1.Study on the effect and mechanism of modified Yanghe decoction on bone destruction in rats with breast cancer bone metastasis
Shun LU ; Ang CAI ; Tingting FAN ; Weihua HE
China Pharmacy 2026;37(4):431-437
OBJECTIVE To explore the improvement effect and potential mechanism of modified Yanghe decoction on bone destruction in rats with breast cancer bone metastasis based on the receptor-interacting serine/threonine-protein kinase 1 (RIPK1)/RIPK3 pathway. METHODS The rat model of breast cancer bone metastasis was established by injecting a suspension of breast cancer cells into the bone marrow cavity. The rats with successful modeling were randomly divided into a model group (intragastric administration of equal volume of normal saline), modified Yanghe decoction low-, medium-, and high-dose groups (intragastric administration of corresponding decoction at 1.30, 2.60 and 5.20 g/kg, calculated by the dosage of crude drug), high-dose modified Yanghe decoction+si-RIPK1 group (intragastric administration of corresponding decoction at 5.20 g/kg, calculated by the dosage of crude drug; simultaneous injection of small interfering RNA for RIPK1 via the tail vein), and high-dose modified Yanghe decoction+si-NC group (intragastric administration of corresponding decoction at 5.20 g/kg, calculated by the dosage of crude drug; simultaneous injection of small interfering RNA for negative control via the tail vein), with 12 rats in each group. Another 12 healthy rats were selected as the control group and were given the same volume of normal saline intragastrically, once a day, for 14 consecutive days. Body weight was measured before administration and at the end of the last administration. The mechanical pain threshold and thermal pain threshold were measured, and the bone destruction, pathological changes and osteoclast formation of the tibia were observed. The positive expression of receptor activator of nuclear factor-κB (RANK) and receptor activator of nuclear factor-κB ligand (RANKL) in the tibial tissue, as well as the phosphorylation levels of RIPK1, RIPK3 and mixed lineage kinase domain-like protein (MLKL) were detected. RESULTS Compared with the control group, the tumor cells of tibia tissues in rats of the model group showed significant proliferation and diffuse infiltration into the bone marrow cavity. Extensive areas of tumor necrosis of cells, severe bone destruction, thinning of the bone cortex, and damage to the bone trabeculae were observed. The body weight (before administration and at the end of the last administration), mechanical pain threshold, thermal pain threshold, and the phosphorylation levels of RIPK1, RIPK3 and MLKL were decreased significantly; the tumor volume, the proportion of bone destruction area, the number of osteoclasts, and the positive expressions of RANK and RANKL were increased/up-regulated significantly (P<0.05). Compared with the model group, the above pathological changes in the tibial tissues of rats in modified Yanghe decoction low-, medium- and high-dose groups were all alleviated, and all quantitative indicators showed dose-dependent improvement (P<0.05). After silencing RIPK1, the aforementioned beneficial effects of high-dose modified Yanghe decoction were significantly weakened (P<0.05).CONCLUSIONSModified Yanghe decoction can alleviate bone destruction in rats with breast cancer bone metastasis. The above effect is related to the activation of the RIPK1/RIPK3 pathway.
