1.Annual review of basic research on liver transplantation in China in 2025
Desheng CHEN ; Linsen YE ; Yutao CHEN ; Guangnan HUANG ; Wei LIU ; Yang YANG
Organ Transplantation 2026;17(4):541-554
The year 2025 is a crucial one for the leapfrog development of basic research in liver transplantation in China. This article systematically reviews and summarizes the major original contributions made by Chinese scholars in the field of liver transplantation during the year. In the field of xenotransplantation, our research teams have successively completed the world's first gene-modified pig-human in situ and auxiliary liver transplantation, marking that China is leading globally in the clinical transformation of xenogeneic organs. In the aspect of donor liver source expansion and repair, the deep integration of domestic bionic oxygenation machine perfusion system with cell-loaded microgels and 3D bioprinting technology has successfully achieved the dynamic functional repair of marginal donor livers and the preliminary construction of artificial liver tissues. Regarding elderly donor livers, the mechanism of the interaction-driven network between senescent hepatic sinusoidal endothelial cells and hepatocytes was revealed for the first time, promoting the transformation from "passive treatment" to "active management of aging risks". In addition, domestic research has systematically revealed the multi-dimensional pathological mechanisms of ischemia-reperfusion injury, including acetylation regulation and cell pyroptosis, ferroptosis, etc. and innovatively proposed cutting-edge strategies such as "hibernation mechanism-driven organ protection" and "donor-specific thymus vaccine". In the aspects of liver transplantation for hepatocellular carcinoma and precise management, the deep integration of multi-omics technology and artificial intelligence has demonstrated high accuracy in postoperative complication prediction and tumor recurrence prediction, providing solid evidence-based basis for enhancing the international discourse power of "Chinese standards". Through this annual academic review, this article aims to showcase the core breakthroughs in basic research on liver transplantation in China, and contribute wisdom to promoting the transformation of clinical diagnosis and treatment paradigms and achieving international academic alignment.
2.Establishment of Vero cell line overexpressing pAPN gene and its effect on porcine epidemic diarrhea virus replication
Qiuyong CHEN ; Zhihua SUN ; Rujing CHEN ; Xuemin WU ; Renjie WU ; Jinli QIU ; Bing HE ; Yutao LIU ; Longbai WANG ; Lunjiang ZHOU
Chinese Journal of Veterinary Science 2025;45(2):181-186
pAPN is a zinc-dependent metalloprotease,mediating the fusion between virus and host cell,and playing a role as the receptor of coronavirus.To explore the effect of pAPN on PEDV rep-lication,the full-length pAPN gene was amplified from the porcine small intestinal by PCR,and was cloned into the lentiviral vector via the homologous site digested with BamH Ⅰ and Not Ⅰ to obtain the recombinant lentiviral vector PLVX-pAPN-mCMV-ZsGreen1-puro.The recombinant lentiviral vector and helper plasmids pLP1,pLP2,pLP-VSVG were co-transfected into 293T cells for lentiviral packaging.Vero cells were infected with the packaged lentivirus and the pAPN gene overexpressing cells were screened by puromycin.The stable expression of Vero-pAPN monoclonal cell line was screened by a limited dilution method,and the effect of the cell line on the replication of PEDV was determined by qPCR for N mRNA transcription level,Western blot for N protein level,and TCID50.The results showed that the packaged lentivirus could infect Vero cells,and the monoclonal cell line Vero-pAPN(2C5)could stably expressed pAPN.The Vero-pAPN cell line can promote the replication of PEDV,the N gene mRNA transcription level was significantly different at 12-48 h(P<0.05),the N protein expression level increased,and the TCID50 was significantly different at 24 and 48 h(P<0.05).In conclusion,the Vero-pAPN cell line was constructed in this study and it can significantly promote the replication of PEDV,which provides a candidate cell line for PEDV vaccine production and isolation.
