AIM To establish a model to enrich and characterize stemlike cells from murine normal liver and hepatocellular carcinoma(HCC) cell lines and to further investigate stem-like cell association with epithelial-to-mesench...AIM To establish a model to enrich and characterize stemlike cells from murine normal liver and hepatocellular carcinoma(HCC) cell lines and to further investigate stem-like cell association with epithelial-to-mesenchymal transition(EMT).METHODS In this study,we utilized a stem cell conditioned serumfree medium to enrich stem-like cells from mouse HCC and normal liver cell lines,Hepa 1-6 and AML12,respectively.We isolated the 3-dimensional spheres and assessed their stemness characteristics by evaluating theRNA levels of stemness genes and a cell surface stem cell marker by quantitative reverse transcriptase-PCR(q RTPCR).Next,we examined the relationship between stem cells and EMT using q RT-PCR.RESULTS Three-dimensional spheres were enriched by culturing murine HCC and normal hepatocyte cell lines in stem cell conditioned serum-free medium supplemented with epidermal growth factor,basic fibroblast growth factor and heparin sulfate.The 3-dimensional spheres had enhanced stemness markers such as Klf4 and Bmi1 and hepatic cancer stem cell(CSC) marker Cd44 compared to parental cells grown as adherent cultures.We report that epithelial markers E-cadherin and ZO-1 were downregulated,while mesenchymal markers Vimentin and Fibronectin were upregulated in 3-dimensional spheres.The 3-dimensional spheres also exhibited changes in expression of Snai,Zeb and Twist family of EMT transcription factors.CONCLUSION Our novel method successfully enriched stem-like cells which possessed an EMT phenotype.The isolation and characterization of murine hepatic CSCs could establish a precise target for the development of more effective therapies for HCC.展开更多
Background:Oxidative stress is one of the key elements in the progression of non-alcoholic fatty liver disease(NAFLD),and Yiqi Tongluo capsule(YTC)have a variety of physiological activities which include antioxidant.T...Background:Oxidative stress is one of the key elements in the progression of non-alcoholic fatty liver disease(NAFLD),and Yiqi Tongluo capsule(YTC)have a variety of physiological activities which include antioxidant.The purpose of this investigation was to discover the potential mechanisms of YTC ameliorates NAFLD.Methods:In this investigation,a high-fat diet(HFD)was adopted to establish a NAFLD mouse model.Liver samples were stained for oil red O and hematoxylin and eosin staining.The levels of total cholesterol(TC),triglyceride(TG),malondialdehyde(MDA),and superoxide dismutase(SOD)in the tissues were also detected.Network pharmacology was analyzed to filter out the key ingredients and targets of effect of YTC for the therapy of NAFLD.Subsequently,free fatty acids(FFA)was applied to induce Aml12 cells for in vitro experiments,and the cell samples were stained with oil red O and assayed for TC,TG,MDA,and SOD contents.At last,the Western blot technique was used to illuminate the pathway by which YTC plays a protective role against NAFLD.Results:Histopathological results demonstrated that YTC ameliorated tissue damage in the HFD-induced mouse model.At the same time,it also reduced the contents of TC,TG,MDA and increased the expression of SOD in the liver tissue of NAFLD mouse model.All of these findings demonstrate that YTC can play a role in the treatment of NAFLD by ameliorating oxidative stress.Network analysis of YTC ameliorates NAFLD mainly by modulating the PI3K-Akt signaling pathway.Follow-up in vitro experiments revealed that FFA caused lipid accumulation in Aml12 cells,which was dramatically reduced by YTC.Meanwhile,YTC could remarkably reduce the FFA-induced elevation of TC,TG,and MDA contents,and reverse the FFA-induced reduction of SOD contents.Western blot was verified for the PI3K-Akt signaling pathway.It was found that FFA could remarkably decrease the expression of p-PI3K,p-Akt,and p-GSK-3βproteins,which could be significantly increased after YTC treatment.Conclusions:The combination of network ana展开更多
