1.The expression and function of MST1 in prostate cancer
Yuhang HUANG ; Shiyuan YIN ; Linna FANG ; Kun ZHONG ; Guifang HE ; Yongping CAI ; Yu YIN
Acta Universitatis Medicinalis Anhui 2026;61(6):1045-1052
ObjectiveTo investigate the expression level of mammalian sterile 20-like kinase 1 (MST1) in prostate cancer (PCa) tissues, its biological functions, and its regulatory effects on androgen receptor (AR) and vascular endothelial growth factor (VEGF) expression. MethodsImmunohistochemistry was performed to detect MST1 expression in 77 prostate cancer tissues and 34 benign prostatic hyperplasia (BPH) tissues, and the relationship between MST1 expression and clinicopathological parameters was analyzed. MST1-overexpressing C4-2 and LNCaP cell lines were constructed. CCK-8 assay, Transwell migration assay, and angiogenesis assay were conducted to evaluate the effects of MST1 on cell proliferation, migration, and angiogenesis. The expression changes of AR and VEGF were detected by qRT-PCR and Western blot. ResultsMST1 expression was significantly lower in PCa tissues compared with BPH tissues (P=0.012). Low MST1 expression was significantly associated with tumor metastasis (P=0.033). MST1 overexpression inhibited C4-2 cell proliferation and migration, with transmembrane migrated cells reduced by 53.6% (P<0.01). MST1 overexpression decreased the mRNA and protein expression levels of AR and VEGF (P<0.05). Angiogenesis assay demonstrated that the length of new vessel structure was significantly reduced (P<0.05). ConclusionMST1 shows a low expression level in PCa tissues and is associated with tumor metastasis. MST1 exerts tumor-suppressive effects in prostate cancer by inhibiting cell proliferation, migration, and angiogenesis, as well as downregulating the expression of AR and VEGF, indicating its potential as a therapeutic target for prostate cancer.
2.Prediction of Preterm Labor Using Uterine Electromyography in Women with Threatened Preterm Labor after Tocolytic Therapy
Qiang HUANG ; Feizhou JIANG ; Wenjie HOU ; Leilei HE ; Kun YU ; Li CHEN ; YIhui GU ; Jingtong ZHANG ; Yueming ZHANG
Journal of Practical Obstetrics and Gynecology 2025;41(4):346-350
Objective:To investigate the predictive value of transabdominal uterine electromyography for pre-term labor after tocolysis in women with threatened preterm labor.Methods:A total of 48 pregnant women at 28-34 weeks of gestation diagnosed with threatened preterm labor and admitted to The Fourth Affiliated Hospital of Soo-chow University from January to September 2023 were included.According to the response to tocolysis and whether the pregnancy was prolonged for at least 48 h,women were divided into two groups:non-preterm birth within 48 h(n=35)and preterm birth within 48 h(n=13).Uterine electromyography parameters and difference were compared before and after tocolytic therapy in two groups.Univariate Logistic regression was performed to predict the related factors of preterm birth within 48 h after the using of tocolysis in pregnant women with threat-ened preterm birth by uterine electromyography,and receiver operating characteristic(ROC)curve was per-formed to evaluate their performance.Results:Compared to before treatment with tocolysis,after therapy,in the non-preterm birth within 48 h group,significant reductions in contraction frequency,area,duration and amplitude were observed(P<0.05).In the preterm birth within 48 h group,only contraction frequency decreased significant-ly(P<0.05).Univariate Logistic regression indicated that contraction frequency,contraction duration,and contrac-tion area were predictive factors for premature birth within 48 h after tocolysis(P<0.05).When the duration of u-terine contractions lasting for 104.55 s or more the sensitivity and specificity of predicting premature birth within 48 h are 92.3%and 68.6%,respectively.Conclusions:Uterine electromyography may predict the premature birth within 48 h after tocolytic treatment in preterm labor,which may provide reference for subsequent corticosteroid therapy or transfer of high-risk pregnant patients.
