1.Role of alkaloid compounds in regulating chronic liver diseases
Yihui ZHENG ; Jiahui WANG ; Tiejian ZHAO ; Xuelin DUAN ; Lei WANG ; Yang ZHENG ; Shiquan YANG
Journal of Clinical Hepatology 2025;41(2):375-382
Chronic liver diseases with common causes including viral infections, alcohol abuse, and autoimmune diseases. Alkaloids, as a class of plant-derived compounds, have shown significant potential in regulating chronic liver diseases. Recent studies have shown that alkaloids are able to exert a therapeutic effect on chronic liver diseases through multiple pathways. These compounds have a regulatory effect on key pathological processes such as liver fibrosis, inflammatory response, oxidative stress, and cell apoptosis, and they also regulate the metabolic homeostasis of hepatocytes by modulating multiple signaling pathways, thereby playing a role in regulating chronic liver diseases. This article reviews the role and mechanism of alkaloids in the treatment of chronic liver diseases, in order to provide new ideas and directions for the treatment of chronic liver diseases.
2.Multivariate quantitative combined with chemometrics for evaluating the quality of Sophora flavescens from different producing areas
Jiahui CHEN ; Qiong LUO ; Junli ZHAO ; Yan HAI ; Chengdong LIU ; Tuya BAI ; Jun LI ; Yuewu WANG
China Pharmacy 2025;36(19):2404-2408
OBJECTIVE To establish a content determination method for multiple components in Sophora flavescens from different origins and to evaluate its quality by combining with chemometrics. METHODS Thirteen batches (No. K1-K13) of S. flavescens from different origins were selected as test samples. A high-performance liquid chromatography-tandem triple quadrupole mass spectrometry (HPLC-MS/MS) method was established to determine the contents of 12 components, including matrine, oxymatrine, betaine, cytisine, N-methylcytisine, sophoridine, genistein, sophoricoside, sophorone, formononetin, sophorolone Ⅰ and norkurarinone in S. flavescens. Chromatographic separation was performed on a Shim-pack GIST-HP C18 column with a mobile phase consisting of methanol (A) and water containing 0.1% formic acid (B), using gradient elution at a flow rate of 0.25 mL/min, column temperature of 35 ℃, and an injection volume of 3 μL. Mass spectrometry was conducted using an electrospray ionization source with positive and negative ion scanning. Data were collected in segments using the multiple reaction monitoring mode. Technique for order preference by similarity to ideal solution (TOPSIS) and grey relational analysis (GRA)methods were employed to compare and comprehensively evaluate the 13 batches of S. flavescens from different origins. RESULTS The methodological validation for the content determination met the relevant regulatory requirements. The contents of the 12 components were 490.66-1 231.00, 11 088.10- 18 021.50, 7.91-25.38, 903.97-1 713.64, 336.08-1 485.54,1 065.33-2 075.50, 27.52-71.80, 109.36-517.83, 6 034.55-10 632.73, 21.26-145.35, 814.84-1 911.32, 1 040.87-3 446.37 μg/g), respectively. TOPSIS results showed that the top 7 samples in Euclidean distance ranking were K6, K12, K11, K3, K5, K10, K13. The GRA results showed that the top 7 samples in the relative correlation ranking were K12, K11, K10, K6, K13, K5, K3. CONCLUSIONS The established HPLC-MS/MS method is rapid, accurate, highly sensitive, stable and reliable. Combined with chemometrics methods, it can be used for the quality control and evaluation of S. flavescens. The comprehensive quality of samples K3, K5, K6( from Hebei), K10( from Sichuan), K11-K13( from Shanxi), etc. is relatively superior.
3.MASLD development: From molecular pathogenesis toward therapeutic strategies.
