1.Treatment Principles and Paradigm of Diabetic Microvascular Complications Responding Specifically to Traditional Chinese Medicine
Anzhu WANG ; Xing HANG ; Lili ZHANG ; Xiaorong ZHU ; Dantao PENG ; Ying FAN ; Min ZHANG ; Wenliang LYU ; Guoliang ZHANG ; Xiai WU ; Jia MI ; Jiaxing TIAN ; Wei ZHANG ; Han WANG ; Yuan XU ; .LI PINGPING ; Zhenyu WANG ; Ying ZHANG ; Dongmei SUN ; Yi HE ; Mei MO ; Xiaoxiao ZHANG ; Linhua ZHAO
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(5):272-279
To explore the advantages of traditional Chinese medicine (TCM) and integrative TCM-Western medicine approaches in the treatment of diabetic microvascular complications (DMC), refine key pathophysiological insights and treatment principles, and promote academic innovation and strategic research planning in the prevention and treatment of DMC. The 38th session of the Expert Salon on Diseases Responding Specifically to Traditional Chinese Medicine, hosted by the China Association of Chinese Medicine, was held in Beijing, 2024. Experts in TCM, Western medicine, and interdisciplinary fields convened to conduct a systematic discussion on the pathogenesis, diagnostic and treatment challenges, and mechanism research related to DMC, ultimately forming a consensus on key directions. Four major research recommendations were proposed. The first is addressing clinical bottlenecks in the prevention and control of DMC by optimizing TCM-based evidence evaluation systems. The second is refining TCM core pathogenesis across DMC stages and establishing corresponding "disease-pattern-time" framework. The third is innovating mechanism research strategies to facilitate a shift from holistic regulation to targeted intervention in TCM. The fourth is advancing interdisciplinary collaboration to enhance the role of TCM in new drug development, research prioritization, and guideline formulation. TCM and integrative approaches offer distinct advantages in managing DMC. With a focus on the diseases responding specifically to TCM, strengthening evidence-based support and mechanism interpretation and promoting the integration of clinical care and research innovation will provide strong momentum for the modernization of TCM and the advancement of national health strategies.
2.Pharmacological Mechanism of Huanglian Jiedutang: A Review
Duojing LI ; Yongfa XING ; Baohe WANG
Chinese Journal of Experimental Traditional Medical Formulae 2025;31(7):275-283
Huanglian Jiedutang (HLJDT), a traditional Chinese herbal formula, is known for its heat-clearing and detoxifying effects. This article reviewed the material basis, pharmacological mechanism of action, and research on HLJDT. Modern research has shown that HLJDT is rich in alkaloids, flavonoids, glycosides, and other active ingredients. In terms of pharmacological mechanisms of action, HLJDT has anti-inflammatory and antibacterial effects, and it can regulate intestinal flora and cell disorder, improve iron metabolism disorder, control glucose and lipid metabolism, and exert vascular endothelial functions, with anti-tumor effects, thus improving cerebral ischemia and reducing liver damage. Its therapeutic actions are multi-layered, multi-faceted, and multi-targeted, showing significant efficacy in treating various diseases. Interdisciplinary research, such as the combined application of network pharmacology with molecular docking technology, as well as metabolomics with proteomics, has revealed the potential mechanism of HLJDT in treating various diseases. However, the research on HLJDT still faces some challenges, including the need for an in-depth exploration of its complex pharmacological mechanism of action, evaluation of its efficacy and safety across different diseases and populations, and quality control of traditional Chinese medicine. Future research should integrate modern scientific and technological approaches with traditional Chinese medicine principles to further investigate HLJDT's complex pharmacological mechanism of action, providing theoretical and practical support for its clinical use.
