1.Role of Innate Trained Immunity in Diseases
Chuang CHENG ; Yue-Qing WANG ; Xiao-Qin MU ; Xi ZHENG ; Jing HE ; Jun WANG ; Chao TAN ; Xiao-Wen LIU ; Li-Li ZOU
Progress in Biochemistry and Biophysics 2025;52(1):119-132
The innate immune system can be boosted in response to subsequent triggers by pre-exposure to microbes or microbial products, known as “trained immunity”. Compared to classical immune memory, innate trained immunity has several different features. Firstly, the molecules involved in trained immunity differ from those involved in classical immune memory. Innate trained immunity mainly involves innate immune cells (e.g., myeloid immune cells, natural killer cells, innate lymphoid cells) and their effector molecules (e.g., pattern recognition receptor (PRR), various cytokines), as well as some kinds of non-immune cells (e.g., microglial cells). Secondly, the increased responsiveness to secondary stimuli during innate trained immunity is not specific to a particular pathogen, but influences epigenetic reprogramming in the cell through signaling pathways, leading to the sustained changes in genes transcriptional process, which ultimately affects cellular physiology without permanent genetic changes (e.g., mutations or recombination). Finally, innate trained immunity relies on an altered functional state of innate immune cells that could persist for weeks to months after initial stimulus removal. An appropriate inducer could induce trained immunity in innate lymphocytes, such as exogenous stimulants (including vaccines) and endogenous stimulants, which was firstly discovered in bone marrow derived immune cells. However, mature bone marrow derived immune cells are short-lived cells, that may not be able to transmit memory phenotypes to their offspring and provide long-term protection. Therefore, trained immunity is more likely to be relied on long-lived cells, such as epithelial stem cells, mesenchymal stromal cells and non-immune cells such as fibroblasts. Epigenetic reprogramming is one of the key molecular mechanisms that induces trained immunity, including DNA modifications, non-coding RNAs, histone modifications and chromatin remodeling. In addition to epigenetic reprogramming, different cellular metabolic pathways are involved in the regulation of innate trained immunity, including aerobic glycolysis, glutamine catabolism, cholesterol metabolism and fatty acid synthesis, through a series of intracellular cascade responses triggered by the recognition of PRR specific ligands. In the view of evolutionary, trained immunity is beneficial in enhancing protection against secondary infections with an induction in the evolutionary protective process against infections. Therefore, innate trained immunity plays an important role in therapy against diseases such as tumors and infections, which has signature therapeutic effects in these diseases. In organ transplantation, trained immunity has been associated with acute rejection, which prolongs the survival of allografts. However, trained immunity is not always protective but pathological in some cases, and dysregulated trained immunity contributes to the development of inflammatory and autoimmune diseases. Trained immunity provides a novel form of immune memory, but when inappropriately activated, may lead to an attack on tissues, causing autoinflammation. In autoimmune diseases such as rheumatoid arthritis and atherosclerosis, trained immunity may lead to enhance inflammation and tissue lesion in diseased regions. In Alzheimer’s disease and Parkinson’s disease, trained immunity may lead to over-activation of microglial cells, triggering neuroinflammation even nerve injury. This paper summarizes the basis and mechanisms of innate trained immunity, including the different cell types involved, the impacts on diseases and the effects as a therapeutic strategy to provide novel ideas for different diseases.
