1.Protective Effects of Mesenchymal Stem Cells on Lung Endothelial Cells and The Underlying Mechanisms
Zi-Ye MENG ; Miao JIANG ; Min GAO ; Zi-Gang ZHAO ; Xiu XU ; Zhen-Ao ZHAO
Progress in Biochemistry and Biophysics 2024;51(8):1822-1833
Acute respiratory distress syndrome (ARDS) is severe respiratory failure in clinical practice, with a mortality rate as high as 40%. Injury of pulmonary endothelial cells and alveolar epithelial cells occurs during ARDS, and pulmonary endothelial injury results in endothelial barrier disruption, which usually occurs before epithelial injury. Especially, when harmful factors enter the blood, such as sepsis and hemorrhagic shock, the pulmonary endothelial cells are affected firstly. The injured endothelial cells may loss cell-to-cell connections and even die. After the endothelial barrier is disrupted, fluid and proteins cross the endothelial barrier, causing interstitial edema. The alveolar epithelium is more resistant to injury, and when the tight barrier of the epithelium is broken, fluids, proteins, neutrophils, and red blood cells in the interstitium enter the alveolar space. From this process, it is easy to find that the endothelium is the first barrier to prevent edema, therefore, the protection of endothelium is the key to the prevention and treatment of ARDS. In addition, the injured endothelial cells express selectin and cell adhesion molecules, promoting the recruitment of immune cells, which exacerbate the inflammatory response and pulmonary endothelial cell injury. Mesenchymal stem cells (MSCs) can be derived from umbilical cord, bone marrow, adipose and so on. Because of low immunogenicity, MSCs can be used for allogeneic transplantation and have great application potential in tissue repairing. Through paracrine effect, MSCs can promote cell survival and balance inflammatory response. MSCs infused intravenously can locate in lungs rapidly and interact with endothelial cells directly, thus MSCs have advantages in protecting pulmonary microvascular endothelial cells. Animal experiments and clinical trials have found that MSC transplantation can significantly improve the symptoms of ARDS and reduce inflammatory reactions and endothelial permeability. Mechanically, MSCs acts mainly through paracrine and immunomodulatory effects. Paracrine cytokines from MSCs can not only promote pulmonary endothelial proliferation, but also reduce inflammatory response and promote cell survival to maintain endothelial integrity. In addition to paracrine cytokines, extracellular vesicles of MSCs are rich in RNAs, proteins and bioactive substances, which can protect pulmonary endothelial cells by intercellular communication and substance transport. Furthermore, MSCs may protect pulmonary endothelial cells indirectly by regulating immune cells, such as reducing the formation of extracellular trapping network of neutrophils, regulating macrophage polarization and regulating Th17/Treg cell balance. Although the beneficial effects of MSCs are verified, much work still needs to be done. MSCs from different tissues have their own characteristics and the scope of application. Different lung diseases possess different endothelial injury mechanisms. Thus, determining the indications of MSCs derived from different tissues is the direction of pulmonary disease clinical trials. From the perspective of transplantation route, intravenous injection of MSCs may have better clinical application in pulmonary endothelial injury caused by endogenous harmful factors in blood. Previous reviews mostly focused on the protective effects of MSCs on alveolar epithelium. In this article, we focused on endothelial cells and reviewed the direct protective effects and mechanisms of MSCs on endothelium through paracrine cytokines and extracellular vesicles, and summarize the mechanisms by which MSCs may indirectly protect pulmonary endothelial cells by regulating immune cells.
