1.Pseudolaric Acid B-linked Double-network Hydrogel Alleviates Pruritus by Inhibiting The Growth of Staphylococcus aureus
Ye YOU ; Yan YANG ; Tong-Yu LI ; Cheng-Long CAI ; Ting WANG ; Chan ZHU ; Zong-Xiang TANG
Progress in Biochemistry and Biophysics 2026;53(6):1734-1745
ObjectiveThis study aimed to elucidate the mechanistic role of Staphylococcus aureus in the pathogenesis of atopic dermatitis (AD), a chronic inflammatory skin disorder characterized by pruritus and barrier dysfunction. A key focus was screening traditional Chinese medicine (TCM) active components with dual antibacterial and antipruritic efficacy, followed by systematic evaluation of their in vitro antibacterial activity. Additionally, a novel drug delivery system was constructed to enable localized efficient drug delivery, inhibiting S. aureus proliferation and alleviating its induced pruritus, thereby providing new strategies for targeted AD therapy. MethodsMale C57BL/6J mice aged 6-8 weeks (body weight 18-22 g) were used to establish an AD model via repeated oxazolone sensitization. On day 14, microbial samples were collected from the lesional area (1 cm²) using sterile cotton swabs, followed by vortex mixing, serial dilution, and plating on 5% sheep blood agar plates (incubated at 37°C for 24 h). Single colonies with complete transparent β-hemolytic zones were isolated and identified as vancomycin-intermediate S. aureus (VISA) via 16S rRNA sequencing. An S. aureus mono-infection animal model was then established by applying gauze saturated with bacterial suspension (McFarland turbidity 0.1) to the nape and back skin of mice. The pruritic phenotype and inflammatory cell infiltration induced by S. aureus were evaluated using comprehensive approaches including behavioral assays (e.g., scratching frequency recording), hematoxylin-eosin (HE) staining, and toluidine blue staining. The in vitro antibacterial efficacy of the TCM monomer pseudolaric acid B (PAB) and double network hydrogel (DN) was separately assessed by disk diffusion assay, while the minimum inhibitory concentration (MIC) of PAB was determined via broth dilution method. Further validation of the pharmacodynamic characteristics of the composite system (PAB@DN, composed of PAB and DN) was conducted through behavioral assays, HE staining, and dermatitis scoring, with its drug release profile evaluated by mass spectrometry analysis. Based on scratching behavioral analysis and dermatitis scoring, the optimal ratio and concentration of PAB@DN were optimized. ResultsThe S. aureus load in AD lesional tissues was significantly higher than in normal skin ((5.3±0.33)×10⁶ CFU vs. (3.6±0.26)×10⁷ CFU, P<0.001). In the S. aureus mono-infection group, mice exhibited a 6.7-fold increase in scratching frequency compared to the control group. HE staining revealed marked epidermal thickening ((10.4±2.39) μm vs. (85.6±1.95) μm, P<0.000 1), and toluidine blue staining showed a 23-fold increase in mast cell degranulation. Pseudolaric acid B exhibited a significant concentration-dependent inhibitory effect onS. aureus growth, with its in vitro antibacterial effect being 57% that of the antibiotic cefepime (inhibition zone diameter: PAB (1.885±0.036) cm vs. cefepime (3.636±0.005) cm, P<0.000 1) and a minimum inhibitory concentration (MIC) of 1 g/L. The carrier double network hydrogel (DN) itself lacked direct antibacterial activity (no significant difference in inhibition zone diameter compared to the control) but effectively ameliorated the dry symptoms of AD-like lesions. The PAB@DN composite system demonstrated a synergistic effect compared to individual components, resulting in a 50% reduction in scratching behavior, an 86% decrease in dermatitis score, and a 60% reduction in epidermal thickening. It also reduced the S. aureus load in mouse skin by approximately 34%, with the optimal effective formulation being PAB at 1 g/L loaded onto DN. ConclusionS. aureus colonization plays a critical driving role in the onset and progression of AD. Using an S. aureus infection model, this study confirmed that the pseudolaric acidB-hydrogel composite delivery system (PAB@DN) can effectively alleviate S. aureus-induced pruritus and skin damage, providing experimental evidence for microbiota-targeted therapy of AD.
2.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.
3.Dendritic cells immunotargeted therapy for atherosclerosis.
