1.Epidemiology and management patterns of chronic thromboembolic pulmonary hypertension in China.
Wanmu XIE ; Yongpei YU ; Qiang HUANG ; Xiaoyan YAN ; Yuanhua YANG ; Changming XIONG ; Zhihong LIU ; Jun WAN ; Sugang GONG ; Lan WANG ; Cheng HONG ; Chenghong LI ; Jean-François RICHARD ; Yanhua WU ; Jun ZOU ; Chen YAO ; Zhenguo ZHAI
Chinese Medical Journal 2025;138(8):1000-1002
2.Effective therapeutic targeting of tumor lineage plasticity in neuroendocrine prostate cancer by BRD4 inhibitors.
Xiong ZHANG ; Yatian YANG ; Hongye ZOU ; Yang YANG ; Xingling ZHENG ; Eva COREY ; Amina ZOUBEIDI ; Nicolas MITSIADES ; Ai-Ming YU ; Yuanpei LI ; Hong-Wu CHEN
Acta Pharmaceutica Sinica B 2025;15(3):1415-1429
Tumor lineage plasticity (LP) is an emerging hallmark of cancer progression. Through pharmacologically probing the function of epigenetic regulators in prostate cancer cells and organoids, we identified bromodomain protein BRD4 as a crucial player. Integrated ChIP-seq and RNA-seq analysis of tumors revealed, for the first time, that BRD4 directly activates hundreds of genes in the LP programs which include neurogenesis, axonogenesis, EMT and stem cells and key drivers such as POU3F2 (BRN2), ASCL1/2, NeuroD1, SOX2/9, RUNX1/2 and DLL3. Interestingly, BRD4 genome occupancy is reprogrammed by anti-AR drugs from facilitating AR function in CRPC cells to activating the LP programs and is facilitated by pioneer factor FOXA1. Significantly, we demonstrated that BRD4 inhibitor AZD5153, currently at clinical development, possesses potent activities in complete blockade of tumor growth of both de novo neuroendocrine prostate cancer (NEPC) and treatment-induced NEPC PDXs and that suppression of tumor expression of LP programs through reduction of local chromatin accessibility is the primary mechanism of action (MOA) by AZD5153. Together, our study revealed that BRD4 plays a fundamental role in direct activation of tumor LP programs and that its inhibitor AZD5153 is highly promising in effective treatment of the lethal forms of the diseases.
3.CMD-OPT model enables the discovery of a potent and selective RIPK2 inhibitor as preclinical candidate for the treatment of acute liver injury.
Yong CHEN ; Xue YUAN ; Wei YAN ; Yurong ZOU ; Haoche WEI ; Yuhan WEI ; Minghai TANG ; Yulian CHEN ; Ziyan MA ; Tao YANG ; Kongjun LIU ; Baojian XIONG ; Xiuying HU ; Jianhong YANG ; Lijuan CHEN
Acta Pharmaceutica Sinica B 2025;15(7):3708-3724
Acute liver injury (ALI) serves as a critical precursor and major etiological factor in the progression and ultimate manifestation of various hepatic disorders. The prevention and treatment of ALI is still a serious global challenge. Given the limited therapeutic options for ALI, exploring novel targeted therapeutic agents becomes imperative. The potential therapeutic efficacy of inhibiting RIPK2 is highlighted, as it may provide significant benefits by attenuating the MAPK pathway and NF-κB signaling. Herein, we propose a CMD-OPT model, a two-stage molecular optimization tool for the rapid discovery of RIPK2 inhibitors with optimal properties. Compound RP20, which targets the ATP binding site, demonstrated excellent kinase specificity, ideal oral pharmacokinetics, and superior therapeutic effects in a model of APAP-induced ALI, positioning RP20 as a promising preclinical candidate. This marks the first application of RIPK2 inhibitors in ALI treatment, opening a novel therapeutic pathway for clinical applications. These results highlight the efficacy of the CMD-OPT model in producing lead compounds from known active molecules, showcasing its significant potential in drug discovery.
4.Inhibition of the cGAS‑STING Pathway Reduces Cisplatin-Induced Inner Ear Hair Cell Damage.
Ying SUN ; Shengyu ZOU ; Xiaoxiang XU ; Shan XU ; Haiying SUN ; Mingliang TANG ; Weijia KONG ; Xiong CHEN ; Zuhong HE
Neuroscience Bulletin 2025;41(3):359-373
Although cisplatin is a widely used chemotherapeutic agent, it is severely toxic and causes irreversible hearing loss, restricting its application in clinical settings. This study aimed to determine the molecular mechanism underlying cisplatin-induced ototoxicity. Here, we established in vitro and in vivo ototoxicity models of cisplatin-induced hair cell loss, and our results showed that reducing STING levels decreased inflammatory factor expression and hair cell death. In addition, we found that cisplatin-induced mitochondrial dysfunction was accompanied by cytosolic DNA, which may act as a critical linker between the cyclic GMP-AMP synthesis-stimulator of interferon genes (cGAS-STING) pathway and the pathogenesis of cisplatin-induced hearing loss. H-151, a specific inhibitor of STING, reduced hair cell damage and ameliorated the hearing loss caused by cisplatin in vivo. This study underscores the role of cGAS-STING in cisplatin ototoxicity and presents H-151 as a promising therapeutic for hearing loss.
