1.Screen of FDA-approved drug library identifies vitamin K as anti-ferroptotic drug for osteoarthritis therapy through Gas6
Yifeng SHI ; Sunlong LI ; Shuhao ZHANG ; Caiyu YU ; Jiansen MIAO ; Shu YANG ; Yan CHEN ; Yuxuan ZHU ; Xiaoxiao HUANG ; Chencheng ZHOU ; Hongwei OUYANG ; Xiaolei ZHANG ; Xiangyang WANG
Journal of Pharmaceutical Analysis 2025;15(5):1033-1047
Ferroptosis of chondrocytes is a significant contributor to osteoarthritis(OA),for which there is still a lack of safe and effective therapeutic drugs targeting ferroptosis.Here,we screen for anti-ferroptotic drugs in Food and Drug Administration(FDA)-approved drug library via a high-throughput manner in chondrocytes.We identified a group of FDA-approved anti-ferroptotic drugs,among which vitamin K showed the most powerful protective effect.Further study demonstrated that vitamin K effectively inhibited ferroptosis and alleviated the extracellular matrix(ECM)degradation in chondrocytes.Intra-articular injection of vitamin K inhibited ferroptosis and alleviated OA phenotype in destabilization of the medial meniscus(DMM)mouse model.Mechanistically,transcriptome sequencing and knockdown experiments revealed that the anti-ferroptotic effects of vitamin K depended on growth arrest-specific 6(Gas6).Furthermore,exogenous expression of Gas6 was found to inhibit ferroptosis through the AXL receptor tyrosine kinase(AXL)/phosphatidylinositol 3-kinase(PI3K)/AKT serine/threonine kinase(AKT)axis.Together,we demonstrate that vitamin K inhibits ferroptosis and alleviates OA progression via enhancing Gas6 expression and its downstream pathway of AXL/PI3K/AKT axis,indicating vitamin K as well as Gas6 to serve as a potential therapeutic target for OA and other ferroptosis-related diseases.
2.Traditional Chinese Medicine Intervention in Diabetic Nephropathy Based on PI3K/Akt Signaling Pathway: A Review
Miao XU ; Xiaolei JIA ; Lingling QIN ; Haiyan WANG ; You WANG ; Yuzhuo CHANG ; Cuiyan LYU ; Tonghua LIU
Chinese Journal of Experimental Traditional Medical Formulae 2025;31(11):90-97
Diabetic nephropathy (DN) is a renal disorder induced by prolonged hyperglycemia, with major pathological features including persistent albuminuria, progressive decline in glomerular filtration rate, and elevated arterial blood pressure. As one of the most common and severe microvascular complications of diabetes, the pathogenesis of DN is complex and multifactorial. Without timely and effective treatment, DN may eventually progress to end-stage renal disease (ESRD). Currently available therapeutic options are often associated with significant adverse effects and high costs, and a large number of patients still progress to ESRD due to delayed treatment. Therefore, there is an urgent need for safer and more effective treatment strategies to improve the living standards and enhance the survival and quality of life of patients with DN. Modern studies have demonstrated that the phosphatidylinositol 3-kinase (PI3K)/protein kinase B (Akt) signaling pathway plays a critical role in oxidative stress, inflammatory responses, autophagy, and glycolysis, and is closely associated with the pathophysiological progression of DN. In recent years, traditional Chinese medicine (TCM) has achieved remarkable progress in the prevention and treatment of DN, supported by rich clinical experience and confirmed therapeutic efficacy. With its characteristics of multi-target, multi-component, and multi-pathway actions, along with minimal side effects, TCM can delay the progression of DN and alleviate patient symptoms. Among these mechanisms, the regulation of the PI3K/Akt signaling pathway has gradually become a research hotspot. This paper systematically reviews the role and mechanisms of the PI3K/Akt signaling pathway in the onset and progression of DN based on extensive literature research, summarizes the latest research advances on the precise modulation of the PI3K/Akt pathway by Chinese medicine monomers, active constituents, Chinese patent medicines, and herbal compound formulas in the treatment of DN, aiming to provide a strong theoretical reference for the development of clinically effective agents for DN prevention and treatment.
