1.Prokaryotic expression, purification and immunogenicity of SARS-CoV-2 omicron variant nucleocapsid protein.
Zewen TU ; Quansheng WANG ; Shiguo LIU ; Haosen LIU ; Chunyan ZENG ; Juanjuan XIE ; Mingzhi LI ; Jingcai LI ; Min WANG ; Shiqi WENG ; Lumei KANG ; Lingbao KONG
Chinese Journal of Cellular and Molecular Immunology 2025;41(8):735-743
Objective The study aims to investigate the immunological functions of the nucleocapsid (N) protein of the novel coronavirus Omicron (BA.1, BA.2) and evaluate the differences among different N proteins of mutant strains in immunogenicity. Methods By aligning sequences, the mutation sites of the Omicron (BA.1, BA.2) N protein relative to prototype strain of the novel coronavirus (Wuhan-Hu-1) were determined. The pET-28a-N-Wuhan-Hu-1 plasmid was used as template to construct pET-28a-BA.1/BA.2-N through single point mutation or homologous recombination. The three kinds of N protein were expressed in prokaryotic system, purified through Ni-NTA affinity chromatography, and then immunized into mice. The titer and reactivity of the polyclonal antibody, as well as the expression level of IL-1β and IFN-γ in mouse spleen cells, were detected using indirect ELISA and Western blot assay. Results The constructed prokaryotic expression plasmids were successfully used to express the Wuhan-Hu-1 N, BA.1 N, and BA.2 N proteins in E.coli BL21(DE3) at 37 DegreesCelsius for 4 hours. The indirect ELISA test showed that the titers of polyclonal antibody prepared by three N proteins were all 1:51 200. All three N proteins can increase the expression of IFN-γ and IL-1β cytokines, but the effect of Omicron N protein in activing two cytokines was more obvious than that of Wuhan-Hu-1 N protein. Conclusion The study obtained three new coronavirus N proteins and polyclonal antibodies, and confirmed that mutations in the amino acid sites of the N protein can affect its immunogenicity. This provides a basis for developing rapid diagnostic methods targeting N protein of different novel coronavirus variants.
Animals
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Mice
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SARS-CoV-2/genetics*
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Coronavirus Nucleocapsid Proteins/immunology*
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Nucleocapsid Proteins/isolation & purification*
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COVID-19/immunology*
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Antibodies, Viral/immunology*
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Mice, Inbred BALB C
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Interferon-gamma/metabolism*
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Interleukin-1beta/metabolism*
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Female
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Escherichia coli/metabolism*
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Mutation
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Humans
2.Applications and Advances of Metabolomics in Lung Cancer Research.
Daoyun WANG ; Zhicheng HUANG ; Bowen LI ; Yadong WANG ; Zhina WANG ; Nan ZHANG ; Zewen WEI ; Naixin LIANG ; Shanqing LI
Chinese Journal of Lung Cancer 2025;28(7):533-541
Lung cancer, particularly non-small cell lung cancer (NSCLC), is a leading cause of cancer-related mortality worldwide. In recent years, metabolomics has emerged as a key systems biology approach for analyzing small-molecule metabolites in cells, tissues and organisms. It provides new strategies for early diagnosis and metabolic profiling. Additionally, metabolomics plays a crucial role in studying resistance mechanisms in lung cancer. Tumor cell metabolic reprogramming is a key driving factor in the initiation and progression of lung cancer. Metabolomics studies have revealed how lung cancer cells regulate critical pathways such as energy metabolism, lipid metabolism, and amino acid metabolism to adapt to the demands of rapid proliferation and invasive metastasis. This review summarizes the latest advances in metabolomics research in lung cancer, focusing on the characteristics of metabolic reprogramming, the identification of potential metabolic biomarkers, and the prospects of metabolomics in early diagnosis and the elucidation of resistance mechanisms in lung cancer.