2.Role and mechanism of Lck/Yes-related novel tyrosine kinases in macrophage M1 polarization
Xin YU ; Zhensheng GAO ; Weihua BIAN ; Xiangyong LIU ; Yeying SUN
Acta Universitatis Medicinalis Anhui 2026;61(2):209-216
ObjectiveTo investigate the role and mechanism of Lck/Yes-related novel protein tyrosine kinase (Lyn) on lipopolysaccharide (LPS)-induced M1-type polarization of macrophage. MethodsThe LentiCRISPR-V2 plasmid was digested with the restriction endonuclease BSMBI-V2, and the digested DNA fragments were recovered. The digested plasmid was ligated with Lyn-sgRNA using T4 ligase to generate the Lenti-Lyn-gRNA lentivirus. THP-1 cells were infected with the Lenti-Lyn-gRNA lentivirus to obtain a stable cell line with Lyn knockout, and a monoclonal THP-1 cell line with complete Lyn knockout (Lyn⁻/⁻) was established subsequently. Wild-type Lyn (LynWT) and Lyn⁻/⁻ THP-1 cells were induced with 100 ng/mL phorbol myristate acetate (PMA) for 48 h to differentiate into M0 macrophages, which were further polarized into M1 macrophages by stimulation with 100 ng/mL LPS for 24 h. Quantitative real-time polymerase chain reaction (qPCR) was performed to detect the expression of M0 macrophage markers, including integrin αM (CD11b), macrophage antigen (CD68), and monocyte differentiation antigen (CD14). The expression of Lyn in M1 macrophages differentiated from wild-type THP-1 cells (LynWT-M1) was measured by qPCR, and the ratio of phosphorylated Lyn to total Lyn (P-Lyn/Lyn) in LynWT-M1 cells was determined by Western blot. In M1 macrophages differentiated from Lyn-knockout THP-1 cells (Lyn⁻/⁻-M1), qPCR was used to detect the mRNA expression of inducible nitric oxide synthase (iNOS), interleukin-6 (IL-6), and chemokine (C-X-C motif) ligand 10 (CXCL-10). Western blot was conducted to assess the protein expression of iNOS, as well as the protein levels of molecules related to the Janus kinase 1 (JAK1)-signal transducer and activator of transcription 1 (STAT1)signaling pathway, including JAK1, phosphorylated JAK1 (P-JAK1), STAT1, and phosphorylated STAT1 (P-STAT1). Additionally, the expression of the M1 macrophage marker cluster of differentiation 80 (CD80) was analyzed by flow cytometry. ResultsThe Lyn-/- monoclonal cell line was successfully constructed. The expression of CD11b was significantly elevated in Lyn-/- M0 macrophages, and the differentiation of M1 macrophages was successful. Knockdown of Lyn inhibited mRNA expression of iNOS, IL⁃6, CXCL⁃10, protein expression of iNOS and CD80 expression in M1 macrophages (P<0.05). Western blot assay showed that Lyn knockdown inhibited protein expression of JAK1 and P-STAT1 (P<0.01). ConclusionAfter CRISPR/Cas9-mediated Lyn knockout, the expression levels of JAK1 and P-STAT1, the key molecules in the JAK/STAT signaling pathway of M1 macrophages, are significantly downregulated; concomitantly, the expression of M1 macrophage-specific secretory factors (iNOS, IL⁃6, CXCL⁃10 mRNA) and CD80 is also downregulated, which may be achieved via targeted regulation of the JAK1/P-STAT1-mediated JAK/STAT signaling pathway.