Zhu YANG ; Jiahui ZHAO ; Kexin XIE ; Chengwei TANG ; Can GAN ; Jinhang GAO
Chinese Medical Journal 2025;138(15):1807-1824
Metabolic dysfunction-associated steatotic liver disease (MASLD) comprises a spectrum of liver injuries, including steatosis to steatohepatitis (MASH), liver fibrosis, cirrhosis, and relevant complications. The liver mainly comprises hepatocytes, liver sinusoidal endothelial cells (LSECs), Kupffer cells (KCs), immune cells (T cells, B cells), and hepatic stellate cells (HSCs). Crosstalk among these different liver cells, endogenous aberrant glycolipid metabolism, and altered gut dysbiosis are involved in the pathophysiology of MASLD. This review systematically examines advances in understanding the molecular pathogenesis of MASLD, with a focus on emerging therapeutic targets and translational clinical trials. We first delineate the crucial regulatory mechanisms involving diverse liver cells and the gut-liver axis in MASLD development. These cell-specific pathogenic insights offer valuable perspectives for advancing precision medicine approaches in MASLD treatment. Furthermore, we evaluate potential therapeutic targets and summarize clinical trials currently underway. By comprehensively updating the MASLD pathophysiology and identifying promising strategies, this review aims to facilitate the development of novel pharmacotherapies for this increasingly prevalent condition.
Humans
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Fatty Liver/therapy*
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Animals
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Liver/pathology*
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Kupffer Cells/metabolism*
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Hepatocytes/metabolism*
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Hepatic Stellate Cells/metabolism*
4.Imaging poly(ADP-ribose) polymerase-1 (PARP1) in vivo with 18F-labeled brain penetrant positron emission tomography (PET) ligand.
Xin ZHOU ; Jiahui CHEN ; Jimmy S PATEL ; Wenqing RAN ; Yinlong LI ; Richard S VAN ; Mostafa M H IBRAHIM ; Chunyu ZHAO ; Yabiao GAO ; Jian RONG ; Ahmad F CHAUDHARY ; Guocong LI ; Junqi HU ; April T DAVENPORT ; James B DAUNAIS ; Yihan SHAO ; Chongzhao RAN ; Thomas L COLLIER ; Achi HAIDER ; David M SCHUSTER ; Allan I LEVEY ; Lu WANG ; Gabriel CORFAS ; Steven H LIANG
Acta Pharmaceutica Sinica B 2025;15(10):5036-5049
Poly(ADP-ribose) polymerase 1 (PARP1) is a multifunctional protein involved in diverse cellular functions, notably DNA damage repair. Pharmacological inhibition of PARP1 has therapeutic benefits for various pathologies. Despite the increased use of PARP inhibitors, challenges persist in achieving PARP1 selectivity and effective blood-brain barrier (BBB) penetration. The development of a PARP1-specific positron emission tomography (PET) radioligand is crucial for understanding disease biology and performing target occupancy studies, which may aid in the development of PARP1-specific inhibitors. In this study, we leverage the recently identified PARP1 inhibitor, AZD9574, to introduce the design and development of its 18F-isotopologue ([18F]AZD9574). Our comprehensive approach, encompassing pharmacological, cellular, autoradiographic, and in vivo PET imaging evaluations in non-human primates, demonstrates the capacity of [18F]AZD9574 to specifically bind to PARP1 and to successfully penetrate the BBB. These findings position [18F]AZD9574 as a viable molecular imaging tool, poised to facilitate the exploration of pathophysiological changes in PARP1 tissue abundance across various diseases.
5.Natural products targeting NLRP3 inflammasome for metabolic dysfunction-associated fatty liver disease: the known unknowns.
