Cardiotrophin-1 (CT-1) activates a distinct form of cardiac muscle cell hypertrophy in which the sarcomeric units are assembled in series. The aim of the study was to determine the expres- sion pattern of sarcomeric...Cardiotrophin-1 (CT-1) activates a distinct form of cardiac muscle cell hypertrophy in which the sarcomeric units are assembled in series. The aim of the study was to determine the expres- sion pattern of sarcomeric contractile protein α-actin, specialized eytoskeletal protein α-actinin and mitochondrial uncoupling protein-2 (UCP2) in myocardial remodeling induced by chronic exposure to CT-1. Kunming mice were intraperitoneally injected with carboxy-terminal polypeptide (CP) of CT-1 (CT-1-CP, 500 μg·kg-1·day^-1) for 1, 2, 3 and 4 week (s), respectively (4 groups obtained according to the injection time, n=10 each, with 5 males and 5 females in each group), Those injected with physiological saline for 4 weeks served as controls (n=10, with 5 males and 5 females). The heart tissues of mice were harvested at 1, 2, 3 or 4 week (s). Immunohistochemistry (IHC) and Western blotting (WB) were used to detect the distribution and expression of sarcomeric α-actin, α-aetinin and mitoehondrial UCP2 in myocardial tissues. IHC showed that α-actin was mainly distributed around the nuclei of cardiomyo- cytes, α-actinin concentrated around the striae and UCP2 scattered rather evenly in the plasma. The ex- pression of α-actin was slightly greater than that of α-actinin and UCP2 in the control group (IHC: χ^2=6.125; WB: F=0.249, P〉0.05) and it gradually decreased after exposure to CT-1-CP. There was no significant difference in the expression of α-actin between the control group and the CT-1-CP-treated groups (χ^2=7.386, P〉0.05). But Western blotting revealed significant difference in the expression of α-actin between the control group and the 4-week CT-1-CP-treated group (F=2.912; q=4.203, P〈0.05). Moreover, it was found that the expression of α-actinin increased stepwise with the exposure time in CT-1-CP-treated groups and differed significantly between CT-1-CP-treated groups and the control group (ICH: χ^2=21.977; WB: F=50.388; P〈0.01). The expression of UCP2 was initially increased (WB: control group vs. 1- or 2-week group, q values: 5.603 and 9.995, respectively, P〈0.01) and then de- creased (WB: control group vs. 3-week group, q=4.742, P〈0.01; control group vs. 4-week group, q=0.558, P〉0.05). It was suggested that long-term exposure to CT-1-CP could lead to the alteration in the expression of sarcomeric α-actin, α-actinin and mitochonclrial UCP2. The different expressions of sarcomeric structure proteins and mitochondrial UCP2 may be involved in myocardial remodeling.展开更多
Objectives: To investigate the mechanism of Liuwei Dihuang Pill (六味地黄丸, LDP) in treating postmenopausal osteoporosis (PMOP) with Shen (Kidney) yin deficiency. Methods: In this study, 205 cases of PMOP wer...Objectives: To investigate the mechanism of Liuwei Dihuang Pill (六味地黄丸, LDP) in treating postmenopausal osteoporosis (PMOP) with Shen (Kidney) yin deficiency. Methods: In this study, 205 cases of PMOP were divided into the PMOP Shen-yin deficiency group (Group A), PMOP Shen-yang deficiency group (Group B), PMOP without Shen deficiency group (Group C), and control group (Group N). Real-time polymerase chain reaction (RT-PCR) and Western blot techniques were used to observe the effects of LDP treatment on the cardiotrophin-like cytokine factor 1 (CLCF1), ankyrin repeat and SOCS box containing 1 (ASB1), and proldneticin 2 (PROK2) genes and the Janus kinase/signal transducer and activator of transcription (JAK/STAT) signaling pathway. Results: The mRNA (P〈0.05) and protein (P〈0.01) expression levels of the CLCF1 gone in Group A were significantly lower than the corresponding levels in Group N. After LDP treatment for 3 months, the mRNA expression levels