2.MiR-15b-5p alleviates hypoxia/reoxygenation-induced human renal tubular epithelial cell HK-2 injury by targeting FOXO1
Hua-Feng LI ; Hong-Yi ZHANG ; Ke-Bing XIAO ; Hui YANG ; Zi-Feng LI ; Gang-Gang ZHAO
Medical Journal of Chinese People's Liberation Army 2024;49(11):1311-1318
Objective To investigate the role and underlying mechanism of miR-15b-5p on hypoxia/reoxygenation(H/R)induced human renal tubular epithelial cell(HK-2)injury by targeting forkhead box O1(FOXO1).Methods HK-2 cells in the log growth phase were set up as follows:(1)control group(normal culture)and H/R group(H/R induced culture).The expressions of miR-15b-5p and FOXO1 mRNA were detected using qRT-PCR,and the protein expression of FOXO1 was detected using Western blotting.(2)Control group(normal culture),H/R group(H/R induced culture),H/R+mimic control group(cells transfected with mimic control then induced by H/R),H/R+miR-15b-5p mimic group(cells transfected with miR-15b-5p mimic then induced by H/R),H/R+miR-15b-5p mimic+OE-NC group(cells co-transfected with miR-15b-5p mimic and OE-NC plasmid,then induced by H/R),and H/R+miR-15b-5p mimic+OE-FOXO1 group(cells co-transfected with miR-15b-5p mimic and FOXO1 overexpression plasmid,then induced by H/R).The expression of miR-15b-5p was detected using qRT-PCR,and the protein expressions of FOXO1,cleaved caspase-3,Bax,and Bcl-2 were detected using Western blotting.CCK-8 assay was used to detect cell viability.Cell apoptosis was measured by the TUNEL method.(3)Control group(normal culture),H/R group(H/R induced culture),H/R+miR-15b-5p mimic group(cells transfected with miR-15b-5p mimic then induced by H/R),and H/R+miR-15b-5p mimic+OE-FOXO1 group(cells co-transfected with miR-15b-5p mimic and FOXO1 overexpression plasmid,then induced by H/R).The protein expressions of LC3,p62 and Beclin1 were detected using Western blotting.LC3 immunofluorescence was used to detect the cell autophagy.The target reaction between miR-15b-5p and FOXO1 was assessed using dual luciferase reporting assay.Results Under an inverted microscope,it was observed that the control group had a higher number of cells,most of which were in a typical cobblestone shape and grew in a cobblestone-like manner;most of the cells in the H/R group contracted and became round,with a significant decrease in the number of adherent cells.In H/R-induced HK-2 cells,miR-15b-5p was significantly down-regulated,while miRNA and protein expression of FOXO1 was up-regulated(P<0.05).Luciferase assay results showed that miR-15b-5p directly targeted the 3'-UTR of FOXO1.Overexpression of miR-15b-5p increased cell viability,reduced cell apoptosis,and decreased autophagy in H/R-induced HK-2 cells(P<0.05).Compared with H/R+miR-15b-5p mimic group,the viability of HK-2 cells was decreased,the apoptosis and autophagy level were increased in H/R+miR-15b-5p mimic+OE-FOXO1 group(P<0.05).Conclusion miR-15b-5p inhibited autophagy and alleviated H/R-induced HK-2 cell injury by targeting FOXO1.
