Xinqiao Gully is located in the area of the 2008 Wenchuan M_(s)8.0 earthquake in Sichuan province,China.Based on the investigation of the 2023"6-26"Xinqiao Gully debris flow event,this study assessed the eff...Xinqiao Gully is located in the area of the 2008 Wenchuan M_(s)8.0 earthquake in Sichuan province,China.Based on the investigation of the 2023"6-26"Xinqiao Gully debris flow event,this study assessed the effectiveness of the debris flow control project and evaluated the debris flow hazards.Through field investigation and numerical simulation methods,the indicators of flow intensity reduction rate and storage capacity fullness were proposed to quantify the effectiveness of the engineering measures in the debris flow event.The simulation results show that the debris flow control project reduced the flow intensity by41.05%to 64.61%.The storage capacity of the dam decreases gradually from upstream to the mouth of the gully,thus effectively intercepting and controlling the debris flow.By evaluating the debris flow of different recurrence intervals,further measures are recommended for managing debris flow events.展开更多
BACKGROUND B56εis a regulatory subunit of the serine/threonine protein phosphatase 2A,which is abnormally expressed in tumors and regulates various tumor cell functions.At present,the application of B56εin pan-cance...BACKGROUND B56εis a regulatory subunit of the serine/threonine protein phosphatase 2A,which is abnormally expressed in tumors and regulates various tumor cell functions.At present,the application of B56εin pan-cancer lacks a comprehensive analysis,and its role and mechanism in hepatocellular carcinoma(HCC)are still unclear.The Cancer Genome Atlas,Genotype-Tissue Expression,Gene Expression Profiling Interactive Analysis,and Tumor Immune Estimation Resource databases were used to analyze B56εexpression,prognostic mutations,somatic copy number alterations,and tumor immune characteristics in 33 tumors.The relationships between B56εexpression levels and drug sensitivity,immuno-therapy,immune checkpoints,and human leukocyte antigen(HLA)-related genes were further analyzed.Gene Set Enrichment Analysis(GSEA)was performed to reveal the role of B56εin HCC.The Cell Counting Kit-8,plate cloning,wound healing,and transwell assays were conducted to assess the effects of B56εinterference on the malignant behavior of HCC cells.RESULTS In most tumors,B56εexpression was upregulated,and high B56εexpression was a risk factor for adrenocortical cancer,HCC,pancreatic adenocarcinoma,and pheochromocytoma and paraganglioma(all P<0.05).B56εexpression levels were correlated with a variety of immune cells,such as T helper 17 cells,B cells,and macro-phages.There was a positive correlation between B56εexpression levels with immune checkpoint genes and HLA-related genes(all P<0.05).The expression of B56εwas negatively correlated with the sensitivity of most chemotherapy drugs,but a small number showed a positive correlation(all P<0.05).GSEA analysis showed that B56εexpression was related to the cancer pathway,p53 downstream pathway,and interleukin-mediated signaling in HCC.Knockdown of B56εexpression in HCC cells inhibited the proliferation,migration,and invasion capacity of tumor cells.Core Tip:The expression of protein phosphatase 2A(PP2A)subunit B56εis up-regulated in most tumors,and its high expression is a risk factor for adrenocortical cancer,hepatocellular carcinoma(HCC),pancreatic adenocarcinoma,and pheochromocytoma and paraganglioma.B56εexpression levels correlate with immune cells,immune checkpoint genes,human leukocyte antigen-related genes,and the sensitivity of chemotherapy drugs.In HCC,B56εexpression is related to the cancer pathway.Knockdown of B56εexpression in HCC cells can inhibit the proliferation,migration and invasion capacity of tumor cells.Our study supports PP2A subunit B56εas a prognostic marker and potential therapeutic target for HCC.展开更多
Objective To observe the dynamic impacts of shock waves on the severity of lung injury in rats with different injury distances.Methods Simulate open-field shock waves;detect the biomechanical effects of explosion sour...Objective To observe the dynamic impacts of shock waves on the severity of lung injury in rats with different injury distances.Methods Simulate open-field shock waves;detect the biomechanical effects of explosion sources at distances of 40,44,and 48 cm from rats;and examine the changes in the gross anatomy of the lungs,lung wet/dry weight ratio,hemoglobin concentration,blood gas analysis,and pathology.Results Biomechanical parameters such as the overpressure peak and impulse were gradually attenuated with an increase in the injury distance.The lung tissue hemorrhage,edema,oxygenation index,and pathology changed more significantly for the 40 cm group than for the 44 and 48 cm groups.The overpressure peak and impulse were significantly higher for the 40 cm group than for the 44 and 48 cm groups(P<0.05 or P<0.01).The animal mortality was significantly higher for the 40 cm group than for the other two groups(41.2%vs.17.8%and 10.0%,P<0.05).The healing time of injured lung tissues for the 40 cm group was longer than those for the 44 and 48 cm groups.Conclusions The effects of simulated open-field shock waves on the severity of lung injuries in rats were correlated with the injury distances,the peak overpressure,and the overpressure impulse.展开更多