Zhaohui LI ; Yanyan YANG ; Jinbao ZONG ; Bei ZHANG ; Xiaolu LI ; Hongzhao QI ; Tao YU ; Yongxin LI
Acta Pharmaceutica Sinica B 2025;15(2):792-808
Atherosclerosis, a chronic inflammatory disease, is markedly influenced by both immune and inflammatory reactions throughout its progression. Dendritic cells, as pivotal antigen-presenting entities, play a crucial role in the initiation of immune responses and the preservation of immunological homeostasis. Accumulating data indicates that dendritic cells are present in healthy arteries and accumulate significantly in atherosclerotic plaques. Novel immunotherapeutic approaches and vaccination protocols have yielded substantial clinical advancements in managing chronic inflammatory diseases, with dendritic cell-centric modalities emerging for atherosclerotic management. In this review, we delineate the essential functions and underlying mechanisms of dendritic cells and their subsets in the modulation of atherosclerotic inflammation and immune responses. We underscore the immense promise of dendritic cell-based immunotherapeutic strategies, including vaccines and innovative combinations with nanotechnological drug delivery platforms for atherosclerosis treatment. We also discuss the challenges associated with dendritic cell immunotherapy and provide perspectives on the future direction of this field.
4.Huachansu injection enhances anti-colorectal cancer efficacy of irinotecan and alleviates its induced intestinal toxicity through upregulating UGT1A1-OATP1B3 expression in vitro and in vivo.
Bo JIANG ; Zhao-Yang MENG ; Yu-Jie HU ; Jun-Jun CHEN ; Ling ZONG ; Ling-Yan XU ; Xiang-Qi ZHANG ; Jing-Xian ZHANG ; Yong-Long HAN
Journal of Integrative Medicine 2025;23(5):576-590
OBJECTIVE:
Huachansu injection (HCSI), a promising anti-cancer Chinese medicine injection, has been reported to have the potential for reducing the toxicity of chemotherapy and improving the quality of life for colorectal cancer (CRC) patients. The objective of this study is to explore the synergistic and detoxifying effects of HCSI when used in combination with irinotecan (CPT-11).
METHODS:
To investigate the effect of HCSI on anti-CRC efficacy and intestinal toxicity of CPT-11, we measured changes in the biological behavior of LoVo cells in vitro, and anti-tumor effects in LoVo cell xenograft nude mice models in vivo. Meanwhile, the effect of HCSI on intestinal toxicity and the uridine diphosphate-glucuronosyltransferase 1A1 (UGT1A1) expression was investigated in the CPT-11-induced colitis mouse model. Subsequently, we measured the effect of HCSI and its 13 constituent bufadienolides on the expression of UGT1A1 and organic anion transporting polypeptides 1B3 (OATP1B3) in HepG2 cells.
RESULTS:
The combination index (CI) results showed that the combination of HCSI and CPT-11 exhibited a synergistic effect (CI < 1), which significantly suppressing the LoVo cell migration, enhancing G2/M and S phase arrest, and inhibiting tumor growth in vivo. Additionally, the damage to intestinal tissues was attenuated by HCSI in CPT-11-induced colitis model, while the increased expression of UGT1A1 in HepG2 cells and in mouse was observed.
CONCLUSION
The co-therapy with HCSI alleviated the intestinal toxicity induced by CPT-11 and exerted an enhanced anti-CRC effect. The detoxifying mechanism may be related to the increased expression of UGT1A1 and OATP1B3 by HCSI and its bufadienolides components. The findings of this study may serve as a theoretical insights and strategies to improve CRC patient outcomes. Please cite this article as: Jiang B, Meng ZY, Hu YJ, Chen JJ, Zong L, Xu LY, Zhang XQ, Zhang JX, Han YL. Huachansu injection enhances anti-colorectal cancer efficacy of irinotecan and alleviates its induced intestinal toxicity through upregulating UGT1A1-OATP1B3 expression in vitro and in vivo. J Integr Med. 2025; 23(5):576-590.
