1.Efficacy and Mechanism of Action of Ermiao Situ Decoction in Modulating JAK/STAT Pathway in Rats with Damp-heat Eczema
Kangning HAN ; Junjie HU ; Juan LI ; Min ZHANG ; Xian ZHOU ; Songlin LIU ; Xin CHEN
Chinese Journal of Experimental Traditional Medical Formulae 2025;31(9):37-47
ObjectiveUltra performance liquid chromatography-quadrupole-time of flight tandem mass spectrometry (UPLC-Q-TOF-MS/MS) coupled with network pharmacology and molecular docking was utilized to explore the efficacy and mechanism of action of Ermiao Situ decoction on rats with damp-heat eczema. MethodsA rat model of damp-heat eczema was established by artificial climate chamber intervention combined with sensitization induction by dinitrochlorobenzene (DNCB), and it was randomly divided into the normal group, the model group, the medium- and high-dose groups of Ermiao Situ decoction (3.40 g·kg-1 and 6.80 g·kg-1), and the prednisone acetate group (2.51 mg·kg-1), with eight rats in each group, totalling 46 rats, of which six rats were tested with the drug-containing serum. The chemical analysis of drug-containing serum from rats was carried out by UPLC-Q-TOF-MS/MS, combined with network pharmacology for the prediction of key components, core targets, and signaling pathways, and molecular docking experiments were performed by CB-Dock2 online website. The pharmacological effects of Ermiao Situ decoction in the treatment of damp-heat eczema were investigated by epitaxial indexes combined with the pathologic tissue staining method. The serum levels of gastrin (GAS), interleukin-4 (IL-4), and interleukin-13 (IL-13) were measured by enzyme-linked immunosorbent assay (ELISA). Interleukin-6 (IL-6), Janus kinase 1 (JAK1), phosphorylated (p)-JAK1, signal transduction and activation of transcription factor 3 (STAT3), and p-STAT3 protein expression level was determined by Western bolt. ResultsA total of 19 active ingredients were detected in drug-containing serum samples of rats, which were predicted to act on 198 targets for the treatment of damp-heat eczema, among which the key ingredients included rhodopsin, huangpai alkaloids, and quercetin, and the main core targets included STAT3, tumor necrosis factor (TNF), and IL-6, which were mainly involved in the cancer signaling pathway, phosphatidylinositol 3-kinase (PI3K)/protein kinase (Akt) signaling pathway, T helper 17 (Th17) cell differentiation signaling pathway, and JAK/STAT signaling pathway. The molecular docking results suggested that the key components had strong binding activities with the core targets IL-6, JAK1, and STAT3 in the JAK/STAT signaling pathway. The results of animal experiments showed that compared with those in the normal group, rats in the model group were depressed. They had loose hair, loose stools, epidermal oozing, vesiculation, and generation of thick scabs in the form of scales, decreased body weight, increased anus temperature and water intake, and increased indexes of the spleen, thymus gland, and stomach (P<0.05, P<0.01), and the lesion tissue could be seen to be hyperkeratotic, with the aggregation of inflammatory cells and nonsignificant separation of epidermis and dermis. The gastric mucosa was thinned, deficient, and structurally disorganized, and obvious inflammatory cell aggregation was seen. The levels of GAS, IL-4, and IL-13 in serum were significantly reduced (P<0.05, P<0.01), and the protein expression levels of IL-6, JAK1, p-JAK1, and p-STAT3 in the lesion tissue were significantly increased (P<0.05, P<0.01). Compared with those in the model group, rats in each administration group had stable mental states, formed feces, a clean perianal area, and basically normal epidermis. Only a small amount of scaly scabs existed, and the rats had body weight increased, with decreased anal temperature and water intake, as well as decreased spleen, thymus, and gastric indexes (P<0.05, P<0.01). Epidermal thickness was decreased, and epidermal and dermal separation boundaries were obvious, but hyperkeratotic and accumulation of inflammatory cells could still be seen. The thickness of gastric mucosa increased, and the structure was restored to varying degrees. The levels of GAS, IL-4, and IL-13 content in the serum of rats were increased to varying degrees, and the protein expression levels of IL-6, JAK1, p-JAK1, and p-STAT3 in the dermal lesion tissue were significantly decreased (P<0.05, P<0.01). ConclusionErmiao Situ decoction may exert therapeutic effects on rats with damp-heat eczema by modulating the JAK/STAT signaling pathway.
