1.Antibody threshold and demographic characteristics of low-titer group O whole blood donors in Jiangsu
Tao FENG ; Rui ZHU ; Wenjia HU ; Ling MA ; Hong LIN ; Xi YU ; Chun ZHOU ; Nizhen JIANG
Chinese Journal of Blood Transfusion 2025;38(9):1225-1229
		                        		
		                        			
		                        			Objective: To investigate the distribution of IgM anti-A/B titers among group O whole blood donors in Jiangsu, establish a low-titer threshold, and analyze the demographic characteristics of low-titer donors, so as to provide data for recruiting low-titer group O whole blood (LTOWB) donors. Methods: Plasma samples from 1 009 group O whole blood donors were tested for IgM anti-A and anti-B titers using the microplate technique. The distribution of antibody titers was analyzed to establish a low-titer threshold. The distribution trends of titers across different demographic groups were also analyzed. Results: The peak titer for anti-A, anti-B were 64 (31.5%), 4 (23.8%), respectively, The proportion of donors with both anti-A and anti-B titers below 64 was 97.3% (982/1 009). The mean anti-A titer was higher than anti-B titer. Anti-A titers were higher in female donors than in male donors (P<0.05). The anti-A titers differed significantly among different age groups (P<0.05). However, no significant difference in titers was observed based on the number of donations (P>0.05). Conclusion: A titer of 64 can be used as the reference threshold of LTOWB in Jiangsu. Male donors of appropriate age are more suitable than female donors for establishing an emergency panel of LTOWB mobile donors.
		                        		
		                        		
		                        		
		                        	
2. The neuroprotective effects of Herba siegesbeckiae extract on cerebral ischemia/reperfusion in rats
Hui-Ling WU ; Qing-Qing WU ; Jing-Quan CHEN ; Bin-Bin ZHOU ; Zheng-Shuang YU ; Ze-Lin YANG ; Wen-Fang LAI ; Gui-Zhu HONG
Chinese Pharmacological Bulletin 2024;40(1):70-75
		                        		
		                        			
		                        			 Aim To study the neuroprotective effects of Herba siegesbeckiae extract on cerebral ischemia/ reperfusion rats and its mechanism. Methods Sixty SD rats were randomly divided into model group, low, middle and high dose groups of Herba siegesbeckiae, and Sham operation group, and the drug was given continuously for seven days. The degree of neurologic impairment was evaluated by mNSS, and the infarct volume was measured by MRI. The number of Nissl-posi- tive cells was detected by Nissl staining, and the apop- tosis was accessed by Tunel staining. Furthermore, the expression of Bax, Bcl-2 and NeuN was observed by Western blot, and the expression of NeuN was detected by immunofluorescence staining. The expression of IL- 1β, TNF-α and IL-6 mRNA was performed by RT- qPCR. Results The mNSS score and the volume of ischemic cerebral infarction in the model group were significantly increased, and Herba siegesbeckiae extract treatment significantly decreased the mNSS score and infarct volume (P<0.05, P<0.01). Herba siegesbeckiae extract could increase the number of Nissl-pos- itive cells and the expression of NeuN (P<0.01), and reduce the number of Tunel-positive cells (P<0.01). Western blot showed that Herba siegesbeckiae extract inhibited the expression of Bax, increased Bcl-2 and NeuN in ischemic brain tissue (P<0.01). RT-qPCR showed that Herba siegesbeckiae extract inhibited the expression of IL-1 β, TNF-α and IL-6 mRNA in the is-chemic brain tissue (P<0.01). Conclusions Herba siegesbeckiae extract can reduce the cerebral infarction volume, improve the neurological function damage, inhibit the apoptosis of nerve cells and the expression of inflammatory factors and promote the expression of NeuN, there by exerting protective effects on MCAO rats. 
		                        		
		                        		
		                        		
		                        	
3.Investigation and control of a suspected outbreak of carbapenem-resistant Klebsiella pneumoniae bloodstream infection in patients with hematologi-cal tumors
Ni ZENG ; Guang-Ying LUO ; Jing-Jing LI ; Qing-Qing WANG ; Xiao-Li ZHOU ; Ling-Zhu LI ; Zhu-Hong ZHA
Chinese Journal of Infection Control 2024;23(3):316-322
		                        		