3.Study on the apoptosis-inducing effect of esculetin on acute myeloid leukemia HL-60 cells via regulating the AKT/SKP2/MTH1 pathway
Weihua SONG ; Fuying CHU ; Wei XIE ; Jinliang CHEN ; Ping ZHAO ; Hong QIU ; Jian TAO ; Xiang CHEN
China Pharmacy 2026;37(1):36-41
OBJECTIVE To investigate the apoptosis-inducing effect of esculetin (Esc) on acute myeloid leukemia (AML) HL-60 cells by regulating the protein kinase B (AKT)/S-phase kinase-associated protein 2 (SKP2)/MutT homolog 1 (MTH1) pathway. METHODS AML HL-60 cells were randomly divided into control group (routine culture), Esc low-concentration group (L-Esc group, 25 μmol/L Esc), Esc medium-concentration group (M-Esc group, 50 μmol/L Esc), Esc high-concentration group (H-Esc group, 100 μmol/L Esc), and high-concentration of Esc+ SC79 (AKT agonist) group (100 μmol/L Esc+5 μmol/L SC79). Cell proliferation in each group was detected by MTT assay and colony formation assay. The level of reactive oxygen species (ROS) in cells was measured by using the CM-H2DCFDA fluorescent probe. Cell apoptosis was analyzed by flow cytometry. Western blot assay was performed to detect the expression levels of apoptosis-related proteins [B-cell lymphoma 2 (Bcl-2), Bcl-2-associated X protein (Bax), cleaved caspase-3], AKT/SKP2/MTH1 pathway-related proteins (p-AKT, AKT, SKP2, MTH1), along with the upstream and downstream proteins of AKT phosphatidylinositol 3-kinase (PI3K), cyclin-dependent kinase inhibitor 1 (P21) and cyclin-dependent kinase inhibitor 1B (P27). RESULTS Compared with control group, the cell viability, colony number, and the phosphorylation levels of AKT and PI3K proteins as well as protein expressions of SKP2, MTH1 and Bcl-2 were significantly decreased (P<0.05), while ROS level, apoptosis rate, and the expression levels of Bax, cleaved caspase-3, P21 and P27 proteins were significantly increased (P<0.05). Moreover, the effects of Esc exhibited concentration-dependence (P<0.05). Compared with H-Esc group, above indexes of high-concentration of Esc+ SC79 group were reversed significantly (P<0.05). CONCLUSIONS Esc may promote massive ROS production and induce activation of apoptosis in HL-60 cells by inhibiting the AKT/SKP2/MTH1 pathway, thus inhibiting the proliferation of HL-60 cells.
4.Elevated SLC3A2 Expression Promotes the Progression of Gliomas and Enhances Ferroptosis Resistance through the AKT/NRF2/GPX4 Axis
Yuqian ZHENG ; Shaolong ZHOU ; Yiran TAO ; Zimin SHI ; Xiang LI ; Xudong FU ; Jian MA ; Weihua HU ; Wulong LIANG ; Xinjun WANG
Cancer Research and Treatment 2026;58(1):71-94
Purpose:
The aim of this study is to determine the impact of solute carrier family 3 member 2 (SLC3A2) on the malignant phenotype of gliomas and its role in regulating ferroptosis sensitivity.
Materials and Methods:
The malignant phenotype of glioma was assessed by cell proliferation assay, colony formation assay, EdU assay, wound healing, and Transwell experiments. We further validated the impact of reduced SLC3A2 expression on the sensitivity to ferroptosis in glioma cells through Cell Counting Kit-8 assays, flow cytometry, western blotting, and transmission electron microscopy. Western blot was used to explore how SLC3A2 affects glioma sensitivity to ferroptosis through the AKT/NF-E2-related factor 2 (NRF2)/glutathione peroxidase 4 (GPX4) axis. By establishing a subcutaneous xenograft tumor model in BALB/c-nude mice, we investigated the growth of tumors following the knockout of SLC3A2 in glioma cells.
Results:
Downregulation of SLC3A2 suppressed the malignant phenotype of glioma by blocking the cell cycle and epithelial-mesenchymal transition processes. On the other hand, loss of SLC3A2 not only downregulated SLC7A11 but also prevented the activation of the AKT/NRF2/GPX4 axis. These lead to increased accumulation of reactive oxygen species and lipid peroxides, ultimately enhancing the susceptibility of glioma to ferroptosis.
Conclusion
Our findings suggest that SLC3A2 is an oncogene in gliomas, promoting their occurrence and development. It plays a critical role in ferroptosis resistance through the AKT/NRF2/GPX4 axis.
