1.From "standardized patients" to "digital twin patients": Disciplinary logic and technical divergence of five patient modeling paradigms
Xingyuan ZHU ; Jiaqing WANG ; Zhongfang YANG ; Zong' ; an HUANG ; Zheng ZHU
Chinese Journal of Clinical Thoracic and Cardiovascular Surgery 2026;33(07):1023-1033
With the rapid development of large language models and related technologies, various forms of patient modeling have emerged, including virtual patients, synthetic patients, artificial intelligence patients, and digital twin patients. Although these forms all share the core objective of patient simulation, they exhibit significant differences in theoretical ontology, data sources, modeling logic, and application orientation. Based on the abstraction levels of simulation objects and system mapping logic, this study systematically compares five paradigms—standardized patients, virtual patients, synthetic patients, AI patients, and digital twin patients—to clarify their conceptual boundaries and technical positioning. The findings indicate that these paradigms represent distinct modeling pathways: behavioral reproduction, scenario simulation, data generation, cognitive interaction, and individual system mapping, respectively. By constructing a multidimensional comparative framework, this study provides a theoretical foundation for the conceptual standardization of patient modeling and the strategic deployment of intelligent healthcare systems.
2.TAZ WW Domain-Mediated Regulation of Gluconeogenesis and Tumorigenesis in Hepatocellular Carcinoma through Interaction with the Glucocorticoid Receptor
Hongxiang HUANG ; Jinhong CHEN ; Xingyu TAO ; Peiyuan ZHONG ; Yanqiu MENG ; Sujuan PENG ; Wanying LUO ; Zhiyong HE ; Shuai LUO ; Xie ZHU ; Zhihui LU ; Li CHEN ; Yangyang LIU
Endocrinology and Metabolism 2026;41(2):267-287
Background:
Hepatocellular carcinoma (HCC) is a leading cause of cancer mortality, characterized by poor prognosis due to its high proliferative and invasive potential. Tumor metabolic reprogramming, particularly involving glucose metabolism, is essential for tumor survival. This study investigates the role of the Hippo pathway effector transcriptional co-activator with PDZ-binding motif (TAZ) in regulating gluconeogenesis and promoting tumorigenesis in HCC.
Methods:
TAZ expression in HCC was analyzed using The Cancer Genome Atlas data and validated in clinical samples and cell lines. TAZ was overexpressed or silenced in HCC cell lines to evaluate its effects on cell proliferation, apoptosis, migration, and invasion. The expression and prognostic relevance of the gluconeogenesis-related genes phosphoenolpyruvate carboxykinase 1 (PCK1) and glucose-6-phosphatase (G6PC) were examined, along with their correlation with TAZ expression. Tumor growth was assessed in nude mice. Interactions between TAZ and the glucocorticoid receptor (GR) were investigated using co-immunoprecipitation, immunofluorescence, and chromatin immunoprecipitation assays.
Results:
TAZ was significantly upregulated in HCC tissues and cell lines. TAZ overexpression enhanced proliferation, reduced apoptosis, and promoted migration and invasion. In contrast, PCK1 and G6PC were downregulated in HCC and showed a negative correlation with TAZ expression.
Conclusion
TAZ modulates gluconeogenesis and accelerates tumor growth, whereas its knockdown attenuates tumor progression. TAZ interacts with GR, suppressing its transcriptional activity on gluconeogenic gene promoters.
3.Epidemiological characteristics of human brucellosis in Baoshan City, Yunnan Province, 2020‒2023
Jidan ZHANG ; Yanping LI ; Mengfan ZHU ; Zengkan LIU ; Zhijie ZHANG ; Dongsheng HUANG
Shanghai Journal of Preventive Medicine 2026;38(3):227-230
ObjectiveTo investigate the epidemiological characteristics of human brucellosis (hereinafter referred to as brucellosis) in Baoshan City, Yunnan Province, and to provide scientific evidence for adjusting prevention and control strategies. MethodsBased on the surveillance data of reported brucellosis cases in Baoshan City from 2020 to 2023 and the information collected through individual epidemiological questionnaire surveys, the epidemic status and clinical characteristics of brucellosis in Baoshan City were analyzed using descriptive epidemiological methods. ResultsA total of 85 brucellosis cases were reported in Baoshan City from 2020 to 2023, and detailed individual information was obtained for 83 of them. Brucellosis in Baoshan City showed a clear seasonal pattern, with peak incidence from May to September. The average annual incidence rate was 0.80/100 000, with a male-to-female ratio of 7.5∶1. And 82.35% of the cases aged 30 to 60 years, with farmers being the predominant affected group. The main clinical manifestations of the cases were myalgia and arthralgia. Regarding transmission routes, 87.95% of the cases had a contact history with cattle, with livestock rearing and grazing being the main exposure modes. Most infections occurred at home. ConclusionFrom 2020 to 2023, the incidence of brucellosis in Baoshan City exhibited a fluctuating upward trend, with a peak period from May to September. Males and farmers were identified as the primary affected populations. It is recommended to strengthen livestock surveillance and control, and to enhance both awareness and self-protection capacity among high-risk groups.