Jiahui MENG ; Qiqi WANG ; Haopeng WANG ; Xuange SHEN ; Tingting QIN ; Wen ZHAO ; Haixia LI ; Ziqiao YUAN
Chinese Journal of Natural Medicines (English Ed.) 2025;23(9):1036-1046
Metabolic dysfunction-associated fatty liver disease (MAFLD), characterized by fatty acid overload, secondary chronic inflammation, and fibrosis, has become the most prevalent chronic liver disease globally. While no effective pharmacotherapy exists for MAFLD, mitigating inflammatory responses represents a promising approach to preventing the progression from steatosis to severe steatohepatitis. The NOD-like receptor family pyrin domain containing 3 (NLRP3) inflammasome, which detects endogenous danger and stress signals, has emerged as a significant target for inflammatory disease treatment, as transcriptional inactivation of its components demonstrates the therapeutic potential for MAFLD. Natural products targeting NLRP3 inflammasome activation have shown promising efficacy in MAFLD therapy. This review synthesizes the current understanding of NLRP3 inflammasome activation and therapeutic targets for NLRP3 homeostasis. Additionally, natural products reported to inhibit NLRP3 inflammasome for MAFLD improvement are categorized according to their mechanisms of action. The review also addresses limitations and future directions regarding natural products targeting NLRP3 inflammasome in MAFLD treatment. Enhanced understanding of NLRP3 inflammasome activation mechanisms in MAFLD and the identification of novel natural products supported by mechanistic research will significantly advance MAFLD treatment.
Humans
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NLR Family, Pyrin Domain-Containing 3 Protein/immunology*
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Inflammasomes/metabolism*
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Biological Products/therapeutic use*
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Animals
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Fatty Liver/immunology*
6.Developing Syllabus for Rare Breast Diseases Using the Integrated Multimodality of Case-/Problem-/Resource-Based Learning
Ru YAO ; Jiahui ZHANG ; Jie LIAN ; Yang QU ; Xinyue ZHANG ; Xin HUANG ; Lu GAO ; Jun ZHAO ; Li HUANG ; Yingzi JIANG ; Linzhi LUO ; Songjie SHEN ; Feng MAO ; Qiang SUN ; Bo PAN ; Yidong ZHOU
JOURNAL OF RARE DISEASES 2024;3(3):391-399
Objective This study aims at establishing a teaching catalog and content for breast rare dis-eases and developing the syllabus for the breast rare disease using integrated multimodality of case-/problem-/resource-based learning(CBL+PBL+RBL).Methods By conducting bibliometrics co-occurrence analysis,we collected 6291 articles on breast rare disease published from January,1975 to June,2024.Additionally,we re-trieved the Textbook on Rare Diseases,the Catalog of Chinese Rare Disease,and Second Batch of Rare Dis-ease Catalog and then decided the teaching content.Results From 16,387 keywords,1000(6.1%)keywords were identified through co-occurrence analysis,including 50(0.3%)candidate diseases.These were classified into three categories:rare primary breast diseases,rare genetic mutation-related diseases associated with breast cancer,and rare systemic multi-system diseases involving the breast.From the candidate list,20(0.1%)rare primary breast diseases were further selected for their notable clinical teaching significance,and significant multi-systemic diseases affecting the breast,whether related to gene mutations or not.Teaching plans were draf-ted using a diversified parallel teaching approaches,taking into account the characteristics of different diseases and the focus of different teaching methods.Conclusions This study initiated the development of the teaching content for breast rare diseases and developed the teaching syllabus using the CBL+PBL+RBL integrated multi teaching model and targeting each rare breast disease for the critical point for teaching.
7.Metal ion metabolism:New ideas for the traditional Chinese medicine prevention and treatment of chronic liver disease
Xinhua GUO ; Jiahui WANG ; Xuelin DUAN ; Yue PENG ; Tiejian ZHAO ; Yang ZHENG ; Bin ZHAO
Journal of Clinical Hepatology 2024;40(7):1498-1504
Chronic liver disease(CLD)tends to have a high incidence rate and impose a serious burden on society and families.Studies have shown that metal ion metabolism is closely associated with CLD,and some Chinese herbal medicines can play a role in the prevention and treatment of CLD by regulating metal ion metabolism.At present,the synthetic drugs currently used for the treatment of CLD fail to achieve a satisfactory effect,and therefore,a variety of Chinese herbal medicines are being used as supplementary and alternative therapies for CLD.This article introduces the role of metal ion metabolism in CLD and the regulatory effect of Chinese herbal medicines and their active components on CLD,and the analysis shows that metal ion metabolism is expected to provide new ideas for the research on CLD and a theoretical basis for the clinical treatment of CLD.For the role of metal ion metabolism in the treatment of CLD,more prospective clinical study data are needed in the future to provide effective and safe treatment regimens for patients with CLD.