基金Supported by The Gallipoli Medical Research Foundation,Australia,No.016092the Cyril Gilbert Foundation,Australia,No.017348
文摘AIM To establish a model to enrich and characterize stemlike cells from murine normal liver and hepatocellular carcinoma(HCC) cell lines and to further investigate stem-like cell association with epithelial-to-mesenchymal transition(EMT).METHODS In this study,we utilized a stem cell conditioned serumfree medium to enrich stem-like cells from mouse HCC and normal liver cell lines,Hepa 1-6 and AML12,respectively.We isolated the 3-dimensional spheres and assessed their stemness characteristics by evaluating theRNA levels of stemness genes and a cell surface stem cell marker by quantitative reverse transcriptase-PCR(q RTPCR).Next,we examined the relationship between stem cells and EMT using q RT-PCR.RESULTS Three-dimensional spheres were enriched by culturing murine HCC and normal hepatocyte cell lines in stem cell conditioned serum-free medium supplemented with epidermal growth factor,basic fibroblast growth factor and heparin sulfate.The 3-dimensional spheres had enhanced stemness markers such as Klf4 and Bmi1 and hepatic cancer stem cell(CSC) marker Cd44 compared to parental cells grown as adherent cultures.We report that epithelial markers E-cadherin and ZO-1 were downregulated,while mesenchymal markers Vimentin and Fibronectin were upregulated in 3-dimensional spheres.The 3-dimensional spheres also exhibited changes in expression of Snai,Zeb and Twist family of EMT transcription factors.CONCLUSION Our novel method successfully enriched stem-like cells which possessed an EMT phenotype.The isolation and characterization of murine hepatic CSCs could establish a precise target for the development of more effective therapies for HCC.
基金This work was supported by Science and Technology Program of Guangyuan city(grant number:23ZDYF0018)Sichuan Science and Technology Program(grant number:2020YFS0523)。
文摘Background:Oxidative stress is one of the key elements in the progression of non-alcoholic fatty liver disease(NAFLD),and Yiqi Tongluo capsule(YTC)have a variety of physiological activities which include antioxidant.The purpose of this investigation was to discover the potential mechanisms of YTC ameliorates NAFLD.Methods:In this investigation,a high-fat diet(HFD)was adopted to establish a NAFLD mouse model.Liver samples were stained for oil red O and hematoxylin and eosin staining.The levels of total cholesterol(TC),triglyceride(TG),malondialdehyde(MDA),and superoxide dismutase(SOD)in the tissues were also detected.Network pharmacology was analyzed to filter out the key ingredients and targets of effect of YTC for the therapy of NAFLD.Subsequently,free fatty acids(FFA)was applied to induce Aml12 cells for in vitro experiments,and the cell samples were stained with oil red O and assayed for TC,TG,MDA,and SOD contents.At last,the Western blot technique was used to illuminate the pathway by which YTC plays a protective role against NAFLD.Results:Histopathological results demonstrated that YTC ameliorated tissue damage in the HFD-induced mouse model.At the same time,it also reduced the contents of TC,TG,MDA and increased the expression of SOD in the liver tissue of NAFLD mouse model.All of these findings demonstrate that YTC can play a role in the treatment of NAFLD by ameliorating oxidative stress.Network analysis of YTC ameliorates NAFLD mainly by modulating the PI3K-Akt signaling pathway.Follow-up in vitro experiments revealed that FFA caused lipid accumulation in Aml12 cells,which was dramatically reduced by YTC.Meanwhile,YTC could remarkably reduce the FFA-induced elevation of TC,TG,and MDA contents,and reverse the FFA-induced reduction of SOD contents.Western blot was verified for the PI3K-Akt signaling pathway.It was found that FFA could remarkably decrease the expression of p-PI3K,p-Akt,and p-GSK-3βproteins,which could be significantly increased after YTC treatment.Conclusions:The combination of network ana