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Humans
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Metabolomics/methods*
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Lung Neoplasms/pathology*
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Animals
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Biomarkers, Tumor/metabolism*
3.Sal idroside Modulates cAMP/PKA/CREB Signaling Pathway to Inhibit Ci splatin-induced Damages of Cochlear Hair Cells and Spiral Ganglion Neurons in Mice
Zhaolong LI ; Yice XU ; Zewen LI ; Jie ZHOU
Journal of Audiology and Speech Pathology 2024;32(1):60-64
Objective To investigate the ameliorating effect of salidroside(SAL)on cisplatin(CIS)-induced damages of cochlear hair cells(CHC)and spiral ganglion neurons(SGNs)and its relationship with cyclic adenosine monophosphate(cAMP)/protein kinase A(PKA)/cAMP response element binding protein(CREB)pathway.Methods The cochlear basilar membranes of newborn C 57BL/6 mice were isolated and separated into control(C)group,CIS group,SAL group,SAL+SQ22536(cAMP inhibitor)group and SAL+H-89(PKA inhibitor)group,20 per group.Immunofluorescence staining was applied to observe the damages of CHC and SGNs.The kits were applied to detect the contents of ROS and cAMP in the basement membrane of the cochlea.Western blot was applied to detect the protein levels of PKA,p-CREB,CREB,Bcl-2,BDNF,and NF-M.Results CHC in CIS group were disorderly arranged and enlarged in size,SGNs had fragmented nuclei and lost neurites.SAL alleviated the damages of CHC and SGNs.Compared with the C group,the numbers of CHC and SGNs in the CIS group were less(P<0.05),the contents of ROS and cAMP,and the levels of PKA,BDNF,NF-M,Bcl-2 proteins and p-CREB/CREB were higher(P<0.05).Compared with the CIS group,the numbers of CHC and SGNs in the SAL group were higher(P<0.05),the content of ROS was lower(P<0.05),the content of cAMP,and the levels of PKA,BD-NF,NF-M,Bcl-2 proteins and p-CREB/CREB were higher(P<0.05).Both SQ22536 and H-89 reversed the pro-tective effects of SAL on CHC and SGNs.Conclusion SAL may promote the expression of anti-apoptotic proteins and neuroprotective factors by activating the cAMP/PKA/CREB pathway to alleviate the damages of CHC and SGNs caused by CIS.
4.Preparation methods,advantages,and disadvantages of cartilage scaffold materials
Zewen WANG ; Chenzhi LI ; Jiahe LIU ; Yancheng LI ; Mingjian WU ; Yan CUI ; Zhenhao LI ; Wanqi XIONG ; Ting HE ; Baoyi LIU ; Fan YANG
Chinese Journal of Tissue Engineering Research 2024;28(15):2404-2409
BACKGROUND:Scaffold materials serve as platforms that provide space and structure,playing a crucial role in the regeneration of cartilage tissue.Scholars from around the world are exploring different approaches to fabricate more ideal scaffold materials. OBJECTIVE:To review the design principles and preparation methods of cartilage scaffolds,and to further explore the advantages and limitations of various preparation methods. METHODS:Literature searches were conducted on the databases of CNKI,WanFang Data,PubMed,and FMRS from 1998 to 2023.The search terms were"cartilage repair,cartilage tissue engineering,cartilage scaffold materials,preparation"in Chinese and English.A total of 57 articles were ultimately reviewed. RESULTS AND CONCLUSION:(1)The articular cartilage has a unique structure and limited self-repair capacity after injury.Even if self-repair occurs,the newly formed cartilage is typically fibrocartilage,which is far inferior to normal articular cartilage in terms of structure and mechanical properties.It is difficult to maintain normal function and often leads to degenerative changes.Currently,the design and fabrication of scaffold materials for cartilage repair need to consider the following aspects:biocompatibility and biodegradability,suitable pore structure and porosity,appropriate mechanical properties,and bioactivity.(2)Research on the preparation of cartilage scaffolds has made significant progress,continuously introducing new preparation methods and optimization strategies.These methods have their advantages and disadvantages,providing more possibilities for customized preparation and functional design of cartilage scaffolds according to specific requirements.
5.Analysis on Children's Health Equity in Countries along the"Belt and Road"Based on Concentration Index and Thiel Index
Linhong LI ; Zeyu TAN ; Xinyi ZHANG ; Zixuan WEN ; Tongtong GUO ; Zewen XU ; Qi JING ; Wengui ZHENG
Chinese Health Economics 2024;43(2):49-52
Objective:To analyze and evaluate the equity of children's health in countries along the"the Belt and Road",promote further attention to children's health in countries along the route,and promote cooperation and exchanges on children's health between China and countries along the"the Belt and Road".Methods:Using concentration index and concentration curve to measure overall equity,and using the Thiel index for intraregional and interregional euqity measurement.Results:The under-five mortality concentration index is 0.349 7,the concentration curve is below the absolute fair line.The Thiel index shows that inequality in low-income countries,lower-middle-income countries,upper-middle-income countries and high-income countries is the leading cause of child health inequities in the"the Belt and Road"countries.Conclusion:There is inequity in the health of children in countries along"the Belt and Road Initiative",countries along the"the Belt and Road"should take comprehensive measures to reduce the under-five mortality rate,at the same time strengthen international cooperation to further promote equity in children's health in"Belt and Road"countries.
