• 제목/요약/키워드: BAPTA

검색결과 59건 처리시간 0.022초

칼슘 저해제가 전침자극에 의한 척수 N-Methyl-D-Aspartate 수용체 인산화에 미치는 영향 (Effect of Intracellular Calcium Chelator on Phosphorylation of Spinal N-Methyl-D-Aspartate Receptor following Electroacupuncture Stimulation in Rats)

  • 정택근;조성우;강연경;장동호;이인선
    • 한방재활의학과학회지
    • /
    • 제20권1호
    • /
    • pp.27-36
    • /
    • 2010
  • 목 적 : 본 연구는 전침 자극에 의한 척수내 N-methyl-D-aspartate(NMDA) 수용체의 NR1 및 NR2B subunit 인산화에 미치는 세포내 칼슘 저해제 bis-(2-aminophenoxy)-ethane-N,N,N',N'-tetraaceticacid(BAPTA)의 영향을 조사하였다. 방 법 : 인체의 족삼리(足三里)(ST36)와 삼음교(三陰交)(SP6)에 해당하는 혈자리에 2 Hz전침 자극을 1.0mA 세기로 30분 동안 자극하였다. 결 과 : 전침 무통각을 측정한 결과 높은 농도의 BAPTA 복강내주사 처리군에서 저하가 관찰되었다. 전침 처치 후 60분 후 분리한 $L_{4-5}$ 척수 분절에서 C-fos 발현 신경세포 수는 BAPTA 처리에 의해 감소하는데 특히 고유핵에서 저하가 현저하였다. 평균 integrated optical density로 비교한 NR1과 NR2B subunit에 대한 면역조직화학적 발현을 보면 전침 자극은 정상군에 비해 얕은 층판에서 증가하였다. NR1과 NR2B subunit의 인산화형에 대한 발현을 보면 NR1 인산화형은 척수 배각 전 부위에서, NR2B 인산화형은 얕은 층판에서 증가하였으며 BAPTA 처리에 의해 NR1 인산화형은 얕은 층판과 목 부위에서 NR2B 인산화형은 얕은 층판에서 현저한 감소를 보였다. western blot로 살펴본 BAPTA 처리에 의한 NR1 및 NR2B 인산화형 변화는 면역조직화학적 방법과 유사한 결과를 보여 주었다. 결 론 : 전침 무통각은 세포내 칼슘에 의한 척수 내 NMDA 수용체의 인산화가 중요한 요인으로 작용할 가능성이 있다.

LPS 자극 RAW 264.7 세포에 있어서 칼슘의존성 ROS와 NO 생산 및 NF-${\kappa}B$ 활성에 대한 CLA의 억제효과 (Effect of trans-10, cis-12 Conjugated Linoleic Acid on Calcium-Dependent Reactive Oxygen Species and Nitric Oxide Production and Nuclear Factor-${\kappa}B$ Activation in Lipopolysaccharide-Stimulated RAW 264.7 Cells)

  • 최태원;강병택;강지훈;양만표
    • 한국임상수의학회지
    • /
    • 제32권2호
    • /
    • pp.135-140
    • /
    • 2015
  • 염증상태에서의 CLA의 효과와 작용기전을 알아보기 위해 LPS로 자극한 RAW 264.7 세포에 있어서 ROS와 NO생산 및 NF-${\kappa}B$ 활성에 대한 t10c12-CLA의 효과를 검토하였다. 또한 이러한 효과가 세포질 내 칼슘이온의 변화와 관련이 있는지도 알아보았다. LPS 자극으로 ROS 생산은 증가하였고 이러한 증가는 칼슘결합제인 BAPTA/AM에 의해 감소하였다. t10c12-CLA 또한 LPS 자극 RAW 264.7 세포의 ROS 생산 증가를 억제시켰으며 BAPTA/AM과 함께 처리시 더욱 억제되었다. NO의 생산과 NF-${\kappa}B$ p65 활성도 t10c12-CLA, BAPTA/AM, t10c12-CLA와 BAPTA/AM의 동시처리 모두에서 현저하게 억제되었다. 이상의 결과로부터 염증 조건에서 CLA는 과도한 ROS와 NO의 생산 및 NF-${\kappa}B$의 활성을 칼슘 의존적으로 억제하여 항염증 효과를 발휘하는 것으로 생각되었다.