Irinotecan/therapeutic use*
;
Animals
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Glucuronosyltransferase/genetics*
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Humans
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Colorectal Neoplasms/metabolism*
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Drugs, Chinese Herbal/therapeutic use*
;
Mice, Nude
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Mice
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Up-Regulation/drug effects*
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Male
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Xenograft Model Antitumor Assays
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Mice, Inbred BALB C
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Hep G2 Cells
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Cell Line, Tumor
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Intestines/drug effects*
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Amphibian Venoms
5.RCM method-based study on preventive maintenance strategy of heating,ventilation and air-conditioning system in pharmacy intravenous admixture services
Liu-liu ZONG ; Yun-zhi YANG ; Jing ZHAO ; Yun MO ; Dong-hui LAO ; Jian-zhong ZHANG ; Xiao-yu LI ; Qian-zhou LYU
Chinese Medical Equipment Journal 2025;46(10):78-83
Objective To propose a preventive maintenance strategy of the heating,ventilation and air-conditioning(HVAC)system in pharmacy intravenous admixture services(PIVAS)based on the reliability centered maintenance(RCM)method so as to provide references for PIVAS equipment maintenance.Methods Firstly,a HVAC system RCM review team was formed,and the failure modes and impacts of important functional components of the equipment were analyzed to clarify the consequences of the failure of each functional component under the premise of ensuring the safety and integrity of the equipment and with the goal of minimizing the loss of maintenance downtime and the consumption of maintenance resources.Secondly,with a standardized logical decision-making procedure the preventive maintenance strategy was determined and implemented based on the consequences of functional failure.Finally,statistical analyses were carried out on such equipment indicators as performance parameter qualification rate,failure rate and maintenance cost before and after the RCM method-based strategy was executed,in order to evaluate the efficacy of the strategy.Results The RCM method-based preventive maintenance strategy had the performance qualification rate increased from 97.47%to 99.06%(χ2=24.139,P<0.01),the failure rate decreased from 0.24%to 0.03%(χ2=13.519,P<0.01)and the maintenance cost reduced by 11.5%,from RMB 134,200 to 118,700.Conclusion The RCM method-based preventive maintenance strategy provides reliable equipment for PIVAS and lowers the maintenance cost effectively,and references are given for the development of automated and intelligent equipment maintenance strategies for PIVAS.[Chinese Medical Equipment Journal,2025,46(10):78-83]
6.Bone marrow mesenchymal stem cells regulate microglial polarization to alleviate neuropathic pain in SNI rats
Yang MIAO ; Ning ZONG ; Lei HE ; Daosong DONG ; Xinxin GUO
Journal of China Medical University 2025;54(5):407-413
Objective To explore the effects and mechanisms of bone marrow mesenchymal stem cells(BMSCs)in regulating microglial polarization on neuropathic pain in rats with sciatic nerve branch-selective injury(SNI).Methods Fifty SD rats were randomly divided into five groups with ten rats in each group;sham group(rats only exposed sciatic nerve without ligation),SNI group(SNI model was estab-lished),BMSCs group[rats were injected with BMSCs(1×106)through the sheath for 3 days after SNI modeling],BMSCs+sh-NC group[rats were intrathecally injected with BMSCs(1×106)and intrathecally injected with knock-down control(adenovirus 2.5×107 IU)for 3 days after SNI modeling],and BMSCs+sh-YY1 group[rats were intrathecally injected with BMSCs(1×106)and intrathecally injected with YY1 knockdown adenovirus(2.5×107 IU)for 3 days after SNI modeling].Neuropathic pain was assessed using paw withdrawal threshold(PWT)and paw withdrawal thermal latency(PWTL)following mechanical stimulation.Immunofluorescence was used to detect the expression of CD86,CD206,iNOS,and Arg1 in the rat spinal cord tissues.Western blotting was used to measure the expression of YY1 and KLF4 in spinal cord tissue.Results Compared with sham group,the values of PWTL and PWT in the SNI group significantly reduced(both P<0.05).In spinal cord tissue,the positive rates of iNOS and CD86 protein increased,whereas the positive rates of CD206 and Arg1 protein and the expression of YY1 and KLF4 decreased(all P<0.05).Compared with the SNI group,the values of PWTL and PWT in the BMSCs and BMSCs+sh-NC groups increased(all P<0.05),the positive rate of CD86 protein in the spinal cord decreased,whereas the positive rate of CD206 protein and the expression of YY1 and KLF4 increased(all P<0.05).Also,the positive rate of iNOS protein in the spinal cord tissue decreased and the positive rate of Arg1 increased in the BMSCs group(all P<0.05).Compared with the BMSCs and BMSCs+sh-NC groups,the PWTL and PWT values in the BMSCs+sh-YY1 group decreased(all P<0.05).The positivity rate of CD86 protein increased,the positivity rate of CD206 protein decreased,and the expression of YY1 and KLF4 decreased in the spinal cord tissue(all P<0.05).Conclusion Intrathecal injection of BMSCs promotes M2 polarization of microglia in the spinal cord and relieves neuropathic pain in rats with SNI,and its mechanism may be related to the upregulation of KLF4 expression mediated by YY1.
