1.Effective Ingredients of Chinese Medicine in Prevention and Treatment of Osteoarthritis by Regulating Oxidative Stress: A Review
Shuang ZHANG ; Yingyan BI ; Xiaoting LIU ; Yusuo GONG ; Xuerui LIU ; Baohua YUAN ; Chenglong LU ; Xufan CHEN ; Ying WANG ; Jiaru GUANG
Chinese Journal of Experimental Traditional Medical Formulae 2024;30(11):282-289
Osteoarthritis (OA) is a common degenerative joint disease with a rising incidence rate year by year. Treatment often relies on analgesics and non-steroidal anti-inflammatory drugs (NSAIDs), which can lead to gastrointestinal damage with long-term use and the recurrence of symptoms. Chinese medicine has a long history of preventing and treating OA, with widespread application and fewer side effects. It offers unique advantages such as a broad treatment scope, multiple targets, and pathways. The effective components of Chinese medicine can reduce the content of reactive oxygen species (ROS), relieve oxidative stress (OS) damage, and increase the antioxidant capacity of the body by interfering with the expression of biomarkers of OS response such as malondialdehyde (MDA) and superoxide dismutase (SOD). Through the modulation of signaling pathways such as nuclear factor E2-related factor 2 (Nrf2)/heme oxygenase-1 (HO-1), phosphatidylinositol 3-kinase (PI3K)/protein kinase B (Akt), nuclear factor kappa B (NF-κB), c-Jun N-terminal kinase (JNK), NOD-like receptor protein 3 (NLRP3), and osteoprotegerin (OPG), they downregulated the expression of inflammatory factors such as interleukin-6 (IL-6), interleukin-1β (IL-1β), and tumor necrosis factor-α (TNF-α), thereby effectively relieving local joint inflammation, protecting chondrocytes and bone tissue, inhibiting chondrocyte apoptosis, and further alleviating the progression of OA. Currently, there are still certain limitations in the medical research status and development trends of OA, necessitating the continued advancement of traditional Chinese medicine. This paper reviewed the literature on the regulation of OS response by effective components of Chinese medicine for the prevention and treatment of OA, providing new directions and ideas for future research.
2.Nanomaterial-based Therapeutics for Biofilm-generated Bacterial Infections
Zhuo-Jun HE ; Yu-Ying CHEN ; Yang ZHOU ; Gui-Qin DAI ; De-Liang LIU ; Meng-De LIU ; Jian-Hui GAO ; Ze CHEN ; Jia-Yu DENG ; Guang-Yan LIANG ; Li WEI ; Peng-Fei ZHAO ; Hong-Zhou LU ; Ming-Bin ZHENG
Progress in Biochemistry and Biophysics 2024;51(7):1604-1617
Bacterial biofilms gave rise to persistent infections and multi-organ failure, thereby posing a serious threat to human health. Biofilms were formed by cross-linking of hydrophobic extracellular polymeric substances (EPS), such as proteins, polysaccharides, and eDNA, which were synthesized by bacteria themselves after adhesion and colonization on biological surfaces. They had the characteristics of dense structure, high adhesiveness and low drug permeability, and had been found in many human organs or tissues, such as the brain, heart, liver, spleen, lungs, kidneys, gastrointestinal tract, and skeleton. By releasing pro-inflammatory bacterial metabolites including endotoxins, exotoxins and interleukin, biofilms stimulated the body’s immune system to secrete inflammatory factors. These factors triggered local inflammation and chronic infections. Those were the key reason for the failure of traditional clinical drug therapy for infectious diseases.In order to cope with the increasingly severe drug-resistant infections, it was urgent to develop new therapeutic strategies for bacterial-biofilm eradication and anti-bacterial infections. Based on the nanoscale structure and biocompatible activity, nanobiomaterials had the advantages of specific targeting, intelligent delivery, high drug loading and low toxicity, which could realize efficient intervention and precise treatment of drug-resistant bacterial biofilms. This paper highlighted multiple strategies of biofilms eradication based on nanobiomaterials. For example, nanobiomaterials combined with EPS degrading enzymes could be used for targeted hydrolysis of bacterial biofilms, and effectively increased the drug enrichment within biofilms. By loading quorum sensing inhibitors, nanotechnology was also an effective strategy for eradicating bacterial biofilms and recovering the infectious symptoms. Nanobiomaterials could intervene the bacterial metabolism and break the bacterial survival homeostasis by blocking the uptake of nutrients. Moreover, energy-driven micro-nano robotics had shown excellent performance in active delivery and biofilm eradication. Micro-nano robots could penetrate physiological barriers by exogenous or endogenous driving modes such as by biological or chemical methods, ultrasound, and magnetic field, and deliver drugs to the infection sites accurately. Achieving this using conventional drugs was difficult. Overall, the paper described the biological properties and drug-resistant molecular mechanisms of bacterial biofilms, and highlighted therapeutic strategies from different perspectives by nanobiomaterials, such as dispersing bacterial mature biofilms, blocking quorum sensing, inhibiting bacterial metabolism, and energy driving penetration. In addition, we presented the key challenges still faced by nanobiomaterials in combating bacterial biofilm infections. Firstly, the dense structure of EPS caused biofilms spatial heterogeneity and metabolic heterogeneity, which created exacting requirements for the design, construction and preparation process of nanobiomaterials. Secondly, biofilm disruption carried the risk of spread and infection the pathogenic bacteria, which might lead to other infections. Finally, we emphasized the role of nanobiomaterials in the development trends and translational prospects in biofilm treatment.