2.Tumor Therapy: Targeted Substances Metabolism Reprogramming Induces Tumor Ferroptosis
Jin-Ping ZHANG ; Yue-Qing WANG ; Mo WANG ; Xin-Yue WANG ; Xiao-Qin MOU ; Xi ZHENG ; Chuang CHENG ; Jing HE ; Li-Li ZOU ; Xiao-Wen LIU
Progress in Biochemistry and Biophysics 2024;51(7):1540-1550
There are huge differences between tumor cells and normal cells in material metabolism, and tumor cells mainly show increased anabolism, decreased catabolism, and imbalance in substance metabolism. These differences provide the necessary material basis for the growth and reproduction of tumor cells, and also provide important targets for the treatment of tumors. Ferroptosis is an iron-dependent form of cell death characterized by an imbalance of iron-dependent lipid peroxidation and lipid membrane antioxidant systems in cells, resulting in excessive accumulation of lipid peroxide, causing damage to lipid membrane structure and loss of function, and ultimately cell death. The regulation of ferroptosis involves a variety of metabolic pathways, including glucose metabolism, lipid metabolism, amino acid metabolism, nucleotide metabolism and iron metabolism. In order for tumor cells to grow rapidly, their metabolic needs are more vigorous than those of normal cells. Tumor cells are metabolically reprogrammed to meet their rapidly proliferating material and energy needs. Metabolic reprogramming is mainly manifested in glycolysis and enhancement of pentose phosphate pathway, enhanced glutamine metabolism, increased nucleic acid synthesis, and iron metabolism tends to retain more intracellular iron. Metabolic reprogramming is accompanied by the production of reactive oxygen species and the activation of the antioxidant system. The state of high oxidative stress makes tumor cells more susceptible to redox imbalances, causing intracellular lipid peroxidation, which ultimately leads to ferroptosis. Therefore, in-depth study of the molecular mechanism and metabolic basis of ferroptosis is conducive to the development of new therapies to induce ferroptosis in cancer treatment. Ferroptosis, as a regulated form of cell death, can induce ferroptosis in tumor cells by pharmacologically or genetically targeting the metabolism of substances in tumor cells, which has great potential value in tumor treatment. This article summarizes the effects of cellular metabolism on ferroptosis in order to find new targets for tumor treatment and provide new ideas for clinical treatment.
3.Identification and expression analysis of AP2/ERF gene family in Artemisia argyi
Xue-xue YUE ; Chuang XIAO ; Qian-wen ZHANG ; Sai-nan PENG ; Chang-jie CHEN ; Jia ZHOU ; Jin-xin LI ; Yu-kun LI ; Yu-huan MIAO ; Da-hui LIU
Acta Pharmaceutica Sinica 2024;59(9):2634-2647
italic>Artemisia argyi is a traditional Chinese medicine in China, which is used as medicine with its leaves. The leaves of
4.Efficacy of bevacizumab combined with raltitrexed in the treatment of unresectable hepatocellular carci-noma and its influence on adverse reactions and survival rate
Hua WANG ; Yue HEI ; Miao SUN ; Yan-Chuang SUN ; Juan HAN ; Juanhua SUN
The Journal of Practical Medicine 2024;40(21):3061-3066
Objective To investigate the efficacy of bevacizumab combined with raltitrexed in the treatment of unresectable hepatocellular carcinoma(HCC)and its effect on adverse reactions and survival rate.Methods A retrospective analysis was performed on 71 patients with unresectable hepatocellular carcinoma admitted to the oncology department of our hospital from February 2020 to June 2022.Among them,35 cases were treated with raltitrexed as control group,and 36 cases were treated with bevacizumab combined with raltitrexed as observation group.All patients received transcatheter arterial chemoembolization(TACE).After 1 month of treatment,the short-term treatment effect of the two groups was evaluated.The adverse reactions of the two groups were observed.Follow-up review was performed to record progression free survival(PFS)and overall survival(OS)in both groups.Results After 1 month of treatment,the disease control rate(DCR)and objective response rate(ORR)of control group were 74.29%and 45.71%respectively.The DCR and ORR of observation group were 83.33%and 55.56%respectively.There was no significant difference in short-term efficacy between the two groups(P>0.05).Following treatment,the vascular endothelial growth factor(VEGF)level in the observation group was considerably lower than in the control group(P<0.05).After treatment,18 months of follow-up,OS curve showed:observation group OS was 50.00%,control group OS was 31.40%;PFS curve showed:observation group PFS was 43.33%,control group PFS was 26.92%.Using the Log-rank test,between the two groups,there was a statistically significant difference in OS(χ2=4.381,P=0.036),although there was no statistically significant difference in PFS between the two groups(χ2=3.264,P=0.071).There was no significant difference in adverse reactions between the two groups(P>0.05).Conclusion Bevacizumab combined with raltitrexed can reduce tumor neovascularization,inhibit tumor growth and spread,prolong the survival time of patients,and do not increase adverse drug reactions.