2.Research progress on strategies to target intestinal microbiota to improve drug resistance in tumor immunotherapy
Hui-ling LI ; Bi-qing LIU ; Ying-nan FENG ; Xin HU ; Lan ZHANG ; Xian-zhe DONG
Acta Pharmaceutica Sinica 2025;60(2):260-268
A growing body of research points out that gut microbiota plays a key role in tumor immunotherapy. By optimizing the composition of intestinal microbiota, it is possible to effectively improve immunotherapy resistance and enhance its therapeutic effect. This article comprehensively analyzes the mechanism of intestinal microbiota influencing tumor immunotherapy resistance, expounds the current strategies for targeted regulation of intestinal microbiota, such as traditional Chinese medicine and plant components, fecal microbiota transplantation, probiotics, prebiotics and dietary therapy, and explores the potential mechanisms of these strategies to improve patients' resistance to tumor immunotherapy. At the same time, the article also briefly discusses the prospects and challenges of targeting intestinal microbiota to improve tumor immunotherapy resistance, which provides a reference for related research to help the strategy research of reversing tumor immunotherapy resistance.
3.Stratified mucin-producing epithelial neoplastic lesions of the cervix: clinicohistologic and molecular pathological characteristics
LIU Yaling ; HUANG Xian ; WANG Fei ; HU Quanquan ; XUAN Lanlan
Chinese Journal of Cancer Biotherapy 2025;32(3):301-308
[摘 要] 目的:探究浸润性复层产生黏液的复层上皮癌(ISMC)的临床组织及分子病理特征。方法: 回顾性分析2018年1月至2024年4月间安徽医科大学安庆医学中心/安庆市立医院及皖南医学院第一附属医院/弋矶山医院的病理数据库的11例ISMC和4例产生黏液的复层上皮内病变(SMILE)的临床病理资料、免疫组化、阿利新蓝(AB)/过碘酸雪夫(PAS)染色、分子学检测及PD-L1表达情况。结果:ISMC患者多表现为阴道不规则流血。细胞质内含有黏液的细胞呈复层排列,周围呈栅栏状,肿瘤细胞可呈印戒样或胞质透明。ISMC不仅存在单纯型,也可呈混合型。ISMC具有高侵袭性的生物学特性。CK7、p16,p40和(或)p63表达呈癌巢周栅栏状阳性或局灶表达。AB/PAS染色阳性。人乳头状病毒(HPV)检测结果:ISMC中HPV16/18阳性(1/4),术前检测出HPV16/18阳性(4/6);SMILE组织中HPV阴性。ISMC均表达PD-L1。成功随访8例ISMC患者,时间4~39个月(平均20.50月),4例SMILE患者,时间1~25个月(平均8.25月),随访患者均存活,1例ISMC术后出现多脏器转移。结论:ISMC具有独特的形态学特征及免疫表型,表现为高侵袭性和不良预后。所有ISMC均呈PD-L1阳性,提示所有患者均可从PD-L1免疫治疗中获益。
4.Exploration of the antidepressant machanism of Shugan hewei tang based on metabolomics of PFC-NAc-VTA neural circuit
Xinyue QU ; Junjie HU ; Juan LI ; Min ZHANG ; Xian ZHOU ; Songlin LIU ; Xin CHEN
China Pharmacy 2025;36(10):1172-1178
OBJECTIVE To investigate the antidepressant mechanism of Shugan hewei tang (SGHWT) based on the metabolomics of prefrontal cortex (PFC)-nucleus accumbens (NAc)-ventral tegmental area (VTA) neural circuit. METHODS Male SD rats were randomly divided into blank group, model group, SGHWT low-, medium- and high-dose groups [3.67, 7.34, 14.68 g/(kg·d), by raw material], and fluoxetine group [1.58 mg/(kg·d), positive control], with 12 rats in each group. Except for the blank group, the depression model was established by chronic unpredictable mild stress combined with individual cage housing in the remaining groups, and the corresponding drug solution or normal saline was administered via gavage during modeling, once a day, for 6 consecutive weeks. After the last administration, the body weight, sucrose preference rate, total moving distance, frequency into the center and immobility time of rats in each group were detected. Samples of PFC, NAc and VTA areas of rats in the blank group, model group, SGHWT medium-dose group and fluoxetine positive control groups were collected,and their histomorphological features were observed, and non-targeted metabolomics analysis (except for fluoxetine group)were performed and validated. RESULTS