4.Sclera Vessel Segmentation Based on Fusion Filtering and Reflection Suppression
Ming-Xuan FAN ; Zong-Qing MA ; Chu-Xiang GAO ; Yi-Xuan SHI ; Zi-Hang ZHANG ; Zhe-Xuan JIA ; Fan FAN ; Guo-Liang HUANG ; Jiang ZHU
Progress in Biochemistry and Biophysics 2026;53(5):1195-1206
ObjectiveIn traditional Chinese medicine (TCM), the foundational doctrine that the eyes reflect the essence of the internal viscera establishes ocular observation as a cornerstone of diagnostic practice. Specifically, the morphological characteristics and coloration variations of the scleral microvasculature serve as critical clinical indicators for assessing the dynamic balance of Qi and Blood, as well as the pathological status of internal organs. Historically, however, TCM eye diagnosis has relied predominantly on the subjective clinical experience and visual acuity of individual practitioners, leading to inherent challenges in standardization and reproducibility. While automated computer-aided diagnostic systems offer a promising solution, existing vessel segmentation algorithms encounter significant domain-specific bottlenecks when applied to scleral imagery. These challenges primarily stem from the highly reflective and moist nature of the ocular surface, which generates severe reflective interference. Furthermore, the inherent low contrast of fine capillary networks against complex background textures, compounded by non-uniform illumination, frequently results in high false-positive rates, misdetections, and severe vessel fragmentation. To address these critical limitations and advance the objective quantification of TCM diagnostics, this paper proposes a novel, highly robust sclera vessel segmentation framework that innovatively integrates Frangi-Sato dual-filter adaptive enhancement with pixel-level reflection detection. MethodsThe proposed methodology systematically addresses the segmentation pipeline through three synergistic stages. First, to overcome the structural limitations of single-filter approaches, a multi-scale weighted fusion strategy is meticulously designed to harness the complementary extraction capabilities of both Frangi and Sato filters. This adaptive enhancement optimally balances the preservation of main vessel trunk continuity with the heightened sensitivity required for delineating delicate, low-contrast peripheral capillaries. Second, to tackle the persistent issue of reflective highlights, a sophisticated multi-feature synergistic reflection detection module is introduced. By jointly analyzing local information entropy, gradient field variations, and intensity statistical distributions, this module achieves precise, pixel-level identification and elimination of reflective artifacts without compromising the underlying vascular structures. Finally, a dual-level adaptive thresholding strategy, featuring an innovative “core protection” mechanism, is implemented. This critical step effectively suppresses complex background noise while rigorously preserving the structural and topological integrity of the intricate vessel network, preventing the structural breaks often seen in conventional binarization methods. ResultsThe efficacy of the proposed framework was rigorously evaluated using both self-constructed clinical datasets specifically acquired for TCM research and standardized public datasets. Extensive experimental results demonstrate that the proposed method consistently outperforms state-of-the-art traditional approaches and contemporary deep learning models. Specifically, the proposed method achieves a Dice similarity coefficient of approximately 0.71 on the private clinical dataset, and secures the best performance across the majority of quantitative metrics on both datasets. Notably, the framework exhibits exceptional robustness and generalization capabilities in highly challenging scenarios characterized by intense reflective interference, low signal-to-noise ratios, and cross-domain image variations. ConclusionThis study successfully realizes the high-integrity, automated segmentation of scleral vessel networks under complex clinical imaging conditions. By overcoming the fundamental algorithmic challenges of reflection interference and micro-vessel loss, the proposed methodology provides potential support for the digitization, objective standardization, and intelligent advancement of modern TCM eye diagnosis systems.