3.Revealing potential mechanism of Danggui Buxue decoction in regulating immuno-suppression via PI3K-AKT signaling pathway using network pharmacology and in vivo experiment
Huan HUANG ; Pingrui YANG ; Xifeng LI ; Fuxing GUI ; Yutao LI ; Li ZHANG ; Shuo LIU ; Yufei XIE ; Hongxu DU ; Shicheng BI ; Liting CAO
Chinese Journal of Veterinary Science 2025;45(2):350-361
Danggui Buxue decoction(DBD)is a classic prescription with immunomodulatory and hematopoietic effects.Previous studies have shown the DBD has potential to be used as an oral im-mune booster.However,its immunomodulatory effects and mechanism of action have not been thoroughly studied,especially the protective mechanism of immunomodulatory regulation in the state of immunosuppressive is still unclear.The aim of this study was to explore the protective mechanism of DBD in the immunosuppressive state using network pharmacology combined with animal experiments verification.The active components,core targets and signaling pathways of DBD in treating immunosuppression were obtained using network pharmacology tools.On this ba-sis,the active components of DBD were identified using HPLC-MS,and in vivo studies were con-ducted at the same time.The key active components of DBD obtained using network pharmacology included quercetin,kaempferol and formononetin.The core targets included TP53,RELA,TNF,AKT1,and IL-6.KEGG pathway enrichment analysis showed that phosphoinositide 3-kinase(PI3K)-protein kinase B(AKT)may play an important role in the treatment of immunosuppres-sive diseases using DBD.Molecular docking confirmed that each core target had good binding activ-ity with its corresponding compounds.Animal experiments showed that after DBD intervention,the mRNA gene and protein expression of RELA,TNF,and IL-6 in the serum was significantly down-regulated.The mRNA expression of PI3K and AKT in the ileum and PI3K protein expression were also downregulated.In conclusion,DBD exerts its role in treating immunosuppressive diseases by regulating the PI3K-AKT signaling pathway.
4.The regulatory effects of coenzyme Q10 on blood lipid levels and intestinal flora abun-dance in atherosclerotic rats
Yutao WANG ; Like YANG ; Huayu WANG ; Ming LIU
Chinese Journal of Arteriosclerosis 2025;33(7):602-608
Aim To investigate the regulatory effects of coenzyme Q10(CoQ10)on blood lipid level and intesti-nal flora abundance in atherosclerotic(As)rats.Methods 24 rats were randomly divided into control group,As group and CoQ10 intervention group.Rats in the As group and CoQ10 intervention group were fed with high-fat chow for 2 weeks,combined with abdominal aortic balloon injury to replicate the As model.CoQ10 was administered by gavage start-ing on the next day of modeling,once daily for 4 weeks.Aortic Movat's staining and lipid levels were used to verify the effect of CoQ10 intervention in As,and the abundance of intestinal flora in intestinal contents was analyzed using met-agenomics.Results Compared with the control group,rat aortic tissues in the As group showed endothelial damage,structural disorganization of the internal elastic plate and inflammatory infiltration,serum triglyceride(TG),total cholester-ol(TC)and low density lipoprotein cholesterol(LDLC)levels were increased,and high density lipoprotein cholesterol(HDLC)levels were decreased.Compared with the As group,the structure of the endothelial cells of the aorta and the structure of the endothelial cells,the internal elastic plates and the smooth muscle cell morphology were relatively regular,serum TC,TG and LDLC levels were decreased,and HDLC levels were increased in the CoQ10 intervention group.Com-pared with the control group,the intestinal bacterial biodiversity in the As group was reduced.At the phylum level,the abundance of the Firmicutes and the Bacteroidetes were down-regulated,whereas that of Proteobacteria was up-regulated.At the genus level,the relative abundance of Lactobacillus,Bacteroides,Akkermansia,Limosilactobacillus,Parabacteroides and Ligilactobacillus was down-regulated,and the relative abundance of Muribaculum was up-regulated.Compared with the As group,CoQ10 intervention restored the biodiversity of the intestinal microbiota in As rats and increased the relative abundance of Firmicutes,Bacteroidetes,Lactobacillus,Bacteroides,Akkermansia,Limosilactobacillus,Parabacteroides and Ligilactobacillus,while reducing the relative abundance of Proteobacteria and Muribaculum(all P<0.05).Conclusion CoQ10 can regulate blood lipid levels in As rats,upregulate the abundance of beneficial microbiota,downregulate the abun-dance of harmful microbiota,and modulate the diversity of the gut microbiota.
5.Clinical prognosis and immunotherapeutic benefit in patients with gastric cancer and bone metastasis
Wenqi LIU ; Tao SHI ; Shiji REN ; Yutao WEI ; Baorui LIU ; Jia WEI
Chinese Journal of Cancer Biotherapy 2025;32(7):746-753
Objective:To analyze the clinicopathological characteristics and prognostic factors in gastric cancer patients with bone metastasis,and to evaluate the impact of different treatment regimens on survival in patients with synchronous and metachronous bone metastasis.Methods:A total of 120 gastric cancer patients with bone metastasis treated at Nanjing Drum Tower Hospital between 2015 and 2023 were enrolled,including 36 with synchronous bone metastasis and 84 with metachronous bone metastasis.Clinicopathological features were compared between the two groups using the χ2 test.Cox proportional hazards regression model was employed to identify risk factors for overall survival after bone metastasis(OS-BM).The Kaplan-Meier method was used to analyze the effects of different treatments on OS-BM in both synchronous and metachronous groups.Results:Among the 120 patients,104(86.6%)had metastases to other organs.Comparative analysis revealed that synchronous bone metastasis patients exhibited elevated serum C-reactive protein and decreased serum albumin,whereas metachronous bone metastasis patients had reduced peripheral white blood cell and neutrophil counts(all P<0.05).Metachronous bone metastasis(HR=2.35,95%CI[1.47,3.74],P<0.01),serum CA125≥30.2 U/mL(HR=1.6,95%CI[1.03,2.48],P=0.036),white blood cell count≥9.5×10?/L(HR=2.15,95%CI[1.17,3.92],P=0.013),and absence of immunotherapy(HR=2.26,95%CI[1.5,3.39],P<0.01)were independent risk factors affecting patient prognosis.Combined immunotherapy significantly prolonged OS-BM in gastric cancer patients with bone metastasis compared to non-immunotherapy regimens(9.63 vs 4.53 months,P=0.002).Patients with metachronous bone metastasis demonstrated better response to immunotherapy compared to those with synchronous metastases(median OS-BM:10.8 vs 7.3 months,P=0.004).Conclusion:Immunotherapy is an independent protective factor for survival in gastric cancer patients with bone metastasis.Early combination therapy centered on immunotherapy alongside chemotherapy is recommended to prolong survival in such patients.
