AIM: To explore the possibility of using the Noninvasive Micro-test Technique (NMT) to investigate the role of Transient Receptor Potential Canonical 1 (TRPC1) in regulating Ca^2+ influxes in HL-7702 cells, a no...AIM: To explore the possibility of using the Noninvasive Micro-test Technique (NMT) to investigate the role of Transient Receptor Potential Canonical 1 (TRPC1) in regulating Ca^2+ influxes in HL-7702 cells, a normal human liver cell line.METHODS: Net Ca^2+ fluxes were measured with NMT, a technology that can obtain dynamic information of specific/selective ionic/molecular activities on material surfaces, non-invasively. The expression levels of TRPCl were increased by liposomal transfection, whose effectiveness was evaluated by Western-blotting and single cell reverse transcription-polymerase chain reaction.RESULTS: Ca^2+ influxes could be elicited by adding 1 mmol/L CaCl2 to the test solution of HL-7702 cells. They were enhanced by addition of 20 μmol/L noradrenalin and inhibited by 100 μmol/L LaCl3 (a non-selective Ca^2+ channel blocker); 5 μmol/L nifedipine did not induce any change. Overexpression of TRPCl caused increased Ca^2+ influx. Five micromoles per liter nifedipine did not inhibit this elevation, whereas 100 μmol/L LaCI3 did.CONCLUSION: In HL-7702 cells, there is a type of TRPCl-dependent Ca^2+ channel, which could be detected v/a NMT and inhibited by La^3+.展开更多
In the present study,we investigated the mechanisms underlying the mediation of iron transport by Ltype Ca^2+ channels(LTCCs)in primary cultured ventral mesencephalon(VM)neurons from rats.We found that cotreatment wit...In the present study,we investigated the mechanisms underlying the mediation of iron transport by Ltype Ca^2+ channels(LTCCs)in primary cultured ventral mesencephalon(VM)neurons from rats.We found that cotreatment with 100 lmol/L FeSO4 and MPP^+(1-methyl-4-phenylpyridinium)significantly increased the production of intracellular reactive oxygen species,decreased the mitochondrial transmembrane potential and increased the caspase-3 activation compared to MPP^+ treatment alone.Co-treatment with 500 lmol/L CaCl2 further aggravated the FeSO4-induced neurotoxicity in MPP^+-treated VM neurons.Co-treatment with 10 lmol/L isradipine,an LTCC blocker,alleviated the neurotoxicity induced by co-application of FeSO4 and FeSO4/CaCl2.Further studies indicated that MPP^+treatment accelerated the iron influx into VM neurons.In addition,FeSO4 treatment significantly increased the intracellular Ca^2+ concentration.These effects were blocked by isradipine.These results suggest that elevated extracellular Ca^2+ aggravates ironinduced neurotoxicity.LTCCs mediate iron transport in dopaminergic neurons and this,in turn,results in elevated intracellular Ca^2+ and further aggravates iron-induced neurotoxicity.展开更多
The purpose of this study was to examine the relaxation effect of CY on the vascular smooth muscle (VSM) from rabbits. Experiments were carried out on isolated thoracic aorta of rabbits. CY (3 x 103 mM- 3 mM) coul...The purpose of this study was to examine the relaxation effect of CY on the vascular smooth muscle (VSM) from rabbits. Experiments were carried out on isolated thoracic aorta of rabbits. CY (3 x 103 mM- 3 mM) could relax the VSM preparations pre-contracted by adrenaline (AD), noradrenaline (NE), high-K^+ solution or BaCl2 with respective EC50 values of (0.3 1±0.11) mM, 0.19±0.03 mM, 0.20±0.04 mM and 0.25±0.04 mM. Moreover, CY (10-2 mM, 0.1 mM and 1 mM) inhibited norepinephrine (NE), CaCl2 and KCl-induced vasoconstriction in a concentration dependent manner. The phasic contraction produced by NE was concentration dependently attenuated with CY (10^-2 mM, 0.1 mM and 1 mM) in calcium-free medium, similar to that caused by verapamil. The present findings suggest that CY relaxed thoracic aortic rings by blocking voltage-dependent Ca^2+ channels. The inhibition of intracellular Ca^2+ release may be one of the main vasorelaxant mechanisms of CY.展开更多