		                        			
		                        			Objective To investigate a suspected outbreak of carbapenem-resistant Klebsiella pneumoniae(CRKP)healthcare-associated bloodstream infection(HA-BSI),provide reference for effective control of CRKP in-fection.Methods The characteristics of CRKP infected patients and the risk factors for the event transmission in an adult hematology department of a teaching hospital in June 2022 were obtained by field epidemiological investigation.The specimens of environmental target strains were co-llected by blood nutrient agar inoculation,the removal status of environmental microorganisms and the effect of infection control after implementing control measures were com-pared.Results There were a total of 6 cases of CRKP HA-BSI,with an attacking rate of 1.29%(6/464),which was significantly higher than 0 during the same period in 2021,and difference was statistically significant(P=0.011).In environmental hygiene monitoring,the detection rate of CRKP was 2.27%(1/44),which was from the surface of bed curtain in the living unit of infected patients,homology analysis with CRKP detected from 2 patients revealed that the 16s RNA of 3 CRKP strains was completely identical,with a similarity of 100%.Seven house-keeping genes of 3 CRKP strains were all identical and belonged to the ST11 type.Comprehensive control measures were taken:appropriate closure of the ward,centralized isolation of patients,terminal disinfection of the ward,reg-ular health care workers and relative restriction of their activity areas.After the measures were taken,the qualified rate of microbial colony count in the ward increased compared to before taking the measures(2.27%vs 68.89%,P<0.001),with a statistically significant difference,there were no more CRKP infected cases after the intervention,indicating that the control measures were effective.Conclusion This outbreak was caused by ST11 type of common CRKP in China,and laminar bed curtains are carriers of pathogen transmission.It is speculated that non-standard cleaning and disinfection,as well as inadequate implementation of hand hygiene are the main causes for transmis-sion.Adopting an appropriate strategy of closing the ward and concentrating patient isolation can quickly and effec-tively prevent the transmission of the event.
		                        		
		                        		
		                        		
		                        	
4.Effects of Quorum Sensing Molecules on The Immune System
Wen-Min MA ; Xuan-Qi CHEN ; Hong-Xia MA ; Wen-Hui ZHANG ; Ling-Cong KONG ; Yu-Jia ZHOU ; Yuan-Yuan HU ; Yu JIA
Progress in Biochemistry and Biophysics 2024;51(11):2853-2867
		                        		
		                        			
		                        			In recent years, the development of host-acting antibacterial compounds has gradually become a hotspot in the field of anti-infection. Through research on the interaction mechanism between hosts and pathogenic bacteria, it has been found that the immune system is one of the key targets of host-acting antibacterial compounds. There is a communication system called the quorum sensing system in microorganisms, which mainly adjusts the structure of multi-microbial community and coordinates the group behavior. When the quorum sensing molecules secreted by microorganisms reach a threshold concentration, the quorum sensing system is activated and the overall gene expression of the microorganism is changed. In addition to regulating the density of microorganisms, quorum sensing molecules can also act as a link between pathogenic microorganisms and hosts, entering the host immune system and playing a role in affecting the morphological structure of immune cells, secreting cytokines, and inducing apoptosis, leading to host immune injury and causing host immune dysfunction.The key mechanism of 3-oxo-C12-HSL and other acyl-homoserine lactone (AHL) molecules in the innate immune system has been extensively studied. The lipid solubility allows AHLs to pass through the plasma membrane of host immune cells easily and induce dissolution of lipid domains. Then, it acts through signaling pathways such as p38MAPK and JAK-STAT, further influencing the immune cell’s defense response to bacteria and potentially leading to cell apoptosis. Additionally, the human lactonase paraoxonase 2, which can degrade3-oxo-C12-HSL, has been found in macrophage. It acts as an immune regulator that promotes macrophage phagocytosis of pathogens and is hypothesized to have the ability to reduce bacterial resistance. The mechanism of quorum sensing molecules in the adaptive immune system is less studied, the current results suggest that 3-oxo-C12-HSL is closely related to the mitochondrial pathway in host immune cells. For example, 3-oxo-C12-HSL induces apoptosis of Jurkat cells by inhibiting the expression of three mitochondrial electron transport chain proteins; it can also trigger mitochondrial dysfunction and induce mast cell apoptosis through Ca2+ signaling.Among the quorum sensing molecules, the AHLs have the greatest impact on plant immune system. The different effects on plant resistance depends on the chain lengths of acyl groups in bacterial-produced AHLs. Short-chain AHLs (C4-HSL and C8-HSL) induce plant resistance to pathogenic bacteria mainly through the auxin pathway and jasmonic acid pathway. Long-chain AHL (3-oxo-C14-HSL) is commonly used in hosts against fungal pathogens by inducing stomata defense responses, and the reaction process is related to salicylic acid. Diffusible signal factor molecules also interfere with the stomatal immunity caused by pathogens. It may act through the formin nanoclustering-mediated actin assembly and MPK3 pathway to inhibit the innate immunity of Arabidopsis. In summary, AHLs induced different plant pathways and affects the plant-bacteria interactions to trigger plant immunity. As a quorum sensing molecule of fungi, farnesol has similar effects on host immunity as AHLs, such as stimulating cytokine secretion and activating an inflammatory response. It also plays a unique role on dendritic cell differentiation and maturation. In addition, studies have found that farnesol has a protective effect on autoimmune encephalomyelitis, which may be related to its effect on the composition of intestinal microorganisms of the host.Therefore, targeting the host immune system and quorum sensing molecules to develop antibacterial compounds can effectively inhibit the invasion of pathogens and subserve the host to resist the influence of pathogenic bacteria. This article will review the mechanism of host immune responses triggered by important quorum sensing molecules, aiming to explore the targets of host-acting antibacterial compounds and provide new directions for the prevention or treatment of causative infectious sources and the development of related drugs. 
		                        		