3.Traditional Chinese Medicine Intervention in Diabetic Nephropathy Based on PI3K/Akt Signaling Pathway: A Review
Miao XU ; Xiaolei JIA ; Lingling QIN ; Haiyan WANG ; You WANG ; Yuzhuo CHANG ; Cuiyan LYU ; Tonghua LIU
Chinese Journal of Experimental Traditional Medical Formulae 2025;31(11):90-97
Diabetic nephropathy (DN) is a renal disorder induced by prolonged hyperglycemia, with major pathological features including persistent albuminuria, progressive decline in glomerular filtration rate, and elevated arterial blood pressure. As one of the most common and severe microvascular complications of diabetes, the pathogenesis of DN is complex and multifactorial. Without timely and effective treatment, DN may eventually progress to end-stage renal disease (ESRD). Currently available therapeutic options are often associated with significant adverse effects and high costs, and a large number of patients still progress to ESRD due to delayed treatment. Therefore, there is an urgent need for safer and more effective treatment strategies to improve the living standards and enhance the survival and quality of life of patients with DN. Modern studies have demonstrated that the phosphatidylinositol 3-kinase (PI3K)/protein kinase B (Akt) signaling pathway plays a critical role in oxidative stress, inflammatory responses, autophagy, and glycolysis, and is closely associated with the pathophysiological progression of DN. In recent years, traditional Chinese medicine (TCM) has achieved remarkable progress in the prevention and treatment of DN, supported by rich clinical experience and confirmed therapeutic efficacy. With its characteristics of multi-target, multi-component, and multi-pathway actions, along with minimal side effects, TCM can delay the progression of DN and alleviate patient symptoms. Among these mechanisms, the regulation of the PI3K/Akt signaling pathway has gradually become a research hotspot. This paper systematically reviews the role and mechanisms of the PI3K/Akt signaling pathway in the onset and progression of DN based on extensive literature research, summarizes the latest research advances on the precise modulation of the PI3K/Akt pathway by Chinese medicine monomers, active constituents, Chinese patent medicines, and herbal compound formulas in the treatment of DN, aiming to provide a strong theoretical reference for the development of clinically effective agents for DN prevention and treatment.
4.Combined screening of two primary immunodeficiency diseases and spinal muscular atrophy in neonates by multiplex real-time fluorescence quantitative PCR
Chao ZHANG ; Jianbin YANG ; Shiqiang SHANG ; Chi CHEN ; Huaqing MAO ; Xiaolei HUANG ; Fang HONG ; Haixia MIAO ; Hanyi ZHAO ; Rulai YANG
Chinese Journal of Laboratory Medicine 2025;48(2):249-257
Objective:To explore the feasibility of joint screening of the two primary immunodeficiency diseases [severe combined immunodeficiency (SCID) and X-linked agammaglobulinemia(XLA)] and spinal muscular atrophy(SMA) in newborns by multiplex real-time quantitative PCR technology, and to provide evidence for early screening, diagnosis and treatment of children.Methods:Cross-sectional study. From July 2021 to January 2023, a total of 103 240 dry blood spots samples of newborns were collected which were delivered to Neonatal Disease Screening Center of Zhejiang by cold chain transportation. The concentrations of the T cell receptor excision ring (TREC), Kappa deletion of the recombinant excision loop (KREC), and exon 7 deletion of Survival Motor Neuron 1 (SMN1) gene in dry blood spots were simultaneously detected by multiplex real-time fluorescence quantitative PCR, taken ribonuclease P/MRP 30 000 subunits (RPP30) as an internal reference gene. The positive newborns were further diagnosed by other laboratory tests and gene sequencing was taken as gold standard. Children samples from 1 case of SCID, 3 cases of XLA and 2 cases of SMA were used for positive verification. The correlation between detected concentration of TREC/KREC and basic information in newborns were analyzed. The differences among groups for each factor were analyzed.Results:One case of SCID, 2 cases of XLA, 9 cases of SMA and 7 cases of other genetic diseases (4 cases of DiGeorge syndrome, 1 case of trisomy 21 syndrome, 1 case of Noonan syndrome and 1 case of super male syndrome) were identified by multiplex real-time fluorescence quantitative PCR. The positive predictive values of screening neonatal SCID, XLA and SMA were 2.44% (1/41), 2.78% (2/72) and 9/9 respectively. Taking the samples from clinically diagnosed 1 case of SCID, 3 cases of XLA and 2 cases of SMA as positive validation samples, which were all identified. The detected results of TREC/KREC correlated with time of blood collection, sex, weight, gestational age and delivery mode of newborns, whose r values were 0.162/0.187, 0.066/0.032, 0.045/0.042, ?0.015/?0.088 and 0.014/0.068 respectively (all P<0.05). Conclusions:Relying on current neonatal screening platform in Zhejiang, it is feasible to screen jointly two kinds of primary immunodeficiency diseases and spinal muscular atrophy in newborns by multiple real-time fluorescence quantitative PCR technology.