6.Neuronal plasticity changes in the central amygdala and prelimbic cortex network in mice with chronic unpredictable mild stress-induced depression
Dongbo LIU ; Zewen CHEN ; Yun WANG ; Xinpeng LI ; Pengyu ZHAO ; Haoxian ZHENG
Journal of Southern Medical University 2024;44(11):2082-2091
Objective To explore the relationship between alterations of neural network plasticity and spatial learning and memory functions in mouse models with depression-like behaviors.Methods C57Thy1-YFP/GAD67-GFP mice were randomized into control group(with no treatment)and chronic unpredictable mild stress(CUMS)group(n=15)subjected to CUMS for 8 weeks.Depression-like behaviors of the mice were assessed using sucrose preference test,open field test,and forced swimming test,and their spatial learning and memory abilities were evaluated using Morris water maze test.The changes in the firing patterns of different neuronal subtypes were detected in the central nucleus of the amygdala(CeA)and the prelimbic cortex(PrL)using whole-cell patch-clamp technique.Results Compared with the control mice,CUMS mice showed significantly decreased sucrose preference,total distance moved,number of grid-crossings,entries into the central area,and time spent in the central area in the open field test(P<0.01).In the forced swimming test,CUMS mice exhibited obviously shortened time of struggling,swimming,and climbing with increased immobility time.In Morris water maze test,CUMS mice showed significantly increased escape latency and path length,decreased percentage of distance and swimming time within the target quadrant,and increased first entry latency into the target zone and swimming time within the opposite quadrant.Exposure to CUMS resulted in significantly enhanced energy barrier and increased absolute refractory period and inter-spike interval of glutamatergic neurons in the CeA and GABAergic neurons in the PrL,while the opposite changes were observed in GABAergic neurons in the CeA and glutamatergic neurons in the PrL.Conclusion CUMS-induced depression may lead to plastic changes in the excitatory and inhibitory neuronal networks within the CeA and PrL to cause impairment of spatial learning and memory abilities in mice.
7.Application and Research Progress of Lung Cancer Organoid in Precision Medicine for Lung Cancer
HUANG ZHICHENG ; LI BOWEN ; WANG YADONG ; XUE JIANCHAO ; WEI ZEWEN ; LIANG NAIXIN ; LI SHANQING
Chinese Journal of Lung Cancer 2024;27(4):276-282
The continuous advancement of molecular detection technology has greatly propelled the develop-ment of precision medicine for lung cancer.However,tumor heterogeneity is closely associated with tumor metastasis,recurrence,and drug resistance.Additionally,different lung cancer patients with the same genetic mutation may exhibit varying treatment responses to different therapeutic strategies.Therefore,the development of modern precision medicine urgently requires the precise formulation of personalized treatment strategies through personalized tumor models.Lung cancer organoid(LCO)can highly simulate the biological characteristics of tumor in vivo,facilitating the application of innovative drugs such as antibody-drug conjugate in precision medicine for lung cancer.With the development of co-culture model of LCO with tumor microenvironment and tissue engineering technology such as microfluidic chip,LCO can better preserve the biological characteristics and functions of tumor tissue,further improving high-throughput and automated drug sensitivity experiment.In this review,we combine the latest research progress to summarize the applica-tion progress and challenges of LCO in precision medicine for lung cancer.
8.Neuronal plasticity changes in the central amygdala and prelimbic cortex network in mice with chronic unpredictable mild stress-induced depression
Dongbo LIU ; Zewen CHEN ; Yun WANG ; Xinpeng LI ; Pengyu ZHAO ; Haoxian ZHENG
Journal of Southern Medical University 2024;44(11):2082-2091
Objective To explore the relationship between alterations of neural network plasticity and spatial learning and memory functions in mouse models with depression-like behaviors.Methods C57Thy1-YFP/GAD67-GFP mice were randomized into control group(with no treatment)and chronic unpredictable mild stress(CUMS)group(n=15)subjected to CUMS for 8 weeks.Depression-like behaviors of the mice were assessed using sucrose preference test,open field test,and forced swimming test,and their spatial learning and memory abilities were evaluated using Morris water maze test.The changes in the firing patterns of different neuronal subtypes were detected in the central nucleus of the amygdala(CeA)and the prelimbic cortex(PrL)using whole-cell patch-clamp technique.Results Compared with the control mice,CUMS mice showed significantly decreased sucrose preference,total distance moved,number of grid-crossings,entries into the central area,and time spent in the central area in the open field test(P<0.01).In the forced swimming test,CUMS mice exhibited obviously shortened time of struggling,swimming,and climbing with increased immobility time.In Morris water maze test,CUMS mice showed significantly increased escape latency and path length,decreased percentage of distance and swimming time within the target quadrant,and increased first entry latency into the target zone and swimming time within the opposite quadrant.Exposure to CUMS resulted in significantly enhanced energy barrier and increased absolute refractory period and inter-spike interval of glutamatergic neurons in the CeA and GABAergic neurons in the PrL,while the opposite changes were observed in GABAergic neurons in the CeA and glutamatergic neurons in the PrL.Conclusion CUMS-induced depression may lead to plastic changes in the excitatory and inhibitory neuronal networks within the CeA and PrL to cause impairment of spatial learning and memory abilities in mice.