3.Simultaneous content determination of ten constituents in Tianma Toufengling Capsules by QAMS
Xu-Sheng GUO ; Xue-Wei QIU ; Li LI ; Ai-Ying WU ; An-Zhen CHEN ; Hong-Bing LIU ; Jing-Guang LU
Chinese Traditional Patent Medicine 2024;46(2):359-364
AIM To establish a quantitative analysis of multi-components by single-marker(QAMS)method for the simultaneous content determination of gastrodin,parishin E,syringin,parishin B,parishin C,ferulic acid,parishin A,buddleoside,harpagoside and cinnamic acid in Tianma Toufengling Capsules.METHODS The analysis was performed on a 30℃thermostatic GL Science InertsilTM ODS-3 column(150 mm×4.6 mm,5 μm),with the mobile phase comprising of acetonitrile-0.1%phosphoric acid flowing at 1.0 mL/min in a gradient elution manner,and the detection wavelengths were set at 220,280 nm.Syringin was used as an internal standard to calculate the relative correction factors of the other nine constituents,after which the content determination was made.RESULTS Ten constituents showed good linear relationships within their own ranges(r≥0.999 7),whose average recoveries were 98.53%-102.22%with the RSDs of 1.26%-2.68%.The result obtained by QAMS approximated those obtained by external standard method.CONCLUSION This accurate and specific method can be used for the quality control of Tianma Toufengling Capsules.
4.Clinical trial of remifentanil combined with dexmedetomidine in orthopedic surgery for the elderly patients
Zhi-Min ZHANG ; Yong-Le LI ; Xiao-Long NIU ; Guang-Yi WU ; Ying WANG ; Lu GAN
The Chinese Journal of Clinical Pharmacology 2024;40(2):190-194
Objective To investigate the effects of remifentanil and dexmedetomidine controlled hypotension on coagulation function,cerebral oxygen metabolism and amino acid neurotransmitter levels in elderly patients undergoing orthopedic surgery.Methods The elderly patients who underwent lower extremity orthopedic surgery were divided into group A(given dexmedetomidine for hypotension),group B(given remifentanil for hypotension)and group C(given remifentanil combined with dexmedetomidine for hypotension)according to different anesthetic drugs.Systolic blood pressure(SBP),diastolic blood pressure(DBP)and heart rate(HR)were compared among the 3 groups.Cerebral oxygen metabolism[arterial oxygen content,(CaO2),oxygen saturation of internal jugular vein(SjvO2),oxygen content of internal jugular vein(CjvO2)],coagulation function[activated partial thromboplastin time(APTT),prothrombin time(PT),thrombin time(TT),plasma fibrinogen(FIB)],amino acid neurotransmitters[glutamic acid(Glu),aspartate(Asp),gamma-aminobutyric acid(GABA)]were compared,and the occurrence of adverse drug reactions during the trial were compared.Results At 12 h after anesthesia,the APTT of group A,group B and group C were(17.26±2.77),(17.37±2.92)and(31.11±4.74)s,respectively.GABA were(18.74±2.71),(19.22±2.60)and(23.37±2.59)mmol·L-1,respectively.3 min after withdrawal,CaO2 in group A,group B and group C were(139.31±9.03),(140.90±8.70)and(131.75±10.11)mL·L-1,respectively;SjvO2 were(63.59±2.23)%,(63.40±2.44)%and(68.82±3.36)%,respectively.The above indexes of group C were compared with those of group A and group B,and the differences were statistically significant(all P<0.05).The incidence of adverse drug reactions in group A,B and C were 12.82%,27.50%and 7.32%,respectively.The incidence of adverse drug reactions in group C were lower than that in group A and group B(P<0.05).Conclusion Remifentanil combined with dexmedetomidine for controlled hypotension in elderly orthopedic surgery has better blood pressure control effect,can improve postoperative coagulation function,maintain cerebral oxygen metabolism balance,reduce cognitive function injury and anesthesia adverse drug reactions.