		                        		
		                        		
		                        	
5.RBMX overexpression inhibits proliferation,migration,invasion and glycolysis of human bladder cancer cells by downregulating PKM2
Qiuxia YAN ; Peng ZENG ; Shuqiang HUANG ; Cuiyu TAN ; Xiuqin ZHOU ; Jing QIAO ; Xiaoying ZHAO ; Ling FENG ; Zhenjie ZHU ; Guozhi ZHANG ; Hong HU ; Cairong CHEN
Journal of Southern Medical University 2024;44(1):9-16
		                        		
		                        			
		                        			Objective To investigate the role of RNA-binding motif protein X-linked(RBMX)in regulating the proliferation,migration,invasion and glycolysis in human bladder cancer cells.Methods A lentivirus vectors system and RNA interference technique were used to construct bladder cancer 1376 and UC-3 cell models with RBMX overexpression and knockdown,respectively,and successful cell modeling was verified using RT-qPCR and Western blotting.Proliferation and colony forming ability of the cells were evaluated using EdU assay and colony-forming assay,and cell migration and invasion abilities were determined using Transwell experiment.The expressions of glycolysis-related proteins M1 pyruvate kinase(PKM1)and M2 pyruvate kinase(PKM2)were detected using Western blotting.The effects of RBMX overexpression and knockdown on glycolysis in the bladder cancer cells were assessed using glucose and lactic acid detection kits.Results RT-qPCR and Western blotting confirmed successful construction of 1376 and UC-3 cell models with RBMX overexpression and knockdown.RBMX overexpression significantly inhibited the proliferation,clone formation,migration and invasion of bladder cancer cells,while RBMX knockdown produced the opposite effects.Western blotting results showed that RBMX overexpression increased the expression of PKM1 and decreased the expression of PKM2,while RBMX knockdown produced the opposite effects.Glucose consumption and lactate production levels were significantly lowered in the cells with RBMX overexpression(P<0.05)but increased significantly following RBMX knockdown(P<0.05).Conclusion RBMX overexpression inhibits bladder cancer progression and lowers glycolysis level in bladder cancer cells by downregulating PKM2 expression,suggesting the potential of RBMX as a molecular target for diagnosis and treatment of bladder cancer.
		                        		
		                        		
		                        		
		                        	
6.RBMX overexpression inhibits proliferation,migration,invasion and glycolysis of human bladder cancer cells by downregulating PKM2
Qiuxia YAN ; Peng ZENG ; Shuqiang HUANG ; Cuiyu TAN ; Xiuqin ZHOU ; Jing QIAO ; Xiaoying ZHAO ; Ling FENG ; Zhenjie ZHU ; Guozhi ZHANG ; Hong HU ; Cairong CHEN
Journal of Southern Medical University 2024;44(1):9-16
		                        		