5.Chinese expert consensus on the Hazardous Drug List
Weihua DONG ; Zhanjun DONG ; Lulu SUN ; Yingbo ZHAO ; Zhuoyin XUE ; Min LIU ; Weiyi FENG
China Pharmacy 2026;37(12):1521-1527
OBJECTIVE To formulate the Hazardous Drug List in China, and provide a scientific basis for standardizing the management of hazardous drugs, preventing and controlling occupational exposure risks in medical institutions at all levels in China. METHODS Under the joint organization of the Intravenous Medication Admixture Management Professional Committee of the Chinese Pharmaceutical Association and the National Medical Quality Control Center for Pharmaceutical Management, based on literature research and international hazardous drug lists and their development procedures, the scope of hazardous drug selection, selection principles, and evidence confirmation criteria were determined through expert panel seminars and expert questionnaire survey method (Delphi method). Chemical drugs, biological agents, and Chinese patent medicines marketed in China that met the selecti on principles were screened to form the Chinese Expert Consensus on the Hazardous Drug List . RESULTS Five principles for selecting hazardous drugs were established (including protective labeling in package inserts, carcinogenicity, reproductive toxicity, genotoxicity, and organ toxicity at low doses), along with the corresponding evidence confirmation criteria. The Hazardous Drug List containing 210 drugs was formulated, covering anti-tumor drugs, endocrine system drugs, nervous system drugs, immunomodulators, anti-infective drugs, cardiovascular system drugs, hematological system drugs, urinary system drugs, obstetrics and gynecology drugs, dermatological drugs and other categories. Compared with international hazardous drug lists, 25 newly included hazardous drugs were added, including 15 anti-tumor drugs, 6 Chinese patent medicines and 4 biological agents. In addition, 88 Chinese patent medicines that may have potential occupational exposure risks are listed in the appendix for reference by medical institutions in management. CONCLUSIONS The development of this consensus closely aligns with the actual clinical drug use in China, with a scientific and rigorous methodology, and can serve as a reference for medical institutions at all levels to standardize the management of hazardous drugs and prevent and control occupational exposure risks.
6.Dual regulatory role of Müller glial cells in glaucoma and its targeted therapeutic potential
Weihua SUN ; Hongyun YUE ; Xiaojuan HUANG
International Eye Science 2026;26(8):1371-1375
The core pathological process of optic neuropathy caused by glaucoma is the progressive loss of retinal ganglion cells(RGCs). As the primary glial cells in the retina, Müller glial cells play a crucial and complex dual regulatory role in the pathological microenvironment of glaucoma. On one hand, Müller cells can exert endogenous protective effects by secreting neurotrophic factors, enhancing RGC viability through co-culture, and regulating glutamate metabolism. On the other hand, under sustained stress such as elevated intraocular pressure, Müller cells are activated by mechanosensitive channels(e.g., TRPV4), transforming into a reactive gliosis phenotype. This leads to the release of inflammatory cytokines that exacerbate RGC apoptosis, while their metabolic reprogramming and epigenetic alterations also contribute to the process of neuronal injury. This article systematically reviews the research progress on the dual roles of Müller cells in protecting and damaging the optic nerve in glaucoma, exploring new therapeutic strategies for neuroprotection by regulating their cellular states. It outlines the main controversies and unresolved issues in this field and, based on the latest research advances, analyzes the implications of targeting Müller cells for current clinical treatments and future development trends.
