1.Traditional Chinese Medicine Intervenes in Endoplasmic Reticulum Stress to Treat Diabetic Microvascular Complications:A Review
Zhenlong ZHOU ; Yu DUAN ; Yutian PANG ; Ying JIA ; Mingwei LI ; Hongyu SHA ; Haichun ZHOU
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(20):293-305
Diabetic microvascular complications (DMC) are major chronic complications of diabetes,primarily including diabetic kidney disease (DKD),diabetic retinopathy (DR),diabetic cardiomyopathy (DCM),and diabetic peripheral neuropathy (DPN). These complications significantly impact patients' quality of life and prognosis. Modern medicine primarily focuses on symptomatic control in the treatment of DMC,with limited ability to reverse the disease progression. Endoplasmic reticulum stress (ERS),as a central event under hyperglycemic toxicity,is not only a key cause of pancreatic β-cell dysfunction (reduced insulin synthesis and secretion) but also a core driver of damage in various target organs of DMC. It activates three signaling pathways of the unfolded protein response (UPR)-inositol-requiring enzyme 1 (IRE1),activating transcription factor 6 (ATF6),and protein kinase R-like endoplasmic reticulum kinase (PERK),intertwining processes such as autophagy,apoptosis,oxidative stress,and calcium homeostasis imbalance. Traditional Chinese medicine (TCM) offers multi-target and multi-pathway therapeutic advantages and can curb the pathological progression of DMC by regulating ERS. This article systematically reviews the relationships of ERS with pancreatic β-cell function,insulin synthesis,and insulin secretion,and elucidates the core signaling pathways through which ERS mediates DMC. Furthermore,it categorizes and summarizes experimental evidence and mechanisms of single medicinal herbs and their extracts,TCM compound formulas,and modern TCM preparations in regulating ERS for the treatment of various DMC subtypes. Finally,this article proposes ERS as a molecular bridge for integrating traditional Chinese and Western medicine in DMC treatment. Future research should leverage emerging technologies such as network pharmacology,multi-omics analysis,and nano-formulations to establish a synergistic network combining modern hypoglycemic drugs and TCM regulation of ERS. This approach is expected to achieve dual efficacy,enhance drug targeting and bioavailability,deepen the understanding of scientific connotation of TCM,and pave new avenues for the prevention and treatment of DMC.
2.Traditional Chinese Medicine Intervenes in Endoplasmic Reticulum Stress to Treat Diabetic Microvascular Complications:A Review
Zhenlong ZHOU ; Yu DUAN ; Yutian PANG ; Ying JIA ; Mingwei LI ; Hongyu SHA ; Haichun ZHOU
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(20):293-305
Diabetic microvascular complications (DMC) are major chronic complications of diabetes,primarily including diabetic kidney disease (DKD),diabetic retinopathy (DR),diabetic cardiomyopathy (DCM),and diabetic peripheral neuropathy (DPN). These complications significantly impact patients' quality of life and prognosis. Modern medicine primarily focuses on symptomatic control in the treatment of DMC,with limited ability to reverse the disease progression. Endoplasmic reticulum stress (ERS),as a central event under hyperglycemic toxicity,is not only a key cause of pancreatic β-cell dysfunction (reduced insulin synthesis and secretion) but also a core driver of damage in various target organs of DMC. It activates three signaling pathways of the unfolded protein response (UPR)-inositol-requiring enzyme 1 (IRE1),activating transcription factor 6 (ATF6),and protein kinase R-like endoplasmic reticulum kinase (PERK),intertwining processes such as autophagy,apoptosis,oxidative stress,and calcium homeostasis imbalance. Traditional Chinese medicine (TCM) offers multi-target and multi-pathway therapeutic advantages and can curb the pathological progression of DMC by regulating ERS. This article systematically reviews the relationships of ERS with pancreatic β-cell function,insulin synthesis,and insulin secretion,and elucidates the core signaling pathways through which ERS mediates DMC. Furthermore,it categorizes and summarizes experimental evidence and mechanisms of single medicinal herbs and their extracts,TCM compound formulas,and modern TCM preparations in regulating ERS for the treatment of various DMC subtypes. Finally,this article proposes ERS as a molecular bridge for integrating traditional Chinese and Western medicine in DMC treatment. Future research should leverage emerging technologies such as network pharmacology,multi-omics analysis,and nano-formulations to establish a synergistic network combining modern hypoglycemic drugs and TCM regulation of ERS. This approach is expected to achieve dual efficacy,enhance drug targeting and bioavailability,deepen the understanding of scientific connotation of TCM,and pave new avenues for the prevention and treatment of DMC.
3.Immune checkpoint inhibitor-related T-cell-mediated rejection increases the risk of perioperative graft loss after liver transplantation.
Li PANG ; Yutian LIN ; Tao DING ; Yanfang YE ; Kenglong HUANG ; Fapeng ZHANG ; Xinjun LU ; Guangxiang GU ; Haoming LIN ; Leibo XU ; Kun HE ; Kwan MAN ; Chao LIU ; Wenrui WU
Chinese Medical Journal 2025;138(15):1843-1852
BACKGROUND:
Pre-transplant exposure to immune checkpoint inhibitors (ICIs) significantly increases the risk of allograft rejection after liver transplantation (LT); however, whether ICI-related rejection leads to increased graft loss remains controversial. Therefore, this study aimed to investigate the association between ICI-related allograft rejection and perioperative graft loss.