		                        			
		                        			Objective To investigate the role of RNA-binding motif protein X-linked(RBMX)in regulating the proliferation,migration,invasion and glycolysis in human bladder cancer cells.Methods A lentivirus vectors system and RNA interference technique were used to construct bladder cancer 1376 and UC-3 cell models with RBMX overexpression and knockdown,respectively,and successful cell modeling was verified using RT-qPCR and Western blotting.Proliferation and colony forming ability of the cells were evaluated using EdU assay and colony-forming assay,and cell migration and invasion abilities were determined using Transwell experiment.The expressions of glycolysis-related proteins M1 pyruvate kinase(PKM1)and M2 pyruvate kinase(PKM2)were detected using Western blotting.The effects of RBMX overexpression and knockdown on glycolysis in the bladder cancer cells were assessed using glucose and lactic acid detection kits.Results RT-qPCR and Western blotting confirmed successful construction of 1376 and UC-3 cell models with RBMX overexpression and knockdown.RBMX overexpression significantly inhibited the proliferation,clone formation,migration and invasion of bladder cancer cells,while RBMX knockdown produced the opposite effects.Western blotting results showed that RBMX overexpression increased the expression of PKM1 and decreased the expression of PKM2,while RBMX knockdown produced the opposite effects.Glucose consumption and lactate production levels were significantly lowered in the cells with RBMX overexpression(P<0.05)but increased significantly following RBMX knockdown(P<0.05).Conclusion RBMX overexpression inhibits bladder cancer progression and lowers glycolysis level in bladder cancer cells by downregulating PKM2 expression,suggesting the potential of RBMX as a molecular target for diagnosis and treatment of bladder cancer.
		                        		
		                        		
		                        		
		                        	
7.Detection of the Biological Activity of Interleukin-11 Based on the Reporter Gene Method
Yi-Ying WANG ; Xiao-Ling ZHOU ; Zi-Hong YE ; Ya-Fen ZHANG
Chinese Journal of Biochemistry and Molecular Biology 2024;40(10):1462-1470
		                        		
		                        			
		                        			Interleukin-11(IL-11)is a multifunctional cytokine that plays a crucial role in various bio-logical processes,including the promotion of hematopoiesis,regulation of the immune system,and facili-tation of tissue repair.These functions highlight its significant importance in both medical research and clinical therapy.Consequently,the precise detection and assessment of IL-11's biological activity are es-sential.The currently employed cell proliferation inhibition assay is cumbersome,time-consuming,and susceptible to interference from Interleukin-6.Here we study the JAK-STAT signaling pathway,a key mechanism of IL-11 actions.We initially establish a stable monoclonal cell line that expresses a luciferase reporter gene responsive to IL-11.We subsequently optimized critical parameters,including the pre-dilu-tion concentration and gradient of IL-11,cell inoculum size,and IL-11 incubation duration.Comprehen-sive validation was undertaken to evaluate accuracy,precision,specificity,stability,and concordance with pharmacopeial methods,ultimately leading to the establishment of a novel reporter gene-based ap-proach for detecting the biological activity of IL-11.This innovative method significantly enhances the de-tection accuracy and sensitivity while reducing the testing time,thereby offering promising prospects for broad applications.
		                        		
		                        		
		                        		
		                        	
8.Clinical Analysis of Children with Thalassemia in Chongqing
Rong OU ; Hong-Xia CHEN ; Lin YU ; Ling LIU ; Ping ZHOU
Journal of Experimental Hematology 2024;32(1):214-218
		                        		
		                        			
		                        			Objective:To analyze the genotype distribution and hematological characteristics of children with thalassemia in Chongqing.Methods:A total of 207 children with thalassemia admitted to Chongqing University Three Gorges Hospital from January 2021 to October 2022 were selected as the research objects.The genotype distribution and hematological characteristics were retrospectively analyzed.Results:207 cases of thalassemia were confirmed from 482 samples by gene detection,the detection rate was 42.95%,α-thalassemia accounted for 17.63%(85/482),β-thalassemia accounted for 24.27%(117/482),and compound αβ thalassemia accounted for 1.04%(5/482).A total of 5 gene mutation types of α-thalassaemia were detected in this study,which constituted 6 genotypes,αα/-SEA was the most common one,followed by αα/-α7.A total of 8 gene mutation types of β-thalassemia were detected,which constituted 9 genotypes,the top three were CD17/N,CD654/N and CD41-42/N.The highest detection rate was found in the patients aged 0-3 years(57%),and the degree of anemia was mainly mild(88.41%).97.58%of the patients were MCV<80 fl,98.55%were MCH<28 pg,60.87%were MCHC<320 g/L,and 71.50%were RDW-SD<37%.The MCV and MCH of β-thalassemia group were lower than that of α-thalassemia group,and the MCHC was higher than that of α-thalassemia group(P<0.05),but RDW-SD was not significantly different between the two groups(P>0.05).There were no significant differences in MCV,MCH,MCHC and RDW-SD between β+/βN and β0/βN groups(P>0.05).The MCV and RDW-SD of--/αα thalassemia group were lower than that in-α/αα thalassemia group,the differences were statistically significant(P<0.05),but MCH and MCHC were not significantly different between the two groups(P>0.05).Conclusion:The genotypes of children with thalassemia in Chongqing are diverse and heterogeneous,and the majority of them are mild anemia.There are differences in haematological indexes among different genotypes of thalassemia.
		                        		
