A new polymer [Zn2(cam)2(bpmp)]n 1 (H2cam = D-(+)-camphoric acid, bpmp = bis(4-pyridylmethyl)piperazine) was synthesized under hydrothermal conditions. The compound crystallizes in the monoclinic system, sp...A new polymer [Zn2(cam)2(bpmp)]n 1 (H2cam = D-(+)-camphoric acid, bpmp = bis(4-pyridylmethyl)piperazine) was synthesized under hydrothermal conditions. The compound crystallizes in the monoclinic system, space group P21/n with a = 12.305(9), b = 12.945(9), c = 13.619(10) A, β = 116.833(8)°, V= 1936(2)A3, Z = 4, Mr = 397.76, Dc= 1.365 Mg/m3,μ = 1.292 mm-1, F(000) = 832, the final R = 0.0578 and wR = 0.1678 for 2838 observed reflections with I 〉 2σ(I). The compound presents a three-dimensional (3D) network extended by homochiral 2D layer and bpmp ligands. From the topology point of view, the structure could be described as a 3D 6-connected mab net with (44.610.8) topology. In addition, infrared spectroscopy, elemental analyses, thermogravimetric analysis and powder X-ray diffraction properties of 1 are also investigated.展开更多
Background A number of studies suggest that the expression of heat shock protein 70 (HSP70) induced by heat stress are associated with protection against ischemia-reperfusion injury. But the protective effects may b...Background A number of studies suggest that the expression of heat shock protein 70 (HSP70) induced by heat stress are associated with protection against ischemia-reperfusion injury. But the protective effects may be contaminated by other factors in the same stress. This study was conducted to explore the protective role of HSP70 expression in acute myocardial anoxia/reoxygeneration (A/R) injury with a liposome-mediated gene transfer technique for the introduction of pCDNA HSP70 into the neonatal rat myocardial cells. In addition, heat shock stress cytoprotection was also investigated for comparison. Methods The cultured primary neonatal rat myocardiocytes with an acute myocardial A/R injury model and the HS-treated rat myocardiocyte model were used. Three-day cultured myocardiocytes were randomly divided into four groups (n=8): control group, A/R group, HS+A/R group and pCDNA HSP70 +A/R group. A liposome-coated HSP70 pCDNA plasmid was transfected into the primary neonatal rat myocardiocytes; HSP70 mRNA and its protein were confirmed by reverse transcriptase polymerase chain reaction (RT-PCR) and Western blotting. The cell viability was assayed by monotetrazolium (MTT) and the lactate dehydrogenase (LDH) and creatine phosphokinase (CPK) activity of cells during incubation and the changes in cells ultrastructure were examined. NF-κB activity in the primary neonatal rat myocardiocytes was measured with flow cytometry. Results Compared with viability in the A/R group ((35.4±6.9)%) the cell viability in the HS+A/R group ((72.8±11.6)%) and the pCDNA HSP70 + A/R group ((76.3±12.2)%) was improved significantly (P〈0.05). The activity of LDH and CPK was significantly elevated in the A/R group. However, in the HS+A/R group and pCDNA HSP70 +A/R group, significant decreases in activity were observed. The cell ultrastructure of the A/R group cells was abnormal, whereas nearly normal ultrastructure was observed in HS+A/R group and pCDNA HSP70+A/R group. HSP70 mRNA and protein were slightly expressed in the myocardiocytes of the A/R group. However, obvious overexpression was observed in the HS+A/R group and in the pCDNA HSP70+A/R group (P〈0.01). And there was a significant difference between the HS+A/R group and the pCDNA HSP70+A/R group in the expression of HSP70 mRNA and protein (P〈0.01). A high activity of NF-κB (5.76±0.64) was detected in the A/R group. But in the HS+A/R group there was a statistically significant decrease in the activity of N F-KB compared with the A/R group (3.11±0.52 vs 5.76±0.64, P〈0.01 ). The same statistically significant difference was also observed in the pCDNA HSP70 + A/R group and A/R group (2.83±0.49 vs 5.76±0.64, P〈0.01 ). Conclusions Overexpression of HSP70 alone by gene transfection leads to protection for cardiac myocyte against anoxia-reoxygeneration. These cardioprotective effects were related to the reduction in activation of NF-κB.展开更多