5.Functional near-infrared spectroscopy on anhedonia in schizophrenia and major depressive disorder
Yue WU ; Mian LI ; Hanxiaoran LI ; Chuang XUE ; Jinqi DING ; Sugai LIANG
Chinese Journal of Nervous and Mental Diseases 2024;50(9):533-539
Objective To explore the differences in brain activation related to anhedonia in patients with schizophrenia(SCZ)and major depressive disorder(MDD)during a verbal fluency task(VFT)based on functional near-infrared spectroscopy(fNIRS).Methods A total of 31 patients with first-episode SCZ,45 patients with first-episode MDD and 45 healthy controls(HC)were included.The clinical symptoms were assessed using the 17-item Hamilton depression scale(HAMD-17),the positive and negative symptom scale(PANSS)and the Snaiss-Hamilton pleasure scale(SHAPS).All subjects completed the 48-channel fNIRS-VFT and the Chinese characters"Bai","Bei",and"Da"were recorded in the VFT.The Homer2 software in Matlab was used to extract information of oxy-hemoglobin(Oxy-Hb)concentration during the task.Results In the fNIRS-VFT task,compared with HC,patients with SCZ had decreased Oxy-Hb concentration in the bilateral middle frontal gyrus,superior frontal gyrus,inferior frontal gyrus,right superior temporal gyrus,and left posterior cingulate gyrus(including 25 channels,P<0.05),compared with MDD patients,patients with SCZ exhibited significantly reduced Oxy-Hb concentration in the bilateral superior frontal gyrus,left middle frontal gyrus,and right superior temporal gyrus(including 6 channels,P<0.05).The results of the general linear model showed that SHAPS scores in the MDD group were negatively correlated with Oxy-Hb concentration in the right superior frontal gyrus(channels 26,42)(β=-5.46,P=0.02;β=-5.01,P=0.01).Conclusion Patients with first-episode SCZ and those with first-episode MDD had functional abnormalities in bilateral middle frontal gyrus,and the left superior frontal,inferior frontal gyrus and postcentral gyrus.Additionally,abnormal activation of the right superior temporal gyrus and superior frontal gyrus was neurobiological markers of SCZ,abnormal activation of the right superior frontal gyrus was associated with anhedonia in MDD.
6.Carthamus tinctorius L.extract ameliorates alcoholic liver disease by modulating PI3K/Akt/FoxO signaling pathway
Wen-Xuan WANG ; Xiang-Lei FU ; Man QI ; Fu-Rong FAN ; Fu-Rong ZHU ; Yuan-Chuang WANG ; Kai-Yue ZHANG ; Min LIU ; Sheng-Hui CHU
Chinese Pharmacological Bulletin 2024;40(6):1137-1145
Aim To investigate the effects of Cartham-us tinctorius L.extract(CTLE)on oxidative stress,lipid metabolism,and apoptosis levels of mice with al-cohol-induced liver injury and its mechanism of action.Methods The mouse model of alcohol-associated liver disease was established by chronic alcohol feeding and acute alcohol gavage.Mice were randomly divided into four groups.During the modeling period,the state changes of mice were observed every day,and their weight was recorded.At the end of modeling,blood and liver tissues were collected from each group of mice.The blood of mice was analyzed biochemically,and HE staining and Oil Red O staining were used to evaluate further the degree of pathological damage in the liver of mice.Quantitative real-time PCR(qPCR)and Western blot were applied to detect the mRNA and protein expression levels of p-PI3K,PI3K,p-Akt,Akt,p-mTOR,mTOR,p-FoxO1,FoxO1,p-FoxO3a,FoxO3a,p-FoxO4,FoxO4,BCL and BAX factors.Results Compared to the model group,the CTLE administration group showed improved hepatic patho-logical injury and reduced lipid deposition.The bio-chemical indexes in serum and liver,such as ALT,AST,TG,TC,and MDA levels were reduced,while GSH and SOD levels increased.Regulating the PI3K/Akt/FoxO pathway resulted in increased production of SOD,which reduced damage and apoptosis caused by reactive oxygen species(ROS).Conclusions CTLE can exert anti-oxidative stress and anti-apoptotic effects through the PI3K/Akt/FoxO pathway and attenuates alcoholic liver injury in mice,providing new ideas for the treatment of alcoholic liver disease and the develop-ment of related drugs.
7.Inhibitory effect and molecular mechanism of sinomenine on human hepatocellular carcinoma HepG2 and SK-HEP-1 cells.