METHODS:
This was a retrospective analysis of adult liver transplant recipients with early biopsy-proven T-cell-mediated rejection (TCMR) at Liver Transplantation Center of Sun Yat-sen Memorial Hospital from June 2019 to September 2024. The pathological features, clinical characteristics, and perioperative graft survival were analyzed.
RESULTS:
Twenty-eight patients who underwent early TCMR between June 2019 and September 2024 were included. Based on pre-LT ICI exposure, recipients were categorized into ICI-related TCMR (irTCMR, n = 12) and conventional TCMR (cTCMR, n = 16) groups. Recipients with irTCMR had a higher median Banff rejection activity index (RAI) (6 vs . 5, P = 0.012) and more aggressive tissue damage and inflammation. Recipients with irTCMR showed higher proportion of treatment resistance, achieving a complete resolution rate of only 8/12 compared to 16/16 for cTCMR. Graft loss occurred in 5/12 of irTCMR recipients within 90 days after LT, with no graft loss in cTCMRs recipients. Cox analysis demonstrated that irTCMR with an ICI washout period of <30 days was an independent risk factor for perioperative graft loss (hazard ratio [HR], 6.540; 95% confidence interval [CI], 1.067-40.067, P = 0.042).
CONCLUSION
IrTCMR is associated with severe pathological features, increased resistance to treatment, and higher graft loss in adult liver transplant recipients.
Humans
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Liver Transplantation/adverse effects*
;
Male
;
Female
;
Middle Aged
;
Retrospective Studies
;
Graft Rejection/immunology*
;
Immune Checkpoint Inhibitors/therapeutic use*
;
Adult
;
T-Lymphocytes/drug effects*
;
Graft Survival/immunology*
;
Aged
4.Insights into the coexistence of Wilson's disease and chronic hepatitis B:A retrospective propensity score matched study for improving clinical practice
Jiahui PANG ; Shuru CHEN ; Yingfu ZENG ; Yutian CHONG ; Weiqiang GAN ; Xinhua LI
Liver Research 2025;9(2):169-177
Background and aims:Early and accurate diagnosis of the coexistence of Wilson's disease(WD)and chronic hepatitis B(CHB)presents a significant challenge for clinicians.The objective of this study was to retrospectively analyse the characteristics of such patients to improve clinical practice and provide a reference for clinical management.Methods:From January 2011 to December 2022,35 patients with concurrent CHB and WD(CHB+WD group)were identified.A total of 127 patients with CHB(CHB group)and 168 patients with WD(WD group)were included in the control group between January 2016 and December 2021.Propensity score matching(PSM)was performed to balance the baseline values between groups.The Kaplan-Meier(K-M)survival analysis and log-rank test were performed to compare the prognoses.Results:In the cohort of 35 patients with concurrent CHB and WD,74.3%of patients(26 patients)faced a substantial delay of up to 10 years(range:0-40 years)in WD diagnosis following their CHB diagnosis.Twenty-three(65.7%)patients had cirrhosis at the time of WD diagnosis,and 26(74.3%)patients experienced liver failure.The levels of serum copper and uric acid were lower in patients in the CHB+WD group than in those in the CHB group.Patients in the CHB+WD group presented higher alanine transaminase and total bile acid levels compared to those in the WD group.K-M survival analysis indicated that patients with CHB and WD had poorer outcomes than those with CHB alone;however,the outcomes were similar to those of individuals with WD alone.The optimal cut-point of serum ceruloplasmin(CP)in identifying WD in CHB patients was 0.10 g/L before PSM and after PSM.Conclusions:The present study emphasizes the importance of clinicians being vigilant for concurrent CHB and WD diagnoses,as delays in WD diagnosis may adversely affect patient outcomes.CHB patients with serum CP below 0.10 g/L are highly recommended to screen for WD.
5.Single-cell analysis reveals an Angpt4-initiated EPDC-EC-CM cellular coordination cascade during heart regeneration.