8.Characteristics of brain activation during treadmill walking with visual feedback in healthy subjects and hemiple-gic patients:a functional near infrared spectroscopy study
Dandan XIE ; Shanjia CHEN ; Lei LEI ; Guo YU ; Jiahui YU ; Jiapei ZHAO ; Xiaokuo HE
Chinese Journal of Rehabilitation Theory and Practice 2024;30(9):1074-1081
Objective To compare the cortical activation characteristic in the healthy subjects and hemiplegia patients during execut-ing treadmill walking with visual feedback(TWVF). Methods From August to November,2021,eight stroke patients with right hemiplegia(patient group)and eight healthy subjects(healthy group)in Fifth Hospital of Xiamen were recruited.Both groups wore functional near-infrared spectroscopy(fNIRS)caps and executed TWVF,respectively.Experimental block design for walking modes in-cluded the preparation period(10 s)and task period(five cycles of"step 30 s-rest 30 s").The cortical activation(β values)were measured.The regions of interest(ROI)included the pre-motor cortex(PMC),supplementary motor area(SMA),primary motor cortex(M1),primary somatosensory cortex(S1)and sensorimotor cortex(SMC,M1+S1). Results No activation in bilateral M1,and some significant activation(P<0.05)in the left hemisphere SAM,PMC and S1,were found during walking in the healthy group.M1 was activated more in the unaffected(right)hemisphere than in the affected(left)hemisphere during walking in the patient group(P<0.05),and less PMC activation was found(P<0.05).M1 in bilateral hemispheres,SMA in the unaffected hemisphere and PMC in the affected hemi-sphere were activated more in the patient group than in the healthy group(P<0.05). Conclusion The locomotor network of SMC-PMC-SMA are activated more in the hemiplegic patients than in the healthy pepole during walking.M1 are almost not activated in the healthy people during walking,and compensa-torily activated in M1 of the unaffected side in the hemiplegic patients.
9.Morphology and proteomic analysis of leukocyte-free apheresis-derived exosome in storage
Yuena XIE ; Qian ZHAO ; Jing LI ; Jiahui ZHANG ; Fengyuan LI ; Jinghui CHONG
Chinese Journal of Blood Transfusion 2024;37(10):1101-1109
Objective To investigate the morphological and proteomic differences in exosomes(EXOs)during the stor-age of leukocyte-free apheresis platelets(LFA-Plt),evaluate the quality of platelets in storage and predict the function of EXOs at different storage periods.Methods EXOs were isolated by ultracentrifugation,then the morphological observation was performed by electron microscope.Particle size analysis and WB protein index detection were performed.4D Label-free quantitative proteomics technology was used to perform quantitative and bioinformatics analysis on identified proteins.Protein differential analysis on the LFA-Plt EXO between group day 3 and day 5 was performed,and GO function and KEGG path-way enrichment analysis on differential proteins was conducted.Results Cup shaped,CD9/TSG101 enriched and Calnexin(-)EXO was successfully obtained.The particle size(nm)of LFA-Plt EXO for day 3 and day 5 were(82.2±19.6)and(83.4±19.4)respectively,and the protein concentration(μ g/uL)were(0.55±0.13)and(0.51±0.08)respectively,with no statistically significant difference between two groups(P>0.05).1 504 proteins were identified in all samples.GO func-tional enrichment analysis showed that the LFA-Plt EXO proteins were mainly concentrated in the cell membrane,extracel-lular domain and proteasome core complex,and were related to the binding ability of proteins,ATP,calcium ions and GTP,and mainly participated in processes such as redox,protein hydrolysis and signal transduction.KEGG functional annotation showed that the EXO proteins mainly participated in material transportation and catabolism,genetic information processing,and were closely related to human tumors and viral bacterial infections,affecting the metabolism of human immune system.Compared with day 3,day 5 EXO showed significant up-regulation in 16 proteins.The GO enrichment analysis showed that 16 upregulated proteins were mainly associated with adenosine homocysteine activity and 6-phosphofructose kinase activity,and were mainly involved in the metabolism of organic nitrogen compound.KEGG enrichment pathway analysis showed that the most important function of upregulated proteins was participating in signaling pathway for oocyte maturation mediated by progesterone.Conclusion Under the preparation and storage conditions of LFA-Plt in our center,platelet quality can be relatively stable.The functions of EXO proteins varies with different storage periods,which may affect the effectiveness of platelet transfusion.
