1.Design, synthesis, and biological activity evaluation of photocaged cyclin-dependent kinase 2 inhibitors
Qingxiao WANG ; Xiaoyuan SUN ; Chunlei TANG ; Yan ZHANG
Journal of China Pharmaceutical University 2026;57(3):304-313
This study aimed to design and synthesize a series of novel photocaged compounds based on the precise binding mode of cyclin-dependent kinase 2 (CDK2) inhibitor AT7519 with its target, to achieve precise optical control over molecular activity. Using AT7519 as the structural foundation, different types of photoremovable protecting groups were introduced at its key interaction sites (the NH of the pyrazole ring and the NH of the piperidine ring), resulting in the synthesis of eight dual-photocaged compounds. Their structures were confirmed by NMR and mass spectrometry, and their photochemical properties—including photolysis wavelength, photolysis time, and photolysis efficiency—were systematically evaluated. The optically controlled inhibitory effects of the compounds on HCT116 cell proliferation were assessed using MTT assay. The photoresponsive characteristics of the photocaged compounds were significantly influenced by the type of photoremovable protecting group and its introduction site. Among them, compounds 1a, 1b, and 2d exhibited excellent photolysis efficiency, each achieving a rate exceeding 90%. Particularly, compounds 1b and 2d demonstrated excellent optically controlled activity: under dark conditions, their half maximal inhibitory concentration (IC50) values were both greater than 150 µmol/L, indicating negligible cell proliferation inhibitory activity; however, upon irradiation, their cell proliferation inhibitory activity significantly increased, with IC50 values comparable to those of the positive control AT7519. The obtained compounds 1b and 2d possess excellent optically controlled properties, and can be further investigated as potential candidates for optically controlled CDK2 inhibitors.
2.Interpretation of Technical Specification for Sensory Evaluation of Bitterness of Oral Liquid Preparation of Traditional Chinese Medicine
Qingxiao WANG ; Yanna REN ; Xinjing GUI ; Jing YAO ; Panpan WANG ; Yanli WANG ; Ruixin LIU
Herald of Medicine 2025;44(3):360-365
Taste is an important aspect that affects the application and development of oral liquid preparations of tradi-tional Chinese medicine,and bitterness is the main adverse taste of such preparations.In January 2024,the Chinese Society of Tra-ditional Chinese Medicine released the social organization standard"Technical Specification for Sensory Evaluation of Bitterness of Oral Liquid Preparation of Traditional Chinese Medicine"(standard number:T/CACM 1574-2024),led by the Chinese Medi-cine Preparation Branch of the Chinese Society of Traditional Chinese Medicine,the First Affiliated Hospital of Henan University of Traditional Chinese Medicine,and Beijing University of Traditional Chinese Medicine,with the participation of 22 units nation-wide.It provided scientific guidance and good tools for the evaluation of bitterness of such preparations and lays a technical foun-dation for the subsequent implementation of taste improvement.This article provided a detailed introduction to the background and significance,formulation process,and main content of the standard development,which is beneficial for traditional Chinese medi-cine pharmacists to understand the standard better,apply,promote,and improve the group's standard,thereby promoting the im-provement of the taste quality and patient acceptance of such preparations,and promoting the development of the modernization of traditional Chinese medicine.
3.Interpretation of Technical Specification for Sensory Evaluation of Bitterness of Oral Liquid Preparation of Traditional Chinese Medicine
Qingxiao WANG ; Yanna REN ; Xinjing GUI ; Jing YAO ; Panpan WANG ; Yanli WANG ; Ruixin LIU
Herald of Medicine 2025;44(3):360-365
Taste is an important aspect that affects the application and development of oral liquid preparations of tradi-tional Chinese medicine,and bitterness is the main adverse taste of such preparations.In January 2024,the Chinese Society of Tra-ditional Chinese Medicine released the social organization standard"Technical Specification for Sensory Evaluation of Bitterness of Oral Liquid Preparation of Traditional Chinese Medicine"(standard number:T/CACM 1574-2024),led by the Chinese Medi-cine Preparation Branch of the Chinese Society of Traditional Chinese Medicine,the First Affiliated Hospital of Henan University of Traditional Chinese Medicine,and Beijing University of Traditional Chinese Medicine,with the participation of 22 units nation-wide.It provided scientific guidance and good tools for the evaluation of bitterness of such preparations and lays a technical foun-dation for the subsequent implementation of taste improvement.This article provided a detailed introduction to the background and significance,formulation process,and main content of the standard development,which is beneficial for traditional Chinese medi-cine pharmacists to understand the standard better,apply,promote,and improve the group's standard,thereby promoting the im-provement of the taste quality and patient acceptance of such preparations,and promoting the development of the modernization of traditional Chinese medicine.
