• 제목/요약/키워드: Sodium nitroprusside (SNP)

검색결과 136건 처리시간 0.021초

돼지 체외수정란의 체외발육에 있어 Melatonin과 Sodium Nitroprusside(SNP) 첨가 효과 (The Effects of Melatonin and Sodium Nitroprusside (SNP) on Development of Porcine IVM/IVF Embryos)

  • 장현용;오진영;김종택;박춘근;정희태;김정익;이학교;최강덕;양부근
    • Reproductive and Developmental Biology
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    • 제28권2호
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    • pp.83-87
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    • 2004
  • 본 연구는 돼지의 난포란을 체외에서 성숙, 수정시킨 체외수정란의 체외배양 체계를 확립하고 그 기작을 규명하기 위하여 체외배양액에 항산화제인 melatonin의 첨가 및 melatonin과 sodium nitroprusside(SNP)의 첨가배양이 체외수정란의 체외발육에 미치는 영향을 검토하고자 실시하였다. NCSU 23 배양액에 melatonin을 0, 1, 5 및 10nM을 첨가하여 체외배양을 실시한 결과, 배반포기까지 발육율은 17.8%, 26.1%, 20.0% 및 16.3%로서 melatonin 1nM 첨가구가 여타구에 비해 통계적으로 유의하게 높은 성적을 나타냈으며(P<0.05), 상실배기 이상 발육 성적에서도 melatonin 1 nM 첨가구가 39.1%로서 대조구 33.3%, 5 nM 첨가구의 33.3% 및 10 nM 첨가구의 27.9%보다 높은 발육율을 나타냈다(P<0.05). NCSU 23 배양액에 SNP를 0, 50 및 100 $\muM을 첨가하여 체외 배양한 결과, 상실배 이상 발육성적은 각각 41.9%, 25.6% 및 28.4%로서 SNP 첨가구가 대조구보다 유의적으로 낮은 성적을 나타내었다(P<0.05). NCSU 23 배양액에 대조구, SNP 50 $\muM, SNP 50 $\muM에 melatonin 1, 5 및 10nM을 혼합첨가하여 체외 발육율을 조사한 결과, 배반포기 발육율은 각각 2.5%, 1.2%, 9.9%, 5.1% 및 3.7%로서 SNP 50$\mu$M + Mel. 1nM 첨가구가 여타구 보다 높은 성적을 나타냈으며, 상실배기 이상 체외 발육율은 31.3%, 34.1%, 39.5%, 29.4% 및 39.5%로서 SNP 50 $\mu M + Mel. 1 nM 첨가구와 SNP 50 $\muM + Mel. 10 nM 첨가구가 여타구보다 높은 발육율을 나타냈다. 모든 처리구에서 배반포까지 발육된 체외수정란의 세포수는 커다란 차이가 인정되지 않았다.

Paraquat 유도 산화스트레스하의 배추 잎에서 Ascorbate-Glutathione 회로 효소의 활성도에 대한 산화질소 (Nitric oxide)의 효과 (Effects of nitric oxide on ascorbate-glutathione cycle enzymes activities in chinese cabbage leaves under paraquat-induced oxidative stress)

  • 나호견;진창덕
    • Journal of Plant Biotechnology
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    • 제41권2호
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    • pp.73-80
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    • 2014
  • 산화질소(nitric oxide: NO) 공여체인 $100{\mu}M$ sodium nitroprusside (SNP)를 배추 잎에 전처리한 후 이어서 $2{\mu}M$ paraquat (PQ)처리 시, PQ에 의해 유도된 산화적 손상에 대한 잎의 내성이 효과적으로 증진되었다. 24 시간 광 배양기간 동안 PQ 단독 처리구 잎에서는 생체량, 엽록소 및 단백질 함량이 현저하게 감소하였으나 PQ 노출 전에 3시간 SNP 전처리로 이들 잎 손상이 의미 있게 완화되었다. 게다가 PQ 처리에 기인된 malondialdehyde (MDA)와 $H_2O_2$ 함량 증가도 SNP 전처리에 의해 유의하게 억제되었다. 잎에서 이들 PQ 독성에 대한 SNP의 방어효과와 관련하여 ascorbate-glutathione 회로 구성 효소의 활성도 변화를 조사하였다. PQ 단독 처리구에서 APX, DHAR 및 GR 효소 활성도는 배양 6시간후에 급격히 감소되어 대조구 잎과 비교 시 각각 대조구의 19%, 50%, 39% 수준의 활성도 값을 보였다. 그러나, 이들 효소 활성도 값 감소는 SNP 전처리에 의해 현저하게 억제되어 6시간 배양 후에 PQ 단독처리구 보다 각각 5배, 2배, 1.5배 높은 값을 나타내었다. 또한, 그 이후 24시간 배양 때까지 PQ 단독 처리구보다 계속 높은 활성도를 보이면서 점차로 감소하였다. 이들 결과로부터, PQ에 노출된 배추 잎에서 SNP 전처리에 의한 ascorbate-glutathione 회로의 활성화가 $H_2O_2$의 축적을 억제하며 그로인해 PQ에 의해 유도된 산화스트레스로부터 잎을 방어하는 것으로 생각되었다. 동시에 이 들 결과는 산화질소가 배추 잎에서 PQ 스트레스에 대한 항산화 방어자로서의 역할을 하는 것을 의미한다.