3.Effect of recombinant glycoprotein hormone beta5/alpha2 on promoting lipolysis via regulation of cAMP/PKA/CREB pathway in 3T3-L1 adipocytes and its mechanism
Ai-Jun QIAN ; Geng-Miao XIAO ; Zhuang LI ; Xue TIAN ; Xiao-Hong LIU ; Yu-Ping SONG ; Zheng-Gang ZHAO ; Zi-Jian ZHAO ; Fang-Hong LI
Chinese Pharmacological Bulletin 2024;40(7):1272-1278
Aim To investigate the effect of recombi-nant glycoprotein hormone β5/α2(rCGH)on lipolysis in 3T3-L1 adipocytes,and explore the underlying mechanism.Methods 3T3-L1 preadipocytes were cultured and induced to differentiate into mature adipo-cytes,then treated with different concentrations of rCGH for 24 h in vitro.Cell viability of 3T3-L1 adipo-cytes was evaluated by CCK-8 assay,the levels of in-tracellular triglyceride(TG)and glycerol in the culture supernatant were measured by enzymatic method,and the changes of lipid droplets were observed by oil red O staining.The expression levels of HSL and ATGL lipo-lytic proteins in adipocytes were detected by Western blot.To carry out the intervention experiment with dif-ferent concentrations of rCGH with or without the PKA inhibitor,H89,on the mature 3T3-L1 adipocytes,the cultured cells were divided into the control group,H89 pre treatment group,1 μmol·L-1 rCGH group,and(1 μmol·L-1 rCGH+H89)combined intervention group.The contents of intracellular TG and free glycer-ol were measured by enzymatic method,and the ex-pression of CREB and lipolysis-related proteins was de-tected using Western blot.Results Different concen-trations of rCGH(0.25,0.5,1,and 2 μmol·L-1)had no significant effect on the cell viability of adipo-cytes(P>0.05).Compared with the control group,the treatment with rCGH significantly decreased the size of lipid droplets and intracellular TG content,while significantly elevated glycerol concentration in cell supernatant.rCGH treatment also stimulated the protein expression of p-HSL,ATGL,and p-PKA.In addition,the addition of a PKA inhibitor,H89,atten-uated the effects of rCGH on free glycerol level,intra-cellular TG content,and the expression of p-HSL,p-PLIN1,and p-CREB.Conclusions rCGH enhances the lipolysis of 3T3-L1 adipocytes by up-regulating the activities of HSL,ATGL and PKA,promoting glycerol release,inhibiting TG synthesis and lipid accumula-tion,and its mechanism of action is related to the acti-vation of cAMP/PKA/CREB signaling pathway.
4.Effects of Methionine Restriction on Proliferation, Cell Cycle, and Apoptosis of Human Acute Leukemia Cells.
Yu-Jie HE ; Si-Shu YU ; Bin ZHANG ; Mei-Rong LI ; Li-Jun XU ; Long-Ming LIANG ; Zheng-Gang ZHAO ; Zi-Jian ZHAO ; Su-Jin ZHOU ; Fang-Hong LI
Journal of Experimental Hematology 2023;31(5):1290-1295
OBJECTIVE:
To investigate the effects of methionine restriction on proliferation, cell cycle and apoptosis of human acute leukemia cells.
METHODS:
Cell Counting Kit-8 (CCK-8) assay was used to detect the effect of methionine restriction on HL-60 and Jurkat cells proliferation. The effect of methionine restriction on cell cycle of HL-60 and Jurkat cells was examined by PI staining. Annexin V-FITC / PI double staining was applied to detect apoptosis of HL-60 and Jurkat cells following methionine restriction. The expression of cell cycle-related proteins cyclin B1, CDC2 and apoptosis-related protein Bcl-2 was evaluated by Western blot assay.
RESULTS:
Methionine restriction significantly inhibited the proliferation of HL-60 and Jurkat cells in a time-dependent manner (HL-60: r =0.7773, Jurkat: r =0.8725), arrested the cells at G2/M phase (P < 0.001), and significantly induced apoptosis of HL-60 and Jurkat cells (HL-60: P < 0.001; Jurkat: P < 0.05). Furthermore, Western blot analysis demonstrated that methionine restriction significantly reduced the proteins expression of Cyclin B1 (P < 0.05), CDC2 (P < 0.01) and Bcl-2 (P < 0.001) in HL-60 and Jurkat cells.
CONCLUSION
Acute leukemia cells HL-60 and Jurkat exhibit methionine dependence. Methionine restriction can significantly inhibit the proliferation, promote cell cycle arrest and induce apoptosis of HL-60 and Jurkat cells, which suggests that methionine restriction may be a potential therapeutic strategy for acute leukemia.