5.Development and Analysis of Standards for Drugs Under Special Management
Kuikui GENG ; Ling JIANG ; Jiancun ZHEN ; Tianlu SHI ; Wei ZHANG ; Jin LU ; Jianqing WANG ; Xiaoyang LU ; Qianzhou LYU ; Zhiqing ZHANG ; Ying CHEN ; Hong XIA ; Qin GUANG ; Hongpeng BI
Herald of Medicine 2024;43(8):1217-1221
Drugs under special management include narcotic drugs,psychotropic drugs,toxic drugs for medical use,radiopharmaceuticals,and pharmaceutical precursor chemicals.Supervising and guiding the clinical use of drugs under special management is one of the important responsibilities of the Pharmaceutical Management and Drug Therapy Committee(Group)of medical institutions.The standard for drugs under special management is led by the Pharmaceutical Professional Committee of the China Hospital Association,which standardizes 16 key elements of organizational management,process management,and quality control management drugs under special management in medical institutions.It can guide the standardized implementation of Pharmaceuticals under special control work in various levels and types of medical institutions.This article elaborates on the methods and contents of formulating standards for Pharmaceuticals under special management,to provide reference and inspiration for medical institutions to carry out special drug drug management and daily related work.
6.Mechanism of dexmetomidine alleviating inflammatory injury in rats with lipopolysaccharide-induced myocarditis
Di-Sheng CAI ; Jian-Guang REN ; Xiao-Mei LU ; Zhi-Ying ZHOU
Journal of Regional Anatomy and Operative Surgery 2024;33(6):479-485
Objective To investigate the effect of dexmedetomidine(Dex)on inflammatory injury in rats with lipopolysaccharide(LPS)-induced myocarditis(Myo)by regulating AMP-activated protein kinase(AMPK)/silent information regulator 1(SIRT1)/nuclear factor κB(NF-κB)signaling pathway.Methods Rats were randomly divide into the NC group,the Myo group,and the L-Dex group(10 μg/kg Dex),the M-Dex group(30 μg/kg Dex),the H-Dex group(50 μg/kg Dex),the AICAR group(100 mg/kg AMPK/SIRT1/NF-κB signal pathway activator),the H-Dex+GSK690693 group(50 μg/kg Dex+0.2 μmol/kg AMPK/SIRT1/NF-κB signal pathway inhibitor GSK690693),with 10 rats in each group.M-mode echocardiography system was used to evaluate the cardiac function of rats;ELISA kit was used to detect the levels of serum interleukin-1β(IL-1β),interleukin-6(IL-6),tumor necrosis factor-α(TNF-α),superoxide dismutase(SOD),and malondialdehyde(MDA)in rats;TUNEL staining was used to observe cell apoptosis;HE staining was used to observe the pathological changes of myocardial tissue;RT-qPCR was used to detect the mRNA expression of C-X-C motif chemokine ligand 1(CXCL1),C-X-C motif chemokine ligand 2(CXCL2),and vascular cell adhesion molecule-1(VCAM-1)in rat myocardial tissue;Western blot was used to detect the expression of AMPK/SIRT1/NF-κB pathway-related proteins in rat myocardial tissue.Results There was no abnormal change in cardiomyocytes in the NC group,and cardiomyocytes in the Myo group showed deformation,necrosis,inflammatory cell infiltra-tion,and mesenchymal congestion;necrosis,inflammatory cell infiltration,and mesenchymal congestion in the L-Dex group,the M-Dex group,the H-Dex group,and the AICAR group were improved compared with that in the Myo group;changes in cardiomyocytes in the H-Dex group and the AICAR group were similar to those in the NC group,and changes in cardiomyocytes in the