3.The T Cell Homing Mechanism and Its Translational Strategy in Immunotherapy for Solid Tumors
Yan XIE ; Yu-Ting HE ; Yang-Kun SHEN
Chinese Journal of Biochemistry and Molecular Biology 2025;41(7):997-1006
In recent years,adoptive T cell immunotherapy has become a research hotspot in cancer treat-ment,in which the directional homing of T cells to tumor tissues is the core of the anti-tumor immune re-sponse,which is closely related to good clinical treatment outcomes.However,the infiltration of T cells into solid tumors remains challenging due to the complex tumor microenvironment,tumor vasculature bar-riers,and loss of chemotaxis signals.This review systematically outlines the migration pathways of T cell homing,including blood homing after intravenous infusion,transvascular endothelial migration,and its infiltration into targeted solid tumor tissues.On this basis,we also explore the regulatory mechanism of T cell homing,especially the synergistic relationship between the chemokine-receptor axis,and the effects of tumor vascular abnormalities,tumor microenvironment(TME)-shaped infiltration barriers,and tumor stromal barriers on T cell homing.In response to the above obstacles,three main strategies to enhance the homing efficiency of T cells are reviewed.First,chemokine receptors(e.g.,CXCR2,CXCR6)are modified to match tumor chemotaxis signals,or immune checkpoint molecules(PD-1,LAG-3,SHP-1)are knocked out to reverse T cell exhaustion by CRISPR gene editing or lentiviral transduction technolo-gy.Second,targeting the VEGF/VEGFR axis combined with ATCT can promote vascular normalization and improve T cell infiltration.Third,the combination of local therapy(radiotherapy,oncolytic virus)or systemic drugs(chemotherapy,immune checkpoint inhibitors,etc.)can improve the homing of T cells by remodeling tumor TME.These strategies will provide a theoretical basis and research direction for a-doptive T cell immunotherapy in the treatment of solid tumors.
4.Csde1 Mediates Neurogenesis via Post-transcriptional Regulation of the Cell Cycle.
Xiangbin JIA ; Wenqi XIE ; Bing DU ; Mei HE ; Jia CHEN ; Meilin CHEN ; Ge ZHANG ; Ke WANG ; Wanjing XU ; Yuxin LIAO ; Senwei TAN ; Yongqing LYU ; Bin YU ; Zihang ZHENG ; Xiaoyue SUN ; Yang LIAO ; Zhengmao HU ; Ling YUAN ; Jieqiong TAN ; Kun XIA ; Hui GUO
Neuroscience Bulletin 2025;41(11):1977-1990
Loss-of-function variants in CSDE1 have been strongly linked to neuropsychiatric disorders, yet the precise role of CSDE1 in neurogenesis remains elusive. In this study, we demonstrate that knockout of Csde1 during cortical development in mice results in impaired neural progenitor proliferation, leading to abnormal cortical lamination and embryonic lethality. Transcriptomic analysis revealed that Csde1 upregulates the transcription of genes involved in the cell cycle network. Applying a dual thymidine-labelling approach, we further revealed prolonged cell cycle durations of neuronal progenitors in Csde1-knockout mice, with a notable extension of the G1 phase. Intersection with CLIP-seq data demonstrated that Csde1 binds to the 3' untranslated region (UTR) of mRNA transcripts encoding cell cycle genes. Particularly, we uncovered that Csde1 directly binds to the 3' UTR of mRNA transcripts encoding Cdk6, a pivotal gene in regulating the transition from the G1 to S phases of the cell cycle, thereby maintaining its stability. Collectively, this study elucidates Csde1 as a novel regulator of Cdk6, sheds new light on its critical roles in orchestrating brain development, and underscores how mutations in Csde1 may contribute to the pathogenesis of neuropsychiatric disorders.
Animals
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Neurogenesis/genetics*
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Cell Cycle/genetics*
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Mice, Knockout
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Mice
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Neural Stem Cells/metabolism*
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DNA-Binding Proteins/metabolism*
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Cyclin-Dependent Kinase 6/genetics*
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Cell Proliferation
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3' Untranslated Regions
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Cerebral Cortex/embryology*
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RNA-Binding Proteins
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Mice, Inbred C57BL
5.Genome-wide investigation of transcription factor footprints and dynamics using cFOOT-seq.