무 (Raphanus sativus L.) 자엽에서 산화질소 (Nitric oxide)에 의해 유도된 부정근 형성과정에 대한 칼슘의 효과 (Effects of Calcium on Nitric oxide (NO)-induced Adventitious Rooting Process in Radish (Raphanus sativus L.) Cotyledons)

  • 진창덕
    • Journal of Plant Biotechnology
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    • 제34권3호
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    • pp.213-221
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    • 2007
  • 분리된 무 자엽 조직에 산화질소 (nitric oxide: NO) 공여체인 sodium nitroprusside (SNP) 처리 시 농도 의존방식으로 부정근의 발달을 증진시켰다. 그러나 이러한 NO 증진 효과는 세포외 칼슘 chelator인 0.5 mM EGTA 또는 세포막 칼슘채널 차단제인 0.1 mM $LaCl_3$를 각각 $50\;{\mu}M$ SNP와 함께 혼합처리 시 반전되었다. 또한, 뿌리 발생에서 중심적 역할을 수행하는 것으로 알려진 guaiacol peroxidase (GPX)와 syringaldazine peroxidase (SPX)의 활성도가 SNP 단독 처리된 자엽에서 부정근이 형성되는 동안 현저히 증가하였다. 그러나, SNP와 $LaCl_3$ 혼합처리 시 SNP에 의해 유도된 GPX와 SPX 활성도 증가가 거의 증류수 대조구 수준으로 억제되었다. calmodulin의 anatagonist인 trifuoperazine 역시 SNP로 처리된 자엽에서 부정근 형성을 억제하여 발생된 뿌리의 개수와 길이를 감소시켰으며 동시에 GPX와 SPX를 불활성화 하였다. 결론적으로, 이들 결과는 칼슘이 GPX와 SPX 활성도 조절을 통해 부정근 유도를 이끄는 NO 반응에 포함되어 있음을 나타내는 것이다.

Resveratrol Inhibits Nitric Oxide-Induced Apoptosis via the NF-Kappa B Pathway in Rabbit Articular Chondrocytes

  • Eo, Seong-Hui;Cho, Hongsik;Kim, Song-Ja
    • Biomolecules & Therapeutics
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    • 제21권5호
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    • pp.364-370
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    • 2013
  • Resveratrol (trans-3,4'-trihydroxystillbene), a naturally occurring polyphenolic antioxidant found in grapes and red wine, elicits diverse biochemical responses and demonstrates anti-aging, anti-inflammatory, and anti-proliferative effects in several cell types. Previously, resveratrol was shown to regulate differentiation and inflammation in rabbit articular chondrocytes, while the direct production of nitric oxide (NO) in these cells by treatment with the NO donor sodium nitroprusside (SNP) led to apoptosis. In this study, the effect of resveratrol on NO-induced apoptosis in rabbit articular chondrocytes was investigated. Resveratrol dramatically reduced NO-induced apoptosis in chondrocytes, as determined by phase-contrast microscopy, the MTT assay, FACS analysis, and DAPI staining. Treatment with resveratrol inhibited the SNP-induced expression of p53 and p21 and reduced the expression of procaspase-3 in chondrocytes, as detected by western blot analysis. SNP-induced degradation of I-kappa B alpha ($I{\kappa}B-{\alpha}$) was rescued by resveratrol treatment, and the SN50 peptide-mediated inhibition of NF-kappa B (NF-${\kappa}B$) activity potently blocked SNP-induced caspase-3 activation and apoptosis. Our results suggest that resveratrol inhibits NO-induced apoptosis through the NF-${\kappa}B$ pathway in articular chondrocytes.

