L-homocysteic acid (HCA) and other amino acids were conjugated to rat brain material (extracted rat brain protein) with glutaraldehyde to form HCA- and amino acids-brain material conjugates. The specificity of monoclo...L-homocysteic acid (HCA) and other amino acids were conjugated to rat brain material (extracted rat brain protein) with glutaraldehyde to form HCA- and amino acids-brain material conjugates. The specificity of monoclonal antibody (McAb) was tested on serial dilution test and absorption test on enzyme-linked immunosorbent assay (ELISA) using these conjugates as antigens instead of amino acids-BSA (bovine serum albumin) conjugates used previously. The characterized McAb was applied for immunohistochemical staining using PAP (peroxidase antiperoxidase) technique in combination with silver enhancement of diamino-benzene (DAB) products. The results indicated that McAb to L-HCA reacted with L-HCA-brain material conjugates, but not with other amino acids-brain material conjugates so far tested. McAb absorbed with L-HCA-brain material abolished or decreased immunoreactivity of L-HCA-brain material with McAb. The antibody selectively stained subpopulation of cells and processes in the hippocampus fixed with glutaradehyde. Absorption of McAb with L-HCA-brain material abolished immunohistochemical staining. These results suggested that McAb was specific for L-HCA-brain materials and could be used for imunohistocytochemistry. This would provide a new tool for immunohistochemical visualization and localization of L-HCA in the nervous system.展开更多
Summary: In the experimental study on the electrophysiology and functions of heart in the animal, the thorax should be opened to expose the heart, at the same time natural breathing is maintained instead of artificial...Summary: In the experimental study on the electrophysiology and functions of heart in the animal, the thorax should be opened to expose the heart, at the same time natural breathing is maintained instead of artificial breathing. The key procedure of this new method is to avoid injuring the pleural cavity, so pneumothorax can be prevented. By means of this new method some subject studies have been finished.展开更多
This study aimed to examine the functional role of micro RNA-20(miR-20) and its potential target, Kir6.1, in ischemic myocardiocytes. The expression of miR-20 was detected by real-time PCR. Myocardiocytes were stain...This study aimed to examine the functional role of micro RNA-20(miR-20) and its potential target, Kir6.1, in ischemic myocardiocytes. The expression of miR-20 was detected by real-time PCR. Myocardiocytes were stained with terminal deoxynucleotidyl transferase d UTP nick end labeling(TUNEL) reagent for apoptosis evaluation. Western blotting was used to detect the Kir6.1 protein in ischemic myocardiocytes transfected with miR-20 mimics or inhibitors. Luciferase reporter gene assay was performed to confirm the targeting effect of miR-20 on KCNJ8. The results showed that miR-20 was remarkably down-regulated, while the KATP subunit Kir6.1 was significantly up-regulated, during myocardial ischemia. The miR-20 overexpression promoted the apoptosis of ischemic myocardiocytes, but showed no such effect on normal cells. Under ischemic condition, myocardiocytes transfected with miR-20 mimics expressed less Kir6.1. On the contrary, inhibiting miR-20 increased the expression of Kir6.1 in the cells. Co-transfection of miR-20 mimics with the KCNJ8 3'-UTR plasmid into HEK293 cells consistently produced less luciferase activity than transfection of the plasmid alone. It was concluded that miR-20 may regulate myocardiac ischemia by targeting KATP subunit Kir6.1 to accelerate the cell apoptosis. Therefore miR-20 may serve as a therapeutic target for myocardial ischemic disease.展开更多
Thymosin β4(Tβ4) is a key factor in cardiac development, growth, disease, epicardial integrity, blood vessel formation and has cardio-protective properties. However, its role in murine embryonic stem cells(m ESCs...Thymosin β4(Tβ4) is a key factor in cardiac development, growth, disease, epicardial integrity, blood vessel formation and has cardio-protective properties. However, its role in murine embryonic stem cells(m ESCs) proliferation and cardiovascular differentiation remains unclear. Thus we aimed to elucidate the influence of Tβ4 on m ESCs. Target genes during m ESCs proliferation and differentiation were detected by real-time PCR or Western blotting, and patch clamp was applied to characterize the m ESCs-derived cardiomyocytes. It was found that Tβ4 decreased m ESCs proliferation in a partial dose-dependent manner and the expression of cell cycle regulatory genes c-myc, c-fos and c-jun. However, m ESCs self-renewal markers Oct4 and Nanog were elevated, indicating the maintenance of self-renewal ability in these m ESCs. Phosphorylation of STAT3 and Akt was inhibited by Tβ4 while the expression of RAS and phosphorylation of ERK were enhanced. No significant difference was found in BMP2/BMP4 or their downstream protein smad. Wnt3 and Wnt11 were remarkably decreased by Tβ4 with upregulation of Tcf3 and constant ?-catenin. Under m ESCs differentiation, Tβ4 treatment did not change the expression of cardiovascular cell markers α-MHC, PECAM, and α-SMA. Neither the electrophysiological properties of m ESCs-derived cardiomyocytes nor the hormonal regulation by Iso/Cch was affected by Tβ4. In conclusion, Tβ4 suppressed m ESCs proliferation by affecting the activity of STAT3, Akt, ERK and Wnt pathways. However, Tβ4 did not influence the in vitro cardiovascular differentiation.展开更多
