1.Study on image detection and target recognition based on traditional Chinese medicine
Tianchi MAO ; Xing SUN ; Jiayin ZHU ; An LIU ; Yang LI ; Jingang MA ; Cong GUO
Science of Traditional Chinese Medicine 2026;4(1):73-80
Background: Chinese herbal pieces are an essential component of traditional Chinese medicine. Accurate identification and classification of these materials are crucial in clinical practice. Objective: This study aims to enhance the recognition efficiency of Chinese herbal pieces using deep learning technology, while addressing the limitations of traditional manual classification methods in terms of both quality and efficiency. Methods: A comprehensive dataset containing 201 types of Chinese herbal pieces was established. Based on Real-time Detection Transformer (RT-DETR), we designed and integrated a Feature-focused Diffusion Network (FDN), resulting in an improved model termed RT-DETR-FDN. The proposed FDN includes a Feature-focus Module and a feature diffusion mechanism, enabling the model to capture more extensive feature information from Chinese herbal pieces and diffuse it across multiple detection scales. Results: Experimental results show that RT-DETR-FDN achieved a precision of 0.925, a recall of 0.943, and an mAP50-95 of 0.851. In addition, the model was compared with representative You Only Look Once series models commonly used in object detection. Compared with these models, RT-DETR-FDN achieved higher recognition accuracy while maintaining a lightweight architecture. Conclusion: This study integrates deep learning with traditional Chinese medicine, providing a more effective solution for the recognition of Chinese herbal pieces.
2.Roles and mechanism of bile acids and gut microbiota in primary biliary cholangitis
Mengyao WU ; Jiayin PAN ; Rong DING ; Jinyu LI ; Wenlin TAI
Journal of Clinical Hepatology 2026;42(4):957-964
Primary biliary cholangitis (PBC) is a cholestatic autoimmune liver disease characterized by the injury of small intrahepatic bile ducts, and at present, the pathogenesis of PBC remains unclear. Recent studies have shown that bile acid metabolism disorder and gut microbiota imbalance play a key role in the development and progression of PBC, and they form a complex and dynamic interaction network via the “gut-liver axis” and regulate core physiopathological processes such as immune response, metabolic homeostasis, and inflammatory response in a synergistic manner. This article systematically elaborates on the abnormal features of bile acid metabolism and gut microbiota in PBC, discusses their synergistic mechanisms in PBC, and then proposes a combined strategy of targeting bile acid receptors and modulating gut microbiota, in order to overcome the limitations of current treatment modalities and provide new insights and directions for the clinical management of PBC.
3.Role of the microbiota-gut-bladder axis in the pathogenesis of diabetic bladder dysfunction
Shi LI ; Jiayin SUN ; Yifei YUAN ; Zhongqing WEI
Journal of Modern Urology 2026;31(4):382-388
The development of diabetic bladder dysfunction(DBD)is closely related to the dysregulation of the microbiotagut-bladder axis. Diabetic conditions significantly alter gut microbiota composition, causing intestinal barrier disruption, endotoxemia, and systemic inflammation. These alterations impair bladder function by activating bladder NOD-like receptor thermal protein domain associated protein 3(NLRP3)inflammasome, inducing oxidative stress, and nerve remodeling. Emerging technologies for microbiota analysis, Mendelian randomization, and targeted marker development have revealed the causal links between specific gut microbiota and DBD. Modulating gut microbiota increases short-chain fatty acids(SCFAs)production and suppresses inflammation; NLRP3 pathway targeting or direct SCFAs delivery are under clinical evaluation. The therapeutic directions for DBD include microbiota regulation therapy, application of probiotics and dietary fiber, as well as clinical translational research on the microbiota-gut-bladder axis. Engineered live bacterial therapies and nanocarrier technologies are emerging research directions. Current controversies focus on the causal role of dysbiosis, safety and long-term efficacy of individualized therapies, and technical bottlenecks. Future efforts require integrating multi-omics, organoid models, and cross-disciplinary collaboration to advance precision diagnostics and therapeutics targeting the microbiota-gut-bladder axis in DBD.
4.High expression of apolipoprotein C1 promotes proliferation and inhibits apoptosis of papillary thyroid carcinoma cells by activating the JAK2/STAT3 signaling pathway.