Sepsis is a life-threatening emergency that causes millions of deaths every year due to severe infection and inflammation.Nevertheless,current therapeutic regimens are inadequate to promptly address the vast diversity...Sepsis is a life-threatening emergency that causes millions of deaths every year due to severe infection and inflammation.Nevertheless,current therapeutic regimens are inadequate to promptly address the vast diversity of potential pathogens.Omiganan,an antimicrobial peptide,has shown promise for neutralizing endotoxins and eliminating diverse pathogens.However,its clinical application is hindered by safety and stability concerns.Herein,we present a nanoscale drug delivery system(Omi-hyd-Dex@HA NPs)that selectively targets infectious microenvironments(IMEs)and responds to specific stimuli for efficient intervention in sepsis.The system consists of omiganan-dexamethasone conjugates linked by hydrazone bonds which self-assemble into nanoparticles coated with a hyaluronic acid(HA).The HA coating not only facilitates IMEs-targeting through interaction with intercellular-adhesion-molecule-1 on inflamed endotheliocytes,but also improves the biosafety of the nanosystem and enhances drug accumulation in primary infection sites triggered by hyaluronidase.The nanoparticles release dual drugs in IMEs through pH-sensitive cleavage of hydrazone bonds to eradicate pathogens and suppress inflammation.In multiple tissue infection and sepsis animal models,Omi-hyd-Dex@HA NPs exhibited rapid source control and comprehensive inflammation reduction,thereby preventing subsequent fatal complications and significantly improving survival outcomes.The bio-responsive and self-delivering nanosystem offers a promising strategy for systemic sepsis treatment in emergencies.展开更多
Redox catalysts play a vital role in the interconversion of two significant greenhouse gases,CO_(2)and CH_(4),via chemical looping methane dry reforming technology.Herein,a series of transition metals-alloyed and core...Redox catalysts play a vital role in the interconversion of two significant greenhouse gases,CO_(2)and CH_(4),via chemical looping methane dry reforming technology.Herein,a series of transition metals-alloyed and core-shell structured Ni-M/SiO_(2)@CeO_(2)(M=Fe,Co,Cu,Mn,Zr)redox catalyst were fabricated and evaluated in a gas-solid fixed-bed reactor for cycling CH_(4)partial oxidation(PO_(x))and CO_(2)splitting.The catalysts are composed of spherical SiO_(2)core and CeO_(2)shell,and the highly dispersed Ni alloy nanoparticles are the interlayer between core and shell.The oxygen vacancy concentration of Ni-M/SiO_(2)@CeO_(2)followed the order of Co>Cu>Fe>Mn>Zr,and Ni alloying with transition metals significantly enhanced oxygen storage capacity(OSC).Ni-Co/SiO_(2)@CeO_(2)catalyst with abundant oxygen vacancies and a high OSC showed the lowest temperatures of CH_(4)activation(610℃)and CO_(2)decomposition(590℃),thus demonstrating excellent redox reactivity.The catalyst exhibited superior activity and structural stability in the continuous CH_(4)/CO_(2)redox cycles at 615℃,achieving 87%CH_(4)conversion and 83%CO selectivity.The proposed catalyst shows great potential for the utilization of CH_(4)and CO_(2)in a redox mode,providing a new sight for design redox catalyst in chemical looping or related fields.展开更多
The tripartite motif(TRIMs)protein family has E3 ubiquitin ligase activity among most of its members.They participate in multiple cellular processes and signaling pathways in living organisms,including cell cycle,grow...The tripartite motif(TRIMs)protein family has E3 ubiquitin ligase activity among most of its members.They participate in multiple cellular processes and signaling pathways in living organisms,including cell cycle,growth,and metabolism,and mediate chromatin modification,transcriptional regulation,post-translational modification,and cellular autophagy.Previous studies have confirmed that the TRIMs protein family is involved in the development of various cancers and correlated with the prognosis of tumor patients.Here we summarize the biological roles of the TRIMs protein family in cancers.展开更多
基金supported by the project of the China Geological Survey(No.DD20221746)the National Natural Science Foundation of China(Grant Nos.41101086)。
文摘Xinqiao Gully is located in the area of the 2008 Wenchuan M_(s)8.0 earthquake in Sichuan province,China.Based on the investigation of the 2023"6-26"Xinqiao Gully debris flow event,this study assessed the effectiveness of the debris flow control project and evaluated the debris flow hazards.Through field investigation and numerical simulation methods,the indicators of flow intensity reduction rate and storage capacity fullness were proposed to quantify the effectiveness of the engineering measures in the debris flow event.The simulation results show that the debris flow control project reduced the flow intensity by41.05%to 64.61%.The storage capacity of the dam decreases gradually from upstream to the mouth of the gully,thus effectively intercepting and controlling the debris flow.By evaluating the debris flow of different recurrence intervals,further measures are recommended for managing debris flow events.