4.Effects of donor T cell stat3 deficiency on acute intestinal graft-versus-host disease in mice
Yuxi XU ; Xiaoqi WANG ; Shijie YANG ; Qingxiao SONG ; Jin WEI ; Xi ZHANG
Chinese Journal of Hematology 2025;46(4):302-313
Objective:To investigate the effects and underlying mechanisms of Stat3 knockout in donor T cells on acute gastrointestinal graft-versus-host disease (GI-aGVHD) .Methods:BALB/c mice were exposed to lethal irradiation and transplanted with bone marrow and spleen cells from BALB/c mice (syngeneic control group), C57BL/6 mice (wild-type T cell group, WT group), or C57BL/6J-Stat3 em1cyagen mice (Stat3 gene knockout T cell group, Stat3-KO group) via tail vein injection to establish the aGVHD model. The survival rate, body weight changes, and clinical scores of mice were monitored. Cytometric bead array (CBA) was used to detect the concentrations of serum cytokines. Lymphocytes were isolated from tissues for flow cytometric analysis. H&E staining was performed to observe intestinal pathological changes. FITC-dextran assay was conducted to assess intestinal permeability. Immunohistochemistry was used to evaluate the expression of Ki67 and Muc2. Real-Time Quantitative Reverse Transcription PCR (qRT-PCR) was employed to analyze the gene expression levels of Olfm4, Lysozyme, and Muc2 in the small intestine. Metabolomics was conducted to detect metabolites in serum and intestinal tissues. An in vitro GI-aGVHD organoid model was established by coculturing intestinal organoids with allogeneic T cells, where the number and area of small intestinal organoids were recorded. The GVL effect was assessed using luciferase-transfected ALL cells (ALL/Luc) and bioluminescent imaging. Results:Compared with the WT group, Stat3 knockout T cells alleviated body weight loss, reduced symptoms—such as hunchback and diarrhea—in mice, improved survival rate ( P<0.05), and reduced serum interleukin (IL) -2, IL-6, interferon-γ, tumor necrosis factor-α, IL-17A, and IL-10 levels (all P<0.05), intestinal inflammatory cell infiltration ( P<0.05), and intestinal mucosal permeability. Further, Muc2 and Ki67 expression levels in the small intestine of the Stat3 knockout group were markedly increased, and Olfm4, Lysozyme, and Muc2 gene expression levels were significantly increased (all P<0.05). In vitro, the Stat3 knockout group demonstrated better organoid development than the WT group. Metabolomic analyses indicated that Stat3 knockout in T cells may affect the pathways associated with bile acid secretion and unsaturated fatty acids. ALL/Luc cells in the GVL mouse model proliferated rapidly in the TCD-BM group; however, 80% of the mice in the Stat3-KO group survived tumor-free for >100 days ( P<0.05) . Conclusion:Knocking out Stat3 in graft T cells reduces T cell damage to intestinal stem cells, thereby ultimately alleviating GI-aGVHD while maintaining a stable GVL effect.