[$Na^+-Ca^{2+}$ Exchange Curtails $Ca^{2+}$before Its Diffusion to Global $Ca^{2+}{_i}$ in the Rat Ventricular Myocyte

  • Ahn, Sung-Wan;Ko, Chang-Mann
    • The Korean Journal of Physiology and Pharmacology
    • /
    • 제9권2호
    • /
    • pp.95-101
    • /
    • 2005
  • In the heart, $Na^{+}-Ca^{2+}$ exchange (NCX) is the major $Ca^{2+}$ extrusion mechanism. NCX has been considered as a relaxation mechanism, as it reduces global $[Ca^{2+}]_i$ raised during activation. However, if NCX locates in the close proximity to the ryanodine receptor, then NCX would curtail $Ca^{2+}$ before its diffusion to global $Ca^{2+}_i$ This will result in a global $[Ca^{2+}]_i$ decrease especially during its ascending phase rather than descending phase. Therefore, NCX would decrease the myocardial contractility rather than inducing relaxation in the heart. This possibility was examined in this study by comparing NCX-induced extrusion of $Ca^{2+}$ after its release from SR in the presence and absence of global $Ca^{2+}_i$ transient in the isolated single rat ventricular myocytes by using patch-clamp technique in a whole-cell configuration. Global $Ca^{2+}_i$ transient was controlled by an internal dialysis with different concentrations of BAPTA added in the pipette. During stimulation with a ramp pulse from +100 mV to -100 mV for 200 ms, global $Ca^{2+}_i$ transient was suppressed only mildly, and completely at 1 mmol/L, and 10 mmol/L BAPTA, respectively. In these situations, ryanodine-sensitive inward NCX current was compared using $100{\mu}mol/L$ ryanodine, $Na^+$ depletion, 5 mmol/L $NaCl_2$ and $1{\mu}mol/L$ nifedipine. Surprisingly, the result showed that the ryanodine-sensitive inward NCX current was well preserved after 10 mmol/L BAPTA to 91 % of that obtained after 1 mmol/L BAPTA. From this result, it is concluded that most of the NCX-induced $Ca^{2+}$ extrusion occurs before the $Ca^{2+}$ diffuses to global $Ca^{2+})i$ in the rat ventricular myocyte.

6-Hydroxydopamine-induced Adaptive Increase in GSH Is Dependent on Reactive Oxygen Species and Ca2+ but not on Extracellular Signal-regulated Kinase in SK-N-SH Human Neuroblastoma Cells

  • JIN Da-Qing;Park Byung CHUL;KIM Jung-Ae
    • Biomolecules & Therapeutics
    • /
    • 제13권4호
    • /
    • pp.256-262
    • /
    • 2005
  • We examined the signaling molecules involved in the 6-hydroxydopamine (6-OHDA)-induced neuronal cell death and increase in cellular glutathione (GSH) level in SK-N-SH cells. The 6-OH-DA-induced cell death was significantly prevented by the pretreatment with N-acetylcysteine (NAC), a thiol antioxidant, and BAPTA, an intracellular $Ca^{2+}$ chelator. Although 6-OHDA induced ERK phosphorylation, the pretreatment with PD98059, an ERK inhibitor, did not block 6-OHDA-induced cell death. In addition, the 6-OHDA-induced activation of caspase-3, a key signal for apoptosis, was blocked by the pretreatment with NAC and BAPTA. While the level of reactive oxygen species (ROS) was significantly increased in the 6-OHDA-treated cells, the cellular GSH level was not altered for the first 6-hr exposure to 6-OHDA, but after then, the level was significantly increased, which was also blocked by the pretreatment with NAC and BAPTA, but not by PD98059. Depletion of GSH by pretreating the cells with DL-buthionine-(S,R)-sulfoximine (BSO), a glutathione synthesis inhibitor, rather significantly potentiated the 6-OHDA-induced death. In contrast to the pretreatment with NAC, 6-OHDA-induced cell death was not prevented by the post-treatment with NAC 30 min after 6-OHDA treatment. The results indicate that the GSH level which is increased adaptively by the 6-OHDA-induced ROS and intracellular $Ca^{2+}$ is not enough to overcome the death signal mediated through ROS-$Ca^{2+}$ -caspase pathway.