基金National Natural Science Foundation of China,No.82060621,82060607,and 82260664Natural Science Foundation of Guangxi Province,No.2020GXNSFDA297010 and 2020GXNSFAA297142Key Science and Technology Research and Development Program Project of Guangxi,No.AB22035017。
文摘BACKGROUND B56εis a regulatory subunit of the serine/threonine protein phosphatase 2A,which is abnormally expressed in tumors and regulates various tumor cell functions.At present,the application of B56εin pan-cancer lacks a comprehensive analysis,and its role and mechanism in hepatocellular carcinoma(HCC)are still unclear.The Cancer Genome Atlas,Genotype-Tissue Expression,Gene Expression Profiling Interactive Analysis,and Tumor Immune Estimation Resource databases were used to analyze B56εexpression,prognostic mutations,somatic copy number alterations,and tumor immune characteristics in 33 tumors.The relationships between B56εexpression levels and drug sensitivity,immuno-therapy,immune checkpoints,and human leukocyte antigen(HLA)-related genes were further analyzed.Gene Set Enrichment Analysis(GSEA)was performed to reveal the role of B56εin HCC.The Cell Counting Kit-8,plate cloning,wound healing,and transwell assays were conducted to assess the effects of B56εinterference on the malignant behavior of HCC cells.RESULTS In most tumors,B56εexpression was upregulated,and high B56εexpression was a risk factor for adrenocortical cancer,HCC,pancreatic adenocarcinoma,and pheochromocytoma and paraganglioma(all P<0.05).B56εexpression levels were correlated with a variety of immune cells,such as T helper 17 cells,B cells,and macro-phages.There was a positive correlation between B56εexpression levels with immune checkpoint genes and HLA-related genes(all P<0.05).The expression of B56εwas negatively correlated with the sensitivity of most chemotherapy drugs,but a small number showed a positive correlation(all P<0.05).GSEA analysis showed that B56εexpression was related to the cancer pathway,p53 downstream pathway,and interleukin-mediated signaling in HCC.Knockdown of B56εexpression in HCC cells inhibited the proliferation,migration,and invasion capacity of tumor cells.Core Tip:The expression of protein phosphatase 2A(PP2A)subunit B56εis up-regulated in most tumors,and its high expression is a risk factor for adrenocortical cancer,hepatocellular carcinoma(HCC),pancreatic adenocarcinoma,and pheochromocytoma and paraganglioma.B56εexpression levels correlate with immune cells,immune checkpoint genes,human leukocyte antigen-related genes,and the sensitivity of chemotherapy drugs.In HCC,B56εexpression is related to the cancer pathway.Knockdown of B56εexpression in HCC cells can inhibit the proliferation,migration and invasion capacity of tumor cells.Our study supports PP2A subunit B56εas a prognostic marker and potential therapeutic target for HCC.
基金supported by the Major Project of Military Logistical Support Department[grant number AWS15J003and ALB19J001]。
文摘Objective To observe the dynamic impacts of shock waves on the severity of lung injury in rats with different injury distances.Methods Simulate open-field shock waves;detect the biomechanical effects of explosion sources at distances of 40,44,and 48 cm from rats;and examine the changes in the gross anatomy of the lungs,lung wet/dry weight ratio,hemoglobin concentration,blood gas analysis,and pathology.Results Biomechanical parameters such as the overpressure peak and impulse were gradually attenuated with an increase in the injury distance.The lung tissue hemorrhage,edema,oxygenation index,and pathology changed more significantly for the 40 cm group than for the 44 and 48 cm groups.The overpressure peak and impulse were significantly higher for the 40 cm group than for the 44 and 48 cm groups(P<0.05 or P<0.01).The animal mortality was significantly higher for the 40 cm group than for the other two groups(41.2%vs.17.8%and 10.0%,P<0.05).The healing time of injured lung tissues for the 40 cm group was longer than those for the 44 and 48 cm groups.Conclusions The effects of simulated open-field shock waves on the severity of lung injuries in rats were correlated with the injury distances,the peak overpressure,and the overpressure impulse.