6.Effect of β-adrenergic receptor blockers on the sleep architecture of mice
Jing QU ; Yutao LIANG ; Lei HAN ; Ye XING ; Long WANG ; Zhuochao LIN ; Kepeng LIU ; Guangsen SHI
Journal of China Pharmaceutical University 2025;56(4):498-506
Recent studies have identified a missense mutation in the β1-receptor (ADRB1-A187V) that exerts a pronounced impact on human sleep, with a noted decrease in protein abundance in vivo. The administration of β-blockers is frequently associated with sleep disturbances in clinical settings. In this study, we assessed the influence of various β-blockers on sleep within mouse models. Our findings indicated that β-blockers could induce varying degrees of arousal, sleep disruption, and a decrease in REMS (rapid eye movement sleep). We examined the dose-dependent effects of metoprolol and nebivolol on both sleep and cardiac functionality in both wild-type and Adrb1-A187V mutant mice. Our data suggested that, in contrast to cardiac effects, higher doses of metoprolol are required to have noted impact on sleep. No genotype effect was observed with metoprolol in terms of sleep or cardiac function. In contrast, the mutant mice demonstrated increased sensitivity to nebivolol, which exacerbated sleep fragmentation and impeded the onset of REMS. This study is expected to provide some reference for minimizing the occurrence of sleep disorders and reducing the adverse reactions of drugs to the greatest extent.
7.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*
8.Research on risk assessment and dynamic management based on HACCP system for operational safety of medical equipment
Yingming SONG ; Qingyuan LIU ; Yutao CHENG ; Nannan WEI
China Medical Equipment 2025;22(8):130-135
Objective:To study the application effect of the Hazard Analysis and Critical Control Point(HACCP)system in risk assessment and dynamic management of operational safety of medical equipment in surgery rooms.Methods:Based on the HACCP principle,hazard analysis and risk assessment were conducted on the operational safety of equipment in surgery room,and the critical control points were determined,and measures of monitor and management were formulated to conduct whole-process dynamic management for equipment in surgery room.A total of 120 medical equipment in use in the surgery room of Shaanxi Provincial Cancer Hospital from January 2022 to January 2024 were selected.According to random number table method,they were divided into conventional management mode group(60 equipment that received conventional management mode)and dynamic management mode group(60 equipment that received the mode of risk assessment and dynamic management based on HACCP system for operational safety of medical equipment in surgery rooms)to receive different managements.The effect,operational quality,the score of management standardization,and management level for equipment in managing and controlling risk of safety of equipment were compared between two management modes.Results:The average pressure-related injury,electrical injury,extravasation of body fluid,and incidence of unqualified cleaning and disinfection of equipment in the dynamic management mode group were respectively(3.01±1.01)%,(2.65±0.78)%,(1.65±0.64)%and(1.15±0.16)%,all of which were lower than those in the conventional management mode group,and the differences were statistically significant(t=16.311,13.434,12.018,12.629,P<0.05).The average utilization rate,cost-benefit amplification and social benefit amplification of the equipment in the dynamic management mode group were respectively(95.36±2.87)%,(7.98±1.32)%and(10.68±2.36)%,all of which were higher than those in the conventional management mode group,and the average operating rate in the dynamic management mode group was(9.87±1.54)%,which was lower than that in the conventional management mode group,and the differences of the above indicators were significant(t=7.657,15.567,10.354,12.466,P<0.05).The scores of the standard degrees of use and operation,disinfection and sterilization,operation and maintenance,and repairing fault of equipment in the dynamic management mode group were higher than those in the conventional management mode group,and the differences of the above data between two groups were statistically significant(t=16.289,11.415,13.396,9.420,P<0.05),respectively.The rate of standard placement,the rate of reasonable recording and integrity rate of equipment in the dynamic management mode group were higher than those in the conventional management mode group,and the failure rate was lower than that of the conventional management mode group,and the differences of the above indicators between the two groups were statistically significant(x2=6.708,7.070,8.491,13.333,P<0.05).Conclusion:The risk assessment and dynamic management based on HACCP system for operational safety of medical equipment in surgery room can improve the management effect for equipment in surgery room,and reduce the operational risk of equipment,and realize the whole-process management and control for medical equipment in surgery room.
