• 제목/요약/키워드: gadolinium chloride

검색결과 17건 처리시간 0.23초

Role of Kupffer Cells in Hepatic Drug Metabolizing Functions during Sepsis in Rats

  • Lee, S.H.;Lee, S.M.
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 2001년도 추계학술대회 및 정기총회
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    • pp.109-109
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    • 2001
  • The present study was done to investigate the relationship between Kupffer cells and alteration of cytochrome P-450 (CYP)-dependent drug metabolizing enzyme activities during polymicrobial sepsis. Male rats were subjected to polymicrobial sepsis by cecal ligation and puncture (CLP) followed by fluid resuscitation. The gadolinium chloride (GdC1$_3$, 10 mg/kg), blocker of Kupffer cells, was pretreated intravenously at 48 h and 24 h prior to the induction of CLP. All assay parameters were determined at 24 h after CLP or sham operation. In CLP-treated rats, the mortality rate of animals increased to 50% and serum alanine (ALT) and aspartate aminotransferase (AST) levels also significantly elevated. However, this increase was not suppressed by GdC1$_3$ pretreatment. Microsomal lipid peroxidation markedly increased after CLP operation. This increase was significantly attenuated by pretreatment. Total cytochrome P-450 content and NADPH-cytochrome P-450 reductase activity were not changed after CLP operation, but GdC1$_3$pretreatment reduced total cytochrome P-450 content, The hepatic microsomal CYP 1A1, 1A2, 2Bl and 2El activities in CLP-induced rats were also not significantly different from sham-operated rats. However, GdC1$_3$pretreatment showed a moderate increase in CYP1A1 and 1A2 activities. Our findings suggest that Kupffer cells may be partly responsible for producing hepatocellular dysfunction during sepsis.

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Role of Kupffer Cells in Vasoregulatory Gene Expression During Endotoxemia

  • Kim, Tae-Hoon;Lee, Sun-Mee
    • Biomolecules & Therapeutics
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    • 제16권4호
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    • pp.306-311
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    • 2008
  • Although hepatic microcirculatory dysfunction occurs during endotoxemia, the mechanism responsible for this remains unclear. Since Kupffer cells provide signals that regulate hepatic response in inflammation, this study was designed to investigate the role of Kupffer cells in the imbalance in the expression of vasoactive mediators. Endotoxemia was induced by intraperitoneal E. coli endotoxin (LPS, 1 mg/kg body weight). Kupffer cells were inactivated with gadolinium chloride ($GdCl_3$, 7.5 mg/kg body weight, intravenously) 2 days prior to LPS exposure. Liver samples were taken 6 h following LPS exposure for RT-PCR analysis of mRNA for genes of interest: endothelin (ET-1), its receptors $ET_A$ and $ET_B$, inducible nitric oxide synthase (iNOS), heme oxygenase (HO-1), and tumor necrosis factor-$\alpha$ (TNF-$\alpha$). mRNA levels for iNOS and TNF-$\alpha$ were significantly increased 31.8-fold and 26.7-fold in LPS-treated animals, respectively. This increase was markedly attenuated by $GdCl_3$, HO-1 expression significantly increased in LPS-treated animals, with no significant difference between saline and $GdCl_3$ groups. ET-1 was increased by LPS. mRNA levels for $ET_A$ receptor showed no change, whereas $ET_B$ transcripts increased in LPS-treated animals. The increase in $ET_B$ transcripts was potentiated by $GdCl_3$. We conclude that activation of Kupffer cells plays an important role in the imbalanced hepatic vasoregulatory gene expression induced by endotoxin.

$Ca^{2+}$ is a Regulator of the WNK/OSR1/NKCC Pathway in a Human Salivary Gland Cell Line

  • Park, Soonhong;Ku, Sang Kyun;Ji, Hye Won;Choi, Jong-Hoon;Shin, Dong Min
    • The Korean Journal of Physiology and Pharmacology
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    • 제19권3호
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    • pp.249-255
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    • 2015
  • Wnk kinase maintains cell volume, regulating various transporters such as sodium-chloride cotransporter, potassium-chloride cotransporter, and sodium-potassium-chloride cotransporter 1 (NKCC1) through the phosphorylation of oxidative stress responsive kinase 1 (OSR1) and STE20/SPS1-related proline/alanine-rich kinase (SPAK). However, the activating mechanism of Wnk kinase in specific tissues and specific conditions is broadly unclear. In the present study, we used a human salivary gland (HSG) cell line as a model and showed that $Ca^{2+}$ may have a role in regulating Wnk kinase in the HSG cell line. Through this study, we found that the HSG cell line expressed molecules participating in the WNK-OSR1-NKCC pathway, such as Wnk1, Wnk4, OSR1, SPAK, and NKCC1. The HSG cell line showed an intracellular $Ca^{2+}$ concentration ($[Ca^{2+}]_i$) increase in response to hypotonic stimulation, and the response was synchronized with the phosphorylation of OSR1. Interestingly, when we inhibited the hypotonically induced $[Ca^{2+}]_i$ increase with nonspecific $Ca^{2+}$ channel blockers such as 2-aminoethoxydiphenyl borate, gadolinium, and lanthanum, the phosphorylated OSR1 level was also diminished. Moreover, a cyclopiazonic acid-induced passive $[Ca^{2+}]_i$ elevation was evoked by the phosphorylation of OSR1, and the amount of phosphorylated OSR1 decreased when the cells were treated with BAPTA, a $Ca^{2+}$ chelator. Finally, through that process, NKCC1 activity also decreased to maintain the cell volume in the HSG cell line. These results indicate that $Ca^{2+}$ may regulate the WNK-OSR1 pathway and NKCC1 activity in the HSG cell line. This is the first demonstration that indicates upstream $Ca^{2+}$ regulation of the WNK-OSR1 pathway in intact cells.