Humans
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Cyclin B1/pharmacology*
;
Cell Proliferation
;
Methionine/pharmacology*
;
Cell Cycle
;
Apoptosis
;
Leukemia, Myeloid, Acute
;
Cell Division
;
Cell Cycle Proteins
;
Jurkat Cells
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Proto-Oncogene Proteins c-bcl-2/metabolism*
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HL-60 Cells
5. Effects of methionine restriction on oral cancer cell proliferation, migration and invasion
Yue-Rong PENG ; Ke-Xin ZHENG ; Han-Si CHEN ; Xue-Peng WANG ; Yun-Hao LAI ; Su-Jin ZHOU ; Zi-Jian ZHAO ; Zheng-Gang ZHAO ; Fang-Hong LI
Chinese Pharmacological Bulletin 2023;39(8):1444-1450
Aim To investigate the effect of methionine restriction on the proliferation, migration and invasion of human oral squamous carcinoma CAL-27 cells. Methods Cell proliferation and colony formation ability were detected by cell counting and colony forming assay. The changes in cell cycle and apoptosis were detected by propidium iodide (PI) staining flow cytometry and Annexin V/7-amino-actinomycin staining flow cytometry. The migration and invasion ability of CAL-27 was detected by scratch and Transwell assay. The expression levels of apoptosis proteins Bax and Bcl-2, cyclins CDK2 and CDK4 and migration and invasion proteins N-cadherin and E-cadherin were examined by Western blot. Results Methionine restriction significantly inhibited the proliferation and clone formation of oral squamous cancer cell CAL-27 (P < 0. 01), induced cell cycle arrest at G
6. Prevention and inhibition of nasopharyngeal carcinoma growth by attenuated salmonella SGN1
Yun-Hao LAI ; Ting-Qi HUANG ; Shi LIU ; Yue-Rong PENG ; Fang-Hong LI ; Zheng-Gang ZHAO ; Su-Jin ZHOU ; Zi-Jian ZHAO ; Qi-Ting TAN ; Jia-Luo MAI
Chinese Pharmacological Bulletin 2023;39(10):1867-1873
Aim To study the inhibitory effect of attenuated salmonella SGN1, overexpressing methioninase, on nasopharyngeal carcinoma (NPC) and the underlying mechanism. Methods The cell proliferation, cell cycle, cell apoptosis, clony formation and migration a-bility of 5-8F, HNE-2, CNE-2 cells were measured u-sing flow cytometry assay, clone formation assay, and wound assay after the methionine restriction treatment. 5-8F, HNE-2, CNE-2 cells were infected with SGN1 at the multiplicity of infection (MOI) of 1: 100 for 5 hours, followed with the measurement of cell growth. A xenograft model was constructed by subcutaneous injection of 5-8F cells in mice to observe the inhibitory effect of SGN1 on nasopharyngeal carcinoma. Results Compared with the control group, methionine restriction significantly inhibited the proliferation, migration ability, and clone formation of nasopharyngeal carcinoma cells and blocked the G
7.Influencing factors of the adverse outcome of pulmonary tuberculosis among adolescents in Hangzhou City between 2005 and 2020: a school-based retrospective cohort study.