Objective: This study aims to evaluate the vasodilatory effect of Chenopodium ambrosioides on the isolated rat aorta, and to explore its mechanism of action.Methods: The vasorelaxant effect and the mode of action of v...Objective: This study aims to evaluate the vasodilatory effect of Chenopodium ambrosioides on the isolated rat aorta, and to explore its mechanism of action.Methods: The vasorelaxant effect and the mode of action of various extracts from the leaves of C. ambrosioides were evaluated on thoracic aortic rings isolated from Wistar rats. In addition, ethyl acetate and methanol fractions were analyzed, using thin-layer chromatography and high-performance liquid chromatography techniques, for their polyphenolic content.Results: The various active extracts of C. ambrosioides at four concentrations(10^(-3), 10^(-2), 10^(-1) and 1 mg/mL) relaxed the contraction elicited by phenylephrine, in a concentration-dependent manner.This effect seems to be endothelium-dependent, since the vasodilatory effect was entirely absent in denuded aortic rings. The vasorelaxant effect of the methanol fraction(MF) of C. ambrosioides at 1 mg/mL was also inhibited by atropine and tetraethylammonium. This effect remained unchanged by Nx-nitro-L-arginine methyl ester hydrochloride and glibenclamide. The preliminary phytochemical analysis showed that the leaves of C. ambrosioides are rich in phenolic and flavonoid derivatives.Conclusion: These results suggest that the MF of C. ambrosioides produces an endothelium-dependent relaxation of the isolated rat aorta, which is thought to be mediated mainly through stimulation of the muscarinic receptors, and probably involving the opening of Ca^(2+)-activated potassium channels.展开更多
目的探讨平滑肌细胞外钙内流对正常膜电位和休克后期超极化膜电位状态的影响。方法制作失血性休克大鼠模型,分离血管平滑肌细胞(ASMCs),用DiBAC4(3)标记细胞膜电位,共聚焦显微镜观察Bay k 8644和TEA对正常对照组和休克组细胞膜电位的影...目的探讨平滑肌细胞外钙内流对正常膜电位和休克后期超极化膜电位状态的影响。方法制作失血性休克大鼠模型,分离血管平滑肌细胞(ASMCs),用DiBAC4(3)标记细胞膜电位,共聚焦显微镜观察Bay k 8644和TEA对正常对照组和休克组细胞膜电位的影响。结果 Bay k 8644使正常对照组的ASMCs膜电位超极化,而Bay k 8644对休克组 ASMCs膜电位的作用是去极化,但这种作用可被TEA逆转。结论在正常情况下外钙大量内流会激活BKCa使细胞膜电位超极化,而在休克后期外钙内流会直接导致ASMCs膜电位的去极化,对于休克后期低反应性的治疗有重要意义。展开更多
基金Supported by The National Natural Science Foundation of China,No.30270532 and No.30670774Tsinghua-Yue-Yuen Medical Science Foundation,No.20240000531 and No.20240000547
文摘AIM: To explore the possibility of using the Noninvasive Micro-test Technique (NMT) to investigate the role of Transient Receptor Potential Canonical 1 (TRPC1) in regulating Ca^2+ influxes in HL-7702 cells, a normal human liver cell line.METHODS: Net Ca^2+ fluxes were measured with NMT, a technology that can obtain dynamic information of specific/selective ionic/molecular activities on material surfaces, non-invasively. The expression levels of TRPCl were increased by liposomal transfection, whose effectiveness was evaluated by Western-blotting and single cell reverse transcription-polymerase chain reaction.RESULTS: Ca^2+ influxes could be elicited by adding 1 mmol/L CaCl2 to the test solution of HL-7702 cells. They were enhanced by addition of 20 μmol/L noradrenalin and inhibited by 100 μmol/L LaCl3 (a non-selective Ca^2+ channel blocker); 5 μmol/L nifedipine did not induce any change. Overexpression of TRPCl caused increased Ca^2+ influx. Five micromoles per liter nifedipine did not inhibit this elevation, whereas 100 μmol/L LaCI3 did.CONCLUSION: In HL-7702 cells, there is a type of TRPCl-dependent Ca^2+ channel, which could be detected v/a NMT and inhibited by La^3+.
基金supported by grants from the National Natural Science Foundation of China(81671249)the Natural Science Foundation of Shandong Province,China(ZR2016CM04).