10.Study on the Effect of Huangqi-Ezhu-Chonglou Combination on Proliferation and Migration of Colorectal Cancer Cells by Regulating Macrophage Polarization
Lili DU ; Gang WANG ; Yan LIANG ; Fan ZHAO ; Jiahui YING ; Gang YIN ; Decai TANG ; Yong BIAN
Journal of Nanjing University of Traditional Chinese Medicine 2024;40(2):137-144
OBJECTIVE To investigate the effect of Huangqi-Ezhu-Chonglou combination on macrophage polarization and its mechanism of inhibiting colorectal cancer(CRC)cells proliferation and migration.METHODS THP-1 cells were stimulated with phorbol 12-myristate 13-acetate(PMA)and interleukin-4(IL-4)to establish M2 macrophage polarization model.The experiment was divided into M0 group(PMA treatment),M2 group(PMA+IL-4 treatment),and M2+ Huangqi-Ezhu-Chonglou combination group(PMA+IL-4+Huangqi-Ezhu-Chonglou combination treatment).The effect of Huangqi-Ezhu-Chonglou combination freeze-dried powder on the viability of macrophage was detected by CCK-8 method.The expression of macrophage polarization markers,glu-taminase(GLS)mRNA and protein was detected by qPCR and Western blot.The levels of interleukin-10(IL-10),transforming growth factor-β(TGF-β)and tumor necrosis factor-α(TNF-α)in cell supernatant were detected by ELISA.CCK-8 method and Tr-answell assays were used to detect the proliferation and migration of HCT116 cells intervened by the supernatant of macrophage culture treated with Huangqi-Ezhu-Chonglou combination,namely conditioned medium(CM).RESULTS Compared with the M0 group,the expression levels of IL-10,mannose receptor(CD206),arginase 1(ARG1),and GLS mRNA and protein in the M2 group were significantly increased(P<0.01,P<0.001),the levels of IL-10 and TGF-β secreted by macrophages were significantly increased(P<0.01,P<0.001);compared with the M2 group,the M2+ Huangqi-Ezhu-Chonglou combination group had significantly reduced IL-10,CD206,ARG1,and GLS mRNA and protein expression(P<0.05,P<0.01),the mRNA and protein levels of TNF-α and in-ducible nitric oxide synthase(iNOS)were significantly increased(P<0.05,P<0.01,P<0.001),the interleukin-1β(Interleukin-1β,IL-1β)mRNA expression significantly increased(P<0.01),and the contents of IL-10 and TGF-β in the cell supernatant sig-nificantly decreased(P<0.05,P<0.01),while TNF-α content significantly increased(P<0.01).CCK-8 and Transwell results showed that compared with the M0-CM group,the M2-CM promoted the proliferation and migration of HCT116 cells(P<0.01,P<0.001),the M2+ Huangqi-Ezhu-Chonglou-CM group significantly inhibited HCT116 cell proliferation and reduced cell migration compared to the M2-CM group(P<0.01,P<0.001).CONCLUSION Huangqi-Ezhu-Chonglou combination can inhibit colorectal cancer cells proliferation and migration by regulating macrophage polarization,and its mechanism may be related to the changes in the expression of GLS,a key enzyme in glutamine metabolism.

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