Ying-Ying TIAN ; Bei-Bei MA ; Xin-Yue ZHAO ; Chuang LIU ; Yi-Lin LI ; Shang-Yue YU ; Shi-Qiu TIAN ; Hai-Luan PEI ; Ying-Nan LYU ; Ze-Ping ZUO ; Zhi-Bin WANG
China Journal of Chinese Materia Medica 2023;48(17):4702-4710
This study aimed to investigate the effect and molecular mechanism of sinomenine on proliferation, apoptosis, metastasis, and combination with inhibitors in human hepatocellular carcinoma HepG2 cells and SK-HEP-1 cells. The effect of sinomenine on the growth ability of HepG2 and SK-HEP-1 cells were investigated by CCK-8 assay, colony formation assay, and BeyoClick~(TM) EdU-488 staining. The effect of sinomenine on DNA damage was detected by immunofluorescence assay, and the effect of sinomenine on apoptosis of human hepatocellular carcinoma cells was clarified by Hoechst 33258 staining and CellEvent~(TM) Cystein-3/7Green ReadyProbes~(TM) reagent assay. Cell invasion assay and 3D tumor cell spheroid invasion assay were performed to investigate the effect of sinomenine on the invasion ability of human hepatocellular carcinoma cells in vitro. The effect of sinomenine on the regulation of protein expression related to the protein kinase B(Akt)/mammalian target of rapamycin(mTOR)/signal transducer and activator of transcription 3(STAT3) signaling pathway in HepG2 and SK-HEP-1 cells was examined by Western blot. Molecular docking was used to evaluate the strength of affinity of sinomenine to the target cysteinyl aspartate specific proteinase-3(caspase-3) and STAT3, and combined with CCK-8 assay to detect the changes in cell viability after combination with STAT3 inhibitor JSI-124 in combination with CCK-8 assay. The results showed that sinomenine could significantly reduce the cell viability of human hepatocellular carcinoma cells in a concentration-and time-dependent manner, significantly inhibit the clonogenic ability of human hepatocellular carcinoma cells, and weaken the invasive ability of human hepatocellular carcinoma cells in vitro. In addition, sinomenine could up-regulate the cleaved level of poly ADP-ribose polymerase(PARP), a marker of apoptosis, and down-regulate the protein levels of p-Akt, p-mTOR, and p-STAT3 in human hepatocellular carcinoma cells. Molecular docking results showed that sinomenine had good affinity with the targets caspase-3 and STAT3, and the sensitivity of sinomenine to hepatocellular carcinoma cells was diminished after STAT3 was inhibited. Therefore, sinomenine can inhibit the proliferation and invasion of human hepatocellular carcinoma cells and induce apoptosis, and the mechanism may be attributed to the activation of caspase-3 signaling and inhibition of the Akt/mTOR/STAT3 pathway. This study can provide a new reference for the in-depth research and clinical application of sinomenine and is of great significance to further promote the scientific development and utilization of sinomenine.
Humans
;
Carcinoma, Hepatocellular/genetics*
;
Proto-Oncogene Proteins c-akt/metabolism*
;
Caspase 3/metabolism*
;
Liver Neoplasms/genetics*
;
Molecular Docking Simulation
;
Sincalide/pharmacology*
;
Cell Line, Tumor
;
Cell Proliferation
;
Hep G2 Cells
;
TOR Serine-Threonine Kinases/metabolism*
;
Apoptosis
8.Morin induces autophagy and apoptosis in hepatocellular carcinoma cells through Akt/mTOR/STAT3 pathway.
Xin-Yue ZHAO ; Ying-Ying TIAN ; Chuang LIU ; Yi-Lin LI ; Ying-Nan LYU ; Shang-Yue YU ; Shi-Qiu TIAN ; Hai-Luan PEI ; Ze-Ping ZUO ; Zhi-Bin WANG
China Journal of Chinese Materia Medica 2023;48(16):4475-4482
This study investigated the effect and mechanism of morin in inducing autophagy and apoptosis in hepatocellular carcinoma cells through the protein kinase B(Akt)/mammalian target of rapamycin(mTOR)/signal transducer and activator of transcription protein 3(STAT3) pathway. Human hepatocellular carcinoma SK-HEP-1 cells were stimulated with different concentrations of morin(0, 50, 100, 125, 200, and 250 μmol·L~(-1)). The effect of morin on the viability of SK-HEP-1 cells was detected by Cell Counting Kit-8(CCK-8). The effect of morin on the proliferation and apoptosis of SK-HEP-1 cells was investigated using colony formation assay, flow cytometry, and BeyoClick~(TM) EdU-488 with different concentrations of morin(0, 125, and 250 μmol·L~(-1)). The changes in the autophagy level of cells treated with morin were examined by transmission electron microscopy and autophagy inhibitors. The impact of morin on the expression levels of proteins related to the Akt/mTOR/STAT3 pathway was verified by Western blot. Compared with the control group, the morin groups showed decreased viability of SK-HEP-1 cells in a time-and concentration-dependent manner, increased number of apoptotic cells, up-regulated expression level of apoptosis marker PARP, up-regulated phosphorylation level of apoptosis-regulating protein H2AX, decreased number of positive cells and the colony formation rate, an upward trend of expression levels of autophagy-related proteins LC3-Ⅱ, Atg5, and Atg7, and decreased phosphorylation levels of Akt, mTOR, and STAT3. These results suggest that morin can promote apoptosis, inhibit proliferation, and induce autophagy in hepatocellular carcinoma cells, and its mechanism of action may be related to the Akt/mTOR/STAT3 pathway.