3.Pharmacological Mechanism of Huanglian Jiedutang: A Review
Duojing LI ; Yongfa XING ; Baohe WANG
Chinese Journal of Experimental Traditional Medical Formulae 2025;31(7):275-283
Huanglian Jiedutang (HLJDT), a traditional Chinese herbal formula, is known for its heat-clearing and detoxifying effects. This article reviewed the material basis, pharmacological mechanism of action, and research on HLJDT. Modern research has shown that HLJDT is rich in alkaloids, flavonoids, glycosides, and other active ingredients. In terms of pharmacological mechanisms of action, HLJDT has anti-inflammatory and antibacterial effects, and it can regulate intestinal flora and cell disorder, improve iron metabolism disorder, control glucose and lipid metabolism, and exert vascular endothelial functions, with anti-tumor effects, thus improving cerebral ischemia and reducing liver damage. Its therapeutic actions are multi-layered, multi-faceted, and multi-targeted, showing significant efficacy in treating various diseases. Interdisciplinary research, such as the combined application of network pharmacology with molecular docking technology, as well as metabolomics with proteomics, has revealed the potential mechanism of HLJDT in treating various diseases. However, the research on HLJDT still faces some challenges, including the need for an in-depth exploration of its complex pharmacological mechanism of action, evaluation of its efficacy and safety across different diseases and populations, and quality control of traditional Chinese medicine. Future research should integrate modern scientific and technological approaches with traditional Chinese medicine principles to further investigate HLJDT's complex pharmacological mechanism of action, providing theoretical and practical support for its clinical use.
4.Clinical Evidence Profile of Eleven Expensive Chinese Patent Medicines: A Scoping Analysis
Yajing LI ; Miaomiao LI ; Le ZHANG ; Wenya WANG ; Hui ZHAO ; Xing LIAO
Chinese Journal of Experimental Traditional Medical Formulae 2025;31(2):227-238
ObjectiveThis study employed the scoping review method to systematically retrieve and analyze the basic information and clinical research evidence of expensive Chinese patent medicines (CPMs), aiming to provide a basis for future related research and clinical applications. MethodsEight Chinese and English databases were systematically searched for the clinical research evidence on expensive CPMs. ResultsEleven expensive CPMs (Angong Niuhuang Wan, Jufang Zhibao Wan, Suhexiang Wan, Pien Tze Huang, Niuhuang Qingxin Wan, Qinggong Shoutao Wan, Compound Realgar Natural Indigo Tablets, Xihuang Wan, Dingkun Wan, Babao Wan, and Guilingji Capsules) were selected. A total of 365 related studies were included in this review, comprising 331 clinical studies (of which 291 were randomized controlled trials), 30 systematic reviews and Meta-analyses, 3 expert consensus, and 1 rapid health technology assessment. Among the 11 CPMs, 2(Angong Niuhuang Wan and Jufang Zhibao Wan) had a daily price over 500 yuan. The famous and precious Chinese medicinal materials involved included Moschus (frequency of 7), Bovisc Alculus (7), and Borneol (5). The dosage forms included pills, capsules, oral liquid, tablets, and lozenges. The diseases treated by these CPMs mainly included malignant tumors, cerebrovascular diseases, gynecological diseases, and hepatobiliary system diseases. The sample sizes of the clinical studies were mainly concentrated within the range of 51-100 cases, and the main control form was CPM + basic Western medicine treatment vs. basic Western medicine treatment. The 331 clinical studies reported a total of 44 adverse events occurred, of which 36 were determined to be adverse reactions. ConclusionThe scarcity of raw materials leads to the high prices of expensive CPMs. The difficulty of conducting clinical research and the critical and severe cases treated lead to a lack of clinical research evidence with large sample sizes. The uneven distribution of existing studies, incomplete information on medicine package, and non-standard clinical research designs remain to be addressed in the future.