Cisplatin/toxicity*
;
Animals
;
Nucleotidyltransferases/antagonists & inhibitors*
;
Membrane Proteins/antagonists & inhibitors*
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Signal Transduction/drug effects*
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Mice
;
Hair Cells, Auditory, Inner/pathology*
;
Antineoplastic Agents/toxicity*
;
Mice, Inbred C57BL
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Hearing Loss/metabolism*
;
Male
;
Ototoxicity/metabolism*
5.Cryo-EM structures of Nipah virus polymerase complex reveal highly varied interactions between L and P proteins among paramyxoviruses.
Lu XUE ; Tiancai CHANG ; Jiacheng GUI ; Zimu LI ; Heyu ZHAO ; Binqian ZOU ; Junnan LU ; Mei LI ; Xin WEN ; Shenghua GAO ; Peng ZHAN ; Lijun RONG ; Liqiang FENG ; Peng GONG ; Jun HE ; Xinwen CHEN ; Xiaoli XIONG
Protein & Cell 2025;16(8):705-723
Nipah virus (NiV) and related viruses form a distinct henipavirus genus within the Paramyxoviridae family. NiV continues to spillover into the humans causing deadly outbreaks with increasing human-bat interaction. NiV encodes the large protein (L) and phosphoprotein (P) to form the viral RNA polymerase machinery. Their sequences show limited homologies to those of non-henipavirus paramyxoviruses. We report two cryo-electron microscopy (cryo-EM) structures of the Nipah virus (NiV) polymerase L-P complex, expressed and purified in either its full-length or truncated form. The structures resolve the RNA-dependent RNA polymerase (RdRp) and polyribonucleotidyl transferase (PRNTase) domains of the L protein, as well as a tetrameric P protein bundle bound to the L-RdRp domain. L-protein C-terminal regions are unresolved, indicating flexibility. Two PRNTase domain zinc-binding sites, conserved in most Mononegavirales, are confirmed essential for NiV polymerase activity. The structures further reveal anchoring of the P protein bundle and P protein X domain (XD) linkers on L, via an interaction pattern distinct among Paramyxoviridae. These interactions facilitate binding of a P protein XD linker in the nucleotide entry channel and distinct positioning of other XD linkers. We show that the disruption of the L-P interactions reduces NiV polymerase activity. The reported structures should facilitate rational antiviral-drug discovery and provide a guide for the functional study of NiV polymerase.
Nipah Virus/chemistry*
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Cryoelectron Microscopy
;
Viral Proteins/genetics*
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RNA-Dependent RNA Polymerase/genetics*
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Phosphoproteins/genetics*
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Humans
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Models, Molecular
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Protein Binding
6.Rheumatoid arthritis complicated with cervical actinomycosis and ureteral obstruction:A case report and literature review
Haina GAN ; Xiang REN ; Yao ZOU ; Lihua LI ; Jingtao DING ; Lijuan PENG ; Ying XIONG ; Xianyao LI ; Wei XIAO
Journal of Central South University(Medical Sciences) 2024;49(5):818-824
Actinomycosis is a rare chronic granulomatous disease characterized by granuloma formation and tissue fibrosis with sinus tracts,often misdiagnosed due to its similarity to many infectious and non-infectious diseases.This report presents a case of a 60-year-old female with more than 10 years history of rheumatoid arthritis who developed actinomycosis infection after long-term treatment with immunosuppressants and biologics,including methotrexate,leflunomide,and infliximab,leading to recurrent joint pain,poorly controlled rheumatoid arthritis activity,and persistent elevation of white blood cell counts.Abdominal CT revealed a pelvic mass and right ureteral dilation.Pathological examination of cervical tissue showed significant neutrophil infiltration and sulfur granules,indicating actinomycosis.The patient received 18 months of doxycycline treatment for the infection and continued rheumatoid arthritis therapy with leflunomide,hydroxychloroquine sulfate,and tofacitinib,resulting in improved joint symptoms and normalized white blood cell counts.After 2 years of follow-up,the patient remained stable with no recurrence.This case highlights the importance of clinicians being vigilant for infections,particularly chronic,occult infections from rare pathogens,in rheumatoid arthritis patients on potent immunosuppressants and biologics,advocating for early screening and diagnosis.