7.Study on the mechanism of ultrasound microbubble blasting assisted bone marrow mesenchymal stem cell transplantation in improving diabetic nephropathy
Kun ZHAO ; Yujin FENG ; Xiaoyun YANG ; Fen LIU ; Meinan ZONG ; Yi WANG
Journal of China Medical University 2025;54(10):937-941
Objective To explore the improvement effect of ultrasound microbubble blasting assisted bone marrow mesenchymal stem cells(BMSC)transplantation on diabetic nephropathy(DN)in terms of inflammatory response and renal function via the Toll like receptor 4(TLR-4)/nuclear factor-kappa B(NF-κB)signaling pathway,as well as its specific mechanism.Methods A rat DN model was estab-lished and randomly grouped into the following:Model group,BMSC group,BMSC+microbubble group,and BMSC+microbubble+TLR-4/NF-κB pathway activator lipopolysaccharide(LPS)group,with 12 rats in each group.Additionally,12 rats were selected as the control(CK)group.Biochemical and biuret analysis,HE and Masson staining,ELISA,and Western blotting testing were employed to detect fasting blood glucose(FBG),total cholesterol(TC),triglyceride(TG),serum creatinine(sCr),blood urea nitrogen(BUN),24-hour urinary total protein(24 h-UTP),pathological changes in renal tissue,fibrosis status,and the expression of interleukin-1 β(IL-1β),tumor necrosis factorα(TNF-α),TLR-4,and NF-κB proteins of rats in each group.Results The renal tissue in the CK group was structurally normal with few collagen fibers.The Model group showed obvious renal tissue lesions and severe collagen fiber deposition;the lesions in the BMSC group and BMSC+microvesicle group were alleviated in turn,while the lesions were aggravated after the addition of LPS compared with the BMSC+microvesicle group.Compared with the CK group,the levels of FBG,TC,TG,sCr,BUN,24 h-UTP,as well as the expression of IL-1β,TNF-α,TLR-4,and NF-κB proteins were increased in the Model group(P<0.05).Compared with the Model group,the above-men-tioned indices and protein expression were decreased in the BMSC group(P<0.05).Compared with the BMSC group,the above-men-tioned indices and protein expression were further decreased in the BMSC+microvesicle group(P<0.05).Compared with the BMSC+mi-crovesicle group,the above-mentioned indices and protein expression were increased in the BMSC+microvesicle+LPS group(P<0.05).Conclusion The improvement effect of ultrasound microbubble blasting-assisted BMSC transplantation on DN rats may be related to the inhibition of the TLR-4/NF-κB signaling pathway.
8.Survey of coronaviruses carried by bats in Qinghua Cave,Yunnan Province,China,and establishment of a quantitative viral detection method
Wei KONG ; Peiyu HAN ; Ze YANG ; Junying ZHAO ; Yi TANG ; Jiawei TIAN ; Fenhui XU ; Lidong ZONG ; Yunzhi ZAHNG
Chinese Journal of Zoonoses 2025;41(7):704-711
The aim of this study was to qualitatively and quantitatively detect coronavirus(CoV)in the feces of bats from Qinghua Cave,Yunnan Province,China.CoV was qualitatively tested with reverse transcription polymerase chain reaction(RT-PCR),and homology and genetic evolution were analyzed with bioinformatics software.The established reverse transcription real-time fluores-cence quantitative PCR(qRT-PCR)method was applied to CoV quantification in bat feces.The positivity rate of CoV in 306 fecal samples collected from the fulvous fruit bat(Rousettus leschenaultia)was 7.8%(24/306)according to RT-PCR.All 24 strains of CoV belonged to β-CoV,and showed a similarity of 86.8%-100.0%at the nucleotide level and 95.2%-100.0%at the amino acid level,with respect to other β-CoV sequences in the NCBI database.The positivity rate of CoV was 18.6%(57/306)according to qRT-PCR,a value higher than that according to RT-PCR(χ2=25.3,P<0.05).The mean β-CoV load was 1.3×103 copies/μL.In conclusion,the bats in Qinghua Cave,Yunnan Province,carried CoV belonging to β-CoV.The established qRT-PCR method achieved good sensitiv-ity,accuracy,reproducibility,and a higher detection rate than that of RT-PCR,and can be used for rapid detection of β-CoV in bats.