基金supported by the Program of the Scientific and Technological in Guiyang City(Grant No.Zhu Ke He[2020]-16-5)Program of Scientific and Technological Project in Guizhou Province(Grant No.[2020]4Y197,Qian Ke He Ji Chu ZK[2022]Yi Ban 516,Qian Ke He Ji Chu ZK[2021]Yi Ban 559)+3 种基金the Science and Technology Talents Growth Project in Education Department of Guizhou Province(Grant No.Qian Jiao He KY Zi[2021]4Y211)the Program of Science and Technology of Guizhou Provincial Health Commission(Grant No.gzwjkj2020-1-215)the Knowledge Innovation Special Project for Fundamental Research of Wuhan(Grant No.2022020801010461)the Sichuan Science and Technology Program(Grant No.2022NSFSC1420).
文摘Sepsis is a life-threatening emergency that causes millions of deaths every year due to severe infection and inflammation.Nevertheless,current therapeutic regimens are inadequate to promptly address the vast diversity of potential pathogens.Omiganan,an antimicrobial peptide,has shown promise for neutralizing endotoxins and eliminating diverse pathogens.However,its clinical application is hindered by safety and stability concerns.Herein,we present a nanoscale drug delivery system(Omi-hyd-Dex@HA NPs)that selectively targets infectious microenvironments(IMEs)and responds to specific stimuli for efficient intervention in sepsis.The system consists of omiganan-dexamethasone conjugates linked by hydrazone bonds which self-assemble into nanoparticles coated with a hyaluronic acid(HA).The HA coating not only facilitates IMEs-targeting through interaction with intercellular-adhesion-molecule-1 on inflamed endotheliocytes,but also improves the biosafety of the nanosystem and enhances drug accumulation in primary infection sites triggered by hyaluronidase.The nanoparticles release dual drugs in IMEs through pH-sensitive cleavage of hydrazone bonds to eradicate pathogens and suppress inflammation.In multiple tissue infection and sepsis animal models,Omi-hyd-Dex@HA NPs exhibited rapid source control and comprehensive inflammation reduction,thereby preventing subsequent fatal complications and significantly improving survival outcomes.The bio-responsive and self-delivering nanosystem offers a promising strategy for systemic sepsis treatment in emergencies.
基金supported by the National Natural Science Foundation of China(52066007,22279048)Yunnan Major Scientific and Technological Projects(202202AG050017)the Applied Basic Research Program of Yunnan Province(202101AT070076)。
文摘Redox catalysts play a vital role in the interconversion of two significant greenhouse gases,CO_(2)and CH_(4),via chemical looping methane dry reforming technology.Herein,a series of transition metals-alloyed and core-shell structured Ni-M/SiO_(2)@CeO_(2)(M=Fe,Co,Cu,Mn,Zr)redox catalyst were fabricated and evaluated in a gas-solid fixed-bed reactor for cycling CH_(4)partial oxidation(PO_(x))and CO_(2)splitting.The catalysts are composed of spherical SiO_(2)core and CeO_(2)shell,and the highly dispersed Ni alloy nanoparticles are the interlayer between core and shell.The oxygen vacancy concentration of Ni-M/SiO_(2)@CeO_(2)followed the order of Co>Cu>Fe>Mn>Zr,and Ni alloying with transition metals significantly enhanced oxygen storage capacity(OSC).Ni-Co/SiO_(2)@CeO_(2)catalyst with abundant oxygen vacancies and a high OSC showed the lowest temperatures of CH_(4)activation(610℃)and CO_(2)decomposition(590℃),thus demonstrating excellent redox reactivity.The catalyst exhibited superior activity and structural stability in the continuous CH_(4)/CO_(2)redox cycles at 615℃,achieving 87%CH_(4)conversion and 83%CO selectivity.The proposed catalyst shows great potential for the utilization of CH_(4)and CO_(2)in a redox mode,providing a new sight for design redox catalyst in chemical looping or related fields.
基金supported by the National Natural Science Foundation of China(82060607,81860586)the Natural Science Foundation of Guangxi Province(2020GXNSFDA297010).
文摘The tripartite motif(TRIMs)protein family has E3 ubiquitin ligase activity among most of its members.They participate in multiple cellular processes and signaling pathways in living organisms,including cell cycle,growth,and metabolism,and mediate chromatin modification,transcriptional regulation,post-translational modification,and cellular autophagy.Previous studies have confirmed that the TRIMs protein family is involved in the development of various cancers and correlated with the prognosis of tumor patients.Here we summarize the biological roles of the TRIMs protein family in cancers.