5.Screen of FDA-approved drug library identifies vitamin K as anti-ferroptotic drug for osteoarthritis therapy through Gas6.
Yifeng SHI ; Sunlong LI ; Shuhao ZHANG ; Caiyu YU ; Jiansen MIAO ; Shu YANG ; Yan CHEN ; Yuxuan ZHU ; Xiaoxiao HUANG ; Chencheng ZHOU ; Hongwei OUYANG ; Xiaolei ZHANG ; Xiangyang WANG
Journal of Pharmaceutical Analysis 2025;15(5):101092-101092
Ferroptosis of chondrocytes is a significant contributor to osteoarthritis (OA), for which there is still a lack of safe and effective therapeutic drugs targeting ferroptosis. Here, we screen for anti-ferroptotic drugs in Food and Drug Administration (FDA)-approved drug library via a high-throughput manner in chondrocytes. We identified a group of FDA-approved anti-ferroptotic drugs, among which vitamin K showed the most powerful protective effect. Further study demonstrated that vitamin K effectively inhibited ferroptosis and alleviated the extracellular matrix (ECM) degradation in chondrocytes. Intra-articular injection of vitamin K inhibited ferroptosis and alleviated OA phenotype in destabilization of the medial meniscus (DMM) mouse model. Mechanistically, transcriptome sequencing and knockdown experiments revealed that the anti-ferroptotic effects of vitamin K depended on growth arrest-specific 6 (Gas6). Furthermore, exogenous expression of Gas6 was found to inhibit ferroptosis through the AXL receptor tyrosine kinase (AXL)/phosphatidylinositol 3-kinase (PI3K)/AKT serine/threonine kinase (AKT) axis. Together, we demonstrate that vitamin K inhibits ferroptosis and alleviates OA progression via enhancing Gas6 expression and its downstream pathway of AXL/PI3K/AKT axis, indicating vitamin K as well as Gas6 to serve as a potential therapeutic target for OA and other ferroptosis-related diseases.
6.Combined screening of two primary immunodeficiency diseases and spinal muscular atrophy in neonates by multiplex real-time fluorescence quantitative PCR
Chao ZHANG ; Jianbin YANG ; Shiqiang SHANG ; Chi CHEN ; Huaqing MAO ; Xiaolei HUANG ; Fang HONG ; Haixia MIAO ; Hanyi ZHAO ; Rulai YANG
Chinese Journal of Laboratory Medicine 2025;48(2):249-257
Objective:To explore the feasibility of joint screening of the two primary immunodeficiency diseases [severe combined immunodeficiency (SCID) and X-linked agammaglobulinemia(XLA)] and spinal muscular atrophy(SMA) in newborns by multiplex real-time quantitative PCR technology, and to provide evidence for early screening, diagnosis and treatment of children.Methods:Cross-sectional study. From July 2021 to January 2023, a total of 103 240 dry blood spots samples of newborns were collected which were delivered to Neonatal Disease Screening Center of Zhejiang by cold chain transportation. The concentrations of the T cell receptor excision ring (TREC), Kappa deletion of the recombinant excision loop (KREC), and exon 7 deletion of Survival Motor Neuron 1 (SMN1) gene in dry blood spots were simultaneously detected by multiplex real-time fluorescence quantitative PCR, taken ribonuclease P/MRP 30 000 subunits (RPP30) as an internal reference gene. The positive newborns were further diagnosed by other laboratory tests and gene sequencing was taken as gold standard. Children samples from 1 case of SCID, 3 cases of XLA and 2 cases of SMA were used for positive verification. The correlation between detected concentration of TREC/KREC and basic information in newborns were analyzed. The differences among groups for each factor were analyzed.Results:One case of SCID, 2 cases of XLA, 9 cases of SMA and 7 cases of other genetic diseases (4 cases of DiGeorge syndrome, 1 case of trisomy 21 syndrome, 1 case of Noonan syndrome and 1 case of super male syndrome) were identified by multiplex real-time fluorescence quantitative PCR. The positive predictive values of screening neonatal SCID, XLA and SMA were 2.44% (1/41), 2.78% (2/72) and 9/9 respectively. Taking the samples from clinically diagnosed 1 case of SCID, 3 cases of XLA and 2 cases of SMA as positive validation samples, which were all identified. The detected results of TREC/KREC correlated with time of blood collection, sex, weight, gestational age and delivery mode of newborns, whose r values were 0.162/0.187, 0.066/0.032, 0.045/0.042, ?0.015/?0.088 and 0.014/0.068 respectively (all P<0.05). Conclusions:Relying on current neonatal screening platform in Zhejiang, it is feasible to screen jointly two kinds of primary immunodeficiency diseases and spinal muscular atrophy in newborns by multiple real-time fluorescence quantitative PCR technology.