5.Effects of donor T cell stat3 deficiency on acute intestinal graft-versus-host disease in mice
Yuxi XU ; Xiaoqi WANG ; Shijie YANG ; Qingxiao SONG ; Jin WEI ; Xi ZHANG
Chinese Journal of Hematology 2025;46(4):302-313
Objective:To investigate the effects and underlying mechanisms of Stat3 knockout in donor T cells on acute gastrointestinal graft-versus-host disease (GI-aGVHD) .Methods:BALB/c mice were exposed to lethal irradiation and transplanted with bone marrow and spleen cells from BALB/c mice (syngeneic control group), C57BL/6 mice (wild-type T cell group, WT group), or C57BL/6J-Stat3 em1cyagen mice (Stat3 gene knockout T cell group, Stat3-KO group) via tail vein injection to establish the aGVHD model. The survival rate, body weight changes, and clinical scores of mice were monitored. Cytometric bead array (CBA) was used to detect the concentrations of serum cytokines. Lymphocytes were isolated from tissues for flow cytometric analysis. H&E staining was performed to observe intestinal pathological changes. FITC-dextran assay was conducted to assess intestinal permeability. Immunohistochemistry was used to evaluate the expression of Ki67 and Muc2. Real-Time Quantitative Reverse Transcription PCR (qRT-PCR) was employed to analyze the gene expression levels of Olfm4, Lysozyme, and Muc2 in the small intestine. Metabolomics was conducted to detect metabolites in serum and intestinal tissues. An in vitro GI-aGVHD organoid model was established by coculturing intestinal organoids with allogeneic T cells, where the number and area of small intestinal organoids were recorded. The GVL effect was assessed using luciferase-transfected ALL cells (ALL/Luc) and bioluminescent imaging. Results:Compared with the WT group, Stat3 knockout T cells alleviated body weight loss, reduced symptoms—such as hunchback and diarrhea—in mice, improved survival rate ( P<0.05), and reduced serum interleukin (IL) -2, IL-6, interferon-γ, tumor necrosis factor-α, IL-17A, and IL-10 levels (all P<0.05), intestinal inflammatory cell infiltration ( P<0.05), and intestinal mucosal permeability. Further, Muc2 and Ki67 expression levels in the small intestine of the Stat3 knockout group were markedly increased, and Olfm4, Lysozyme, and Muc2 gene expression levels were significantly increased (all P<0.05). In vitro, the Stat3 knockout group demonstrated better organoid development than the WT group. Metabolomic analyses indicated that Stat3 knockout in T cells may affect the pathways associated with bile acid secretion and unsaturated fatty acids. ALL/Luc cells in the GVL mouse model proliferated rapidly in the TCD-BM group; however, 80% of the mice in the Stat3-KO group survived tumor-free for >100 days ( P<0.05) . Conclusion:Knocking out Stat3 in graft T cells reduces T cell damage to intestinal stem cells, thereby ultimately alleviating GI-aGVHD while maintaining a stable GVL effect.
6.Anti-tumor effects of phytosphingosine on leukemia cells by inducing cell apoptosis
Guancui YANG ; Jinyi LIU ; Peijie JIANG ; Yuxi XU ; Xiaolong TIAN ; Xiaoqi WANG ; Rui WANG ; Shijie YANG ; Qingxiao SONG ; Jin WEI ; Xi ZHANG
Journal of Army Medical University 2024;46(4):359-368
Objective To preliminarily investigate the anti-tumor effects of phytosphingosine(PHS)and the involvement of inducing apoptosis of leukemia cells.Methods Cellular model of leukemia was established in leukemia cell lines K562 and SUP-B15.CCK-8 assay and EdU assay were used to measure the viability and DNA synthesis of K562 and SUP-B15 cells.RNA-seq was carried out to verify the differentially expressed genes(DEGs)after PHS treatment.Gene Ontology(GO)enrichment and Kyoto Encyclopedia of Genes and Genomes(KEGG)enrichment analyses were applied to analyze the involved functions and signaling pathways.Comparative Toxicogenomics Database(CTD)and Discovery Studio software were employed to predict the underlying targets of PHS and molecular docking.Cell apoptosis was detected by flow cytometry,mitochondrial membrane potential was evaluated by JC-1 probe,and protein expression of key molecules was validated by Western blotting.Results PHS inhibited the proliferation of K562 and SUP-B15 cells in a time-and dose-dependent manner.The half-maximal inhibitory concentration(IC50)of K562 cells was 17.67 and 12.52 pmol/L for 24 and 48 h,respectively,and the IC50 value of SUP-B15 cells was 17.58 and 14.86 μmol/L for 24 and 48 h,respectively.PHS treatment at a dose of 20 μmol/L for 48 h resulted in significant inhibition of DNA synthesis.GO enrichment analysis of the K562 cells showed that PHS might be involved in positive regulation of apoptotic process,plasma membrane and its integral components,and protein kinase binding and activity.Reverse predictive analysis showed that BCL-2 protein was the most likely target of PHS.PHS significantly increased the apoptotic rate of leukemia cells(P<0.05)in a dose-dependent manner,reduced the mitochondrial membrane potential,and down-regulated BCL-2 level(P<0.05)and up-regulated the levels of Cleaved caspase-3 and Cleaved caspase-9(P<0.05).Conclusion PHS may inhibit the proliferation of leukemia cells by inducing mitochondria-dependent apoptosis,possibly through PHS and BCL-2 interaction.