Yu BIN ; Ziwen LI ; Suwei ZUO ; Sinuo SUN ; Min LI ; Jiayin SONG ; Xu LIN ; Gang XUE ; Jingfang WU
Journal of Southern Medical University 2025;45(2):359-370
OBJECTIVES:
To investigate the expression of apolipoprotein C1 (APOC1) in papillary thyroid carcinoma (PTC) and its effects on proliferation and apoptosis of PTC cells.
METHODS:
The expression level of APOC1 in PTC and its impact on prognosis were analyzed using GEPIA 2 and Kaplan-Meier databases. Immunohistochemistry (IHC) and Western blotting were used to detect the expression of APOC1 in PTC and adjacent tissues and in 3 PTC cell lines and normal thyroid Nthyori 3-1 cells. In TPC-1 and BCPAP cells, the effect of Lipofectamine 2000-mediated transfection with APOC1 siRNA or an APOC1-overexpressing plasmid on cell growth and colony formation ability were examined by observing the growth curves and using colony-forming assay. The changes in cell cycle and apoptosis of the transfected cells were analyzed with flow cytometry. RT-qPCR and Western blotting were used to detect the changes in expressions of P21, P27, CDK4, cyclin D1, Bcl-2, Bax, caspase-3 and caspase-9 and the key proteins in the JAK2/STAT3 signaling pathway.
RESULTS:
APOC1 expression was significantly higher in PTC tissues and the 3 PTC cell lines than in the adjacent tissues and Nthyori 3-1 cells, respectively. In TPC-1 and BCPAP cells, APOC1 knockdown obviously reduced cell proliferative activity, increased the percentage of G0/G1 phase cells, lowered the percentages of S and G2 phase cells, promoted cell apoptosis, and downregulated mRNA and protein expression levels of CDK4, cyclin D1 and Bcl-2 and the protein levels of p-JAK2 and p-STAT3. APOC1 overexpression in the cells produced the opposite effects on cell proliferation, apoptosis, cell cycle and the mRNA and protein expressions. The application of AG490, a JAK2 inhibitor, strongly attenuated APOC1 overexpression-induced activation of the JAK2/STAT3 signaling pathway in BCPAP cells.
CONCLUSIONS
APOC1 overexpression promotes proliferation and inhibits apoptosis of PTC cells possibly by activating the JAK2/STAT3 signaling pathway and accelerating cell cycle progression.
Humans
;
Apoptosis
;
Cell Proliferation
;
STAT3 Transcription Factor/metabolism*
;
Signal Transduction
;
Janus Kinase 2/metabolism*
;
Thyroid Neoplasms/pathology*
;
Thyroid Cancer, Papillary
;
Cell Line, Tumor
;
Carcinoma, Papillary
5.Effect of Highly Expressed lysophosphatidyllecithin acyltransferase 4 on Proliferation of Pancreatic Cancer
Haoming LU ; Jin HUANG ; Yixi WU ; Jiayin LU ; Zhenpei LI ; Xiuying XIONG ; Jiawen YE ; Xia YANG
Journal of Sun Yat-sen University(Medical Sciences) 2025;46(3):401-409
ObjectiveTo investigate the expression level of lysophosphatidyllecithin acyltransferase 4 (LPCAT4) in pancreatic cancer and its effect on the proliferation of pancreatic cancer cells. MethodsIn this study, the differentially expressed genes of patients with KRAS mutant and wild-type pancreatic cancer were analyzed by online database LinkedOmics. The LPCAT4 expression in pancreatic cancer tissues was analyzed online by the University of Alabama at Birmingham Cancer Data Analysis (UALCAN), Sangerbox and gene expression profile interaction analysis 2 (GEPIA2). Kaplan-Meier Plotter database was used to explore the correlation between LPCAT4 and the prognosis of patients with pancreatic cancer. The expression of LPCAT4 in human pancreatic cancer cells were detected by quantitative real-time PCR and Western blot analysis. LPCAT4 was knocked down in the high-expressing SW1990 cell line and overexpressed in the low-expressing MIA PaCa-2 cell line. The effects of LPCAT4 expression on cell proliferation were assessed using CCK-8 and EdU assays. STRING and GEPIA2 databases were used to obtain LPCAT4 binding and coexpressed genes in tumors, which were then analyzed by GO and KEGG. ResultsAnalysis of the LinkedOmics online database revealed a significant upregulation of LPCAT4 in patients with KRAS mutant pancreatic cancer compared to patients with KRAS wild-type pancreatic cancer. The online analysis of GEPIA2, UALCAN and Sangerbox 3.0 showed that the expression of LPCAT4 was higher in pancreatic cancer than in normal tissues. Analysis of the Kaplan-Meier Plotter database revealed that high LPCAT4 expression was associated with poorer prognosis in pancreatic cancer patients.Western blot and qPCR results showed that expression of LPCAT4 in pancreatic cancer cell lines was significantly higher than in normal pancreatic ductal epithelial cells. Knockdown of LPCAT4 in SW1990 cells inhibited proliferation, while overexpression in MIA PaCa-2 cells promoted proliferation. Enrichment analysis indicated that LPCAT4 was closely related to sulfur metabolism. ConclusionsLPCAT4 is highly expressed in pancreatic cancer and is associated with poor prognosis of patients. It plays a significant regulatory role in the proliferation of pancreatic cancer cells, with its expression level closely correlated with cell proliferation capacity. These findings reveal the critical role of LPCAT4 in the malignant progression of pancreatic cancer and provide important evidence for its potential as a therapeutic target.