5.Protective effects and mechanisms of luteolin on vascular injury induced by polystyrene microplastics
Deyu ZHU ; Qi HUANG ; Xiao LIANG ; Zhuangzhuang WEI ; Xinyu BAO ; Ping MA ; Yang WU ; Cuiyu BAO
Acta Universitatis Medicinalis Anhui 2026;61(3):432-438
ObjectiveTo explore the vascular endothelial injury in male mice caused by exposure to polystyrene microplastics (PS-MPs) and the intervention effect of luteolin on vascular remodeling. Additionally, to investigate the mechanism through the oxidative system and metabolomics. MethodsThirty-two C57BL/6 mice (6-8 weeks old) were randomly divided into the saline group (saline group), the 0.1 mg/kg PS-MPs exposure group (0.1PS-MPs group), the 1 mg/kg PS-MPs exposure group (1PS-MPs group), and the 1 mg/kg PS-MPs + luteolin treatment group (1PS-MPs + Lut group), with 8 mice in each group. After 8 weeks of intervention, the body weight, blood pressure, aortic organ coefficient, and aortic histopathological changes of mice in each group were detected; the total cholesterol (TC), triglyceride (TG), and high-density lipoprotein cholesterol (HDL-C) lipid metabolism-related indicators in the aorta of mice were detected; the reactive oxygen species (ROS), glutathione (GSH), and malondialdehyde (MDA) oxidative stress-related indicators were detected; the endothelin (ET-1), nitric oxide (NO), vascular endothelial growth factor A (VEGF-A), vascular cell adhesion molecule-1 (VCAM-1/CD106), and intercellular adhesion molecule-1 (ICAM-1/CD54) endothelial function-related indicators and serum metabolomics were detected. ResultsCompared to the saline group, exposure to PS-MPs resulted in pathological thickening of the mouse aorta, increased aortic organ coefficient, and elevated blood pressure. Lipid metabolism-related indicators, including TC and TG, were elevated, while HDL-C was reduced, indicating lipid metabolism disorder in mice. Oxidative stress markers such as ROS and MDA increased, whereas GSH decreased, demonstrating oxidative damage. Vascular endothelial inflammation and injury markers, including ET-1, VEGF-A, VCAM-1, and ICAM-1, were upregulated, while the vasodilatory substance NO was downregulated, confirming endothelial injury. Furthermore, serum metabolomics results revealed that PS-MPs exposure induced endothelial damage by disrupting metabolic pathways such as the citrate cycle. Compared to the PS-MPs group, luteolin significantly reversed these effects, attenuating oxidative stress and lipid metabolism disorders, and effectively repairing endothelial injury. ConclusionPS-MPs induce vascular toxicity through oxidative stress and lipid metabolism. Luteolin effectively alleviates endothelial damage and vascular remodeling.
6.Effects of LOX-1 gene G501C variation on brain structural changes and cognitive function in patients with white matter hyperintensities
Yajun ZHOU ; Shujian CHEN ; Zhixin WANG ; Yayu WANG ; Chaojuan HUANG ; Xia ZHOU ; Xiaoqun ZHU
Acta Universitatis Medicinalis Anhui 2026;61(3):562-568
ObjectiveTo investigate the effects of lectin-like oxidized low-density lipoprotein receptor-1 (LOX-1) gene G501C on brain structure and cognitive function in patients with white matter hyperintensities (WMH). MethodsA total of 118 patients with WMH were enrolled. All participants underwent T1-weighted and T2-fluid-attenuated inversion recovery (T2-FLAIR) MRI to assess gray matter structure and WMH burden, and completed the mini-mental state examination (MMSE) and Montreal cognitive assessment (MoCA). Partial correlation and mediation analyses were performed to explore the impact of LOX-1 polymorphism on cognitive function. ResultsParticipants were divided into GG+GC group (n = 35) and CC group (n = 83). The GG+GC group showed lower MMSE and MoCA scores (MMSE: P=0.003; MOCA: P=0.015), as well as greater WMH burden (all P0.001), compared with the CC group. Voxel-based morphometry (VBM) analysis revealed reduced left thalamic volume in the GG+GC group, which was correlated with cognitive scores (all P0.05). Subregional thalamic analysis further showed volume reductions in the lateral, ventral, medial, and pulvinar thalamic regions (all P0.05) in the GG+GC group, all positively associated with cognitive performance (all P0.05). Mediation analyses indicated that volumes of the medial and pulvinar thalamic regions mediated the association between genotype and cognitive function (MMSE, MoCA), and that WMH volume mediated the effect on MoCA scores. ConclusionThe LOX-1 G501C polymorphism may indirectly affect cognitive function by influencing specific thalamic subregional volumes and white matter damage, suggesting a potential mediating role of thalamic structures between genetic background and cognitive impairment.