5.Research progress in small molecule inhibitors of complement factor B
Shuai WEN ; Yao ZHAO ; Yan WANG ; Xing LI ; Yi MOU ; Zheng-yu JIANG
Acta Pharmaceutica Sinica 2025;60(1):37-47
The alternative pathway (AP) of the complement system is a key contributor to the pathogenesis of several diseases including paroxysmal nocturnal hemoglobinuria (PNH), atypical hemolytic uremic syndrome (aHUS), C3 glomerular disease (C3G) and age-related macular degeneration (AMD). Complement factor B (CFB) is a trypsin-like serine protein that circulates in the human bloodstream in a latent form. As a key node of the alternative pathway, it is an important target for the treatment of diseases mediated by the complement system. With the successful launch of iptacopan, the CFB small molecule inhibitors has become a current research hotspot, a number of domestic and foreign pharmaceutical companies are actively developing CFB small molecule inhibitors. In this paper, the research progress of CFB small molecule inhibitors in recent years is systematically summarized, the representative compounds and their activities are introduced according to structural types and design ideas, so as to provide reference and ideas for the subsequent research on CFB small molecule inhibitors.
6.A Meta-Analysis on the Efficacy and Safety of Xihuang Pill/Capsule( 西黄丸/胶囊) as an Adjuvant to Radio⁃therapy and Chemotherapy in the Treatment of Malignant Digestive Tract Tumors
Mengyi LI ; Lei ZHANG ; Lijun WANG ; Xing GAO
Journal of Traditional Chinese Medicine 2025;66(9):912-919
ObjectiveTo evaluate the efficacy and safety of Xihuang Pill/Capsule (西黄丸/胶囊, XP/XC) as an adjuvant to radiotherapy and/or chemotherapy in the treatment of malignant digestive tract tumors. MethodsA systematic search was conducted in the China Biomedical Literature Database, China National Knowledge Infrastructure (CNKI), Wanfang Data Knowledge Service Platform, VIP Database, PubMed, Web of Science, Embase, and Cochrane Library for randomized controlled trials (RCTs) published before March 6, 2024, regarding the use of XP/XC in clinical adjuvant treatment of malignant digestive tract tumors. The methodological quality of the included studies was assessed using the risk of bias assessment tool. RevMan 5.4 was used to perform a Meta-analysis on 1-year survival rate, 2-year survival rate, clinical efficacy, including objective response rate and disease control rate, Karnofsky Performance Status (KPS) score, immune markers (CD3+, CD4+, CD8+, and CD4+/CD8+ ratio), and adverse event rates (incidence of gastrointestinal reactions and bone marrow suppression). ResultsThirteen RCTs involving 962 patients were included, with 527 patients in the experimental group and 435 patients in the control group. Meta-analysis results showed that the experimental group had better outcomes than the control group in terms of 2-year survival rate [RR = 0.49, 95% CI (0.31, 0.78)], objective response rate [RR = 0.68, 95% CI (0.60, 0.77)], disease control rate [RR = 0.85, 95% CI (0.80, 0.91)], and immune markers CD3+ [MD = -7.99, 95% CI (-9.12, -6.86)], CD4+ [MD = -5.42, 95% CI (-7.11, -3.74)], and CD4+/CD8+ ratio [MD = -0.26, 95% CI (-0.32, -0.20)] (P<0.05). However, no statistically significant differences were found between the experimental and control groups in terms of 1-year survival rate [RR = 0.91, 95% CI (0.73, 1.14)], KPS [MD = -3.73, 95% CI (-8.67, 1.21)], CD8+ [MD = -0.53, 95% CI (-1.45, 0.39)], incidence of gastrointestinal reactions [RR = 0.82, 95% CI (0.46, 1.46)], and incidence of bone marrow suppression [RR = 0.93, 95% CI (0.72, 1.20)] (P>0.05). ConclusionCompared with radiotherapy/chemotherapy alone, the combination of XP/XC with radiotherapy/chemotherapy can effectively improve clinical efficacy and 2-year survival rate, enhance immune function, and achieve similar adverse event rates as radiotherapy/chemotherapy alone in patients with malignant digestive tract tumors.