흰쥐 난자의 체외수정에 미치는 Calcium Chelator의 영향 (Effects of Calcium Chelator on in vitro Fertilization of Rat Oocyte)

  • 홍순갑;김해권;김성례;이영기;이준영
    • 한국발생생물학회지:발생과생식
    • /
    • 제3권1호
    • /
    • pp.21-28
    • /
    • 1999
  • 흰쥐 난자의 체외수정에 있어서 calcium chelator처리에 따른 피질반응 및 피질과립막의 형성 여부와 피질과립막의 전자현미경적 미세구조를 관찰하고, 수정율 및 단정자수정과 다정자수정 빈도에 미치는 영향을 조사하여 수정기간중 calcium의 역할을 조사하였다. Calcium chelator로는 BAPTA/AM을 사용하였으며, 난자의 미세구조와 피질과립막은 주사전자현미경으로 관찰하였다. 투명대가 제거된 난자의 체외수정 과정에서는 피질반응에 의해 형성된 피질과립막 (cortical granule envelope)이 관찰되었고, calcium chelator (1, 5, 10, $\mu$M BAPTA/AM) 처리후 투명대가 제거 된 난자의 체외수정 에서도 마찬가지로 피질과립막이 관찰되었다. 또한 체외 수정 후 시간의 경과에 따라 피질과립막은 좀 더 발달되는 양상을 나타내었다. 수정율은 calcium chelator 처리군 (59.8, 38.1, 37.0%)이 대조군 (60.6%)에 비해 감소했으나, 단정자수정은 calcium chelator 처리군 (45.0, 47.3, 50.9%)이 대조군 (37.5%)에 비해 증가하였다. 위의 결과들로부터 흰쥐에서 수정시 피질과립막이 형성된다는 것을 밝혔고, 피질반응에 extracellular calcium이 이용됨을 알 수 있다. 또한 난자내의 적정한 free calcium 함량이 수정에 중요한 요인으로 작용하는 것으로 사료된다.

  • PDF

Role of $Ca^{2+}$ in the Stimulation of Glucose Transport by Insulin in Adipocytes

  • Chang, Sung-Hoe;Jang, Yeon-Jin;Park, Kun-Koo;Kim, Ghi-Su;Ryu, Hee-Jeong;Park, Chun-Sik
    • The Korean Journal of Physiology and Pharmacology
    • /
    • 제3권3호
    • /
    • pp.357-364
    • /
    • 1999
  • We investigated the role of $Ca^{2+}$ and protein kinases/phosphatases in the stimulatory effect of insulin on glucose transport. In isolated rat adipocytes, the simple omission of $CaCl_2$ from the incubation medium significantly reduced, but did not abolish, insulin-stimulated 2-deoxy glucose (2-DG) uptake. Pre-loading adipocytes with intracellular $Ca^{2+}$ chelator, 5,5'-dimethyl bis (o-aminophenoxy)ethane-N,N,N'N' tetraacetic acetoxymethyl ester (5,5'-dimethyl BAPTA/AM) completely blocked the stimulation. Insulin raised intracellular $Ca^{2+}$ concentration $([Ca^{2+}]_i)$ about 1.7 times the basal level of $72{\pm}5$ nM, and 5,5'-dimethyl BAPTA/AM kept it constant at the basal level. This correlation between insulin-induced increases in 2-DG uptake and $[Ca^{2+}]_i$ indicates that the elevation of $[Ca^{2+}]_i$ may be prerequisite for the stimulation of glucose transport. Studies with inhibitors (ML-9, KN-62, cyclosporin A) of $Ca^{2+}-calmodulin$ dependent protein kinases/phosphatases also indicate an involvement of intracellular $Ca^{2+}.$ Additional studies with okadaic acid and calyculin A, protein phosphatase-1 (PP-1) and 2A (PP-2A) inhibitors, indicate an involvement of PP-1 in insulin action on 2-DG uptake. These results indicate an involvement of $Ca^{2+}-dependent$ signaling pathway in insulin action on glucose transport.