Gang ZHAO ; Qing Lin CHENG ; Li XIE ; Zi Jian FANG ; Xu SONG
Chinese Journal of Preventive Medicine 2023;57(3):348-355
Objective: To explore the influencing factors of the adverse outcome of pulmonary tuberculosis (PTB) among adolescents in Hangzhou City between 2005 and 2020. Methods: A retrospective cohort study was used to collect the information of adolescent PTB patients with the onset of PTB occurring from January 1, 2005 to December 31 in 12 designated tuberculosis hospitals in Hangzhou, mainly including demographic, epidemiological, clinical manifestations, bacteriological characteristics and other data, through the China Management Information System for Infectious Disease Surveillance and Reporting and the follow-up survey. All patients were followed up and the end time was December 31, 2021. Multivariate Cox regression model was used to analyze the factors affecting the adverse outcome of these patients. Results: The mean age of 4 921 adolescent PTB patients was (18.9±3.6) years old, and the number of male and female patients were 3 074 and 1 847 respectively. The adverse outcome accounted for 14.7% (725) of all patients. Multivariate Cox regression model showed that eight risk factors, including management model from patients themselves or family members (HR=5.87, 95%CI: 4.55-7.64), molecular biology examination positive for PTB (HR=4.62, 95%CI: 2.98-7.19), the number of sputum smears-positive≥1 (HR=3.72, 95%CI: 2.87-4.83), non-standardized therapy regimens of PTB (HR=3.69, 95%CI: 2.95-4.64), history of retreated PTB (HR=2.22, 95%CI: 1.46-3.36), migrant adolescents (HR=1.89, 95%CI: 1.54-2.34), the number of chest X-ray scan (HR=1.83, 95%CI: 1.65-2.04), and severe PTB (HR=1.38, 95%CI: 1.02-2.05), were associated with the adverse outcome of adolescent PTB patients. Age (HR=0.94, 95%CI: 0.92-0.96), as the only protective factor, was associated with the adverse outcome of these patients. Conclusion: The management mode, molecular biological examination, chemotherapy program, history of tuberculosis, sputum smear examination, severity of tuberculosis, household residence, chest X-ray examination and age are associated with the adverse outcomes of adolescent PTB patients in Hangzhou.
Humans
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Male
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Adolescent
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Female
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Young Adult
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Adult
;
Retrospective Studies
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Tuberculosis, Pulmonary/drug therapy*
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Risk Factors
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Proportional Hazards Models
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Sputum
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Mycobacterium tuberculosis
8.RBM46 is essential for gametogenesis and functions in post-transcriptional roles affecting meiotic cohesin subunits.
Yue LV ; Gang LU ; Yuling CAI ; Ruibao SU ; Liang LIANG ; Xin WANG ; Wenyu MU ; Xiuqing HE ; Tao HUANG ; Jinlong MA ; Yueran ZHAO ; Zi-Jiang CHEN ; Yuanchao XUE ; Hongbin LIU ; Wai-Yee CHAN
Protein & Cell 2023;14(1):51-63
RBM46 is a germ cell-specific RNA-binding protein required for gametogenesis, but the targets and molecular functions of RBM46 remain unknown. Here, we demonstrate that RBM46 binds at specific motifs in the 3'UTRs of mRNAs encoding multiple meiotic cohesin subunits and show that RBM46 is required for normal synaptonemal complex formation during meiosis initiation. Using a recently reported, high-resolution technique known as LACE-seq and working with low-input cells, we profiled the targets of RBM46 at single-nucleotide resolution in leptotene and zygotene stage gametes. We found that RBM46 preferentially binds target mRNAs containing GCCUAU/GUUCGA motifs in their 3'UTRs regions. In Rbm46 knockout mice, the RBM46-target cohesin subunits displayed unaltered mRNA levels but had reduced translation, resulting in the failed assembly of axial elements, synapsis disruption, and meiotic arrest. Our study thus provides mechanistic insights into the molecular functions of RBM46 in gametogenesis and illustrates the power of LACE-seq for investigations of RNA-binding protein functions when working with low-abundance input materials.
Animals
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Mice
;
3' Untranslated Regions/genetics*
;
Cell Cycle Proteins/metabolism*
;
Gametogenesis/genetics*
;
Meiosis/genetics*
;
Nuclear Proteins/genetics*
;
RNA-Binding Proteins/genetics*
9.Analysis of Chinese Medical Syndrome Features of Ischemic Stroke Based on Similarity of Symptoms Subgroup.
Xiao-Qing LIU ; Run-Shun ZHANG ; Xue-Zhong ZHOU ; Hong ZHOU ; Yu-Yao HE ; Shu HAN ; Jing ZHANG ; Zi-Xin SHU ; Xue-Bin ZHANG ; Jing-Hui JI ; Quan ZHONG ; Li-Li ZHANG ; Zi-Jun MOU ; Li-Yun HE ; Lun-Zhong ZHANG ; Jie YANG ; Yan-Jie HU ; Zheng-Guang CHEN ; Xiao-Zhen LI ; Yan TAN ; Zhan-Feng YAN ; Ke-Gang CAO ; Wei MENG ; He ZHAO ; Wei ZHANG ; Li-Qun ZHONG
Chinese journal of integrative medicine 2023;29(5):441-447
OBJECTIVE:
To derive the Chinese medicine (CM) syndrome classification and subgroup syndrome characteristics of ischemic stroke patients.