7.Differention and Treatment of Brain Metastasis from Lung Cancer Based on Theory of "Yang Qi Depletion and Latent Pathogens Transmitting to the Brain"
Huiying ZHAO ; Yanxia LIANG ; Guangsen LI ; Wenwen WANG ; Wenwen SU ; Fenggu LIU ; Hongfei XING ; Maorong FAN
Journal of Traditional Chinese Medicine 2025;66(9):968-972
8.Integrated Transcriptomic Landscape and Deep Learning Based Survival Prediction in Uterine Sarcomas
Yaolin SONG ; Guangqi LI ; Zhenqi ZHANG ; Yinbo LIU ; Huiqing JIA ; Chao ZHANG ; Jigang WANG ; Yanjiao HU ; Fengyun HAO ; Xianglan LIU ; Yunxia XIE ; Ding MA ; Ganghua LI ; Zaixian TAI ; Xiaoming XING
Cancer Research and Treatment 2025;57(1):250-266
Purpose:
The genomic characteristics of uterine sarcomas have not been fully elucidated. This study aimed to explore the genomic landscape of the uterine sarcomas (USs).
Materials and Methods:
Comprehensive genomic analysis through RNA-sequencing was conducted. Gene fusion, differentially expressed genes (DEGs), signaling pathway enrichment, immune cell infiltration, and prognosis were analyzed. A deep learning model was constructed to predict the survival of US patients.
Results:
A total of 71 US samples were examined, including 47 endometrial stromal sarcomas (ESS), 18 uterine leiomyosarcomas (uLMS), three adenosarcomas, two carcinosarcomas, and one uterine tumor resembling an ovarian sex-cord tumor. ESS (including high-grade ESS [HGESS] and low-grade ESS [LGESS]) and uLMS showed distinct gene fusion signatures; a novel gene fusion site, MRPS18A–PDC-AS1 could be a potential diagnostic marker for the pathology differential diagnosis of uLMS and ESS; 797 and 477 uterine sarcoma DEGs (uDEGs) were identified in the ESS vs. uLMS and HGESS vs. LGESS groups, respectively. The uDEGs were enriched in multiple pathways. Fifteen genes including LAMB4 were confirmed with prognostic value in USs; immune infiltration analysis revealed the prognositic value of myeloid dendritic cells, plasmacytoid dendritic cells, natural killer cells, macrophage M1, monocytes and hematopoietic stem cells in USs; the deep learning model named Max-Mean Non-Local multi-instance learning (MMN-MIL) showed satisfactory performance in predicting the survival of US patients, with the area under the receiver operating curve curve reached 0.909 and accuracy achieved 0.804.
Conclusion
USs harbored distinct gene fusion characteristics and gene expression features between HGESS, LGESS, and uLMS. The MMN-MIL model could effectively predict the survival of US patients.
9.Two novel rare variants in the PTH gene found in patients with hypoparathyroidism
Yue JIANG ; An SONG ; Jiajia WANG ; Xinqi CHENG ; Jing YANG ; Yan JIANG ; Mei LI ; Weibo XIA ; Xiaoping XING ; Min NIE ; Ou WANG
Osteoporosis and Sarcopenia 2025;11(1):22-28
Objectives:
Hypoparathyroidism (HP) is a rare endocrine disorder caused by parathyroid hormone (PTH) defi ciency. The PTH is a candidate gene for familial isolated hypoparathyroidism (FIH). This study aimed to investigate the pathogenicity of two novel rare variants (RVs) ofPTH through in vitro functional study.
Methods:
Targeted next-generation sequencing was used to identify candidate gene mutations. Clinical data were retrospectively collected. Wild-type (WT) PTH was used as a template for site-directed mutagenesis to create mutant eukaryotic expression plasmids, which were transfected into cells. Treated with or without 4-phenylbu tyric acid (4-PBA), the levels of intact PTH (iPTH) and PTH (1-84) were measured by chemiluminescence, and protein expression was assessed using Western blotting.
Results:
Two patients carrying PTH mutations (c.154G > A: p.Val52Ile, c.270G > T: p.Leu90Phe) were identified.Patient 1, a 45-year-old male, presented with carpal and pedal numbness, muscle cramps, and low serum calcium (1.29 mmol/L). Patient 2, a 12-year-old female, had muscle twitches, convulsions, low calcium (1.50 mmol/L), and iPTH of 4 pg/mL. The iPTH or PTH (1-84) levels in the medium transfected with mutant Val52Ile and Leu90Phe PTH decreased by 31%–38%, and 51%–96% compared to WT (allP < 0.05), which were not rescued by 4-PBA. No significant changes in intracellular PTH expression were observed.