Humans
;
Proto-Oncogene Proteins c-akt/metabolism*
;
Carcinoma, Hepatocellular/pathology*
;
Liver Neoplasms/pathology*
;
TOR Serine-Threonine Kinases/metabolism*
;
Apoptosis
;
Autophagy
;
Cell Proliferation
;
Cell Line, Tumor
;
STAT3 Transcription Factor/metabolism*
9.Associations of genetic polymorphisms in Corin with blood pressure responses to salt and potassium intake
Lan WANG ; Zejiaxin NIU ; Yanjie GUO ; Nairong LIU ; Yanni YAO ; Beibei YANG ; Jiaxin WANG ; Chuang LI ; Panpan LIU ; Chang’e YANG ; Mingfei DU ; Guilin HU ; Xi ZHANG ; Dan WANG ; Xiaoyu ZHANG ; Chao CHU ; Yueyuan LIAO ; Qiong MA ; Keke WANG ; Hao JIA ; Yue SUN ; Tongshuai GUO ; Weihua GAO ; Jianjun MU ; Yang WANG
Journal of Xi'an Jiaotong University(Medical Sciences) 2023;44(1):22-29
【Objective】 Corin, a transmembrane serine protease that can cleave atrial natriuretic peptide precursor (pro-ANP) into atrial natriuretic peptide with smaller bioactive molecules, participates in the pathophysiological process of hypertension and cardiac hypertrophy. The purpose of this study was to explore the relationship of Corin gene variation with blood pressure responses to sodium and potassium dietary interventions. 【Methods】 In 2004, we recruited 514 participants from 124 families in 7 villages of Baoji, Shaanxi Province, China. All the subjects received a 3-day normal diet, a 7-day low-salt diet, a 7-day high-salt diet, and finally a 7-day high-salt and potassium supplementation. Fifteen single nucleotide polymorphisms (SNPs) of Corin gene were selected for final analysis. 【Results】 SNPs rs12509275 were significantly associated with diastolic blood pressure (DBP) response to low-salt diet, while rs3749584 was associated with pulse pressure (PP) response to low-salt diet.SNP rs3749584 and rs10517195 were significantly associated with PP response to high-salt diet. In addition,rs17654278 were significantly associated with systolic blood pressure (SBP) response to high-salt and potassium supplementation, rs2271037 was significantly correlated with DBP responses to high-salt and potassium supplementation, and rs4695253, rs12509275, rs2351783, rs36090894 were significantly associated with PP response to high-salt and potassium supplementation. 【Conclusion】 Corin gene polymorphisms were associated with blood pressure response to sodium and potassium, suggesting that Corin gene may be involved in pathophysiological process of salt sensitivity and potassium sensitivity.
10.Primary leiomyosarcoma of the prostate complicated with acinar adenocarcinoma: a case report
Yin CHEN ; Chuang YUE ; Xiaoli ZHOU ; Li ZUO
Chinese Journal of Urology 2023;44(11):869-870
Primary leiomyosarcoma of the prostate is rare.A case of prostate leiomyosarcoma complicated with acinar adenocarcinoma in a 68-year-old man was reported. The patient's PSA was abnormally elevated, and MRI suggested prostate malignant tumor. Leiomyosarcoma was diagnosed by transperineal prostate biopsy and laparoscopic radical prostatectomy was performed. The diagnosis was confirmed by postoperative pathological examination. There was no recurrence or metastasis after 20 months of follow-up.

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