7.Changes of thickness and elasticity of skeletal muscles in diabetic patients and relative impact factors
Xiaolei FENG ; Lili HUANG ; Qi ZHOU ; Miao LI
Chinese Journal of Medical Imaging Technology 2024;40(2):270-274
Objective To observe changes of thickness and elasticity of skeletal muscles in patients with type 2 diabetes mellitus(T2DM)and relative impact factors.Methods Totally 62 T2DM patients(T2DM group)and 60 healthy adults(HC group)were prospectively recruited.Shear wave elastography(SWE)technology was used to measure the maximum Young's modulus(Emax)of the rectus abdominis and gastrocnemius muscles under relaxed and contracted states in both groups.The thickness and elasticity modulus of the skeletal muscles under the two states were compared between groups.Multiple linear regression analysis was performed to screen impact factors of the elasticity modulus of the rectus abdominis and gastrocnemius muscles.Results No significant difference of muscle thicknesses of rectus abdominis,nor of gastrocnemius muscle was found between groups under relaxed and contracted states(all P>0.05).Under both relaxed and contracted states,the Emax of the rectus abdominis and gastrocnemius muscle in T2DM group were all lower than those in HC group(all P<0.05).Multiple linear regression analysis showed that in T2DM group,the elasticity modulus of the rectus abdominis and gastrocnemius muscle under both relaxed and contracted states decreased linearly with disease duration,fasting blood glucose(FBG)and glycosylated hemoglobin(HbA1c)(all P<0.05).Conclusion The elasticity modulus of skeletal muscle decreased in T2DM patients,and the reducing scales linearly related to disease duration,FBG and HbA1c.
8.Honokiol attenuates acetaminophen-induced acute liver injury by inhibiting hepatic CYP1A2 activity and improving liver mitochondrial dysfunction.
Xiaolei MIAO ; Chengting JIN ; Jiao LIU ; Junjun WANG ; Yong CHEN
Chinese Herbal Medicines 2023;15(2):231-239
OBJECTIVE:
Acetaminophen (APAP) overdose is a common cause of liver injury. This study aimed to investigate the protective effect of honokiol (Hon) against APAP-induced hepatotoxicity and its potential mechanism.
METHODS:
C57BL/6 mice were administrated with Hon (10 and 30 mg/kg) after APAP (300 mg/kg) treatment. On 1.5 h and 5 h after Hon treatment, mice were sacrificed. Serum and liver were collected. And then, liver injury-related indexes, APAP metabolism-related indexes, mitochondrial respiratory chain function-related indexes, and mitochondrial membrane function-related protein expression were evaluated.
RESULTS:
It was found that Hon significantly decreased serum alanine aminotransferase (ALT)/aspartate aminotransferase (AST) activity and glutathione (GSH) depletion, increased hepatic catalase (CAT) and GSH peroxidase (GSH-Px) activities, reduced hepatic MDA and 3-nitrotyrosine contents, inhibited hepatic CYP1A2 activity and APAP protein adducts (APAP-CYS) formation. Meanwhile, oxidative phosphorylation capacity of complex I and electron transfer capacity of complex IV in mitochondrial respiratory chain was increased, whereas the release of H2O2 in the mitochondria was decreased following Hon treatment. Furthermore, Hon markedly down-regulated p-JNK in both cytosol and mitochondria, and obviously inhibited the release of apoptosis inducing factor (AIF) and endonuclease G (EndoG) from mitochondria to cytosol.