H-Dex+GSK690693 group were similar to those in the Myo group.Compared with the NC group,the left ventricular ejection fraction(LVEF),left ventricular fractional shortening(LVFS),expression levels of SOD,p-AMPK/AMPK,p-SIRT1/SIRT1 in the Myo group were obviously decreased(P<0.05),left ventricular end-systolic volume(LVESV),left ventricular end-diastolic volume(LVEDV),left ventricular end-systolic diameter(LVESD),left ventricular end-diastolic diameter(LVEDD),expression levels of IL-1β,IL-6,TNF-α,MDA,CXCL1,CXCL2,VCAM-1,p-NF-κB/NF-κB,NF-κB p65 and cardiomyocyte apoptosis rate were obviously increased(P<0.05).Compared with the Myo group,the LVEF,LVFS,expression levels of SOD,p-AMPK/AMPK,p-SIRT1/SIRT1 in the L-Dex group,the M-Dex group,the H-Dex group and the AICAR group were obviously increased(P<0.05),LVESV,LVEDV,LVESD,LVEDD,expression levels of IL-1β,IL-6,TNF-α,MDA,CXCL1,CXCL2,VCAM-1,p-NF-κB/NF-κB,NF-κB p65 and cardiomyocyte apoptosis rate were obviously decreased(P<0.05),and the effects were more obvious with the increase of the dosage of Dex.There was no significant difference in the above results between the AICAR group and the H-Dex group(P>0.05).Compared with the H-Dex group,the LVEF,LVFS,expression levels of SOD,p-AMPK/AMPK,p-SIRT1/SIRT1 in the H-Dex+GSK690693 group were obviously decreased(P<0.05),LVESV,LVEDV,LVESD,LVEDD,levels of IL-1β,IL-6,TNF-α,MDA,cardiomyocyte apoptosis rate,the expression of CXCL1,CXCL2,VCAM-1,p-NF-κB/NF-κB and NF-κB p65 protein were obviously increased(P<0.05).Conclusion Dex may alleviate LPS-induced inflammatory injury in Myo rats by up-regulating AMPK/SIRT1/NF-κB signaling pathway.
7.Intravenous Tenecteplase for Acute Ischemic Stroke Within 4.5–24 Hours of Onset (ROSE-TNK): A Phase 2, Randomized, Multicenter Study
Lu WANG ; Ying-Jie DAI ; Yu CUI ; Hong ZHANG ; Chang-Hao JIANG ; Ying-Jie DUAN ; Yong ZHAO ; Ye-Fang FENG ; Shi-Mei GENG ; Zai-Hui ZHANG ; Jiang LU ; Ping ZHANG ; Li-Wei ZHAO ; Hang ZHAO ; Yu-Tong MA ; Cheng-Guang SONG ; Yi ZHANG ; Hui-Sheng CHEN
Journal of Stroke 2023;25(3):371-377
Background:
and Purpose Intravenous tenecteplase (TNK) efficacy has not been well demonstrated in acute ischemic stroke (AIS) beyond 4.5 hours after onset. This study aimed to determine the effect of intravenous TNK for AIS within 4.5 to 24 hours of onset.
Methods:
In this pilot trial, eligible AIS patients with diffusion-weighted imaging (DWI)-fluid attenuated inversion recovery (FLAIR) mismatch were randomly allocated to intravenous TNK (0.25 mg/kg) or standard care within 4.5–24 hours of onset. The primary endpoint was excellent functional outcome at 90 days (modified Rankin Scale [mRS] score of 0–1). The primary safety endpoint was symptomatic intracranial hemorrhage (sICH).
Results:
Of the randomly assigned 80 patients, the primary endpoint occurred in 52.5% (21/40) of TNK group and 50.0% (20/40) of control group, with no significant difference (unadjusted odds ratio, 1.11; 95% confidence interval 0.46–2.66; P=0.82). More early neurological improvement occurred in TNK group than in control group (11 vs. 3, P=0.03), but no significant differences were found in other secondary endpoints, such as mRS 0–2 at 90 days, shift analysis of mRS at 90 days, and change in National Institutes of Health Stroke Scale score at 24 hours and 7 days. There were no cases of sICH in this trial; however, asymptomatic intracranial hemorrhage occurred in 3 of the 40 patients (7.5%) in the TNK group.