文摘In the present study,we investigated the mechanisms underlying the mediation of iron transport by Ltype Ca^2+ channels(LTCCs)in primary cultured ventral mesencephalon(VM)neurons from rats.We found that cotreatment with 100 lmol/L FeSO4 and MPP^+(1-methyl-4-phenylpyridinium)significantly increased the production of intracellular reactive oxygen species,decreased the mitochondrial transmembrane potential and increased the caspase-3 activation compared to MPP^+ treatment alone.Co-treatment with 500 lmol/L CaCl2 further aggravated the FeSO4-induced neurotoxicity in MPP^+-treated VM neurons.Co-treatment with 10 lmol/L isradipine,an LTCC blocker,alleviated the neurotoxicity induced by co-application of FeSO4 and FeSO4/CaCl2.Further studies indicated that MPP^+treatment accelerated the iron influx into VM neurons.In addition,FeSO4 treatment significantly increased the intracellular Ca^2+ concentration.These effects were blocked by isradipine.These results suggest that elevated extracellular Ca^2+ aggravates ironinduced neurotoxicity.LTCCs mediate iron transport in dopaminergic neurons and this,in turn,results in elevated intracellular Ca^2+ and further aggravates iron-induced neurotoxicity.
文摘The purpose of this study was to examine the relaxation effect of CY on the vascular smooth muscle (VSM) from rabbits. Experiments were carried out on isolated thoracic aorta of rabbits. CY (3 x 103 mM- 3 mM) could relax the VSM preparations pre-contracted by adrenaline (AD), noradrenaline (NE), high-K^+ solution or BaCl2 with respective EC50 values of (0.3 1±0.11) mM, 0.19±0.03 mM, 0.20±0.04 mM and 0.25±0.04 mM. Moreover, CY (10-2 mM, 0.1 mM and 1 mM) inhibited norepinephrine (NE), CaCl2 and KCl-induced vasoconstriction in a concentration dependent manner. The phasic contraction produced by NE was concentration dependently attenuated with CY (10^-2 mM, 0.1 mM and 1 mM) in calcium-free medium, similar to that caused by verapamil. The present findings suggest that CY relaxed thoracic aortic rings by blocking voltage-dependent Ca^2+ channels. The inhibition of intracellular Ca^2+ release may be one of the main vasorelaxant mechanisms of CY.
基金sponsored by funding from CNRST, Morocco (Project URAC-40)from Belgium (Program 3, CUD Project)
文摘Objective: This study aims to evaluate the vasodilatory effect of Chenopodium ambrosioides on the isolated rat aorta, and to explore its mechanism of action.Methods: The vasorelaxant effect and the mode of action of various extracts from the leaves of C. ambrosioides were evaluated on thoracic aortic rings isolated from Wistar rats. In addition, ethyl acetate and methanol fractions were analyzed, using thin-layer chromatography and high-performance liquid chromatography techniques, for their polyphenolic content.Results: The various active extracts of C. ambrosioides at four concentrations(10^(-3), 10^(-2), 10^(-1) and 1 mg/mL) relaxed the contraction elicited by phenylephrine, in a concentration-dependent manner.This effect seems to be endothelium-dependent, since the vasodilatory effect was entirely absent in denuded aortic rings. The vasorelaxant effect of the methanol fraction(MF) of C. ambrosioides at 1 mg/mL was also inhibited by atropine and tetraethylammonium. This effect remained unchanged by Nx-nitro-L-arginine methyl ester hydrochloride and glibenclamide. The preliminary phytochemical analysis showed that the leaves of C. ambrosioides are rich in phenolic and flavonoid derivatives.Conclusion: These results suggest that the MF of C. ambrosioides produces an endothelium-dependent relaxation of the isolated rat aorta, which is thought to be mediated mainly through stimulation of the muscarinic receptors, and probably involving the opening of Ca^(2+)-activated potassium channels.
基金This work was supported by the National Natural Science Foundation of China (No. 39370270)the Natural Science Foundation of Educational Department of Sichuan Province (No. 2003A058).
文摘目的探讨平滑肌细胞外钙内流对正常膜电位和休克后期超极化膜电位状态的影响。方法制作失血性休克大鼠模型,分离血管平滑肌细胞(ASMCs),用DiBAC4(3)标记细胞膜电位,共聚焦显微镜观察Bay k 8644和TEA对正常对照组和休克组细胞膜电位的影响。结果 Bay k 8644使正常对照组的ASMCs膜电位超极化,而Bay k 8644对休克组 ASMCs膜电位的作用是去极化,但这种作用可被TEA逆转。结论在正常情况下外钙大量内流会激活BKCa使细胞膜电位超极化,而在休克后期外钙内流会直接导致ASMCs膜电位的去极化,对于休克后期低反应性的治疗有重要意义。