of the CLCF1 gone were obviously up-regulated (P〈0.01). After 6-month treatment, the expression levels of CLCF1 mRNA and protein were significantly up-regulated (both P〈0.01), and the average bone density of the top femur had significantly increased (P〈0.05). In vitro, CLCF1 overexpression resulted in a significant increase in the total protein and phosphorylated protein levels of JAK2 and STAT3. Conclusions: The CLCF1 gone is an important gone associated with PMOP Shen-yin deficiency and the therapeutic effects of LDP may be mediated by up-regulation of CLCF1 gone expression and activation of the JAK/STAT signaling pathway.展开更多
Background In addition to elevated concentrations of cytokines, patients with congestive endothelial dysfunction and increased plasma concentrations of adhesion molecules heart failure (CHF) show ke intercellular ad...Background In addition to elevated concentrations of cytokines, patients with congestive endothelial dysfunction and increased plasma concentrations of adhesion molecules heart failure (CHF) show ke intercellular adhesion molecule-1 (ICAM-1). Furthermore, the concentration of cardiotrophin-1 (CT-1) - a cytokine of the interleukin-6 superfamily - is increased in CHF. We tested the hypothesis whether CT-1 is able to induce ICAM-1 in human umbilical vein endothelial cells (HUVEC). Furthermore we examined the signalling mechanisms of CT-1 mediated ICAM-1 expression. Methods Confluent layers of HUVEC were incubated with increasing concentrations of CT-1 (5 to 100 ng/ml) for different periods. ICAM-1 mRNA was determined by real-time polymerase chain reaction (PCR) and ICAM-1 surface expression by fluorescence-activated cell sorter (FACS) analysis and soluble ICAM-1 (slCAM-1) in the culture supernatant by enzyme linked immunosorbent assay (ELISA). To clarify the signalling pathway of CT-1 induced ICAM-1 expression we used various inhibitors of possible signal transducing molecules, electromobility shift assay (EMSA) and Western blot analysis. Results CT-1 induced ICAM-1 mRNA (1.8±0.8 fold increase compared to unstimulated cells after 6 hours) and protein (1.4±0.2 fold increase compared to unstimulated cells after 48 hours) in HUVEC in a time- and concentration-dependent manner. EMSA experiments show that CT-1 causes nuclear factor (NF) κB activation. Because parthenolide could inhibit CT-1 induced ICAM-1 expression NFκB activation is required in this pathway. CT-1 did not activate extracellular signal regulated kinases (ERK), c-Jun N-terminal kinase (JNK) and p38. Conclusion CT-1 is able to induce ICAM-1 in endothelial cells by NFκB activation. These results may explain in part elevated ICAM-1 concentrations in patients with CHF and endothelial dysfunction.展开更多
目的观察心脏营养素-1(CT-1)是否能促进经诱导分化剂5-氮杂胞苷(5-aza)诱导的骨髓间充质干细胞(BMMSCs)分化为心肌样细胞,并研究其相关机制。方法自成年大鼠骨髓中分离BMMSCs,分别以普通培养基(A组)、加入含CT-1的培养基(B组)培养、经5-...目的观察心脏营养素-1(CT-1)是否能促进经诱导分化剂5-氮杂胞苷(5-aza)诱导的骨髓间充质干细胞(BMMSCs)分化为心肌样细胞,并研究其相关机制。方法自成年大鼠骨髓中分离BMMSCs,分别以普通培养基(A组)、加入含CT-1的培养基(B组)培养、经5-aza诱导后加入普通培养基(C组)及5-aza加入含CT-1的培养基(D组)培养。观察细胞形态的改变,并通过免疫组化分析分化后细胞表达心脏特异性肌钙蛋白T(cTnT)的情况。电镜观察分化后细胞的超微结构及实时荧光定量检测α-actin、β-myosin heavy chain(β-MHC)、Nkx2.5、GATA4基因表达。结果C、D组的BMMSCs在培养4周后均形成心肌样细胞形态,并且均表达cTnT;D组BMMSCs分化的心肌样细胞形成了肌管样结构;D组α-actin、β-MHC、Nkx2.5、GATA4基因表达明显高于C组。结论CT-1可能通过对GATA4、Nkx2.5基因表达的调控而促进5-aza诱导的BMMSCs分化为心肌样细胞。展开更多