9.Combining transcranial magnetic stimulation with interactive virtual scenario training can improve the upper limb motor function of stroke survivors
Zewen LI ; Chenchen GUO ; Li LIU ; Yi DING ; Li LI
Chinese Journal of Physical Medicine and Rehabilitation 2023;45(5):397-401
Objective:To observe any effect of combining low-frequency transcranial magnetic stimulation (rTMS) with interactive virtual scenario training on the recovery of upper limb motor function after a stroke.Methods:Ninety stroke survivors were randomly divided into a pseudo-rTMS group, an rTMS group and a combination group, each of 30. In addition to basic medication, conventional rehabilitation and nursing care, the pseudo-rTMS, rTMS and combination groups received either sham rTMS treatment, 1Hz rTMS or virtual situational interaction along with 1Hz rTMS 5 days a week for 4 weeks. Before and after the 4 weeks their motor evoked potentials, cortical latency and central motor conduction time were measured, and surface electromyography was applied to the affected biceps brachii and triceps brachii. Meanwhile, the National Institutes of Health Stroke Scale, the Fugl-Meyer upper extremity assessment and the modified Barthel index were employed to assess the degree of neurological deficit, upper extremity motor function and ability in the activities of daily living (ADL).Results:After the 4-week intervention, a significant improvement was observed in all of the outcome measurements with all three groups. At that time the average scores of the rTMS group were significantly better than the pseudo-rTMS group′s averages but the average scores of the combination group were significantly better than those of either of the other two groups.Conclusion:Repeated application of low-frequency transcranial magnetic stimulation combined with virtual scenario interactive training can effectively improve the upper limb motor function and ADL performance of stroke survivors, and relieve the symptoms of neurological deficit. The combined therapy is worthy of application in clinical practice.
10.Lateral septum adenosine A2A receptors control stress-induced depressive-like behaviors via signal-ing to hypothalamus and habenula
Muran WANG ; Peijun LI ; Zewen LI ; SILVA S.da BEATRIZ ; Wu ZHENG ; Zhenghua XIANG ; Yan HE ; Tao XU ; CORDEIRO CRISTINA ; Lu DENG ; Yuwei DAI ; Mengqian YE ; Zhiqing LIN ; Jianhong ZHOU ; Xuzhao ZHOU ; Fenfen YE ; CUNHA A RODRIGO ; Jiangfan CHEN ; Wei GUO
Chinese Journal of Pharmacology and Toxicology 2023;37(7):547-548
Depressive disorder ranks as a major bur-den of disease worldwide,yet the current antidepressant medications are limited by frequent non-responsiveness and significant side effects.The lateral septum(LS)is thought to control of depression,however,the cellular and circuit substrates are largely unknown.Here,we identified a subpopulation of LS GABAergic adenosine A2A receptors(A2AR)-positive neurons mediating depres-sive symptoms via direct projects to the lateral habenula(LHb)and the dorsomedial hypothalamus(DMH).Activa-tion of A2AR in the LS augmented the spiking frequency of A2AR-positive neurons leading to a decreased activation of surrounding neurons and the bi-directional manipula-tion of LS-A2AR activity demonstrated that LS-A2ARs are necessary and sufficient to trigger depressive pheno-types.Thus,the optogenetic modulation(stimulation or inhibition)of LS-A2AR-positive neuronal activity or LS-A2AR-positive neurons projection terminals to the LHb or DMH,phenocopied depressive behaviors.Moreover,A2AR are upregulated in the LS in two male mouse mod-els of repeated stress-induced depression.This identifica-tion that aberrantly increased A2AR signaling in the LS is a critical upstream regulator of repeated stress-induced depressive-like behaviors provides a neurophysiological and circuit-based justification of the antidepressant poten-tial of A2AR antagonists,prompting their clinical transla-tion.

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