7.Effects of amentoflavone on airway inflammation in asthmatic young rats by regulating cGAS-STING signal pathway
Tiantian XIONG ; Rui WANG ; Xiong XIE ; Yulin ZOU
Immunological Journal 2024;40(2):145-150
The aim of this study was to investigate the effect of amentoflavone(AF)on airway inflammation in asthmatic young rats and its mechanism.The asthmatic model of young SD rats was established by intraperitoneal injection combined with nebulization of ovalbumin(OVA).The rats were randomly grouped into asthma model(M)group,dexamethasone(DXMS)group,AF low(AF L),AF medium(AF M),AF high(AF H)dose group and normal control group(CT)group.After administration,the airway reactivity was detected with non-invasive lung function instrument and the inflammatory cell types in bronchoalveolar lavage fluid(BALF)were analyzed and counted by Giemsa staining.Furthermore,hematoxylin-eosin(HE)staining was applied to evaluate the pathological morphology of lung and bronchial tissues,enzyme-linked immunosorbent assay(ELISA)kits were used to detect the content of inflammatory factors in serum,Western blot was applied to detect the protein expression of GMP-AMP synthase(cGAS),interferon gene stimulator(STING),phosphorylated interferon regulatory factor 3(p-IRF3)and interferon regulatory factor 3(IRF3)in lung tissue of rats.Compared with the CT group,the asthma model group showed obvious pathological damage of bronchial tissue and lung tissue,higher level of airway reactivity,higher pathological scores of lung tissue and bronchial tissue,increased total number of inflammatory cells and the number of monocytes,eosinophils,neutrophils and lymphocytes in BALF,higher levels of inflammatory factors in serum,and higher expression levels of cGAS,STING and p-IRF3/IRF3 proteins in lung tissue(P<0.05).Compared with the M group,the pathological damage of lung and bronchus tissue in asthmatic rats was relieved after treatment with DXMS and high-dose AF,the airway reactivity,pathological score of lung tissue and bronchial tissue,total number and classification of inflammatory cells in BALF,inflammatory factors in serum and expression of cGAS,STING,p-IRF3/IRF3 proteins in lung tissue were obviously lower(P<0.05).In conclusion,AF can alleviate airway inflammation in asthmatic young rats,possibly by inhibiting cGAS-STING signal pathway.
8.Single-cell transcriptomics reveals cell atlas and identifies cycling tumor cells responsible for recurrence in ameloblastoma
Xiong GAN ; Xie NAN ; Nie MIN ; Ling RONGSONG ; Yun BOKAI ; Xie JIAXIANG ; Ren LINLIN ; Huang YAQI ; Wang WENJIN ; Yi CHEN ; Zhang MING ; Xu XIUYUN ; Zhang CAIHUA ; Zou BIN ; Zhang LEITAO ; Liu XIQIANG ; Huang HONGZHANG ; Chen DEMENG ; Cao WEI ; Wang CHENG
International Journal of Oral Science 2024;16(2):251-264
Ameloblastoma is a benign tumor characterized by locally invasive phenotypes,leading to facial bone destruction and a high recurrence rate.However,the mechanisms governing tumor initiation and recurrence are poorly understood.Here,we uncovered cellular landscapes and mechanisms that underlie tumor recurrence in ameloblastoma at single-cell resolution.Our results revealed that ameloblastoma exhibits five tumor subpopulations varying with respect to immune response(IR),bone remodeling(BR),tooth development(TD),epithelial development(ED),and cell cycle(CC)signatures.Of note,we found that CC ameloblastoma cells were endowed with stemness and contributed to tumor recurrence,which was dominated by the EZH2-mediated program.Targeting EZH2 effectively eliminated CC ameloblastoma cells and inhibited tumor growth in ameloblastoma patient-derived organoids.These data described the tumor subpopulation and clarified the identity,function,and regulatory mechanism of CC ameloblastoma cells,providing a potential therapeutic target for ameloblastoma.