Modulation of Outward Potassium Currents by Nitric Oxide in Longitudinal Smooth Muscle Cells of Guinea-pig Ileum

  • Kwon, Seong-Chun;Rim, Se-Joong;Kang, Bok-Soon
    • The Korean Journal of Physiology and Pharmacology
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    • 제2권2호
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    • pp.225-232
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    • 1998
  • To investigate the possible involvement of outward potassium ($K^+$) currents in nitric oxide-induced relaxation in intestinal smooth muscle, we used whole-cell patch clamp technique in freshly dispersed guinea-pig ileum longitudinal smooth muscle cells. When cells were held at -60 mV and depolarized from -40 mV to -50 mV in 10 mV increments, sustained outward $K^+$ currents were evoked. The outward $K^+$ currents were markedly increased by the addition of 10 ${\mu}M$ sodium nitroprusside (SNP). 10 ${\mu}M$ S-nitroso-N-acetylpenicillamine (SNAP) and 1 mM 8-Bromo-cyclic GMP (8-Br-cGMP) also showed a similar effect to that of SNP. 1 mM tetraethylammonium (TEA) significantly reduced depolarization-activated outward $K^+$ currents. SNP-enhanced outward $K^+$ currents were blocked by the application of TEA. High EGTA containing pipette solution (10 mM) reduced the control currents and also inhibited the SNP-enhanced outward $K^+$ currents. 5 mM 4-aminopyridine (4-AP) significantly reduced the control currents but showed no effect on SNP-enhanced outward $K^+$ currents. 0.3 ${\mu}M$ apamin and 10 ${\mu}M$ glibenclamide showed no effect on SNP-enhanced outward $K^+$ currents. 10 ${\mu}M$ 1H-[1,2,4]oxadiazolo [4,3-a]quinoxaline-1-one (ODQ), a specific inhibitor of soluble guanylate cyclase, significantly blocked SNP-enhanced $K^+$ currents. We conclude that NO donors activate the $Ca^{2+}-activated$ $K^+$ channels in guinea-pig ileal smooth muscle via activation of guanylate cyclase.

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Menadione에 의한 흰쥐 혈소판 세포독성에서 nitric oxide의 역할 (The Role of Nitric Oxide in Menadione-Induced Cytotoxicity in Rat Platelets)

  • 승상애;김대병;윤여표;정진호
    • Toxicological Research
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    • 제11권2호
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    • pp.303-308
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    • 1995
  • Nitric oxide, a physiological transmitter, is reported to mediate cellular injury in various tissues. Its reactivity to free radical is believed to be one of the reasons for its involvement in cytotoxicity. Menadione, a representative quinone, is cytotoxic to several cell systems including isolated hepatocyte, endothelial cell and red blood cells. Its toxic mechanism is related to oxidative stress, mediated by toxic free radicals. Our previous studies demonstrated that menadione induced cell lysis and increase of oxygen consumption in platelets. It has been reported that platelets have nitric oxide producing enzyme, nitric oxide synthase. Thus, we have investigated to manifest the role of nitric oxide.in menadione-induced cytotoxicity in rat platelets. Menadione induced cytotoxicity in platelets was unaffected by $N^G$-nitro-arginine methyl ester (L-NAME), selective and competitive inhibitor of nitric oxide synthase. We also invesitgated the role of extracellular nitric oxide in menadione-induced cytotoxicity of platelets by addition with sodium nitroprusside (SNP). SNP did not affect platelet cytotoxicity by menadione. These results suggested that nitric oxide which was generated endogeneously or exogeneously might have a negligible role in menadione-induced cytotoxicity in rat platelets.

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Ferritin Overload Suppresses Male Fertility Via altered Acrosome Reaction

  • Kwon, Woo-Sung;Rahman, Md Saidur;Kim, Ye-Ji;Ryu, Do-Yeol;Kahtun, Amena;Pang, Myung-Geol
    • Reproductive and Developmental Biology
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    • 제39권4호
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    • pp.117-125
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    • 2015
  • Iron is required for cell viability but is toxic in excess. While the iron-mediated malfunction of testicular cells is well appreciated, the underlying mechanism(s) of this effect and its relationship with fertility are poorly understood. Ferritin is a ubiquitous intracellular protein that controls iron storage, ferroxidase activity, immune response, and stress response in cells. Ferritin light chain protein (FTL) is the light subunit of the Ferritin. Previously, we had identified the FTL in bovine spermatozoa following capacitation. In present study, to investigate the role of Ferritin in sperm function, mice spermatozoa were incubated with multiple doses (1, 10 and $100{\mu}M$) of sodium nitroprusside (SNP), an iron donor. SNP was increased Ferritin levels in a dose-dependent manner. The Ferritin was detected on the acrosome in spermatozoa by immunocytochemistry. Short-term exposure of spermatozoa to SNP increased tyrosine phosphorylation and the acrosome reaction (AR). Finally, SNP affected a significant decrease in the rate of fertilization as well as blastocyst formation during early embryonic development. On the basis of these results, we propose that the effects of Ferritin on the AR may reduce overall sperm function leads to poor fertility in males and compromised embryonic development.

