• 제목/요약/키워드: liver cell injury

검색결과 141건 처리시간 0.028초

Metformin ameliorates bile duct ligation-induced acute hepatic injury via regulation of ER stress

  • Lee, Chi-Ho;Han, Jung-Hwa;Kim, Sujin;Lee, Heejung;Kim, Suji;Nam, Dae-Hwan;Cho, Du-Hyong;Woo, Chang-Hoon
    • BMB Reports
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    • 제53권6호
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    • pp.311-316
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    • 2020
  • Cholestasis is a condition in which the bile duct becomes narrowed or clogged by a variety of factors and bile acid is not released smoothly. Bile acid-induced liver injury is facilitated by necrotic cell death, neutrophil infiltration, and inflammation. Metformin, the first-line treatment for type 2 diabetes, is known to reduce not only blood glucose but also inflammatory responses. In this study, we investigated the effects of metformin on liver injury caused by cholestasis with bile acid-induced hepatocyte injury. Static bile acid-induced liver injury is thought to be related to endoplasmic reticulum (ER) stress, inflammatory response, and chemokine expression. Metformin treatment reduced liver injury caused by bile acid, and it suppressed ER stress, inflammation, chemokine expression, and neutrophil infiltration. Similar results were obtained in mouse primary hepatocytes exposed to bile acid. Hepatocytes treated with tauroursodeoxycholic acid, an ER stress inhibitor, showed inhibition of ER stress, as well as reduced levels of inflammation and cell death. These results suggest that metformin may protect against liver injury by suppressing ER stress and inflammation and reducing chemokine expression.

사역산합평위산가인진택사방(四逆散合平胃散加茵蔯澤瀉方)이 $CCl_4$에 의한 흰쥐의 간(肝) 손상에 미치는 영향 (Effect of A Combined Prescription on Liver Injury of Rats by $CCl_4$)

  • 김형우;김성욱;윤여충;조수인
    • 대한본초학회지
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    • 제21권3호
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    • pp.69-74
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    • 2006
  • Objectives : This study was undertaken to determine if a combined(SPe) has a protective effect against functional failure induced by $CCl_4$ in rat liver. Methods : Acute liver injury which initiated from free radical induced by $CCl_4$, were applied to rats and data were obtained. Liver injury was estimated by measuring aspartate aminotransferase(AST) and alanine aminotransferase(ALT) activity in serum. Lipid peroxidation was examined by measuring malondialdehyde, a product of lipid peroxidation. GSH activities in liver tissues were also measured. Results : When rats were treated intraperitoneally with $CCl_4$, serum AST and ALT were increased compared with the control, which was significantly inhibited by pretreatment of SPe. SPe also prevented reduction in GSH induced by $CCl_4$. Conclusion : Above results suggest that SPe exerts protective effect against $CCl_4$ by its antioxidant action in liver tissues. Thus, SPe may be used in prevention and treatment of drug-induced liver cell injury. However, the precise mechanisms of SPe protection remain to be determined.

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오리나무 추출물(AI-1367)의 간질환 동물모델에서의 간 보호효과 (Hepatoprotecive Effects of Alnus japonica Extract on Experimental Liver Injury Models)

  • 조우철;이성희;허재욱;라정찬;손동환
    • 약학회지
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    • 제56권2호
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    • pp.99-107
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    • 2012
  • The protective effect of AI-1367 (Alnus japonica extract) on liver injury was investigated. Primary rat hepatocyte intoxication was induced by tert-butyl hydroperoxide (tBH), carbon tetrachloride ($CCl_4$), or D-glactosamine (D-GalN). Liver injury was induced by $CCl_4$, D-GalN or MCD (methionine choline deficient)-diet in mouse. The cellular leakage of lactate dehyrogenase and cell viability followed by the treatment of hepatotoxicants were significantly improved by AI-1367 treatment at a concentration range of 5~50 ${\mu}g/ml$ for tBH, 5~50 ${\mu}g/ml$ for D-GalN, and 5~100 ${\mu}g/ml$ for $CCl_4$, respectively. Treatment with AI-1367 (20, 10, 5 mg/kg, p.o.) on liver injury induced by subcutaneous injection of $CCl_4$ or D-GalN reduced significantly the levels of aspartate transaminase and alanine transaminase in serum. Histological observations revealed that fatty acid changes, hepatocyte necrosis and inflammatory cell infiltration in $CCl_4$ (D-GalN)-induced liver injury was improved by administration of AI-1367. AI-1367 treatment (10, 5, 2.5 mg/kg, p.o.) also significantly recovered the body weight change and serum levels of aspartate transaminase, alanine transaminase and triglyceride in liver injury induced by MCD diet. From these results, AI-1367 shows protective effects against tBH, $CCl_4$, D-GalN, or MCD diet-induced hepatotoxicity in vitro or in vivo.