基金Supported by the National Natural Science Foundation of China(No.21076063)Foundation of Henan Educational Committee(No.13A150244)
文摘A new polymer [Zn2(cam)2(bpmp)]n 1 (H2cam = D-(+)-camphoric acid, bpmp = bis(4-pyridylmethyl)piperazine) was synthesized under hydrothermal conditions. The compound crystallizes in the monoclinic system, space group P21/n with a = 12.305(9), b = 12.945(9), c = 13.619(10) A, β = 116.833(8)°, V= 1936(2)A3, Z = 4, Mr = 397.76, Dc= 1.365 Mg/m3,μ = 1.292 mm-1, F(000) = 832, the final R = 0.0578 and wR = 0.1678 for 2838 observed reflections with I 〉 2σ(I). The compound presents a three-dimensional (3D) network extended by homochiral 2D layer and bpmp ligands. From the topology point of view, the structure could be described as a 3D 6-connected mab net with (44.610.8) topology. In addition, infrared spectroscopy, elemental analyses, thermogravimetric analysis and powder X-ray diffraction properties of 1 are also investigated.
文摘Background A number of studies suggest that the expression of heat shock protein 70 (HSP70) induced by heat stress are associated with protection against ischemia-reperfusion injury. But the protective effects may be contaminated by other factors in the same stress. This study was conducted to explore the protective role of HSP70 expression in acute myocardial anoxia/reoxygeneration (A/R) injury with a liposome-mediated gene transfer technique for the introduction of pCDNA HSP70 into the neonatal rat myocardial cells. In addition, heat shock stress cytoprotection was also investigated for comparison. Methods The cultured primary neonatal rat myocardiocytes with an acute myocardial A/R injury model and the HS-treated rat myocardiocyte model were used. Three-day cultured myocardiocytes were randomly divided into four groups (n=8): control group, A/R group, HS+A/R group and pCDNA HSP70 +A/R group. A liposome-coated HSP70 pCDNA plasmid was transfected into the primary neonatal rat myocardiocytes; HSP70 mRNA and its protein were confirmed by reverse transcriptase polymerase chain reaction (RT-PCR) and Western blotting. The cell viability was assayed by monotetrazolium (MTT) and the lactate dehydrogenase (LDH) and creatine phosphokinase (CPK) activity of cells during incubation and the changes in cells ultrastructure were examined. NF-κB activity in the primary neonatal rat myocardiocytes was measured with flow cytometry. Results Compared with viability in the A/R group ((35.4±6.9)%) the cell viability in the HS+A/R group ((72.8±11.6)%) and the pCDNA HSP70 + A/R group ((76.3±12.2)%) was improved significantly (P〈0.05). The activity of LDH and CPK was significantly elevated in the A/R group. However, in the HS+A/R group and pCDNA HSP70 +A/R group, significant decreases in activity were observed. The cell ultrastructure of the A/R group cells was abnormal, whereas nearly normal ultrastructure was observed in HS+A/R group and pCDNA HSP70+A/R group. HSP70 mRNA and protein were slightly expressed in the myocardiocytes of the A/R group. However, obvious overexpression was observed in the HS+A/R group and in the pCDNA HSP70+A/R group (P〈0.01). And there was a significant difference between the HS+A/R group and the pCDNA HSP70+A/R group in the expression of HSP70 mRNA and protein (P〈0.01). A high activity of NF-κB (5.76±0.64) was detected in the A/R group. But in the HS+A/R group there was a statistically significant decrease in the activity of N F-KB compared with the A/R group (3.11±0.52 vs 5.76±0.64, P〈0.01 ). The same statistically significant difference was also observed in the pCDNA HSP70 + A/R group and A/R group (2.83±0.49 vs 5.76±0.64, P〈0.01 ). Conclusions Overexpression of HSP70 alone by gene transfection leads to protection for cardiac myocyte against anoxia-reoxygeneration. These cardioprotective effects were related to the reduction in activation of NF-κB.