낙석등 추출물이 토끼 HIG-82 활액막 세포주에서 Sodium Nitroprusside (SNP)로 유도된 염증반응에 미치는 영향 (Effects of Trachelospermum caulis Extract on Sodium Nitroprusside (SNP)-induced Inflammatory Responses in Rabbit HIG-82 Synovial Membrane Cells)

  • 박정식;임형호
    • 한방재활의학과학회지
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    • 제24권2호
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    • pp.31-40
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    • 2014
  • Objectives Trachelospermi caulis, known as Nak-Suk-Deung in Korea, is the dried leafy stem of Trachelospermum asiaticum var. intermedium Nakai, and climbing stems and branches of Trachelospermum sdisyivum var, intermedium nakai or Apocyanaceae. Trachelospermi caulis has antipyretic and analgesic activity. It has traditionally been used as a folk remedy in Korea for the treatment of various infla mMatory diseases, including rheumatoid arthritis. The purpose of this study was to evaluate the Effects of Trachelospermum caulis extract on SNP-induced infla mMatory responses in rabbit HIG-82 synovial membrane cells. Methods Anti-infla mMatory effects of the extract of Trachelospermum caulis were investigated using rabbit HIG-82 synovial membrane cells. For this study, 3-(4,5-dimethylthiazol- 2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay, western blot analysis, PGE2 i mMunoassay, and NO detection were conducted. Results The aqueous extract of Trachelospermum caulis exerted cytotoxicity and suppressed PGE2 synthesis and NO production in rabbit HIG-82 synovial membrane cells. The aqueous extract of Trachelospermum caulis also inhibited the SNP-induced expressions of COX-2, iNOS, and TNF-$\alpha$ in rabbit HIG-82 synovial membrane cells. Conclusions These results showed that the extract of Trachelospermum caulis exerts the anti-infla mMatory effect by suppressing COX-2, iNOS, and TNF-$\alpha$ expressions in the synovial membrane cells.

JNK/SAPK Is Required in Nitric Oxide-Induced Apoptosis in Osteoblasts

  • Kang, Young-Jin;Chae, Soo-Wan
    • Archives of Pharmacal Research
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    • 제26권11호
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    • pp.937-942
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    • 2003
  • Nitric oxide(NO) induces apoptosis in human osteoblasts. Treatment with exogenous NO donors, SNAP (S-Nitroso-N-acelylpenicillamine) and SNP (sodium nitroprusside), to MG-63 osteoblasts resulted in apoptotic morphological changes, as shown by a bright blue-fluorescent condensed nuclei and chromatin fragmentation by fluorescence microscope of Hoechst 33258-staining. The activities of caspase-9 and the subsequent caspase-3-like cysteine proteases were increased during NO-induced cell death. Pretreatment with Z-VAD-FMK (a pancaspase inhibitor) or Ac-DEVD-CHO (a specific caspase-3 inhibitor) abrogated the NO-induced cell death. The NO donor markedly activated JNK, a stress-activated protein kinase in the human osteoblasts. This study showed that the inhibition of the JNK pathway markedly reduced NO-induced cell death. But neither PD98059 (MEK inhibitor) nor SB203580 (p38 MAPK inhibitor) had any effect on NO-induced death. Taken together, these results suggest that JNK/SAPK may be related to NO-induced apoptosis in MG-63 human osteoblasts.

흰쥐의 대동맥 이완반응에 대한 재수축효과 (The Reversible Contraction on Relaxation of Isolated Rat Aorta)

  • 김진학;신창열;박조영;민영실;최경범;염지현;이남인;김학림;손의동
    • Biomolecules & Therapeutics
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    • 제8권2호
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    • pp.113-118
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    • 2000
  • TEA, glibenclamide, L-NAME and SKF 525A-induced reversible contraction were investigated using acetylcholine, sodium nitroprusside (SNP) and pinacidil in rat abdominal and thoracic aorta. Acetylcho-line, SNP or pinacidil produced in a dose dependent manner relaxation on phenylephrine-induced contraction In rat aorta. TEA, SKF 525A, and L-NAME produced reversible contractions on acetylcholine-induced relaxation, but not on SNP- or pinacidil-induced relaxation. Glibenclamide significantly produced reversible con- traction on pinacidll-induced relaxation. The reversible effect of TEA on the acetylcholine-induced relaxation was reduced by SKF 525A. These results indicate that the acetylcholine-induced relaxation may be mediated by NO, cytochrome P$_{450}$-dependent epoxygenase pathway, or $Ca^{2+}$ activated $K^{+}$ channel, and the pinacidil-induced relaxation may be mediated by ATP-sensitive $K^{+}$ channel.annel.

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