7.Trpc6 knockout suppresses inflammasome activity and alleviates myocardial inflammatory damage in mice
Haoyu LIANG ; Lei FAN ; Xing ZHU ; Lei HUANG ; Weiping LI ; Weizu LI
Acta Universitatis Medicinalis Anhui 2026;61(4):591-598
ObjectiveTo investigate the effects of Trpc6 knockout on chronic lipopolysaccharide (LPS)-induced myocardial inflammation and fibrosis in mice and its potential mechanisms. MethodsMale C57BL/6 wild-type (WT) mice and Trpc6 knockout (Trpc6-/-) mice of the same background were randomly divided into four groups: WT control, WT+LPS (200 μg/kg), Trpc6-/- control, and Trpc6-/-+LPS (200 μg/kg). Group with LPS received intraperitoneal LPS injections for 21 consecutive days to induce chronic myocardial inflammatory injury. Cardiac ultrasound assessed changes in left ventricular ejection fraction (EF), left ventricular shortening fraction (FS), and cardiac output (CO). Hematoxylin and eosin (HE) staining and periodic acid-Schiff (PAS) staining were used to examine morphological alterations in myocardial tissue. Masson’s trichrome staining was used to assess myocardial fiber alterations; Western blot analysis was used to measure myocardial tissue expression of transient receptor potential calcium channel 6 (TRPC6), NOD-like receptor family pyrin domain-containing 3 inflammasome (NLRP3),absent in melanoma 2 inflammasome (AIM2), Caspase-1, interleukin (IL)-6, and IL-1β in mouse myocardial tissue. ResultsCompared with the WT control group, the WT+LPS group exhibited decreased cardiac EF (P<0.01), FS (P<0.01), and CO (P<0.05), along with significantly increased myocardial tissue damage, glycoprotein deposition, and fibrosis (P<0.01). Further analysis revealed that compared with the WT control group, the WT+LPS group exhibited markedly increased myocardial tissue expression of TRPC6, NLRP3, AIM2, Caspase-1, IL-6, and IL-1β (P<0.01). Compared with the WT+LPS group, mice in the Trpc6-/- +LPS group exhibited elevated EF (P<0.01) and FS (P<0.05), along with reduced myocardial tissue injury, glycoprotein deposition, and fibrosis (P<0.05). ConclusionChronic LPS treatment can activate NLRP3/AIM2 inflammasomes through the up-regulation of TRPC6 expression, and then lead to chronic myocardial inflammatory injury and fibrosis, while Trpc6 knockdown can reduce myocardial inflammatory injury and fibrosis, and the mechanism is related to inhibiting the activation of NLRP3/AIM2 inflammasomes.
8.PET/CT imaging of PD-1 receptor probe targeting S180 sarcoma in mice
Haifeng HUANG ; Jiangnan SUN ; Huan ZOU ; Tao BAO ; Hua ZHU ; Xianteng YANG ; Shanshan LI
Acta Universitatis Medicinalis Anhui 2026;61(4):682-688
ObjectiveTo explore the feasibility of constructing a programmed death receptor-1(PD-1) molecular probe for non-invasive micro-positron emission tomography/computed tomography (Micro-PET/CT) imaging of PD-1 protein in mouse S180 sarcoma. MethodsA transgenic PD-1 C57 S180 sarcoma mouse model was established using the S180 sarcoma cell injection. Furthermore, 124I-anti-PD-1 monoclonal antibody probe was synthesized. 18.5 MBq of the 124I-anti-PD-1 probe was injected into the tail vein of transgenic PD-1 C57 mice. Subsequently, S180 sarcoma was imaged using Micro-PET/CT. ResultsStudy successfully established a transgenic PD-1 C57 S180 sarcoma mouse model. Immunohistochemical (IHC) results showed PD-1 protein expression in S180 sarcoma. Micro-PET/CT imaging successfully visualized the PD-1 protein receptor in S180 sarcoma at different time points (20, 48, 72, and 120 h) after probe injection. ConclusionThe 124I-anti-PD-1 monoclonal antibody molecular probe successfully targets the PD-1 receptor in S180 sarcoma of transgenic PD-1 C57 mice, and presents clear Micro-PET/CT immunoassay results, thus it potentially enables the non-invasive screening of patients with PD-1 positive malignant tumors.