Circulating Plasma and Exosomal microRNAs as Indicators of Drug-Induced Organ Injury in Rodent Models

  • Cho, Young-Eun;Kim, Sang-Hyun;Lee, Byung-Heon;Baek, Moon-Chang
    • Biomolecules & Therapeutics
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    • 제25권4호
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    • pp.367-373
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    • 2017
  • This study was performed to evaluate whether microRNAs (miRNAs) in circulating exosomes may serve as biomarkers of drug-induced liver, kidney, or muscle-injury. Quantitative PCR analyses were performed to measure the amounts of liver-specific miRNAs (miR-122, miR-192, and miR-155), kidney-specific miR-146a, or muscle-specific miR-206 in plasma and exosomes from mice treated with liver, kidney or muscle toxicants. The levels of liver-specific miRNAs in circulating plasma and exosomes were elevated in acetaminophen-induced liver injury and returned to basal levels by treatment with antioxidant N-acetyl-cysteine. Circulating miR-146a and miR-206 were increased in cisplatin-induced nephrotoxicity and bupivacaine-induced myotoxicity, respectively. Taken together, these results indicate that circulating plasma and exosomal miRNAs can be used as potential biomarkers specific for drug-induced liver, kidney or muscle injury.

야교등의 항산화 및 간보호효과 (Effect of Polygoni Multiflori Ramulus extract against arachidonic acid and iron-induced oxidative stress in HepG2 cell and CCl4-induced liver injury in mice)

  • 전창권;정지윤;박정아;지선영;김상찬
    • 대한한의학방제학회지
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    • 제25권2호
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    • pp.155-166
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    • 2017
  • Objectives : Polygoni Multiflori Ramulus has been widely used as a traditional medicinal herb for the treatment of insomnia, limb pain and itch. The extract of Polygoni Multiflori Ramulus (PMRE) is known to have a modulatory effect of many inflammatory responses. This study was performed to investigate the hepatoprotective effect of PMRE against arachidonic acid (AA) + iron-induced oxidative stress on HepG2 cell and carbon tetrachloride ($CCl_4$)-induced liver injury on mice. Methods : The effects of PMRE on cell viability was assessed by MTT assay. And flow cytometric analysis was performed to estimate the effects on mitochondrial function. To investigate its underlying mechanism, apoptosis-related proteins were analysed by using immunoblot analysis. In addition, ICR mouse were administrated (po) with the PMRE (30, 100 mg/kg) for 3 days and then, injected (ip) with $CCl_4$ (0.5 ml/kg body weight) to induce acute liver damage. The level of pro-caspase-3 was measured. Results : Treatment of PMRE increased relative cell viability, prevented a cleavage of poly (ADP ribose) polymerase and pro-caspase-3, and also reduced mitochondrial membrane permeability against AA + iron-induced oxidative stress. In addition, PMRE treatment decreased liver injury induced by $CCl_4$, as evidenced by increases in pro-caspase-3 level. Conclusions : These results demonstrate that PMRE has an ability to anti-oxidant and hepatoprotective effect against AA + iron-induced oxidative stress and $CCl_4$-induced liver injury.