An alternative method to reduce anaphylaxis by moxibustion

  • Jeong, Hyun-Ja;Nam, Sun-Young;Lee, Byong-Joo;Kim, Min-Gi;Kim, Jeong-Hwa;Kim, Hyung-Min
    • 셀메드
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    • 제4권2호
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    • pp.12.1-12.12
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    • 2014
  • Epinephrine is a critical drug for patients at risk for anaphylaxis. Here, we suggest moxibustion as an alternative method to reduce anaphylaxis. Moxibustion was applied to the Shimen (CV5) acupoint and found to attenuate compound 48/80-induced mortality. Capsazepine, a transient receptor potential vanilloid (TRPV) 1 antagonist, significantly improved overall survival rates compared to groups treated with moxibustion or 2-aminoethoxydiphenyl borate (an activator of TRPV1, 2, and 3). Probenecid (a TRPV2 agonist) also increased survival rate and reduced histamine levels. Survival rates increased by moxibustion and probenecid were completely inhibited by ruthenium red (a TRPV2 and 3 antagonist) and gadolinium chloride (general TRPV antagonist), respectively. Passive cutaneous anaphylaxis and ear swelling were significantly reduced by moxibustion and probenecid (p < 0.05). In cardiomyocytes, TRPV2 was over-expressed by compound 48/80 and histamine but this increased TRPV2 expression decreased to baseline with moxibustion and probenecid treatment. In addition, intracellular calcium levels increased by compound 48/80 were reduced by probenecid. Overall, these findings suggest that the reduction of anaphylaxis caused by moxibustion could represent a new mechanism of moxibustion related to the regulation of TRPV2 activation and promotion of epinephrine secretion.

Differential Regulation of Cytochrome P450 Isozyme mRNAs and Proteins by Femur Fracture Trauma

  • Lee, Woo-Young;Lee, Sun-Mee
    • Archives of Pharmacal Research
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    • 제26권12호
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    • pp.1079-1086
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    • 2003
  • The aim of this study was to investigate the effect of trauma on cytochrome P450 (CYP) gene expression and to determine the role of Kupffer cells in trauma-induced alteration of CYP isozymes. Rats underwent closed femur fracture (FFx) with associated soft-tissue injury under anesthesia. To deplete Kupffer cells in vivo, gadolinium chloride ($GdCl_3$) was intravenously injected at 7.5 mg/kg body wt., 1 and 2 days prior to FFx surgery. At 72 h of FFx, liver tissues were isolated to determine the mRNA and protein expression of CYP isozymes and NADPH-P450 reductase by reverse transcription-polymerase chain reaction and Western immunoblotting, respectively. In addition, the mRNA levels of tumor necrosis factor alpha (TNF-$\alpha$), inducible nitric oxide synthase (iNOS) and heme oxygenase-1 (HO-1) were evaluated. FFx increased the mRNA level of CYP1A1; an increase that was not prevented by $GdCl_3$. There were no significant differences in the mRNA expression of CYP1A2, 2B1 and 2E1 among any of the experimental groups. The protein levels of CYP2B1 and 2E1 were significantly decreased by FFx; a decrease that was not prevented by $GdCl_3$ treatment. The gene expression of NADPH-P450 reductase was unchanged by FFx. FFx significantly increased the expression of TNF-$\alpha$ mRNA; an increase that was attenuated by $GdCl_3$. The mRNA expression of HO-1 was increased by FFx, but not by $GdCl_3$ . Our findings suggest that FFx differentially regulates the expression of CYP isozyme through Kupffer cell-independent mechanisms.