7.Evaluation of the Difference Between Angelica-Astragalus Medicine Pair Dispensing Granules Decoction and Traditional Decoction Based on Chemical Composition and Pharmacological Action
Jing YAO ; Lijie MA ; Yanna REN ; Xiaopeng LI ; Junhan SHI ; Xinjing GUI ; Lu ZHANG ; Qingxiao WANG ; Xuelin LI ; Ruixin LIU
Herald of Medicine 2024;43(7):1112-1119
Objective To evaluate the differences in chemical composition and pharmacological effects between Angelica-Astragalus medicine pair decoction(DGD)and traditional decotion,and to provide a reference for the rational clinical application of Danggui Buxue decoction.Methods With the two comparison methods of unified and non-uniform raw material source batches,we set up different sample groups,established characteristic maps by HPLC,and evaluated the chemical components based on the similarity of characteristic maps,component types,index component content,common peak area,and other factors.The efficacy of the drug was evaluated in the hemorrhagic blood deficiency model mice.Results ①The similarity of the feature map between the DGD and TD was high(similarity was greater than 0.87).②The number of chromatographic peaks was inconsistent.Traditional decoction from self-purchased decoction pieces,or traditional decoction-Factory A decoction pieces had a total of 12 chromatographic peaks each.The DGD of Factory A had a total of 15 chromatographic peaks.There were 10 chromatographic peaks in the DGD of Factory B.③The contents of ferulic acid and calycosin 7-O-glucoside(CG)in DGD of Factory A were higher than those in traditional decoction(P<0.05,n=3).There was no significant difference between DGD and TD ferulic acid content in Factory B,but the content of CG was lower than that in traditional decoction(P<0.05).④The total area of common peaks in DGD was different from that in TD.The relative total ratios of the contents of the components in the self-purchased traditional decoction pieces,the traditional decoction pieces of Factory A,the formula granules of Factory A,and the formula granules of Factory B were 1.00,0.96,2.14,0.60,respectively.⑤Both DGD and traditional decoction could significantly promote the recovery of hemoglobin and red blood cells in hemorrhagic anemia model mice(P<0.01);Compared with the model control group,there was a significantly difference(P<0.05)except for the DGD group of Plant B.There was no significant difference between DGD and TD of Plant A,but there was a very significant difference between DGD and TD of Plant B(P<0.01).Conclusion Whether the raw material source batch is consistent or not,DGD and TD have certain differences in chemical composition.In terms of pharmacological effect,DGD,prepared from a unified batch of decoction pieces,has similar efficacy to traditional decoction in alleviating hemorrhagic anemia.There are certain differences in the pharmacological effects between DGD prepared from different batches of decoction pieces and traditional decoctions.The differences caused by the different preparation processes of the same source batch of prepared slices were compared,and the quality differences of the formula granules from different manufacturers were caused by the different source batches of prepared slices and different preparation processes,indicating the necessity and urgency of the country to formulate a unified quality standard for formula granules and related process specifications.