7.Comparative analysis of characteristics and functions of exosomes from human induced pluripotent stem cell-derived platelets and apheresis platelets
Weihua HUANG ; Yan ZANG ; Aihua QIN ; Ziyang FENG ; Heshan TANG ; Fei GUO ; Chuyan WU ; Qiu SHEN ; Baohua QIAN ; Haihui GU ; Zhanshan CHA
Chinese Journal of Blood Transfusion 2025;38(9):1154-1161
Objective: To compare the biological characteristics of human induced pluripotent stem cell-derived platelet exosomes (hiPSC-Plt-Exos) with those of conventional apheresis platelet exosomes (Plt-Exos), specifically focusing on their differential abilities to enhance the proliferation and migration of human umbilical cord mesenchymal stem cells (hUC-MSCs). Methods: Exosomes were isolated from hiPSC-derived Plt and apheresis Plt concentrate using size exclusion chromatography. These exosomes were then characterized through nanoparticle tracking analysis (NTA), transmission electron microscopy (TEM), and Western blotting. Co-culture experiments into hUC-MSCs were conducted with hiPSC-Plt-Exos and apheresis Plt-Exos, respectively. Their effects on the proliferation and migration of hUC-MSCs were assessed via cell proliferation assays and scratch tests. Results: hiPSC-Plt-Exos and apheresis Plt-Exos exhibited comparable particle sizes, morphological features (such as the characteristic cup-shaped structure), and surface markers (including CD9 and HSP70). Notably, hiPSC-Plt-Exos demonstrated a significantly greater ability to enhance the proliferation and migration of hUC-MSCs compared to apheresis Plt-Exos (P<0.05). These differences provide critical comparative data for their application in various clinical contexts. Conclusion: This study establishes a theoretical foundation for developing precise therapeutic strategies based on hiPSC-Plt-Exos. Furthermore, it underscores the necessity of selecting the appropriate type of exosomes according to the specific disease microenvironment to achieve optimal therapeutic outcomes.
8.Nafamostat Mesylate Alleviates Renal Ischemia-Reperfusion Injury in a Rat Model Through HMGB1 Modulation:An Omics Analysis-Based Study of the Protective Effect and the Mechanisms Involved
Yuxuan WU ; Hongqian LI ; Linfeng LIU ; Yu WANG ; Bo CHEN ; Jiang LIU ; Jianhua QIN ; Santao OU ; Weihua WU
Journal of Sichuan University (Medical Sciences) 2025;56(1):175-182
Objective To investigate the organ protective role and the underlying mechanism of nafamostat mesylate(NM)in a renal ischemia-reperfusion injury(RIRI)model.Methods A total of 21 healthy male Sprague-Dawley(SD)rats were randomly assigned to 3 groups(n=7 in each group),including the sham operation group(Sham group),the RIRI group,and the NM intervention group(NM group).The RIRI and NM groups underwent ischemia-reperfusion injury(IRI)modeling.The NM group was given an intraperitoneal injection of NM at 0.75 mg/kg before modeling.Venous blood and renal tissue samples were then collected from the rats 24 hours after modeling.The levels of serum creatinine,cystatin C,and serum inflammatory factors were determined using the serum samples.Hematoxylin-eosin(HE)staining and TUNEL stainings were performed on the renal tissues to evaluate the damage of the renal tissues.The localization and expression of HMGB1 were analyzed by immunofluorescence and Western blotting,respectively.Single-cell RNA sequencing of the nuclei was performed to obtain the single-cell transcriptome of the kidneys from the rats in the RIRI and the NM groups and to acquire the RIRI cell profile.The cells were annotated according to the cell marker genes to explore the cell type composition in the disease model and the functional status of immune cells between the groups.Results 1)Compared with those of the Sham group,the levels of cystatin C,creatinine,and inflammatory factors in the RIRI and NM groups were significantly increased,and the expression levels in the NM group were lower than those in the RIRI group(P<0.05).Compared with those of the RIRI group,the tubular injury score and apoptosis rate in the NM group were significantly decreased(P<0.05),but those of both the NM and RIRI groups were higher than those of the sham group.Compared with that in the RIRI group,the expression of HMGB1 in the NM group was significantly decreased(P<0.05),but the expression levels in both the RIRI and NM groups were higher than that in the sham group.Immunofluorescence showed that there was increased cytoplasmic expression of HMGB1 in both the NM and RIRI groups,with the increase being more prominent in the RIRI group.2)A total of 13 major cell populations were identified through the single-nucleus sequencing results.The proportion of tubular cells in the NM group was higher,with the HMGB1 gene being highly expressed in the damaged proximal convoluted tubular cells.The proportion of the polarized Macro3 cell subpopulation in the macrophages in the NM group was lower compared to that in the RIRI group.Conclusion NM may play a protective role in a rat model of RIRI,and its underlying mechanisms may be related to the regulation of the functional abnormalities of HMGB1-mediated macrophages.