사염화 탄소에 의한 간손상에 있어 Kupffer cell 칼슘의 역할 (Involvement of Kupffer Cell in $CCl_4$ induced Liver Injury: The Role of Calcium)

  • 양미라
    • 대한약리학회지
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    • 제32권1호
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    • pp.75-82
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    • 1996
  • 사염화 탄소에 의한 과산화 지질 증가 및 간 손상에 calcium 및 Kupffer cell의 역할 및 calcium channel blocker의 간 손상에 대한 방어 효과를 연구하였다. 사염화 탄소는 (1 gm/kg, ig) 간의 malondialdehyde (nmole/gm liver) 및 혈중 AST와 ALT (lU/ml) 활성도의 현저한 증가를 나타내었다. 고 농도의 Retinol (250,000U/kg/day)로 인한 Kupffer cell의 활성 증가는 사염화 탄소에 의한 간 과산화 지질 증가 및 간 손상에 상승 작용을 나타낸 반면, $GdCl_3$ 전처리는 $CCl_4$로 인한 ALT의 증가를 감소시켰다. 한편 Retinol 처치군에 Diltiazem (10mg/kg/day)을 병행하여 처치한 결과, 사염화 탄소에 의한 혈중 AST 및 ALT의 증가를 Retinol 단독 처치군에 비하여 현저하게 억제시킬 수 있었다. 이 결과들이 Retinol 혹은 Diltiazem의 투여에 의한 사염화 탄소가 cytochrome P450에 의한 대사 활성 또는 GSH와 관련된 항산화 기전에 미치는 영향에 기인한 것인가를 규명하기 위하여 cytochrome P450, cytochrome P4502El 활성도, GSH reductase 및 GSH peroxidase 활성도를 측정하였다. 그 결과, Retinol 및 Diltiazem의 전처리는 이들 효소의 활성도에 미치는 영향은 대조군에 비하여 유의한 차이가 없었다. 이상의 실험 결과를 종합하여 보면, 사염화 탄소의 투여에 의한 간 손상은 세포내 calcium의 증가를 가져오며, 이는 이차적으로 Kupffer cell을 활성화 시켜 이미 손상된 간세포의 독성을 증가시켰으며, calcium channel blocker인 Diltiazem의 투여는 사염화 탄소의 간독성을 현저하게 감소시키는 효과를 나타내었다.

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에스트로젠 수용체 리간드로서 사이클렌을 기본 구조로 한 구리 착물의 합성 (Synthesis of Cyclen-Based Copper Complexes as a Potential Estrogen Receptor Ligand)

  • 박정찬;달판판댜;전학림;이상우;안병철;이재태;유정수
    • Nuclear Medicine and Molecular Imaging
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    • 제41권4호
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    • pp.326-334
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    • 2007
  • 에스트로젠 수용체 양성 유방암에서 과발현되는 에스트로젠 수용체는 $[^{18}F]FES$와 같은 $^{18}F$이 표지된 스테로이드계 에스트로젠 수용체 리간드를 사용하여 양전자방출단층촬영기로 영상을 얻을 수 있다. 반감기가 12.7시간인 $^{64}Cu$에 비해 1.8시간인 $^{18}F$은 반감기가 짧고, $^{64}Cu$로 표지 하는 경우보다 수율이 낮은 단점이 있다. 사이클렌은 구리, 인듐, 갈륨, 가돌리륨 등과 같은 금속과 안정한 착물을 형성한다. 이를 근거로 2개의 페놀 하이드록시 그룹을 가지고 있는 사이클렌을 기본구조로 한 구리 착물을 합성하였다. 재료 및 방법 : 1,7 위치에 보호기를 가지고 있는 1,7-bis(benzyloxy-carbonyl)-cyclen은 기존에 알려진 방법에 따라 합성 되어졌다. 여기에 4,10 위치에 2개의 4-benzyloxybenzyl groups을 도입한 후, Pd/C상에서의 수소화 반응으로 benzyloxycarbonyl과 benzyl groups이 모두 제거됨으로써 1,7-bis(4-hydroxybenzyl)-cyclen (1)을 성공적으로 합성할 수 있었다. 결과: 우리가 합성한 물질 1은 $^1H,\;^{13}C-NMR$ 그리고 질량분석기로 만들어졌는지 여부를 확인하였다. 이 물질들은 구리 이온과 반응하여 $[Cu(1)]^{2+}2(ClO_4)^-$$[Cu(1)Cl]^+Cl^-$를 형성하였고, 고분해능 FAB 질량분석기로 확인하였다. 결론: 우리는 질소원자에 trans 방향으로 2개의 페놀 그룹을 가지고 있는 cyclen 유도체를 합성하는데 성공하였고, 구리이온과 반응하여 각각 전체 전하가 +2그리고 +1인 구리 착물을 합성하였으며, 이들은 에스트로젠 수용체의 영상화를 위한 PET 추적자로 쓰일 수 있는 가능성이 있다.