampal neuron loss in model group.Ⅰ was significantly reduced compared with control group (P < 0.05),and hippocampal neuron loss in model group Ⅱ was evidently decreased compared with model group Ⅰ (P < 0.05),(especially in the 100 mg/kg model group in CA1,50 mg/kg model group in CA3).Conclusions In the immature rat temporal lobe epilepsy model,GL may have neuroprotective by inhibiting the synthesis and release of HMGB1,inhibiting inflammation further to restrain the loss of neurons in the chronic phase.