文摘Cardiotrophin-1 (CT-1) activates a distinct form of cardiac muscle cell hypertrophy in which the sarcomeric units are assembled in series. The aim of the study was to determine the expres- sion pattern of sarcomeric contractile protein α-actin, specialized eytoskeletal protein α-actinin and mitochondrial uncoupling protein-2 (UCP2) in myocardial remodeling induced by chronic exposure to CT-1. Kunming mice were intraperitoneally injected with carboxy-terminal polypeptide (CP) of CT-1 (CT-1-CP, 500 μg·kg-1·day^-1) for 1, 2, 3 and 4 week (s), respectively (4 groups obtained according to the injection time, n=10 each, with 5 males and 5 females in each group), Those injected with physiological saline for 4 weeks served as controls (n=10, with 5 males and 5 females). The heart tissues of mice were harvested at 1, 2, 3 or 4 week (s). Immunohistochemistry (IHC) and Western blotting (WB) were used to detect the distribution and expression of sarcomeric α-actin, α-aetinin and mitoehondrial UCP2 in myocardial tissues. IHC showed that α-actin was mainly distributed around the nuclei of cardiomyo- cytes, α-actinin concentrated around the striae and UCP2 scattered rather evenly in the plasma. The ex- pression of α-actin was slightly greater than that of α-actinin and UCP2 in the control group (IHC: χ^2=6.125; WB: F=0.249, P〉0.05) and it gradually decreased after exposure to CT-1-CP. There was no significant difference in the expression of α-actin between the control group and the CT-1-CP-treated groups (χ^2=7.386, P〉0.05). But Western blotting revealed significant difference in the expression of α-actin between the control group and the 4-week CT-1-CP-treated group (F=2.912; q=4.203, P〈0.05). Moreover, it was found that the expression of α-actinin increased stepwise with the exposure time in CT-1-CP-treated groups and differed significantly between CT-1-CP-treated groups and the control group (ICH: χ^2=21.977; WB: F=50.388; P〈0.01). The expression of UCP2 was initially increased (WB: control group vs. 1- or 2-week group, q values: 5.603 and 9.995, respectively, P〈0.01) and then de- creased (WB: control group vs. 3-week group, q=4.742, P〈0.01; control group vs. 4-week group, q=0.558, P〉0.05). It was suggested that long-term exposure to CT-1-CP could lead to the alteration in the expression of sarcomeric α-actin, α-actinin and mitochonclrial UCP2. The different expressions of sarcomeric structure proteins and mitochondrial UCP2 may be involved in myocardial remodeling.
基金Supported by National Natural Science Foundation of China(Nos.81173280,81302995,81403420)Fujian Medical Innovation project(No.2011-CX-30)+1 种基金Science and Technology Department of Fujian Province autonomous non-profit research institutes topics project(No.2011R1038-5)Fujian Academy of Traditional Chinese autonomous topics Project(No.2012fjzyyk-5)
文摘Objectives: To investigate the mechanism of Liuwei Dihuang Pill (六味地黄丸, LDP) in treating postmenopausal osteoporosis (PMOP) with Shen (Kidney) yin deficiency. Methods: In this study, 205 cases of PMOP were divided into the PMOP Shen-yin deficiency group (Group A), PMOP Shen-yang deficiency group (Group B), PMOP without Shen deficiency group (Group C), and control group (Group N). Real-time polymerase chain reaction (RT-PCR) and Western blot techniques were used to observe the effects of LDP treatment on the cardiotrophin-like cytokine factor 1 (CLCF1), ankyrin repeat and SOCS box containing 1 (ASB1), and proldneticin 2 (PROK2) genes and the Janus kinase/signal transducer and activator of transcription (JAK/STAT) signaling pathway. Results: The mRNA (P〈0.05) and protein (P〈0.01) expression levels of the CLCF1 gone in Group A were significantly lower than the corresponding levels in Group N. After LDP treatment for 3 months, the mRNA expression levels of the CLCF1 gone were obviously up-regulated (P〈0.01). After 6-month treatment, the expression levels of CLCF1 mRNA and protein were significantly up-regulated (both P〈0.01), and the average bone density of the top femur had significantly increased (P〈0.05). In vitro, CLCF1 overexpression resulted in a significant increase in the total protein and phosphorylated protein levels of JAK2 and STAT3. Conclusions: The CLCF1 gone is an important gone associated with PMOP Shen-yin deficiency and the therapeutic effects of LDP may be mediated by up-regulation of CLCF1 gone expression and activation of the JAK/STAT signaling pathway.