Zekai WU ; Yuan SHI ; Yueli CUI ; Xin XING ; Liya ZHANG ; Da LIU ; Yutian ZHANG ; Ji DONG ; Li JIN ; Meijun PANG ; Rui-Ping XIAO ; Zuoyan ZHU ; Jing-Wei XIONG ; Xiangjun TONG ; Yan ZHANG ; Shiqiang WANG ; Fuchou TANG ; Bo ZHANG
Protein & Cell 2023;14(5):350-368
Mammals exhibit limited heart regeneration ability, which can lead to heart failure after myocardial infarction. In contrast, zebrafish exhibit remarkable cardiac regeneration capacity. Several cell types and signaling pathways have been reported to participate in this process. However, a comprehensive analysis of how different cells and signals interact and coordinate to regulate cardiac regeneration is unavailable. We collected major cardiac cell types from zebrafish and performed high-precision single-cell transcriptome analyses during both development and post-injury regeneration. We revealed the cellular heterogeneity as well as the molecular progress of cardiomyocytes during these processes, and identified a subtype of atrial cardiomyocyte exhibiting a stem-like state which may transdifferentiate into ventricular cardiomyocytes during regeneration. Furthermore, we identified a regeneration-induced cell (RIC) population in the epicardium-derived cells (EPDC), and demonstrated Angiopoietin 4 (Angpt4) as a specific regulator of heart regeneration. angpt4 expression is specifically and transiently activated in RIC, which initiates a signaling cascade from EPDC to endocardium through the Tie2-MAPK pathway, and further induces activation of cathepsin K in cardiomyocytes through RA signaling. Loss of angpt4 leads to defects in scar tissue resolution and cardiomyocyte proliferation, while overexpression of angpt4 accelerates regeneration. Furthermore, we found that ANGPT4 could enhance proliferation of neonatal rat cardiomyocytes, and promote cardiac repair in mice after myocardial infarction, indicating that the function of Angpt4 is conserved in mammals. Our study provides a mechanistic understanding of heart regeneration at single-cell precision, identifies Angpt4 as a key regulator of cardiomyocyte proliferation and regeneration, and offers a novel therapeutic target for improved recovery after human heart injuries.
Humans
;
Mice
;
Rats
;
Cell Proliferation
;
Heart/physiology*
;
Mammals
;
Myocardial Infarction/metabolism*
;
Myocytes, Cardiac/metabolism*
;
Pericardium/metabolism*
;
Single-Cell Analysis
;
Zebrafish/metabolism*
6.Efficacy of 48-week tenofovir disoproxil fumarate therapy in patients who were unresponsive to nucleoside-analogue treatments.
Mingxing HUANG ; Xinhua LI ; Yuankai WU ; Ling TAO ; Yusheng JIE ; Xiangyong LI ; Hong SHI ; Guoli LIN ; Fangji YANG ; Yunlong AO ; Yihua PANG ; Min ZHANG ; Yutian CHONG
Chinese Journal of Hepatology 2014;22(4):266-271
OBJECTIVETo evaluate the efficacy and safety of tenofovir disoproxil fumarate (TDF) in patients with chronic hepatitis B (CHB) after failure of nucleoside-analogues (NAs).
METHODSA total of 30 CHB patients who had been previously treated with NAs and had subsequently completed a 48-week course of TDF were retrospectively investigated. Patients' data of HBV DNA level (log10 copies/ml) and rate of undetectable HBV DNA at treatment weeks 0 (baseline), 4, 12, 24, 36 and 48 were collected for evaluation. The lower limit of HBV DNA detection was 100 IU/ml. The serum alanine aminotransferase (ALT) normalization rate, hepatitis B e antigen (HBeAg) seroconversion rate, viral breakthrough (VBT) rate, viral response (VR) rate, and adverse events were determined upon treatment completion. Statistical analyses were carried out using the Student's t-test, the x² test or the Kaplan-Meier method.
RESULTSOver the 48-week treatment period, HBV DNA levels declined significantly from baseline (week 4:(2.11 ± 0.38) log10 IU/ml, t =5.582; week 12:(0.93 ± 0.31) log10 IU/ ml, t =9.303; week 24:(0.75 ± 0.20) log10 IU/ml, t =3.123; week 36:(0.16 ± 0.19) log10 IU/ml, t =10.759; week 48:(0.14 ± 0.25) log10 IU/ml, t =12.202) (all P less than 0.01). However, the rates of HBV DNA reduction and of cumulative reduction were comparable at weeks 24, 36 and 48 (all P more than 0.05). The most robust decline in HBV DNA levels was observed at week 4 ((2.11 ± 0.38) log10 IU/ml) and the highest cumulative HBV DNA reduction was observed at week 24 ((3.79 ± 0.37) log10 IU/ml). The rate of undetectable HBV DNA at week 4 (26.7%) was significantly lower than that at weeks 24 (87.5%, P less than 0.01), 36 (80.0%, P=0.007), and 48 (88.9%, P=0.001). The median time to achieving undetectable HBV DNA was 10.4 weeks (range:3.43-34.0 weeks). At week 48, the rates of VR, HBeAg seroconversion, and VBT were 88.9% ,6.7%, and 0% respectively. During treatment, the levels of creatine kinase were more than two times the upper limit normal in 9.2% of the patients, and were comparable at each time point examined (all P more than 0.05). All patients showed a normal level of serum creatinine throughout the treatment period.
CONCLUSIONFor CHB patients with non-response to NAs, TDF can suppress HBV DNA replication very quickly and achieve a high rate of ALT normalization with a low rate of adverse events.
Adenine ; administration & dosage ; analogs & derivatives ; therapeutic use ; Adult ; Antiviral Agents ; administration & dosage ; therapeutic use ; DNA, Viral ; blood ; Female ; Hepatitis B e Antigens ; blood ; Hepatitis B, Chronic ; drug therapy ; Humans ; Male ; Middle Aged ; Organophosphonates ; administration & dosage ; therapeutic use ; Retrospective Studies ; Tenofovir ; Young Adult

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