9.A New Phenolic Glycoside from the Stems and Leaves of Illicium Dunnianum
Yueyuan YAN ; Xinyu ZHANG ; Gang LIU ; Yutao HU
Journal of Nanjing University of Traditional Chinese Medicine 2025;41(2):251-256
OBJECTIVE To study the constituents from the dried stems and leaves of Illicium dunnianum Tutcher.METHODS The compounds were isolated and purified by column chromatography of AB-8 macroporous resin,silica gel,HW-40C,ODS,Sephadex LH-20,and semi-preparative RP-HPLC.Their structures were elucidated by physicochemical properties,spectral analyses and ECD.RESULTS The 70%ethanol extract of Illicium dunnianum was subjected to AB-8 macroporous adsorption resin CC to yield 30%ethanol fraction.Five compounds were obtained and characterized as anisole glycol-7-O-β-L-funanarabifuranosyl-(1→6)-β-D-glucopyranoside(1),4-O-β-D-glucopyranosyloxy-benzaldehyde(2),benzyl-O-α-L-rhamnopyranosyl-(1→6)-β-D-glucopyranoside(3),β-D-glucopyranoside benzoate(4)and sachalinoside B(5),respectively.CONCLUSION Compound 1 is a new phenolic glycoside,2-5 are identified from Illicium dunnianum for the first time.
10.Dosimetric impact of deep inspiration breath-hold technique in postoperative radiotherapy for left-sided breast cancer
Duoduo WANG ; Han GAO ; Pudong QIAN ; Yutao LI ; Yingxin LIU ; Zixuan NI ; Yatian LIU
Chinese Journal of Radiation Oncology 2025;34(4):340-346
Objective:To investigate the dosimetric advantages of deep inspiration breath-hold (DIBH) technique in postoperative radiotherapy for left-sided breast cancer.Methods:A prospective study was conducted on patients requiring adjuvant radiotherapy after left-sided breast cancer surgery at Jiangsu Cancer Hospital from January 2018 to May 2023. CT simulation images were acquired under both free breathing (FB) and DIBH respiratory modes. Planning target volumes (PTV) and organs at risk (OAR) were delineated, and dosimetric parameters were compared between the two respiratory modes. Additionally, patients were grouped into subgroups [internal mammary lymph node irradiation (IMNI) vs. non-IMNI, breast-conserving surgery (BCS) followed by radiotherapy vs. modified radical mastectomy (MRM) followed by radiotherapy], and dosimetric differences among subgroups for both breathing modes were compared. The Velocity system was used to measure the minimum distances from the heart and left anterior descending coronary artery (LAD) to the PTV surface on CT images. These distances were defined as the heart-to-PTV and LAD-to-PTV distances. Pearson correlation analysis was performed to assess the relationships between heart D max and LAD D max, heart-to-PTV distance and heart D mean, and LAD-to-PTV distance and LAD D max under both respiratory modes. Results:A total of 132 patients were included. Compared to the FB, DIBH showed no significant difference in target dose distribution, but significantly reduced dose to OAR. Specifically, the heart D mean and D max decreased by 1.8 Gy and 8.1 Gy, respectively, and the LAD D max decreased by 7.9 Gy, and the affected lung V 5 Gy and V 20 Gy were reduced by 6.4% and 2.5%, respectively (all P<0.05). All subgroups benefited from DIBH, with greater decrease of dose to OAR in the IMNI subgroup (compared with the non-IMNI subgroup) and the subgroup of MRM followed by radiotherapy (compared with the BCS followed by radiotherapy group). Under both FB and DIBH modes, heart D max and LAD D max showed linear correlations ( r=0.62 and 0.84, respectively; both P<0.001), heart-to-PTV distance correlated with heart D mean ( r=-0.61 and -0.67, respectively; both P<0.001), and LAD-to-PTV distance correlated with LAD D max ( r=-0.58 and -0.63, respectively; both P<0.001). Conclusions:The DIBH technique can significantly reduce dose to the heart, LAD, and lungs in patients undergoing postoperative radiotherapy for left-sided breast cancer without compromising target dose. Patients receiving IMNI after left-sided breast cancer surgery benefit more from the DIBH technique.

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