基金supported by the National Natural Science Foundation of China(No.30670854,81100818)the Fundamental Research Funds for the Central Universities,Huazhong University of Science and Technology,China(No.01-09-510856,01-09-510812,01-09-510816,01-18-510038,01-04-510163)
文摘L-homocysteic acid (HCA) and other amino acids were conjugated to rat brain material (extracted rat brain protein) with glutaraldehyde to form HCA- and amino acids-brain material conjugates. The specificity of monoclonal antibody (McAb) was tested on serial dilution test and absorption test on enzyme-linked immunosorbent assay (ELISA) using these conjugates as antigens instead of amino acids-BSA (bovine serum albumin) conjugates used previously. The characterized McAb was applied for immunohistochemical staining using PAP (peroxidase antiperoxidase) technique in combination with silver enhancement of diamino-benzene (DAB) products. The results indicated that McAb to L-HCA reacted with L-HCA-brain material conjugates, but not with other amino acids-brain material conjugates so far tested. McAb absorbed with L-HCA-brain material abolished or decreased immunoreactivity of L-HCA-brain material with McAb. The antibody selectively stained subpopulation of cells and processes in the hippocampus fixed with glutaradehyde. Absorption of McAb with L-HCA-brain material abolished immunohistochemical staining. These results suggested that McAb was specific for L-HCA-brain materials and could be used for imunohistocytochemistry. This would provide a new tool for immunohistochemical visualization and localization of L-HCA in the nervous system.
文摘Summary: In the experimental study on the electrophysiology and functions of heart in the animal, the thorax should be opened to expose the heart, at the same time natural breathing is maintained instead of artificial breathing. The key procedure of this new method is to avoid injuring the pleural cavity, so pneumothorax can be prevented. By means of this new method some subject studies have been finished.
基金supported by the National Natural Science Foundation of China(No.30700262)
文摘This study aimed to examine the functional role of micro RNA-20(miR-20) and its potential target, Kir6.1, in ischemic myocardiocytes. The expression of miR-20 was detected by real-time PCR. Myocardiocytes were stained with terminal deoxynucleotidyl transferase d UTP nick end labeling(TUNEL) reagent for apoptosis evaluation. Western blotting was used to detect the Kir6.1 protein in ischemic myocardiocytes transfected with miR-20 mimics or inhibitors. Luciferase reporter gene assay was performed to confirm the targeting effect of miR-20 on KCNJ8. The results showed that miR-20 was remarkably down-regulated, while the KATP subunit Kir6.1 was significantly up-regulated, during myocardial ischemia. The miR-20 overexpression promoted the apoptosis of ischemic myocardiocytes, but showed no such effect on normal cells. Under ischemic condition, myocardiocytes transfected with miR-20 mimics expressed less Kir6.1. On the contrary, inhibiting miR-20 increased the expression of Kir6.1 in the cells. Co-transfection of miR-20 mimics with the KCNJ8 3'-UTR plasmid into HEK293 cells consistently produced less luciferase activity than transfection of the plasmid alone. It was concluded that miR-20 may regulate myocardiac ischemia by targeting KATP subunit Kir6.1 to accelerate the cell apoptosis. Therefore miR-20 may serve as a therapeutic target for myocardial ischemic disease.
基金supposed by grants from National Natural Science Foundation of China(No.81100818,No.31100828 and No.81070342)the Fundamental Research Funds for the Central Universities(HUST:No.2012TS036)
文摘Thymosin β4(Tβ4) is a key factor in cardiac development, growth, disease, epicardial integrity, blood vessel formation and has cardio-protective properties. However, its role in murine embryonic stem cells(m ESCs) proliferation and cardiovascular differentiation remains unclear. Thus we aimed to elucidate the influence of Tβ4 on m ESCs. Target genes during m ESCs proliferation and differentiation were detected by real-time PCR or Western blotting, and patch clamp was applied to characterize the m ESCs-derived cardiomyocytes. It was found that Tβ4 decreased m ESCs proliferation in a partial dose-dependent manner and the expression of cell cycle regulatory genes c-myc, c-fos and c-jun. However, m ESCs self-renewal markers Oct4 and Nanog were elevated, indicating the maintenance of self-renewal ability in these m ESCs. Phosphorylation of STAT3 and Akt was inhibited by Tβ4 while the expression of RAS and phosphorylation of ERK were enhanced. No significant difference was found in BMP2/BMP4 or their downstream protein smad. Wnt3 and Wnt11 were remarkably decreased by Tβ4 with upregulation of Tcf3 and constant ?-catenin. Under m ESCs differentiation, Tβ4 treatment did not change the expression of cardiovascular cell markers α-MHC, PECAM, and α-SMA. Neither the electrophysiological properties of m ESCs-derived cardiomyocytes nor the hormonal regulation by Iso/Cch was affected by Tβ4. In conclusion, Tβ4 suppressed m ESCs proliferation by affecting the activity of STAT3, Akt, ERK and Wnt pathways. However, Tβ4 did not influence the in vitro cardiovascular differentiation.