METHODS:
By extracting the CM clinical electronic medical records (EMRs) of 7,170 hospitalized patients with ischemic stroke from 2016 to 2018 at Weifang Hospital of Traditional Chinese Medicine, Shandong Province, China, a patient similarity network (PSN) was constructed based on the symptomatic phenotype of the patients. Thereafter the efficient community detection method BGLL was used to identify subgroups of patients. Finally, subgroups with a large number of cases were selected to analyze the specific manifestations of clinical symptoms and CM syndromes in each subgroup.
RESULTS:
Seven main subgroups of patients with specific symptom characteristics were identified, including M3, M2, M1, M5, M0, M29 and M4. M3 and M0 subgroups had prominent posterior circulatory symptoms, while M3 was associated with autonomic disorders, and M4 manifested as anxiety; M2 and M4 had motor and motor coordination disorders; M1 had sensory disorders; M5 had more obvious lung infections; M29 had a disorder of consciousness. The specificity of CM syndromes of each subgroup was as follows. M3, M2, M1, M0, M29 and M4 all had the same syndrome as wind phlegm pattern; M3 and M0 both showed hyperactivity of Gan (Liver) yang pattern; M2 and M29 had similar syndromes, which corresponded to intertwined phlegm and blood stasis pattern and phlegm-stasis obstructing meridians pattern, respectively. The manifestations of CM syndromes often appeared in a combination of 2 or more syndrome elements. The most common combination of these 7 subgroups was wind-phlegm. The 7 subgroups of CM syndrome elements were specifically manifested as pathogenic wind, pathogenic phlegm, and deficiency pathogens.
CONCLUSIONS
There were 7 main symptom similarity-based subgroups in ischemic stroke patients, and their specific characteristics were obvious. The main syndromes were wind phlegm pattern and hyperactivity of Gan yang pattern.
Humans
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Syndrome
;
Ischemic Stroke
;
Medicine, Chinese Traditional
;
Liver
;
Phenotype
10.An Anterior Cingulate Cortex-to-Midbrain Projection Controls Chronic Itch in Mice.
Ting-Ting ZHANG ; Su-Shan GUO ; Hui-Ying WANG ; Qi JING ; Xin YI ; Zi-Han HU ; Xin-Ren YU ; Tian-Le XU ; Ming-Gang LIU ; Xuan ZHAO
Neuroscience Bulletin 2023;39(5):793-807
Itch is an unpleasant sensation that provokes the desire to scratch. While acute itch serves as a protective system to warn the body of external irritating agents, chronic itch is a debilitating but poorly-treated clinical disease leading to repetitive scratching and skin lesions. However, the neural mechanisms underlying the pathophysiology of chronic itch remain mysterious. Here, we identified a cell type-dependent role of the anterior cingulate cortex (ACC) in controlling chronic itch-related excessive scratching behaviors in mice. Moreover, we delineated a neural circuit originating from excitatory neurons of the ACC to the ventral tegmental area (VTA) that was critically involved in chronic itch. Furthermore, we demonstrate that the ACC→VTA circuit also selectively modulated histaminergic acute itch. Finally, the ACC neurons were shown to predominantly innervate the non-dopaminergic neurons of the VTA. Taken together, our findings uncover a cortex-midbrain circuit for chronic itch-evoked scratching behaviors and shed novel insights on therapeutic intervention.
Mice
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Animals
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Gyrus Cinguli/physiology*
;
Pruritus/pathology*
;
Mesencephalon
;
Cerebral Cortex/pathology*
;
Neurons/pathology*

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