6.The application of nanomaterials in acute kidney injury
Jiayin LI ; Zanhua RONG ; Yulin KANG
International Journal of Pediatrics 2025;52(4):228-232
Acute kidney injury(AKI)is defined as a clinical syndrome characterized by a rapid decline in renal function over a short period.Oxidative stress,inflammatory responses,and apoptosis play crucial roles in the pathogenesis and progression of AKI.Although symptomatic treatment and renal replacement therapies are widely used in clinical practice,effective therapeutic interventions remain limited.With the rapid advancement of nanotechnology,nanomaterials have demonstrated better potential for application in disease prevention,diagnosis,and treatment.Owing to their unique size effects,tunable surface properties,and excellent biocompatibility,nanomaterials hold great value for targeted drug delivery,anti-inflammatory,and antioxidative therapies,offering new advances in the treatment strategies of kidney diseases.This article summarizes the diagnostic and therapeutic applications of nanomaterials in AKI.
7.Advances in the clinical diagnosis and management of childhood Bartter syndrome
International Journal of Pediatrics 2025;52(10):660-664
Bartter syndrome(BS)is a group of disorders caused by mutations in genes encoding ion transport proteins in the renal tubular epithelium,which leads to impaired salt reabsorption in the thick ascending limb of the loop of Henle. The common features include hypokalemia,metabolic alkalosis,hyperreninemia,and hyperaldosteronism,with normal or low blood pressure. In pediatric patients,BS often has an insidious onset and nonspecific clinical manifestations,making its diagnosis and differential diagnosis challenging. This review systematically elaborates the pathophysiological mechanisms,molecular genetic basis,clinical spectrum,diagnostic approaches,and key points for differential diagnosis of pediatric BS,as well as explores the application of gene sequencing in this disorder,aiming to provide clinicians with a clear framework for its diagnosis and management.
8.Treating immunoglobulin A nephropathy based on the " qi cycle in round" theory
Leying ZHAO ; Yaoxian WANG ; Zhen WANG ; Yaotan LI ; Boning CAO ; Jiayin TAO ; Danting LI ; Qingqing LIU
Journal of Beijing University of Traditional Chinese Medicine 2025;48(2):223-228
Immunoglobulin A (IgA) nephropathy is a globally prevalent type of primary glomerulonephritis, characterized by complex symptoms and diverse clinical manifestations. The internationally recognized " multiple hit hypothesis" explains the systemic immune disease features of IgA nephropathy. However, current treatment strategies primarily focus on local pathological changes, inadequately addressing its complex systemic mechanisms. The " qi cycle in round" theory, an integral concept of the academic thought of HUANG Yuanyu, a prominent medical expert from the Qing Dynasty, offers a concise and insightful framework for understanding complex pathologies. For example, this theory provides valuable insights for elucidating the pathogenesis of IgA nephropathy and guiding its clinical management by simplifying intricate systemic processes. This study applies the " qi cycle in round" theory to postulate that patients with IgA nephropathy experience disrupted qi flow owing to spleen-stomach qi deficiency and dampness-heat accumulation. These imbalances manifest as internal symptoms, such as diarrhea; external vulnerability to illness; upper body symptoms, like sore throat; and lower body symptoms, such as hematuria and proteinuria. Pathologically, the condition is characterized by immune complex deposition. This article also emphasizes strategies that prioritize tonifying spleen-stomach qi to enhance the pivotal functions of transportation and transformation. Regulating qi and relieving stagnation are emphasized to harmonize ascending and descending dynamics. Additionally, eliminating turbidity and unblocking collaterals are highlighted to promote qi transformation. These approaches aim to restore the harmonious operation of organ qi dynamics and harmonious qi transformation functions. This study aims to provide a reference for syndrome differentiation and IgA nephropathy treatment using traditional Chinese medicine based on the " qi cycle in round" theory.