Conclusion
This phase 2, randomized, multicenter study suggests that intravenous TNK within 4.5–24 hours of onset may be safe and feasible in AIS patients with a DWI-FLAIR mismatch.
8.A single-nucleus transcriptomic atlas of primate testicular aging reveals exhaustion of the spermatogonial stem cell reservoir and loss of Sertoli cell homeostasis.
Daoyuan HUANG ; Yuesheng ZUO ; Chen ZHANG ; Guoqiang SUN ; Ying JING ; Jinghui LEI ; Shuai MA ; Shuhui SUN ; Huifen LU ; Yusheng CAI ; Weiqi ZHANG ; Fei GAO ; Andy PENG XIANG ; Juan Carlos Izpisua BELMONTE ; Guang-Hui LIU ; Jing QU ; Si WANG
Protein & Cell 2023;14(12):888-907
The testis is pivotal for male reproduction, and its progressive functional decline in aging is associated with infertility. However, the regulatory mechanism underlying primate testicular aging remains largely elusive. Here, we resolve the aging-related cellular and molecular alterations of primate testicular aging by establishing a single-nucleus transcriptomic atlas. Gene-expression patterns along the spermatogenesis trajectory revealed molecular programs associated with attrition of spermatogonial stem cell reservoir, disturbed meiosis and impaired spermiogenesis along the sequential continuum. Remarkably, Sertoli cell was identified as the cell type most susceptible to aging, given its deeply perturbed age-associated transcriptional profiles. Concomitantly, downregulation of the transcription factor Wilms' Tumor 1 (WT1), essential for Sertoli cell homeostasis, was associated with accelerated cellular senescence, disrupted tight junctions, and a compromised cell identity signature, which altogether may help create a hostile microenvironment for spermatogenesis. Collectively, our study depicts in-depth transcriptomic traits of non-human primate (NHP) testicular aging at single-cell resolution, providing potential diagnostic biomarkers and targets for therapeutic interventions against testicular aging and age-related male reproductive diseases.
Animals
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Male
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Testis
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Sertoli Cells/metabolism*
;
Transcriptome
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Spermatogenesis/genetics*
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Primates
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Aging/genetics*
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Stem Cells
9.Overcoming chemoresistance in non-angiogenic colorectal cancer by metformin via inhibiting endothelial apoptosis and vascular immaturity
Guang-Yue LI ; Shu-Jing ZHANG ; Dong XUE ; Yue-Qi FENG ; Yan LI ; Xun HUANG ; Qiang CUI ; Bo WANG ; Jun FENG ; Tao BAO ; Pei-Jun LIU ; Shao-Ying LU ; Ji-Chang WANG
Journal of Pharmaceutical Analysis 2023;13(3):262-275
The development of chemoresistance which results in a poor prognosis often renders current treatments for colorectal cancer(CRC).In this study,we identified reduced microvessel density(MVD)and vascular immaturity resulting from endothelial apoptosis as therapeutic targets for overcoming chemoresistance.We focused on the effect of metformin on MVD,vascular maturity,and endothelial apoptosis of CRCs with a non-angiogenic phenotype,and further investigated its effect in overcoming chemoresistance.In situ transplanted cancer models were established to compare MVD,endothelial apoptosis and vascular maturity,and function in tumors from metformin-and vehicle-treated mice.An in vitro co-culture system was used to observe the effects of metformin on tumor cell-induced endothelial apoptosis.Transcriptome sequencing was performed for genetic screening.Non-angiogenic CRC developed inde-pendently of angiogenesis and was characterized by vascular leakage,immaturity,reduced MVD,and non-hypoxia.This phenomenon had also been observed in human CRC.Furthermore,non-angiogenic CRCs showed a worse response to chemotherapeutic drugs in vivo than in vitro.By suppressing endo-thelial apoptosis,metformin sensitized non-angiogenic CRCs to chemo-drugs via elevation of MVD and improvement of vascular maturity.Further results showed that endothelial apoptosis was induced by tumor cells via activation of caspase signaling,which was abrogated by metformin administration.These findings provide pre-clinical evidence for the involvement of endothelial apoptosis and subsequent vascular immaturity in the chemoresistance of non-angiogenic CRC.By suppressing endothelial apoptosis,metformin restores vascular maturity and function and sensitizes CRC to chemotherapeutic drugs via a vascular mechanism.