IL-17 Imbalance Promotes the Pyroptosis in Immune-Mediated Liver Injury Through STAT3-IFI16 Axis

  • Wenfang Xu;Yanan Wang;Changzhong Jin;Weiyang Zhang;Jiangnan Chen;Xuefang Chen;Junli Gao;Junshun Gao;Hong Wang
    • IMMUNE NETWORK
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    • 제23권6호
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    • pp.46.1-46.16
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    • 2023
  • Autoimmune hepatitis (AIH) affects all age group and occurs mainly in women. Pyroptosis is a novel programmed cell death featured with cell bursting and release of proinflammatory cytokines. A deeper understanding of AIH pathogenesis will contribute to novel therapy for AIH patients. Here, we aimed to investigate the role of IL-17 in immune-mediated liver injury. The levels of cytokines were measured by ELISA, and mRNA levels of STAT3 and IFN gamma-inducible protein 16 (IFI16) were detected by PCR. Expressions of STAT3, IFI16, gasdermin D and cleaved caspase-1 were measured by western-blotting. Immunohistochemical staining and transmission electron microscopy were applied to evaluate liver histopathological changes of the treated mice. Our results showed that the levels of IFI16 was increased in hepatocytes treated with IL-17 protein, and further elevated after STAT3-overexpressed (STAT3-OE) lentivirus treatment. The levels of IFI16 were reduced in hepatocytes treated with IL-17 neutralizing Ab (nAb), but were significantly increased after STAT3-OE treatment. Pyroptosis was observed in hepatocytes treated with IL-17 protein, and further cell damage was observed after STAT3-OE lentivirus treatment. Liver damage was alleviated in mice treated with IL-17 nAb, however sever damage was experienced after STAT3-OE lentivirus treatment. A binding interaction between IFI16 and STAT3 was detected in IL-17 treated hepatocytes. Glutathione transaminase activity was enhanced in concanavalin A-induced AIH mice compared to the control group (p<0.01). IL-17 plays an important role in activating STAT3 and up-regulating IFI16, which may promote the pyroptosis in AIH-related liver injury through STAT3-IFI16 axis.

간염1호방(肝炎1號方)이 실험동물(實驗動物)의 급만성(急慢性) 간손상(肝損傷)에 미치는 영향(影響) (Influence of Ganyeumilhobang on Acute and Chronic Liver Injury in Experimental Animal)

  • 최수덕;김영진;김강산
    • 대한한방내과학회지
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    • 제19권1호
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    • pp.22-38
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    • 1998
  • This study was to investigate the hepatoprotective and anticirrhotic effects of Ganyeumilhobang(GIE) on the acute and chronic liver injury induced by various agents. Chronic liver injury induced by dimethylnitrosamine(DMN) ; a new experimental model for cirrhosis and the intraperitoneal injection of dimethylnitrosamine in the rat. Acute liver njury induced by carbon tetrachloride$(CCl_4)$ and D-galactosamine ; a experimental model for acute liver injury, the administration of $CCl_4$ and the intraperitoneal injection of D-galactosamine in the rat. The development of fibrosis and acute liver injury by the three prescriptions were examined by the chemical analysis of AST, ALT, prothrombin time and hydroxyproline. The results obtained were as follows. 1. The increasing level of hydroxyproline volume induced by DMN in mice was decreased by the oral administration of GIB. 2. The degree of histological fibrosis and hepatic inflammatory cell infiltration induced by $CCl_4$ decreased by the oral administration of GIB. 3. The increase of senun AST and ALT of mice with acute liver damage induced by $CCl_4$ and D-galactosamine was inhibited by the administration of GIB. 4. The prolongation of prothrombin time(seconds) of mice acute liver damage induced by $CCl_4$ was shortened by the oral administration of GIB. 5. The liver of mice was hepatectomized partial1y after the oral administration of GIB. The mitotic index(% of nuclei), weight of liver, contents of protein, RNA and DNA synthesis of the liver tissue were increased by the oral administration of GIB.