9.Construction and immunogenicity study of a recombinant DNA candidate vaccine expressing the pigeon circovirus Cap gene
Shuyu DUAN ; Dongsheng GUO ; Ziyu LIN ; Aiduo WANG ; Jiayin WANG ; Xianchun ZONG ; Jinman LI ; Jianzhong WANG
Chinese Journal of Veterinary Science 2025;45(10):2148-2155
Pigeon circovirus(PiCV)is globally widespread and is considered a potential cause of young pigeon sickness syndrome(YPDS),which leads to severe immunosuppression and high mortality.Due to the inability of PiCV to be cultured in cells,the development of traditional vac-cines is severely limited,and no effective vaccines is currently available.To develop a novel PiCV DNA candidate vaccine,we cloned the △Cap gene lacking a nuclear localization signal(NLS),and fused it at its C-terminus with the transmembrane and cytoplasmic regions of the Newcastle dis-ease virus(NDV)F protein(△Cap-TMCT).Two DNA vaccine candidates were constructed:pCAGG-△Cap,targeting intracellular expression,and pCAGG-△Capt,for cell surface expression,respectively.The results of indirect immunofluorescence and Western blot analyses confirmed suc-cessful expression of both recombinant plasmids in DF1 cells.Immunization studies in mice re-vealed that pCAGG-△Capt induced significantly higher levels of specific IgG antibodies,T-cell re-sponses,and cytokine secretion compared to pCAGG-△Cap,as assessed by ELISA,flow cytome-try,and ELISpot assays.These findings suggest that targeting △Cap-TMCT fusion protein to the cell surface can effectively enhance its immunogenicity,highlighting its potential as a PiCV DNA vaccine candidate.This study provides new strategies and theoretical foundations for the design and development of PiCV DNA vaccines.
10.Clinicopathological features of hyalinizing clear cell carcinoma of the salivary glands: an analysis of 65 cases
Jiayin SONG ; Anlan CHEN ; Binbin LI
Chinese Journal of Pathology 2025;54(10):1055-1061
Objective:To investigate the clinicopathological features, immunophenotype, and gene rearrangement status of hyalinizing clear cell carcinoma (HCCC) of the salivary glands, in order to better understand this rare tumor and improve its precision diagnosis and treatment.Methods:A total of 65 cases of salivary gland HCCC diagnosed at the Peking University School and Hospital of Stomatology, Beijing, China between January 2001 and May 2024 were collected. Clinical features, pathological characteristics, EWSR1 gene rearrangement, and follow-up data were analyzed.Results:There were 33 males and 32 females. The age of the patients ranged from 22 to 85 years, with a median age of 54.0 (40.0, 63.5) years. 93.8% (61/65) of the tumors occurred in the minor salivary glands, most commonly in the palate. Microscopically, the tumors were mainly composed of clear tumor cells. Squamous differentiation was observed in 66.2% (43/65) of the tumors, and mucinous cells in 36.9% (24/65). The tumor stroma showed delicate fibrous septa or hyalinized sheets between tumor nests. Lymph node metastasis occurred in 12.3% (8/65) of the cases, and high-grade transformation was observed in 6.2% (4/65). Tumor cells were all positive for p40 and p63, while SOX10 was positive in 12.3% (8/65) of them. Myoepithelial markers were negative. EWSR1 gene rearrangement was detected in 96.6% of the tumors. Follow-up data showed a 5-year overall survival rate of 93.8%, a local recurrence rate of 9.2%, and a distant metastasis rate of 4.6%.Conclusions:HCCC predominantly arises in minor salivary glands and generally has a favorable prognosis. However, a small proportion of the cases may show high-grade transformation, lymph node metastasis, local recurrence, or distant metastasis. It thus requires long-term and regular follow-up. Accurate diagnosis should be based on a comprehensive assessment of histopathological features, immunophenotype, and gene fusion status.


Result Analysis
Print
Save
E-mail