10.Effects and mechanisms of total flavones of Abelmoschus manihot in inhibiting podocyte necroptosis and renal fibrosis in diabetic kidney disease.
Jia-Xin CHEN ; Qi-Jun FANG ; Yi-Gang WAN ; Ying-Lu LIU ; Yu WANG ; Wei WU ; Yue TU ; Mei-Zi WANG ; Dian-Guang WANG ; Hai-Tao GE
China Journal of Chinese Materia Medica 2023;48(15):4137-4146
Previous studies have shown that high blood glucose-induced chronic microinflammation can cause inflammatory podocyte injury in patients with diabetic kidney disease(DKD). Therein, necroptosis is a new form of podocyte death that is closely associated with renal fibrosis(RF). To explore the effects and mechanisms in vivo of total flavones of Abelmoschus manihot(TFA), an extract from traditional Chinese herbal medicine Abelmoschus manihot for treating kidney diseases, on podocyte necroptosis and RF in DKD, and to further reveal its scientific connotation with multi-pathway and multi-target, the authors randomly divided all rats into four groups: a namely normal group, a model group, a TFA group and a rapamycin(RAP) group. After the modified DKD rat models were successfully established, four group rats were given double-distilled water, TFA suspension and RAP suspension, respectively by gavage every day. At the end of the 4th week of drug treatment, all rats were sacrificed, and the samples of their urine, blood and kidneys were collected. And then, the various indicators related to podocyte necroptosis and RF in the DKD model rats were observed, detected and analyzed, respectively. The results indicated that, general condition, body weight(BW), serum creatinine(Scr), urinary albumin(UAlb), and kidney hypertrophy index(KHI) in these modified DKD model rats were both improved by TFA and RAP. Indicators of RF, including glomerular histomorphological characteristics, fibronectin(FN) and collagen type Ⅰ(collagen Ⅰ) staining extent in glomeruli, as well as the protein expression levels of FN, collagen Ⅰ, transforming growth factor-β1(TGF-β1) and Smad2/3 in the kidneys were improved respectively by TFA and RAP. Podocyte damage, including foot process form and the protein expression levels of podocin and CD2AP in the kidneys was improved by TFA and RAP. In addition, tumor necrosis factor-α(TNF-α)-mediated podocyte necroptosis in the kidneys, including the morphological characteristics of podocyte necroptosis, the extent and levels of the protein expression of TNF-α and phosphorylated mixed lineage kinase domain like pseudokinase(p-MLKL) was improved respectively by TFA and RAP. Among them, RAP had the better effect on p-MLKL. More importantly, the activation of the receptor interacting serine/threonine protein kinase 1(RIPK1)/RIPK3/MLKL signaling axis in the kidneys, including the expression levels of its key signaling molecules, such as phosphorylated receptor interacting serine/threonine protein kinase 1(p-RIPK1), p-RIPK3, p-MLKL and cysteinyl aspartate specific proteinase-8(caspase-8) was improved respectively by TFA and RAP. Among them, the effect of TFA on p-RIPK1 was superior. On the whole, in this study, the authors demonstrated that TFA alleviates podocyte necroptosis and RF in DKD through inhibiting the activation of the TNF-α-mediated RIPK1/RIPK3/MLKL signaling axis in diabetic kidneys. The authors' findings provide new pharmacological evidence to reveal the scientific connotation of TFA in treating RF in DKD in more depth.
Humans
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Rats
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Animals
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Diabetic Nephropathies/drug therapy*
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Abelmoschus
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Flavones/pharmacology*
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Podocytes
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Tumor Necrosis Factor-alpha/metabolism*
;
Necroptosis
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Receptor-Interacting Protein Serine-Threonine Kinases/metabolism*
;
Fibrosis
;
Threonine/pharmacology*
;
Collagen/metabolism*
;
Serine/pharmacology*
;
Diabetes Mellitus/drug therapy*

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