  • PDF

[Ca2+]-dependent Generation of Intracellular Reactive Oxygen Species Mediates Maitotoxin-induced Cellular Responses in Human Umbilical Vein Endothelial Cells

  • Yi, Sun-Ju;Kim, Kyung Hwan;Choi, Hyun Jung;Yoo, Je Ok;Jung, Hyo-Il;Han, Jeong-A;Kim, Young-Myeong;Suh, In Bum;Ha, Kwon-Soo
    • Molecules and Cells
    • /
    • 제21권1호
    • /
    • pp.121-128
    • /
    • 2006
  • Maitotoxin (MTX) is known as one of the most potent marine toxins involved in Ciguatera poisoning, but intracellular signaling pathways caused by MTX was not fully understood. Thus, we have investigated whether intracellular reactive oxygen species (ROS) are involved in MTX-induced cellular responses in human umbilical vein endothelial cells. MTX induced a dose-dependent increase of intracellular [$Ca^{2+}$]. MTX stimulated the production of intracellular ROS in a dose- and time-dependent manner, which was suppressed by BAPTA-AM, an intracellular $Ca^{2+}$ chelator. Ionomycin also elevated the ROS production in a dose-dependent manner. MTX elevated transamidation activity in a time-dependent manner and the activation was largely inhibited by transfection of tissue transglutaminase siRNA. The activation of tissue transglutaminase and ERK1/2 by MTX was suppressed by BAPTA-AM or ROS scavengers. In addition, MTX-induced cell death was significantly delayed by BAPTA-AM or a ROS scavenger. These results suggest that [$Ca^{2+}$]-dependent generation of intracellular ROS, at least in part, play an important role in MTX-stimulated cellular responses, such as activation of tTGase, ERK phosphorylation, and induction of cell death, in human umbilical vein endothelial cells.

Thrombin Induced Apoptosis through Calcium-Mediated Activation of Cytosolic Phospholipase A2 in Intestinal Myofibroblasts

  • Mi Ja Park;Jong Hoon Won;Dae Kyong Kim
    • Biomolecules & Therapeutics
    • /
    • 제31권1호
    • /
    • pp.59-67
    • /
    • 2023
  • Thrombin is a serine protease that participates in a variety of biological signaling through protease-activated receptors. Intestinal myofibroblasts play central roles in maintaining intestinal homeostasis. In this study, we found that thrombin-induced apoptosis is mediated by the calcium-mediated activation of cytosolic phospholipase A2 in the CCD-18Co cell. Thrombin reduced cell viability by inducing apoptosis and proteinase-activated receptor-1 antagonist attenuated thrombin-induced cell death. Endogenous ceramide did not affect the cell viability itself, but a ceramide-mediated pathway was involved in thrombin-induced cell death. Thrombin increased intracellular calcium levels and cytosolic phospholipase A2 activity. The ceramide synthase inhibitor Fumonisin B1, intracellular calcium chelator BAPTA-AM, and cytosolic phospholipase A2 inhibitor AACOCF3 inhibited thrombin-induced cell death. Thrombin stimulated arachidonic acid release and reactive oxygen species generation, which was blocked by AACOCF3, BAPTA-AM, and the antioxidant reagent Trolox. Taken together, thrombin triggered apoptosis through calcium-mediated activation of cytosolic phospholipase A2 in intestinal myofibroblasts.

