1.Asiaticoside alleviates ferroptosis in myelodysplastic syndrome by activating SMAD7
Liye WANG ; Qing CHANG ; Tengteng DONG ; Ting LIU ; Chi WANG ; Mianyang LI
Journal of Army Medical University 2025;47(12):1319-1331
Objective To investigate the relationship of aberrant SMAD family member 7(SMAD7)signaling pathway and ferroptosis in myelodysplastic syndromes(MDS)and evaluate the effect of asiaticoside(AC)-modulating SMAD7 up-regulation to suppress ferroptosis in MDS cell lines.Methods Publicly available MDS-related datasets from the Gene Expression Omnibus(GEO)database were analyzed to identify differentially expressed genes(DEGs)between MDS patients and healthy controls.These DEGs were cross-referenced with ferroptosis-associated genes from the Ferroptosis Database(FerrDb)to identify potential ferroptosis-related targets in MDS.Bone marrow mononuclear cells(BMMNCs)were isolated from 18 MDS patients freshly diagnosed in the First Medical Center of Chinese PLA General Hospitaland and from 16 healthy donors during October 2022 and November 2024.RT-qPCR was employed to detect the expression of SMAD7 and ferroptosis-related genes.Immunomagnetic bead sorting was applied to purify CD33+cells,and then qPCR and Western blotting were utilized to measure the expression of SMAD7 and ferroptosis-related biomarkers at mRNA and protein levels.Human normal bone marrow cells(HS-5)and MDS cell lines(MUTZ-1,SKM-1)were treated with gradient concentrations of AC(SMAD7 activator)and ferrostatin-1(Fer-1,ferroptosis inhibitor),and SMAD7 overexpression plasmids were transfected into MDS cells.qPCR and Western blotting were utilized to measure the expression of SMAD7 and ferroptosis-related biomarkers at mRNA and protein levels,and the contents of glutathione(GSH),malondialdehyde(MDA),superoxide dismutase(SOD),and reactive oxygen species(ROS)were detected.Flow cytometry of CD11b+was performed to measure cellular differentiation.Results ①Bioinformatics analysis revealed significant down-regulation of SMAD7 in MDS patients,correlating with ferroptosis activation.Compared to the healthy controls,MDS patients exhibited decreased SMAD7 expression(P<0.05),reduced levels of negative regulators of ferroptosis,glutathione peroxidase 4(GPX4)and ferritin heavy chain(FTH1)(P<0.05),and elevated expression of its positive regulator transferrin receptor protein 1(TFRC)(P<0.05).Consistent with this,when compared with the normal human bone marrow stromal cell line HS-5,the MDS cell lines MUTZ-1 and SKM-1 exhibited declined expression of SMAD7,GPX4,and FTH1,alongside elevated expression of TFRC(P<0.05).② Treatment with gradient concentrations of the ferroptosis inhibitors ferrostatin-1(Fer-1),the expression levels of GPX4 and FTH1 in MDS cell lines were significantly upregulated in a concentration-dependent manner(P<0.05),while TFRC was markedly downregulated(P<0.05).Additionally,GSH content and SOD activity were enhanced,whereas ROS levels and MDA content were significantly reduced(P<0.05).These results suggest that Fer-1 effectively suppresses ferroptosis in MDS cells.③SMAD7 overexpression led to up-regulation of GPX4 and FTH1 ih MDS cell lines,while downregulation of TFRC,improved anti-oxidative ability and reduced ferroptosis,with enhanced CD11b+expression and myeloid differentiation.④ Following AC treatment,the expression levels of GPX4 and FTH1 in MDS cell lines were significantly upregulated in a concentration-dependent manner(P<0.05),whereas the downregulation of TFRC did not reach statistical significance.Additionally,AC treatment effectively enhanced the antioxidant capacity of the cells,increased the proportion of CD11b+cells(P<0.05),and facilitated cellular differentiation.Conclusion AC activates SMAD7 in MDS cell lines,up-regulating GPX4 and FTH1 while suppressing TFRC expression.This mechanism alleviates oxidative damage and lipid peroxidation,thereby inhibiting ferroptosis in MDS cells.Concurrently,SMAD7 activation promotes cellular differentiation.