9.Application Analysis of Alzheimer's Disease Animal Models Based on Data Mining
Zhichen WANG ; Senlin CHEN ; Yulong ZOU ; Gengzhao CHEN ; Qianhong ZHU ; Saie HUANG
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(13):244-252
ObjectiveThis paper aims to systematically summarize the construction methods and characteristics of Alzheimer's disease (AD) animal models, providing a reference for improving AD animal models. MethodsLiterature related to AD animal models published between January 2022 and April 2025 was retrieved from China National Knowledge Infrastructure (CNKI), China Biomedical Literature Database (CBM), Wanfang Data, and VIP Database. Information such as experimental animal species, month of age, sex, modeling methods, and period, as well as evaluation indicators, was collated, extracted, and imported into Microsoft Excel 2024 to establish the database. In addition, various modeling methods and detection means were summarized and compared. ResultsA total of 400 articles were included. Among the AD animal models, amyloid precursor protein/presenilin-1 (APP/PS1) mice were used most frequently, with a predominance of male animals. Typically, 3-4-month-old rats or 5-6-month-old mice were selected. The main modeling methods included natural aging, accelerated aging, surgical intervention, drug induction, and transgenic technology. The modeling period was mainly concentrated in a single day or 6-8 weeks. Detection indicators of the models focused on physiological, behavioral, pathological-morphological, and biochemical phenotypes. ConclusionThe construction methods of AD animal models are relatively mature, with multifactorial interventions effectively simulating human pathology, though certain limitations remain. By systematically reviewing and analyzing recent experimental literature of AD animal models, this study aims to provide theoretical support and a reference for further improving the construction of the AD animal model.
10.Traditional Chinese Medicine Regulates Gut Microbiota to Intervene in Digestive System Malignant Tumors: A Review
Yu ZHU ; Ju HUANG ; Nianzhi CHEN ; Cheng LUO ; Xianbo WU
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(13):261-270
Digestive system malignant tumors (DT) are one of the leading causes of death globally and carry a heavy economic burden. Gut microbiota plays a critical role in maintaining host health, including providing nutrition, defending against pathogens, and promoting immune development. In recent years, more and more studies have shown that dysbiosis of gut microbiota is closely associated with DT such as gastric cancer, liver cancer, and colon cancer. Therefore, targeted regulation of gut microbiota plays a potential role in inhibiting the growth and metastasis of DT, while its specific regulatory mechanism remains unclear. As the studies about the anti-tumor effects of traditional Chinese medicine (TCM), especially the basic and clinical studies on the regulation of gut microbiota by TCM in tumor treatment, have been growing, the therapeutic effects of TCM on DT have attracted much attention. This paper provides a systematic review of the relationship between gut microbiota and DT, as well as the related studies on the modulation of gut microbiota by TCM against DT, with the aim of providing a foundation and direction for future basic and clinical studies on DT. The literature review shows that gut microbiota influence the occurrence and development of DT through multiple pathways. These pathways include triggering chronic inflammation, producing oncogenic metabolites, inducing genomic instability, regulating the immune system, and altering the tumor microenvironment. TCM can exert anti-DT effects by regulating the composition of gut microbiota, modulating gut microbiota metabolites, repairing intestinal barrier function, and influencing immune functions. Therefore, understanding the relationship between gut microbiota and DT and the regulatory mechanisms of TCM may provide new strategies for future prevention and treatment of DT.

Result Analysis
Print
Save
E-mail