Compared with model group, the cytolysis, structural damage and other pathological damages in three brain regions of rats were significantly alleviated in each drug group, while their body weight, sucrose preference rate, total moving distance and frequency into the center were all significantly higher or longer (P<0.05), and immobility time was significantly shorter (P<0.05). The results of non-targeted metabolomics showed that a total of 78 endogenous differential metabolites were identified, with 40, 35 and 24 in the PFC, NAc and VTA regions respectively, mainly involved in amino acid, lipid and sphingolipid metabolism. The results of metabolic pathway enrichment analysis showed that SGHWT affected the neural circuits of depressed rats by regulating sphingolipid metabolism, alanine, aspartic acid and glutamic acid metabolism, saturated fatty acid biosynthesis, among which alanine, aspartic acid and glutamic acid metabolism was predominantly involved. Validation experiments showed that SGHWT significantly increased the phosphorylation levels of protein kinase B (Akt) and mammalian target of rapamycin (mTOR), and decreased the protein expression of N-methyl-D-aspartic acid receptor 1 (NMDAR1) in the NAc region of rats. CONCLUSIONS SGHWT significantly improves the depression-like behavior and attenuates pathological damage of PFC-NAc-VTA neural circuit of model rats, the mechanism of which is associated with inhibiting NMDAR1 expression and activating the Akt/mTOR signaling pathway.
5.Aumolertinib combined with anlotinib inhibits proliferation of non-small cell lung cancer cells by down-regulating the PI3K/AKT pathway
Yumei YANG ; Xuerou LIU ; Wei LIU ; Xingqi ZHOU ; Zhen ZHANG ; Yan HU ; Peipei LIU ; Xian LI ; Hao LIU ; Shanshan LI
Journal of Southern Medical University 2024;44(10):1965-1975
Objective To investigate the inhibitory effect of aumolertinib combined with anlotinib on proliferation of non-small cell lung cancer(NSCLC)cells.Methods CCK-8 assay,colony formation assay,and flow cytometry were used to assess the effect of different concentrations of aumolertinib or anlotinib on proliferation,survival,and apoptosis of PC-9 and HCC827 cells,and their synergistic effect was evaluated using the SynergyFinder model.In PC-9 and HCC827 cells treated with aumolertinib combined with anlotinib,the changes in cell invasion and migration abilities were assessed with Transwell assay,and the expressions of apoptosis-and invasion/migration-related proteins(Bax,Bcl-2,E-cadherin,vimentin,MMP2,and MMP9)and the key PI3K-Akt pathway proteins were detected using Western blotting.Results In PC-9 cells,the IC50 of aumolertinib and anlotinib was 1.701 μmol/L and 4.979 μmol/L,respectively,with a synergy score(ZIP)of 19.112;in HCC827 cells,their IC50 was 2.961 μmol/L and 7.934 μmol/L,respectively,with a ZIP of 12.325.Compared with aumolertinib and anlotinib used alone,their combined treatment more strongly inhibited the proliferation and survival,enhanced apoptosis and suppressed invasion and migration abilities of PC-9 and HCC827 cells.Western blotting showed that in both PC-9 and HCC827 cells,the combined treatment significantly upregulated the expressions of E-cadherin and Bax proteins,downregulated the expressions of Bcl-2,vimentin,MMP2,and MMP9 proteins,and reduced phosphorylation levels of PI3K and Akt.Conclusion Aumolertinib combined with anlotinib can effectively inhibit NSCLC cell proliferation by downregulating the PI3K-Akt pathway,suggesting a potentially new option for NSCLC treatment.