8.Predictive value of a new radiotherapy plan evaluation tool for bladder toxicity in cervical cancer
Qingxiao LIU ; Yuexiang ZHU ; Long TIAN ; Songlin YANG ; Zheng WANG ; Yusen ZHAO ; Zhiying REN ; Maoye CHANG
Chinese Journal of Radiological Health 2024;33(2):189-194
Objective To evaluate the predictive value of a dose-surface histogram (DSH) for radiation cystitis (RC) in patients with cervical cancer. Methods We retrospectively included 190 patients with cervical cancer who underwent image-guided radiotherapy (IGRT) from the HIS system of The First Affiliated Hospital of Hebei North University from May 2013 to May 2023. The patients were divided into test group (n = 100) and control group (n = 90). The dose distribution in the bladder was evaluated by using a DSH for the test group and using a dose-volume histogram (DVH) for the control group. Receiver operating characteristic curves were used to evaluate the predictive value of DSH for RC in comparison with DVH. Results There were no significant differences in baseline data and RC incidence between the two groups (all P>0.05). All evaluation indicators were significantly different between DSH and DVH (all P<0.05). The predictive value of S45 and V45 for the incidence of grade-I, -II, and -III RC was low (all P<0.05). The predictive value of S50 and V50 for the incidence of grade-I, -II, and -III RC was moderate (all P<0.05). S55−S57 and V55−V57 showed high value for predicting the incidence of grade-I, -II, and -III RC (all P<0.05). Conclusion DSH shows basically the same predictive value for the incidence of RC caused by IGRT in cervical cancer as DVH, which is expected to become a new tool for evaluating radiotherapy plans.
9.Analysis of Formulation and Characteristics of Provincial Standards for Traditional Chinese Medicine Dispensing Granules
Yan MIAO ; Lu LU ; Lu ZHANG ; Fuguo HOU ; Di ZHANG ; Xuehua FAN ; Xinjing GUI ; Qingxiao WANG ; Haibo WANG ; Ruixin LIU
Chinese Journal of Experimental Traditional Medical Formulae 2023;29(14):157-163
In order to standardize the quality control of traditional Chinese medicine(TCM) dispensing granules, the Chinese Pharmacopoeia Commission has promulgated and implemented 200 national drug standards for TCM dispensing granules, but there are still varieties of TCM dispensing granules without unified standards. Many provinces have actively invested in the formulation of provincial standards for TCM dispensing granules to make up for the gaps in standards for varieties of traditional Chinese medicine dispensing granules other than the national standards. By the end of July 2022, 29 provincial-level administrative regions have successively promulgated and implemented a total of 5 602 provincial standards for TCM dispensing granules, involving more than 400 varieties. In order to better understand the formulation and characteristics of provincial standards, this study took 105 provincial standards that have been promulgated and implemented in Henan province as an example, and comprehensively analyzed the formulation and characteristics through quality control indicators such as dry extract rate of raw materials, contents of index components and their transfer rates, specifications and so on. The formulation and characteristics of the same TCM dispensing granules in the provincial standards of different provinces were further analyzed, in order to provide reference for the formulation of provincial standards of TCM dispensing granules and the implementation of national standards.
10.Application and population control strategy of microbial modular co-culture engineering.
Qingxiao PANG ; Hao HAN ; Qingsheng QI ; Qian WANG
Chinese Journal of Biotechnology 2022;38(4):1421-1431
Traditional methods of microbial synthesis usually rely on a single engineered strain to synthesize the target product through metabolic engineering. The key cofactors, precursors and energy are produced by the introduced complex synthetic pathways. This would increase the physiological burden of engineering strains, resulting in a decrease in the yield of target products. The modular co-culture engineering has become an attractive solution for effective heterologous biosynthesis, where product yield can be greatly improved. In the modular co-culture engineering, the coordination between the population of different modules is essential for increasing the production efficiency. This article summarized recent advances in the application of modular co-culture engineering and population control strategies.
Coculture Techniques
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Metabolic Engineering
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Population Control

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