해마 조직 절편 배양을 이용한 무산소 손상에 대한 MK-801, CNQX, Cycloheximide 및 BAPTA-AM의 효과 (Effects of MK-801, CNQX, Cycloheximide and BAPTA-AM on Anoxic Injury of Hippocampal Organotypic Slice Culture)

  • 문수현;권택현;박윤관;정흥섭;서중근
    • Journal of Korean Neurosurgical Society
    • /
    • 제29권8호
    • /
    • pp.1008-1018
    • /
    • 2000
  • Objective : Glutamate induced excitotoxicity is one of the leading causes of cell death under pathologic condition. However, there is controversy whether excitotoxicity may also participate in the neuronal death under low intensity insult such as simple hypoxia or hypoglycemia. To investigate the role of NMDA receptor in low intensity insult, we chose anoxia as the method of injury and used organotypically cultured hippocampal slice as the material of experiment. Materials & Methods : The hippocampal slices cultured for 2-3 weeks were exposed to 60 minutes of complete oxygen deprivation(anoxia). Neuronal death was assessed with Sytox stain. Corrected optical density of fluorescence in gray scale, used as cellular death indicator, was obtained from pictures taken at 24 and 48 hours following the insult. The well-known in vivo phenomenon of regional difference in susceptibility of hippocampal sub-fields to ischemic insult was reproduced in HOSC(hippocampal organotypic slice culture) by complete oxygen deprivation injury. Results : $CA_1$ was the most vulnerable to complete oxygen deprivation in hippocampus while $CA_3$ was resistant. Oxygen deprivation for 10 and 20 minutes with glucose(6.5g/l) present was insufficient to induce neuronal death in the cultured hippocampal slice. However, after 30 minutes exposure under anoxic condition, neuronal death was able to be detected in the center of $CA_1$ area. The intensity and area of fluorescence indicating cell death correlated with the duration of oxygen deprivation. NMDA receptor and non-NMDA receptor blocking with MK-801(30 & $60{\mu}M$) and CNQX($100{\mu}M$) did not provide cellular protection to HOSC against damage induced by oxygen deprivation, but increased intracellular calcium buffering capacity with BAPTA-AM($10{\mu}M$) was effective in preventing neuronal death (p=0.01, Student's t-test). Cycloheximide($1{\mu}g/ml$, $10{\mu}g/ml$) provided no protection to HOSC against insult of complete oxygen deprivation for 60 minutes and combined therapy of MK-801(30 & $60{\mu}M$) and cycloheximide(1 & $10{\mu}g/ml$) was also ineffective in preventing neuronal death. Conclusion : The results of this study show that the another mechanism not associated with glutamate receptor(NMDA & non NMDA) may play major role in cell death mechanisms induced by complete oxygen deprivation and increased intracellular calcium during anoxia may participate in the neuronal death mechanism of oxygen deprivation. Further investigation of the calcium entry channel activated during oxygen deprivation is necessary to understand the neuronal death of anoxia.

  • PDF

Inactivation of N-Type Calcium Current in Rat Sympathetic Neurons

  • Lee, Mi-Sun;Goo, Yong-Sook
    • 한국생물물리학회:학술대회논문집
    • /
    • 한국생물물리학회 2001년도 학술 발표회 진행표 및 논문초록
    • /
    • pp.26-26
    • /
    • 2001
  • Inactivation of N-type calcium current has been reported to be both voltage dependent and Ca$\^$2+/ dependent. We have investigated the effects of Ba$\^$2+/ and Ca$\^$2+/ on N-channel inactivation in rat superior cervical ganglion neurons using the whole cell configuration of patch clamp technique. Inactivation was larger in Ca$\^$2+/ than in Ba$\^$2+/ even with 20 mM BAPTA.(omitted)

  • PDF