6.E2 signaling in myofibers promots macrophage efferocytosis in mouse skeletal muscles with cardiotoxin-induced acute injury
Qihui CAI ; Haiqiang LAN ; Bojun XIAN ; Lian LIU ; Nan WANG ; Xiaolei HUANG ; Xiaolu NIU ; Xinyu HU ; Chen LI ; Junyi XIE ; Zhaohong LIAO
Journal of Southern Medical University 2024;44(11):2192-2200
Objective To investigate the effect of E2 signaling in myofibers on muscular macrophage efferocytosis in mice with cardiotoxin-induced acute skeletal muscle injury.Methods Female wild-type C57BL/6 mice with and without ovariectomy and male C57BL/6 mice were given a CTX injection into the anterior tibial muscle to induce acute muscle injury,followed by intramuscular injection of β-estradiol(E2)or 4-hydroxytamoxifen(4-OHT).The changes in serum E2 of the mice were detected using ELISA,and the number,phenotypes,and efferocytosis of the macrophages in the inflammatory exudates and myofiber regeneration and repair were evaluated using immunofluorescence staining and flow cytometry.C2C12 cells were induced to differentiate into mature myotubes,which were treated with IFN-γ for 24 before treatment with β-Estradiol or 4-OHT.The treated myotubes were co-cultured with mouse peritoneal macrophages in a 1:2 ratio,followed by addition of PKH67-labeled apoptotic mouse mononuclear spleen cells induced by UV irradiation,and macrophage efferocytosis was observed using immunofluorescence staining and flow cytometry.Results Compared with the control mice,the female mice with ovariectomy showed significantly increased mononuclear macrophages in the inflammatory exudates,with increased M1 cell percentage,reduced M2 cell percentage and macrophage efferocytosis in the injured muscle,and obviously delayed myofiber regeneration and repair.In the cell co-culture systems,treatment of the myotubes with β-estradiol significantly increased the number and proportion of M2 macrophages and macrophage efferocytosis,while 4-OHT treatment resulted in the opposite changes.Conclusion In injured mouse skeletal muscles,myofiber E2 signaling promotes M1 to M2 transition to increase macrophage efferocytosis,thereby relieving inflammation and promoting muscle regeneration and repair.
7.Development and application of a method for identifying Pheretima and a common counterfeit of Metaphire magna based on signature peptides
Rui LIU ; Jing-xian ZHANG ; Qing HU ; Jian SUN ; Hong YU ; Ying-ying RAN ; Fan HUANG ; Xiu-hong MAO ; Shen JI
Acta Pharmaceutica Sinica 2024;59(10):2842-2848
Based on the species-specific peptides of
8.Aumolertinib combined with anlotinib inhibits proliferation of non-small cell lung cancer cells by down-regulating the PI3K/AKT pathway
Yumei YANG ; Xuerou LIU ; Wei LIU ; Xingqi ZHOU ; Zhen ZHANG ; Yan HU ; Peipei LIU ; Xian LI ; Hao LIU ; Shanshan LI
Journal of Southern Medical University 2024;44(10):1965-1975
Objective To investigate the inhibitory effect of aumolertinib combined with anlotinib on proliferation of non-small cell lung cancer(NSCLC)cells.Methods CCK-8 assay,colony formation assay,and flow cytometry were used to assess the effect of different concentrations of aumolertinib or anlotinib on proliferation,survival,and apoptosis of PC-9 and HCC827 cells,and their synergistic effect was evaluated using the SynergyFinder model.In PC-9 and HCC827 cells treated with aumolertinib combined with anlotinib,the changes in cell invasion and migration abilities were assessed with Transwell assay,and the expressions of apoptosis-and invasion/migration-related proteins(Bax,Bcl-2,E-cadherin,vimentin,MMP2,and MMP9)and the key PI3K-Akt pathway proteins were detected using Western blotting.Results In PC-9 cells,the IC50 of aumolertinib and anlotinib was 1.701 μmol/L and 4.979 μmol/L,respectively,with a synergy score(ZIP)of 19.112;in HCC827 cells,their IC50 was 2.961 μmol/L and 7.934 μmol/L,respectively,with a ZIP of 12.325.Compared with aumolertinib and anlotinib used alone,their combined treatment more strongly inhibited the proliferation and survival,enhanced apoptosis and suppressed invasion and migration abilities of PC-9 and HCC827 cells.Western blotting showed that in both PC-9 and HCC827 cells,the combined treatment significantly upregulated the expressions of E-cadherin and Bax proteins,downregulated the expressions of Bcl-2,vimentin,MMP2,and MMP9 proteins,and reduced phosphorylation levels of PI3K and Akt.Conclusion Aumolertinib combined with anlotinib can effectively inhibit NSCLC cell proliferation by downregulating the PI3K-Akt pathway,suggesting a potentially new option for NSCLC treatment.