9.Application of BOPPPS-based blended teaching model in otolaryngology-head and neck surgery education
Zhaoen MA ; Min MAO ; Fenghong CHEN ; Libing LIAO ; Shenzhi TIAN ; Xiaobin YANG ; Ling ZONG ; Jiaxuan XIE ; Guangui CHEN
Modern Hospital 2025;25(8):1291-1294,1299
Objective To investigate the effectiveness of a higher-order thinking-oriented BOPPPS-based blended teach-ing model in otolaryngology-head and neck surgery education,focusing on its impact on the academic performance and teaching satisfaction of undergraduate clinical medicine students.Methods A total of 199 undergraduate clinical medicine students from Guangzhou Medical University were enrolled,divided into a control group(2021-2022 academic year,n=118)and an experi-mental group(2022-2023 academic year,n=81).The control group received conventional blended teaching via Chaoxing plat-form combined with case discussions,while the experimental group implemented the BOPPPS-integrated blended teaching model.Results Students in the experimental group achieved significantly higher average scores than the control group(Δ=11.71 points),with the excellent rate increasing from 0% to 11.1% and the failure rate decreasing to 1.2% .Additionally,the experi-mental group reported high satisfaction with the BOPPPS-integrated blended teaching model,with an overall satisfaction rate of 80.25%.Furthermore,54.32% of students expressed a preference for blended teaching approaches.Students widely acknowl-edged that this model facilitated flexible knowledge application.Conclusion The BOPPPS-integrated blended teaching model ef-fectively enhances the academic performance and teaching satisfaction of undergraduate clinical medicine students,providing a valuable reference for medical education reform oriented toward fostering higher-order thinking and clinical competency.
10.Biosynthesis of ganoderic acid and its derivatives.
Hong-Yan SONG ; Wan YANG ; Li-Wei LIU ; Xia-Ying CHENG ; Dong-Feng YANG ; Zong-Qi YANG
China Journal of Chinese Materia Medica 2025;50(5):1155-1163
Ganoderic acid is a class of lanostane-type triterpenoids found in Ganoderma species, and is one of the most important pharmacologically active components in G. lucidum, exhibiting antioxidant, anti-neuropsychiatric, anti-tumor, and immune-enhancing properties. The content of ganoderic acid in G. lucidum is very low, and the traditional extraction process is complex, yielding minimal amounts at high cost. The biosynthetic pathway of G. lucidum triterpenoids(GLTs), including the synthesis of different structural forms of ganoderic acid from lanosterol, as well as the molecular regulatory mechanisms involving key regulatory enzyme genes and their functions, are not yet fully understood. With the continuous development of synthetic biology technologies, there has been a deeper understanding of the biosynthesis and metabolic regulation pathways of ganoderic acid and its derivatives at the molecular level. Research has explored the key regulatory enzyme genes related to ganoderic acid biosynthesis and their functions. Moreover, through the optimization of synthetic biology and culture conditions, large-scale production and preparation of GLTs at the cellular level have been achieved. This paper reviews and analyzes the latest research progress on the biosynthesis pathways and metabolic regulation of GLTs, focusing on the configuration of ganoderic acid and its derivatives, the biosynthetic pathways, key enzyme genes, transcription factors related to ganoderic acid biosynthesis, signal transduction mechanisms, and factors affecting triterpenoid biotransformation. This review is expected to provide a theoretical basis and technical reference for improving the efficient production of triterpenoid pharmacological components and the exploitation and utilization of G. lucidum resources.
Triterpenes/chemistry*
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Reishi/chemistry*
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Biosynthetic Pathways
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Lanosterol

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