文摘Background In addition to elevated concentrations of cytokines, patients with congestive endothelial dysfunction and increased plasma concentrations of adhesion molecules heart failure (CHF) show ke intercellular adhesion molecule-1 (ICAM-1). Furthermore, the concentration of cardiotrophin-1 (CT-1) - a cytokine of the interleukin-6 superfamily - is increased in CHF. We tested the hypothesis whether CT-1 is able to induce ICAM-1 in human umbilical vein endothelial cells (HUVEC). Furthermore we examined the signalling mechanisms of CT-1 mediated ICAM-1 expression. Methods Confluent layers of HUVEC were incubated with increasing concentrations of CT-1 (5 to 100 ng/ml) for different periods. ICAM-1 mRNA was determined by real-time polymerase chain reaction (PCR) and ICAM-1 surface expression by fluorescence-activated cell sorter (FACS) analysis and soluble ICAM-1 (slCAM-1) in the culture supernatant by enzyme linked immunosorbent assay (ELISA). To clarify the signalling pathway of CT-1 induced ICAM-1 expression we used various inhibitors of possible signal transducing molecules, electromobility shift assay (EMSA) and Western blot analysis. Results CT-1 induced ICAM-1 mRNA (1.8±0.8 fold increase compared to unstimulated cells after 6 hours) and protein (1.4±0.2 fold increase compared to unstimulated cells after 48 hours) in HUVEC in a time- and concentration-dependent manner. EMSA experiments show that CT-1 causes nuclear factor (NF) κB activation. Because parthenolide could inhibit CT-1 induced ICAM-1 expression NFκB activation is required in this pathway. CT-1 did not activate extracellular signal regulated kinases (ERK), c-Jun N-terminal kinase (JNK) and p38. Conclusion CT-1 is able to induce ICAM-1 in endothelial cells by NFκB activation. These results may explain in part elevated ICAM-1 concentrations in patients with CHF and endothelial dysfunction.
文摘目的观察心脏营养素-1(CT-1)是否能促进经诱导分化剂5-氮杂胞苷(5-aza)诱导的骨髓间充质干细胞(BMMSCs)分化为心肌样细胞,并研究其相关机制。方法自成年大鼠骨髓中分离BMMSCs,分别以普通培养基(A组)、加入含CT-1的培养基(B组)培养、经5-aza诱导后加入普通培养基(C组)及5-aza加入含CT-1的培养基(D组)培养。观察细胞形态的改变,并通过免疫组化分析分化后细胞表达心脏特异性肌钙蛋白T(cTnT)的情况。电镜观察分化后细胞的超微结构及实时荧光定量检测α-actin、β-myosin heavy chain(β-MHC)、Nkx2.5、GATA4基因表达。结果C、D组的BMMSCs在培养4周后均形成心肌样细胞形态,并且均表达cTnT;D组BMMSCs分化的心肌样细胞形成了肌管样结构;D组α-actin、β-MHC、Nkx2.5、GATA4基因表达明显高于C组。结论CT-1可能通过对GATA4、Nkx2.5基因表达的调控而促进5-aza诱导的BMMSCs分化为心肌样细胞。