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Ga-mi-Yuk-Mi-Jihwang-Tang Ameliorates LPS-injected acute Liver Injury via Regulation of Sirtuin6 in Inflammasome Triggered-pyroptosis Using Mice Model

  • 임수아;조명래;김태수;성수희;김보람;최경민;정진우
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2022년도 추계학술대회
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    • pp.114-114
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    • 2022
  • Excessive endogenous endotoxin, especially lipopolysaccharide (LPS) reflux from gastrointestinal (GI) tract to the liver tissue is one of the most serious reasons of severe and acute liver injury which is mainly mediated by Kupffer cell activations. However, there is no clear molecular clues to explain the exact pathophysiological mechanism and effective drugs available till nowadays. We aimed to comprehend the pathophysiological features of LPS-induced liver injury and evaluate the efficacies of potential therapeutic drug, Ga-mi-Yuk-Mi-Jihwang-Tang (GYM), which is composed of herbal plants. GYM remarkably caused to normalize hepatic inflammation and oxidations against LPS-induced liver injury by evidence of serum liver enzymes, histopathological analysis, both hepatic protein and gene expression levels of pro-inflammatory cytokines, nitric oxide levels, and hepatic tissue levels of reactive oxygen species (ROS) levels, malondialdehyde (MDA), and 4-hydroxyneoneal, respectively. To assess molecular events in the hepatic tissue, we further found hepatic Sirtuin6 (Sirt6) levels were considerably depleted by LPS injection with aberrant alterations of Nrf2/HO-1 signaling pathways, whereas administration with GYM notably exerted to normalize these abnormalities. Our results exhibited that GYM would be one of target drug to diminish hepatic inflammation as well as oxidative stress by regulation of hepatic Sirt6 levels.

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Glycochenodeoxycholic Acid Induces Cell Death in Primary Cultured Rat Hepatocyte: Apoptosis and Necrosis

  • Chu, Sang-Hui;Park, Wol-Mi;Lee, Kyung-Eun;Pae, Young-Sook
    • The Korean Journal of Physiology and Pharmacology
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    • 제3권6호
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    • pp.565-570
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    • 1999
  • Intracellular accumulation of bile acids in the hepatocytes during cholestasis is thought to be pathogenic in cholestatic liver injury. Due to the detergent-like effect of the hydrophobic bile acids, hepatocellular injury has been attributed to direct membrane damage. However histological findings of cholestatic liver diseases suggest apoptosis can be a mechanism of cell death during cholestatic liver diseases instead of necrosis. To determine the pattern of hepatocellular toxicity induced by bile acid, we incubated primary cultured rat hepatocytes with a hydrophobic bile acid, Glycochenodeoxycholate (GCDC), up to 5 hours. After 5 hours incubation with $400\;{\mu}M$ GCDC, lactate dehydrogenase released significantly. Cell viability, quantitated in propidium iodide stained cells concomitant with fluoresceindiacetate was decreased time- and dose-dependently. Most nuclei with condensed chromatin and shrunk cytoplasm were heavily labelled time- and dose-dependently by a positive TUNEL reaction. These findings suggest that both apoptosis and necrosis are involved in hepatocytes injury caused by GCDC.

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Updates on the Immune Cell Basis of Hepatic Ischemia-Reperfusion Injury

  • Mi Jeong Heo;Ji Ho Suh;Kyle L. Poulsen;Cynthia Ju;Kang Ho Kim
    • Molecules and Cells
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    • 제46권9호
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    • pp.527-534
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    • 2023
  • Liver ischemia-reperfusion injury (IRI) is the main cause of organ dysfunction and failure after liver surgeries including organ transplantation. The mechanism of liver IRI is complex and numerous signals are involved but cellular metabolic disturbances, oxidative stress, and inflammation are considered the major contributors to liver IRI. In addition, the activation of inflammatory signals exacerbates liver IRI by recruiting macrophages, dendritic cells, and neutrophils, and activating NK cells, NKT cells, and cytotoxic T cells. Technological advances enable us to understand the role of specific immune cells during liver IRI. Accordingly, therapeutic strategies to prevent or treat liver IRI have been proposed but no definitive and effective therapies exist yet. This review summarizes the current update on the immune cell functions and discusses therapeutic potentials in liver IRI. A better understanding of this complex and highly dynamic process may allow for the development of innovative therapeutic approaches and optimize patient outcomes.