Conclusions
In this study, two novel RVs of PTH(Val52Ile and Leu90Phe) were identified that may impair hormone synthesis and secretion. Our study has broadened the mutation spectrum of the PTH and shed light on potential mechanisms underlying FIH.
10.Establishment and stress analysis of a finite element model for adolescent cervical disc herniation
Yuxin ZHAO ; Liang LIANG ; Feng JIN ; Yangyang XU ; Zhijie KANG ; Yuan FANG ; Yujie HE ; Xing WANG ; Haiyan WANG ; Xiaohe LI
Chinese Journal of Tissue Engineering Research 2025;29(3):448-454
BACKGROUND:Cervical disc herniation can cause pain in the neck and shoulder area,as well as radiating pain in the upper limbs.The incidence rate is increasing year by year and tends to affect younger individuals.Fully understanding the biomechanical characteristics of the cervical spine in adolescents is of great significance for preventing and delaying the onset of cervical disc herniation in this age group. OBJECTIVE:To reconstruct cervical spine models for both healthy adolescents and adolescent patients with cervical disc herniation utilizing finite element analysis techniques,to analyze the motion range of the C1-T1 cervical vertebrae as well as the biomechanical characteristics of the annulus fibrosus,nucleus pulposus,endplates,and the cartilage of the small joints. METHODS:A normal adolescent's cervical spine and an adolescent patient with cervical disc herniation were selected in this study.The continuous scan cervical spine CT raw image data were imported into Mimics 21.0 in DICOM format.The C1-T1 vertebrae were reconstructed separately.Subsequently,the established models were imported into the 3-Matic software for disc reconstruction.The perfected models were then imported into Hypermesh software for meshing of the vertebrae,nucleus pulposus,annulus fibrosus,and ligaments,creating valid geometric models.After assigning material properties,the final models were imported into ABAQUS software to observe the joint motion range of the C1-C7 cervical vertebrae segments under different conditions,and to analyze the biomechanical characteristics of the annulus fibrosus,nucleus pulposus,endplates,and small joint cartilage of each cervical spine segment. RESULTS AND CONCLUSION:(1)In six different conditions,the joint motion range of the C1 vertebra in the cervical spine models of both normal adolescent and adolescent patient with cervical disc herniation was higher than that of the other vertebrae.Additionally,the joint motion range of each cervical spine segment in normal adolescent was greater than that in adolescent patient with cervical disc herniation.(2)In the cervical spine model of normal adolescent,the maximum stress values in the annulus fibrosus and nucleus pulposus were found on the left side during C2-3 flexion conditions(0.43 MPa and 0.17 MPa,respectively).In the cervical spine model of adolescent patient with cervical disc herniation,the maximum stress values were found on the left side during C7-T1 flexion conditions(0.54 MPa and 0.18 MPa,respectively).(3)In the cervical spine model of normal adolescent,the maximum stress value on the endplate was found on the left side of the upper endplate of C3 during flexion conditions(1.46 MPa).In the model of adolescent patient with cervical disc herniation,the maximum stress value on the endplate was found on the left side of the lower endplate of C7 during flexion conditions(1.32 MPa).(4)In the cervical spine model of normal adolescent,the maximum stress value in the small joint cartilage was found in the C2-3 left rotation conditions(0.98 MPa).In adolescent patient with cervical disc herniation,the stress in the small joint cartilage significantly increased under different conditions,especially in C1-2,with the maximum stress found during left flexion(3.50 MPa).(5)It is concluded that compared to normal adolescent,adolescent patient with cervical disc herniation exhibits altered cervical curvature and a decrease in overall joint motion range in the cervical spine.In adolescent with cervical disc herniation,there is a significant increase in stress on the annulus fibrosus,nucleus pulposus,and endplates in the C7-T1 segment.The stress on the left articular cartilage of the C1-2 is notable.Abnormal cervical curvature may be the primary factor causing these stress changes.

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