9.E2 signaling in myofibers promots macrophage efferocytosis in mouse skeletal muscles with cardiotoxin-induced acute injury
Qihui CAI ; Haiqiang LAN ; Bojun XIAN ; Lian LIU ; Nan WANG ; Xiaolei HUANG ; Xiaolu NIU ; Xinyu HU ; Chen LI ; Junyi XIE ; Zhaohong LIAO
Journal of Southern Medical University 2024;44(11):2192-2200
Objective To investigate the effect of E2 signaling in myofibers on muscular macrophage efferocytosis in mice with cardiotoxin-induced acute skeletal muscle injury.Methods Female wild-type C57BL/6 mice with and without ovariectomy and male C57BL/6 mice were given a CTX injection into the anterior tibial muscle to induce acute muscle injury,followed by intramuscular injection of β-estradiol(E2)or 4-hydroxytamoxifen(4-OHT).The changes in serum E2 of the mice were detected using ELISA,and the number,phenotypes,and efferocytosis of the macrophages in the inflammatory exudates and myofiber regeneration and repair were evaluated using immunofluorescence staining and flow cytometry.C2C12 cells were induced to differentiate into mature myotubes,which were treated with IFN-γ for 24 before treatment with β-Estradiol or 4-OHT.The treated myotubes were co-cultured with mouse peritoneal macrophages in a 1:2 ratio,followed by addition of PKH67-labeled apoptotic mouse mononuclear spleen cells induced by UV irradiation,and macrophage efferocytosis was observed using immunofluorescence staining and flow cytometry.Results Compared with the control mice,the female mice with ovariectomy showed significantly increased mononuclear macrophages in the inflammatory exudates,with increased M1 cell percentage,reduced M2 cell percentage and macrophage efferocytosis in the injured muscle,and obviously delayed myofiber regeneration and repair.In the cell co-culture systems,treatment of the myotubes with β-estradiol significantly increased the number and proportion of M2 macrophages and macrophage efferocytosis,while 4-OHT treatment resulted in the opposite changes.Conclusion In injured mouse skeletal muscles,myofiber E2 signaling promotes M1 to M2 transition to increase macrophage efferocytosis,thereby relieving inflammation and promoting muscle regeneration and repair.
10.Primary intracranial DICER1-mutant sarcoma: a clinicopathological analysis of seven cases
Liqiong OU ; Shaoyan XI ; Lingyi FU ; Wenguang ZHANG ; Xinyi XIAN ; Yanhui LIU ; Jingping YUN ; Jing ZENG ; Wanming HU
Chinese Journal of Pathology 2024;53(12):1231-1237
Objective:To investigate the clinicopathological features, immunophenotype, molecular characteristics, and differential diagnosis of primary intracranial DICER1-mutant sarcoma in order to better understand this tumor type.Methods:A retrospective analysis was conducted on 7 cases of primary intracranial DICER1-mutant sarcoma diagnosed in the Department of Pathology, Sun Yat-sen University Cancer Center, Guangzhou, China between 2021 and 2023 using next-generation sequencing. At the same time, 10 gliosarcomas, 4 intracranial FET::CREB fusion-positive mesenchymal tumors, 4 malignant meningiomas, 3 malignant solitary fibrous tumors, 3 malignant peripheral nerve sheath tumors, 3 synovial sarcomas and 3 rhabdomyosarcomas (total 30 cases) were selected as control.Results:Among the 7 patients with primary intracranial DICER1-mutant sarcoma, 6 were male and 1 was female, aged 10-32 years (median, 23 years). The tissue morphology was predominantly spindle or pleomorphic sarcoma-like, with 6 cases exhibiting eosinophilic globules, and 3 cases showing rhabdomyoblastic or rhabdomyosarcoma-like cell differentiation. Immunohistochemistry revealed focal desmin expression in 3 cases (3/7), ATRX loss in 3 cases (3/7), and p53 mutant pattern in 4 cases (4/7). Additionally, 4 cases (4/7) showed focal or diffuse SALL4 expression, whereas the control cases (30 cases) did not exhibit SALL4 protein expression, suggesting that SALL4 may possess certain auxiliary diagnostic value. Next-generation sequencing confirmed that all 7 cases of primary intracranial DICER1-mutant sarcoma harbored mutations in the DICER1 gene, with 5 cases having the mutation site at p.E1813D. Until May 2024, all 7 patients were alive.Conclusions:Primary intracranial DICER1-mutant sarcoma is a rare tumor. Understanding its morphological characteristics, immunohistochemical and molecular markers and differential diagnosis is crucial to avoid misdiagnosis and to improve diagnostic accuracy of this tumor.

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