Heng WANG ; Ang WU ; Meng-Chen YANG ; Di ZHOU ; Xiyang CHEN ; Zhifei SHI ; Yiqun ZHANG ; Yu-Xin LIU ; Kai CHEN ; Xiaosong WANG ; Xiao-Fang CHENG ; Baodan HE ; Yutao FU ; Lan KANG ; Yujun HOU ; Kun CHEN ; Shan BIAN ; Juan TANG ; Jianhuang XUE ; Chenfei WANG ; Xiaoyu LIU ; Jiejun SHI ; Shaorong GAO ; Jia-Min ZHANG
Protein & Cell 2025;16(11):932-952
Gene regulation relies on the precise binding of transcription factors (TFs) at regulatory elements, but simultaneously detecting hundreds of TFs on chromatin is challenging. We developed cFOOT-seq, a cytosine deaminase-based TF footprinting assay, for high-resolution, quantitative genome-wide assessment of TF binding in both open and closed chromatin regions, even with small cell numbers. By utilizing the dsDNA deaminase SsdAtox, cFOOT-seq converts accessible cytosines to uracil while preserving genomic integrity, making it compatible with techniques like ATAC-seq for sensitive and cost-effective detection of TF occupancy at the single-molecule and single-cell level. Our approach enables the delineation of TF footprints, quantification of occupancy, and examination of chromatin influences on TF binding. Notably, cFOOT-seq, combined with FootTrack analysis, enables de novo prediction of TF binding sites and tracking of TF occupancy dynamics. We demonstrate its application in capturing cell type-specific TFs, analyzing TF dynamics during reprogramming, and revealing TF dependencies on chromatin remodelers. Overall, cFOOT-seq represents a robust approach for investigating the genome-wide dynamics of TF occupancy and elucidating the cis-regulatory architecture underlying gene regulation.
Transcription Factors/genetics*
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Humans
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Chromatin/genetics*
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Animals
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Binding Sites
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Mice
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DNA Footprinting/methods*
6.Influence of Outdoor Light at Night on Early Reproductive Outcomes of In Vitro Fertilization and Its Threshold Effect: Evidence from a Couple-Based Preconception Cohort Study.
Wen Bin FANG ; Ying TANG ; Ya Ning SUN ; Yan Lan TANG ; Yin Yin CHEN ; Ya Wen CAO ; Ji Qi FANG ; Kun Jing HE ; Yu Shan LI ; Ya Ning DAI ; Shuang Shuang BAO ; Peng ZHU ; Shan Shan SHAO ; Fang Biao TAO ; Gui Xia PAN
Biomedical and Environmental Sciences 2025;38(8):1009-1015
7.Multi-Sequence MRI Radiomics for Predicting EGFR Mutation Status in Non-Small Cell Lung Cancer with Brain Metastases
Zifeng DING ; Ruimin HE ; Dongyong SHAN ; Kun YU ; Chuangye HU
Chinese Journal of Medical Imaging 2025;33(11):1157-1163
Purpose To investigate the feasibility of multi-sequence MRI-based radiomics for predicting epidermal growth factor receptor(EGFR)mutation status in brain metastases from non-small cell lung cancer(NSCLC).Materials and Methods This retrospective study included 237 patients with NSCLC brain metastases from the Second Xiangya Hospital of Central South University(January 1,2017 to December 31,2023)who underwent EGFR genetic testing.All patients underwent pretreatment brain MRI including contrast-enhanced T1-weighted,T2-weighted FLAIR,and T2-weighted sequences,along with chest CT for primary lung lesions.EGFR mutations were identified in 120 patients.Using December 31,2021 as the cutoff date,patients were divided into training(n=146)and validation(n=91)cohorts.Senior radiologists delineated brain metastases on multi-sequence MRI and primary lesions on CT.A total of 851 radiomic features were extracted using PyRadiomics.Following feature selection,machine learning models were constructed using support vector machine algorithm and compared with least absolute shrinkage and selection operator-derived radiomic signatures.Five models were developed:three single-sequence MRI models,a multi-sequence MRI fusion model,and a CT model,with diagnostic performance evaluated by area under the receiver operating characteristic curve.Results The multi-sequence MRI fusion model demonstrated superior performance across all imaging types.The least absolute shrinkage and selection operator and support vector machine models achieved training set area under the curve of 0.854(95%CI 0.748-0.960)and 0.948(95%CI 0.923-0.973),respectively,and validation set area under the curve of 0.810(95%CI 0.751-0.869)and 0.951(95%CI 0.917-0.985),respectively.The optimal prediction model utilized support vector machine algorithm with multi-sequence MRI features.Conclusion Pretreatment multi-sequence MRI radiomics combined with machine learning accurately predicts EGFR mutation status in NSCLC patients with brain metastases.