CONCLUSION
Hon alleviated APAP-induced liver injury through the following pathways: Reducing the production of APAP-CYS by inhibiting CYP1A2 activity; Ameliorating hepatic oxidative stress by increasing the levels of hepatic CAT, GSH-Px and GSH; Improving mitochondrial respiratory chain function by promoting oxidative phosphorylation capacity of complex I and electron transfer capacity of complex IV; Improving the function of mitochondrial membrane by inhibiting p-JNK and its translocation to mitochondria, thereby reducing the release of AIF and EndoG.
9.Analysis of Animal Models of Cough Variant Asthma Based on the Characteristics of Clinical Disease and Syndrome of Chinese and Western Medicine
Jiawen ZHANG ; Xiaolei ZHANG ; Qiongyi FU ; Mingsan MIAO
World Science and Technology-Modernization of Traditional Chinese Medicine 2023;25(10):3279-3285
Cough variant asthma(CVA)is a common respiratory disease in clinical practice.The only or main clinical manifestation of CVA is cough.It has similar pathological pathogenesis with asthma,but its pathological changes are sligher than asthma.The research of CVA drugs needs appropriate CVA animal models as the research basis.Based on the characteristics of CVA clinical diseases and syndromes of traditional Chinese and western medicine,combined with the clinical diagnostic criteria of traditional Chinese and western medicine,the CVA animal models are combed and analyzed,in order to provide references for the establishment,evaluation and application of CVA animal models.Chemical induction was used to prepare the commonly used animal models of cough variant asthma,including mice,rats and guinea pigs.The selection of sensitizing agent,adjuvant,activator and cough inducing agent was basically the same in the animal models of cough variant asthma,but there were significant differences in the selection of sensitizing method,sensitizing and stimulating dose,modeling cycle and detection index.Western medicine has clear diagnostic criteria for cough variant asthma,while traditional Chinese medicine can classify cough-variant asthma into different types according to different syndromes.At present,the commonly used animal models of cough variant asthma are highly consistent with the diagnostic criteria of western medicine,but not well consistent with the diagnostic criteria of traditional Chinese medicine,which is insufficient to reflect the symptoms of traditional Chinese medicine.The establishment of CVA animal model combining disease and syndrome,including medical syndromes into the model evaluation criteria,meets the requirements of TCM research on CVA animal model.In model evaluation,behavioral manifestations,HE staining of lung tissue,cell counts in BALF and lung function indicators should be considered in various aspects,and airway excitation test,alveolar lavage fluid eosinophil count,behavioral and other aspects should be distinguished from asthma.
10.Screening of active components of Euchresta japonica against nasopharyngeal carcinoma
Junling NAN ; Chaozhong WANG ; Guangli YAN ; Fangfang WU ; Zhijun SONG ; Shuo WANG ; Xiaolei ZHOU ; Jianhua MIAO ; Xijun WANG
China Pharmacy 2022;33(11):1320-1329
OBJECTIVE To screen t he active component s of Euchresta japonica against nasopharyngeal carcinoma. METHODS Main chemical components of E. japonica were selected ,and their target proteins were predicted in Swiss Target Prediction database. The target proteins of nasopharyngeal cancer were obtained with GeneCards database. Protein-protein interaction(PPI)network was established after the target of chemical components of E. japonica was intersected with the target of nasopharyngeal carcinoma ;PPI network was analyzed by using Cytoscape 3.6.1 software,and the potential active components and key targets of E. japonica against nasopharyngeal carcinoma were screened. The molecular docking technology was used to evaluate binding ability of active component-key target ;active components of E. japonica against nasopharyngeal carcinoma were screened. The anti-nasopharyngeal cancer effect of potential active components of E. japonica was verified by cell proliferation experiment. RESULTS Seven potential active components (tonkinensisol,quercetin,sophoranone,matrine,genistein,coumarin,maackiain) and 10 core targets (SRC,PIK3CA,MAPK1,MAPK3,AKT1,MAPK8,MAP2K1,PTK2,EGFR,JAK3)of E. japonica against nasopharyngeal carcinoma were screened. The molecular docking results showed that above potential active components all possessed certain anti-nasopharyngeal cancer effect. Cell proliferation activity test showed that tonkinensisol ,sophoranone and maackiain had a very significant inhibitory activity on nasopharyngeal carcinoma cells CNE- 1. CONCLUSIONS Tonkinensisol, sophoranone and maackiain might be the main active components of E. japonica against nasopharyngeal carcinoma.

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