9.Investigation and Analysis of Deacclimatization in Tibetan College Students Upon First Visit to Low-Altitude Regions
Weihua ZHANG ; Kezhen HAN ; Li SHAO ; Chao YANG ; Kexin ZHAO ; Zhao JIANG
Journal of Sichuan University (Medical Sciences) 2025;56(1):254-261
Objective To investigate the correlation between changes in physiological indicators and altitude,age,and sex among ethnic Tibetan college students living in Xizang on long-term basis upon their first ever visit to a low-altitude region,thereby providing health guidance for long-term residents of high-altitude regions when they visit low-altitude environments for the first time.Methods A cluster random sampling method was used to select 170 healthy first-year college students of Tibetan ethnicity(85 males and 85 females),from Xizang Minzu University.The participants did not have any respiratory,circulatory,or nervous system diseases,nor any family history of such conditions.Based on their responses to questionnaires and the monitoring data of their physiological indicators,an analysis was conducted to assess the incidence and duration of deacclimatization symptoms among these Tibetan college students during the first month after their arrival at a low-altitude region.In addition,the R programming language and the SPSS software were used to analyze the correlation between changes in blood pressure,heart rate,and body weight and the participants'age,sex,and the altitude of their long-term residence in Xizang before and after their arrival at a low-altitude region.Results Statistical analysis revealed that Tibetan college students experienced deacclimatization symptoms within the first week of their first ever visit to a low-altitude region,primarily characterized by dizziness,fatigue,and drowsiness.The incidence was 41.9%among female students and 22.5%among male students.Furthermore,after arriving at low-altitude region,the participants experience an initial decrease followed by a recovery in both blood pressure and heart rate.They gained an average of 1.5 kg in body mass compared with their initial measurements upon arrival in a low-altitude region.Significant differences in blood pressure,heart rate,and body mass were observed among Tibetan students of different sexes and altitudes of their long-term residence in Xizang after their arrival in a low-altitude region.Conclusion After arriving at a low-altitude region,Tibetan college students exhibit marked changes in physiological indicators,showing strong correlations between systolic blood pressure,body mass,etc.,and sex,altitude,and other parameters.
10.Application of Animal Models in Research on Hypoxia-Related Diseases
Yifan XU ; Chenchen ZHOU ; Xicheng LIU ; Weihua GUO ; Jian ZHOU
Journal of Sichuan University (Medical Sciences) 2025;56(2):331-338
Hypoxia-related diseases,such as altitude sickness,acute lung injury,and heart failure,have emerged as significant public health challenges worldwide and are strongly associated with increased mortality risks.These conditions tend to cause functional impairment and structural alterations in multiple organs,primarily due to inadequate oxygen supply or the inability of tissues to utilize oxygen effectively.To elucidate the pathophysiological mechanisms underlying hypoxia-associated diseases and to explore potential therapeutic strategies,researchers have employed animal models to conduct extensive mechanistic studies and drug development trials.In this review,we provide a comprehensive overview of the methods used to construct animal models for various hypoxia-related diseases.We made a thorough evaluation of the strengths,weaknesses,limitations,and applicability of each approach.In particular,we focus on modeling strategies for key pathologies such as altitude sickness,acute lung injury,pulmonary hypertension,and heart failure,discussing their respective advantages and restrains.Furthermore,we examined the potential application of gene editing technologies in optimizing animal models,especially its role in enhancing the accuracy and reproducibility of the models.The integration of these advanced technologies holds great promise for developing animal models with improved specificity and simulation of key features of diseases,which will serve as a solid foundation for basic research,drug screening,and preclinical trials concerning hypoxia-related diseases.Herein,we present a systematic summary and future outlook of animal models for hypoxia-related diseases,ultimately providing theoretical support for developing clinical treatment strategies and improving patient outcomes.

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