8.Progress on surgical diagnosis and treatment of pedunculated hepatocellular carcinoma
Nai-bo ZHAO ; Hai-lang HUANG ; Wen-sen LI ; Yuan-yuan YANG ; Hong-yu LI ; Yuan-xiang HE ; Kun-ming WEN
Journal of Regional Anatomy and Operative Surgery 2025;34(2):173-177
support the diagnosis.The treatment of PHCC is mainly based on surgery.Due to the characteristics of intact capsule,surgical resection is relatively easy and the cure rate is higher than that of ordinary hepatocellular carcinoma,and the postoperative survival rate is relatively ideal.For unresectable PHCC,palliative treatment based on transcatheter arterial chemoembolization can be used.This article reviews the progress on diagnosis and treatment of PHCC in order to provide reference for clinical practice.
9.The T Cell Homing Mechanism and Its Translational Strategy in Immunotherapy for Solid Tumors
Yan XIE ; Yu-Ting HE ; Yang-Kun SHEN
Chinese Journal of Biochemistry and Molecular Biology 2025;41(7):997-1006
In recent years,adoptive T cell immunotherapy has become a research hotspot in cancer treat-ment,in which the directional homing of T cells to tumor tissues is the core of the anti-tumor immune re-sponse,which is closely related to good clinical treatment outcomes.However,the infiltration of T cells into solid tumors remains challenging due to the complex tumor microenvironment,tumor vasculature bar-riers,and loss of chemotaxis signals.This review systematically outlines the migration pathways of T cell homing,including blood homing after intravenous infusion,transvascular endothelial migration,and its infiltration into targeted solid tumor tissues.On this basis,we also explore the regulatory mechanism of T cell homing,especially the synergistic relationship between the chemokine-receptor axis,and the effects of tumor vascular abnormalities,tumor microenvironment(TME)-shaped infiltration barriers,and tumor stromal barriers on T cell homing.In response to the above obstacles,three main strategies to enhance the homing efficiency of T cells are reviewed.First,chemokine receptors(e.g.,CXCR2,CXCR6)are modified to match tumor chemotaxis signals,or immune checkpoint molecules(PD-1,LAG-3,SHP-1)are knocked out to reverse T cell exhaustion by CRISPR gene editing or lentiviral transduction technolo-gy.Second,targeting the VEGF/VEGFR axis combined with ATCT can promote vascular normalization and improve T cell infiltration.Third,the combination of local therapy(radiotherapy,oncolytic virus)or systemic drugs(chemotherapy,immune checkpoint inhibitors,etc.)can improve the homing of T cells by remodeling tumor TME.These strategies will provide a theoretical basis and research direction for a-doptive T cell immunotherapy in the treatment of solid tumors.
10.Chemical constituents from the stems and barks of Maytenus variabilis
Ting HE ; Bing-qian LIU ; Jian-feng CHEN ; Xiao-qin YU ; Cheng-xiong LIU ; Kun ZOU ; Fan CHENG
Chinese Traditional Patent Medicine 2025;47(5):1539-1547
AIM To study the chemical constituents from the stems and barks of Maytenus variabilis(Hemsl.)C.Y.Cheng.METHODS The 95%ethanol extract from the stems and barks of M.variabilis was isolated and purified by silica gel,Sephadex LH-20 and semi preparative HPLC,then the structures of obtained compounds were identified by physicochemical properties and spectral data.RESULTS Twenty-three compounds were isolated and identified as β-amyrin(1),3β-acetoxyolean-12-en-11-one(2),ursa-12-ene-11-one-3-ol octocosate(3),friedelin(4),canophyllol(5),pinoresinol(6),medioresinol(7),isolariciresinol(8),dihydrodehydrodiconiferyl alcohol(9),vanillic acid(10),7R,8S-5-methoxydihydrodehydroconiferyl alcohol(11),β-hydroxypropiovanillone(12),triptregeline B(13),triptregeline E(14),(+)-evofolin B(15),2,5-dimethoxybenzoquinone(16),olean-12-ene-3,11-dione(17),β-sitosterol(18),(-)-(7R,7'R,7"S,8S,8'S,8"S)-4',4"-dihydroxy-3,3',3",5-tetramethoxy-7,9',7',9-diepoxy-4,8"-oxy-8,8'-sesquineolignan-7",9"-diol(19),phyllostadimer B(20),rayalinol(21),lyoniresinol(22),dihydrobuddlenol B(23).CONCLUSION Compounds 3,9-11,13-14,16,19-21,23 are isolated from genus Maytenus for the first time,and compounds 2,4-5,7-8,12,15,17,22 are first found from this plant.

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