9.Differential expression of inflammatory proteins in diabetic skin ulcers and ordinary skin ulcers
Wu XIONG ; Youyuan HE ; Xi ZHANG ; Jianda ZHOU ; Jia CHEN ; Xiaoling ZOU ; Sijia ZHAO ; Xingxing ZHONG ; Yutan CAO ; Wenjing QU
Journal of Chinese Physician 2024;26(3):331-336
Objective:To study and screen the differential expression of inflammatory proteins in diabetes skin ulcers and common skin ulcers, so as to provide experimental basis for further research on anti-inflammatory and healing drug targets of diabetes skin ulcers.Methods:The tissues of 11 patients with diabetes skin ulcer, 12 patients with common skin ulcer and 11 patients with normal skin were collected from the First Hospital of Hunan University of Chinese Medicine. The levels of inflammatory protein Toll like receptor 4 (TLR4), nuclear factor κB (NF-κB), pro-inflammatory factor interferon -γ (IFN -γ), tumor necrosis factor - α (TNF -α), interleukin-6 (IL-6), interleukin-8 (IL-8), interleukin-1β (IL-1β), macrophage chemotactic protein-1 (MCP-1), anti-inflammatory factors epidermal growth factor (EGF), interleukin-4 (IL-4), and interleukin-10 (IL-10) were detected in three groups of tissues using enzyme-linked immunosorbent assay (ELISA).Results:Compared with normal tissues, the concentrations of TLR4, NF-κB, IFN -γ, TNF -α, IL-1β, IL-6, IL-8, MCP-1 and EGF in common ulcer skin tissues and diabetes ulcer tissues were higher, and the concentrations of IL-10 were lower, with statistically significant differences (all P<0.05); Compared with the normal tissue, the concentration of IL-4 in diabetes ulcer tissue was lower, the difference was statistically significant ( P<0.05); Compared with ordinary ulcer skin tissue, the concentrations of TLR4, NF-κB and MCP-1 in diabetes ulcer tissue were higher, and the concentrations of IL-4 were lower, with statistically significant differences (all P<0.05). Conclusions:The skin ulcer in diabetes patients will have inflammatory reaction, and high glucose promotes the inflammatory reaction of skin ulcer, which may be related to the abnormal expression of TLR4, NF-κB, MCP-1 and IL-4. TLR4/NF-κB signal pathway and inflammatory factors MCP-1 and IL-4 may be the target of the inflammation regulation of diabetes skin ulcer.
10.Mechanism of astragaloside IV promoting bone marrow EPCs mobilization in diabetic ulcer rats
Luyao ZHANG ; Shimin CAI ; Xi ZHANG ; Xiaoqin SONG ; Xiaoling ZOU ; Yuting XIAO ; Ying YANG ; Yang WEI ; Hongyu HUANG ; Wu XIONG
Journal of Chinese Physician 2024;26(3):376-381
Objective:To investigate the effect of astragaloside IV (AS-IV) regulating the signal axis of stromal cell-derived factor-1α (SDF-1α)/CXC chemokine receptor 4 (CXCR4) on the mobilization of bone marrow endothelial progenitor cells (EPCs) to peripheral blood in diabetes skin ulcer (DSU) rats.Methods:Twenty four SPF grade male Sprague Dawley (SD) rats were selected to make the model of type 2 diabetes rats by intraperitoneal injection of 30 mg/kg 1% (plastid ratio) streptozotocin, and then round full-thickness skin with a diameter of 2 cm was cut on both sides of the waist and back to make the skin ulcer model of diabetes rats. After that, they were randomly divided into AS-IV group (50 mg/kg AS-IV), blocker group (50 mg/kg AS-IV+ 5 mg/kg AMD3100) and model group. At the same time, a blank group ( n=8) was set up, The drug was administered via intraperitoneal injection, and the model group and blank group were treated with 0.9% NaCl of equal volume. On the 10th day, peripheral blood, femoral bone marrow, and wound neovascularization tissues of rats were collected. The number of EPCs in peripheral blood of each group of rats was measured by flow cytometry, and the protein expression of SDF-1α and CXCR4 in peripheral blood, femoral bone marrow, and wound neovascularization tissues of rats was detected by enzyme-linked immunosorbent assay (ELISA); At the same time, the wound healing rates of each group were tested. Results:On the 10th and 21st day after modeling, the wound healing rate of each group of rats was compared. The blank group healed the fastest, while the model group healed the slowest. The AS-IV group had better healing than the model group and the blocker group, and the difference was statistically significant (all P<0.05). On the 10th day after modeling, the positive rates of peripheral blood EPCs in the white group, AS-IV group, and blocker group were significantly higher than those in the model group (all P<0.05), while the positive rates of peripheral blood EPCs in the blocker group were significantly lower than those in the AS-IV group (all P<0.05). On the 10th day after modeling, the protein expression of SDF-1α and CXCR4 in the wound, serum, and bone marrow of the model group was the lowest, while the protein expression in the blank group was the highest (all P<0.05). The protein expression of SDF-1α and CXCR4 in the wound, serum, bone marrow of the AS-IV group was significantly higher than that of the blocker group and model group, and the difference was statistically significant (all P<0.05). Conclusions:Astragaloside IV can promote the mobilization and migration of endothelial progenitor cells from bone marrow to peripheral blood in diabetes ulcer rats by regulating SDF-1α/CXCR4 signal axis, and can participate in angiogenesis of diabetes ulcer wounds as seed cells to promote the healing of diabetes skin ulcers.

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