2.Application of etomidate-propofol mixture anaesthesia in painless gastrointestinal endoscopy
Liye ZHUANG ; Xixi JIANG ; Anqiang YU ; Yan LI ; Lihong HU ; Chang CAI
China Journal of Endoscopy 2024;30(10):16-22
Objective To explore the effect of etomidate-propofol mixture anaesthesia in painless gastrointestinal endoscopy.Methods Eighty-two patients who underwent painless gastrointestinal endoscopy from September 2023 to November 2023 were divided into etomidate-propofol mixture group(observation group,n=41)and propofol group(control group,n=41)by using the random number table method.Morphine-benzedrine group(MBG)scores were recorded 30 min before the examination and before leaving the recovery room in both groups.Percutaneous arterial oxygen saturation(SpO2),heart rate(HR)and mean arterial pressure(MAP)were noted at anesthesia induction(T0),before entering the endoscope(T1),5 min after anesthesia induction(T2),and awakening(T3).Gastrointestinal endoscopy time,awakening time,recovery room stay time,total propofol consumption,and adverse reactions were also documented.Results MBG scores in both groups significantly increased before leaving the recovery room compared to 30 min before the examination,the observation group had lower MBG scores before leaving the recovery room in comparison with the control group,there were statistically significant(P<0.05).From T1 to T3,MAP,SpO2,HR were higher in the observation group than those in the control group,there were statistically significant(P<0.05).The observation group had shorter awakening time and recovery room stay time,there were statistically significant(P<0.05).The observation group had lower total propofol consumption,there was statistically significant(P<0.05).The observation group also exhibited a lower incidence of hypotension,hypoxemia,and injection pain,there were statistically significant(P<0.05),with no statistically significant difference in the incidence of other adverse reactions(P>0.05).Conclusion Etomidate-propofol combination anesthesia can reduce postoperative MBG scores in painless gastrointestinal endoscopy,contributing to a decreased risk of potential propofol addiction and abuse.Additionally,it stabilizes circulatory and respiratory functions,reduces adverse reactions rate,and shortens awakening time and recovery room stay time.Its application is worthy of further promotion.
3.Engineering and application of Komagataella phaffii as a cell factory.
Yufei LIU ; Ying CAO ; Liye CHANG ; Conghui SHAN ; Kun XU
Chinese Journal of Biotechnology 2023;39(11):4376-4396
Nowadays, engineered Komagataella phaffii plays an important role in the biosynthesis of small molecule metabolites and protein products, showing great potential and value in industrial productions. With the development and application of new editing tools such as CRISPR/Cas9, it has become possible to engineer K. phaffii into a cell factory with high polygenic efficiency. Here, the genetic manipulation techniques and objectives for engineering K. phaffii are first summarized. Secondly, the applications of engineered K. phaffii as a cell factory are introduced. Meanwhile, the advantages as well as disadvantages of using engineered K. phaffii as a cell factory are discussed and future engineering directions are prospected. This review aims to provide a reference for further engineering K. phaffii cell factory, which is supposed to facilitate its application in bioindustry.
Saccharomycetales/genetics*
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Genetic Techniques
4.Study on release and antioxidant activity of quercetin after loaded by hot alkali hydrolysis modified UiO-66 material
Rui-miao CHANG ; Yan-yang ZHANG ; An-juan KANG ; Guang-bin ZHANG ; Yan-ping YU ; Jun-zhao REN ; An-jia CHEN ; Yong LI
Acta Pharmaceutica Sinica 2023;58(9):2802-2810
UiO-66 (University of Oslo 66) is a kind of promising material that can improve the release and bioavailability of poorly water-soluble bioactive compounds of traditional Chinese medicine. However, the loading of quercetin in raw UiO-66 was not ideal. In this study, UiO-66-BH (UiO-66-blend-heating) was obtained by heating UiO-66 and KOH solution following blended them. UiO-66-BH maintained the outline of octahedral structure of UiO-66 but with obvious rough and uneven pores on the surface. UiO-66-BH had good adsorption of quercetin with saturation adsorption was 138.92 mg·g-1, the adsorption process belonged to single molecular layer adsorption and was controlled by chemisorption. UiO-66-BH can control the release of quercetin in simulated gastrointestinal fluid, and the drug concentration was significantly higher than that of free quercetin after long-term release (36%

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