		                        		
		                        		
		                        	
9.Raman Spectroscopy Combined with Partial Least Squares for Quantitative Analysis of Two Kinds of Microplastics in Water Samples
Jian-Ming DING ; Xin WANG ; Rong-Ling ZHANG ; Li-Yuan ZHOU ; Tian-Long ZHANG ; Hong-Sheng TANG ; Hua LI
Chinese Journal of Analytical Chemistry 2024;52(10):1581-1590
		                        		
		                        			
		                        			Microplastics(MPs)are emerging contaminants in aquatic environments characterized by their polar structure,small particle size(Typically less than 5 mm),large surface area,good stability,and resistance to biodegradation.They pose adverse effects on the normal physiological activities of aquatic organisms and can accumulate in biota,including humans.Therefore,there is an urgent need for rapid and accurate quantitative analysis of MPs in water environments.In this study,Raman spectroscopy combined with partial least squares(PLS)was employed for rapid and accurate quantitative analysis of polyethylene(PE)and polystyrene(PS)MPs in real water samples.Initially,33 simulated water samples containing different concentrations of MPs were prepared,and their Raman spectra were collected.Six spectral preprocessing methods(Normalization,multiplicative scatter correction,standard normal variate transformation,first derivative,second derivative,and wavelet transform)were investigated for their impact on the predictive performance of PLS calibration models.Subsequently,three variable selection methods including synergy interval partial least squares(SiPLS),variable importance in projection(VIP)and mutual information(MI)were employed to optimize the input variables of the PLS calibration model.The predictive capability of the PLS calibration model was evaluated and validated using leave-one-out cross-validation.Under the optimal conditions of spectral preprocessing,variable selection,input variables and latent variables,the wavelet transform-partial least squares(WT-PLS)calibration model based on distilled water was established,and the contents of PE and PS in real water samples were predicted with prediction correlation coefficients(R2p)of 0.9540 and 0.8472 for PE and PS,respectively,and prediction errors(Errorp)of 0.0690 and 0.1126,respectively.Furthermore,a mixed sample MI-PLS calibration model was developed,demonstrating the best predictive performance in real water samples(With R2p values of 0.9776 and 0.9755 for PE and PS,respectively,and Errorp values of 0.0360 and 0.0392,respectively).This method provided a novel approach and new methodology for quantitative analysis of MPs and other organic pollutants in real water samples.
		                        		
		                        		
		                        		
		                        	
10.Construction and application of information support system for integrated medical treatment in multi-branch hospital
Yong-Jun CHEN ; Xiao-Min ZHOU ; Yong-Hua ZHOU ; Hong-Ling CHEN
Chinese Medical Equipment Journal 2024;45(8):51-56
		                        		
		                        			
		                        			Objective To construct an integrated medical treatment information support system in the multi-branch hospital to provide information support for integrated medical service.Methods The integrated medical treatment information support system in the multi-branch hospital was composed of an integrated network management system,an integrated application management platform,an integrated application system and an integrated security policy mechanism.The integrated network management system realized generalized hospital network management from the aspects of architecture,virtual LAN,performance,topology and alarm;the integrated application management platform used the virtualization platform and hyper-converged platform to centralize the management of various application servers,share information and enhance the effective-ness of resource management;the integrated application system included the homogenous hospital information systems,picture archiving and communication systems,laboratory information systems,electronic medical record systems,outpatient and inpatient application systems distributed in the branches and outpatient departent,which avoided heterogenization in data format and standard;the integrated security policy mechanism enhanced hospital information security in terms of facility,strategy,host and data according to third-level classified protection standard 2.0.Results The integrated medical treatment information support system solved the problems of the multi-branch hospital in network communication,system integration,information sharing and protection,improved medical service and enhanced information safety.Conclusion The integrated medical treatment information support system realizes cross-campus collaboration of medical services and provides informa-tion support for implementation of integrated medical care.[Chinese Medical Equipment Journal,2024,45(8):51-56]
		                        		
		                        		
		                        		
		                        	
            
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