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炎症小体在机体血脑屏障损伤中的作用机制研究进展 总被引:1,自引:0,他引:1
血脑屏障(blood-brain barrier,BBB)是一种天然的结构和功能屏障,可抑制病原体的进入并严格控制分子进入脑实质,完整的血脑屏障对于维持中枢神经系统内稳态至关重要。这一屏障功能是由特殊的多细胞结构决定的,每一种组成的细胞类型对血脑屏障的完整性都有不可或缺的贡献。炎症小体(inflammasome)是先天免疫系统最重要的组成部分之一,是一种多蛋白复合体。当病原侵入或机体产生过度免疫反应时,能够激活炎症小体并介导大量细胞因子以及趋化因子分泌。细胞因子及趋化因子表达上调会引起血脑屏障破坏,导致病原突破血脑屏障进入中枢神经系统,引发机体各种脑内疾病。本文就感染性疾病与非感染性疾病这两种情况下,对炎症小体介导机体血脑屏障的损伤进行综述,并列举了当前针对血脑屏障损伤的不同修复方式。 相似文献
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Ivan Tattoli Andrzej Grajkowski Assaf Levi Beverly H Koller Irving C Allen Serge L Beaucage Katherine A Fitzgerald Jenny P ‐Y Ting John C Cambier Stephen E Girardin Christian Schindler 《EMBO reports》2013,14(10):900-906
The cyclic dinucleotides 3'‐5'diadenylate (c‐diAMP) and 3'‐5' diguanylate (c‐diGMP) are important bacterial second messengers that have recently been shown to stimulate the secretion of type I Interferons (IFN‐Is) through the c‐diGMP‐binding protein MPYS/STING. Here, we show that physiologically relevant levels of cyclic dinucleotides also stimulate a robust secretion of IL‐1β through the NLRP3 inflammasome. Intriguingly, this response is independent of MPYS/STING. Consistent with most NLRP3 inflammasome activators, the response to c‐diGMP is dependent on the mobilization of potassium and calcium ions. However, in contrast to other NLRP3 inflammasome activators, this response is not associated with significant changes in mitochondrial potential or the generation of mitochondrial reactive oxygen species. Thus, cyclic dinucleotides activate the NLRP3 inflammasome through a unique pathway that could have evolved to detect pervasive bacterial pathogen‐associated molecular patterns associated with intracellular infections. 相似文献
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Feng‐Chieh Li Sheng‐Lin Lee Hung‐Ming Lin Chih‐Ju Lin Sheng‐Shun Wang Yu‐Yang Lee Su‐Yen Lo Tzu‐Lin Sun Wei‐Liang Chen Wen Lo Nicholas Horton Chris Xu Shu‐Jen Chiang Yang‐Fang Chen Hsuan‐Shu Lee Chen‐Yuan Dong 《Journal of biophotonics》2019,12(3)
Acetaminophen (APAP) overdose is one of the world's leading causes of drug‐induced hepatotoxicity. Although traditional methods such as histological imaging and biochemical assays have been successfully applied to evaluate the extent of APAP‐induced liver damage, detailed effect of how APAP overdose affect the recovery of hepatobiliary metabolism and is not completely understood. In this work, we used intravital multiphoton microscopy to image and quantify hepatobiliary metabolism of the probe 6‐carboxyfluorescein diacetate in APAP‐overdose mice. We analyzed hepatobiliary metabolism for up to 7 days following the overdose and found that the excretion of the probe molecule was the most rapid on Day 1 following APAP overdose and slowed down on Days 2 and 3. On Day 7, probe excretion capability has exceeded that of the normal mice, suggesting that newly regenerated hepatocytes have higher metabolic capabilities. Our approach may be further developed applied to studying drug‐induced hepatotoxicity in vivo. 相似文献
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ABSTRACTWe investigated the potential hepatoprotective effects of misoprostol (MP) on doxorubicin (DOX) induced liver injury in rats using histology and biochemistry. We used 21 male Sprague-Dawley rats divided randomly into three groups: group 1, control; group 2, DOX; group 3, DOX + MP. The control group was injected intraperitoneally (i.p.) with 0.5 ml 0.9% w/v NaCl and given 1 ml 0.9% NaCl orally for 6 days. DOX was administered i.p. as a single dose of 20 mg/kg. MP, 0.2 mg/kg, was given orally for 6 days. Treatment with MP increased high density lipoprotein cholesterol levels and decreased serum alanine aminotransferase, aspartate aminotransferase, low density lipoprotein cholesterol, triglycerides and total cholesterol levels significantly in serum. Increased malondialdehyde level and decreased catalase, glutathione and superoxide dismutase levels caused by DOX were suppressed significantly in liver tissue by MP. DOX + MP reduced loss of body weight. Oxidative stress was decreased, antioxidant activity was increased and histopathological changes were reduced in the DOX + MP group compared to the DOX group. Liver injury caused by DOX was attenuated by MP treatment owing to the antioxidative and anti-apoptotic effects of MP, which might be useful for reducing the severity of DOX induced liver injury. 相似文献
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Xiaoyu Qu Huan Gao Lina Tao Yueming Zhang Jinghui Zhai Yanqing Song Sixi Zhang 《Journal of biochemical and molecular toxicology》2019,33(1)
The nucleotide‐binding oligomerization domain‐like receptor family, pyrin domain containing 3 (NLRP3) inflammasome has a key role in the inflammatory response. We found that cisplatin (7.5, 15 mg/kg, IV) could induce acute injury to the liver and kidneys of rats. Western blot and immunohistochemical analyses showed that expression of NLRP3, caspase‐1 and interleukin‐1β was upregulated significantly in a dose‐dependent manner after cisplatin exposure. Autophagy could inhibit NLRP3 expression and assembly of the NLRP3 inflammasome. Expression of light chain 3 II/I and p62 suggested that autophagy was inhibited during injury to the liver and kidneys. These data suggested that cisplatin might activate NLRP3 by inhibiting autophagy in the liver and kidneys of rats. 相似文献
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Age‐related sensitivity to endotoxin‐induced liver inflammation: Implication of inflammasome/IL‐1β for steatohepatitis 下载免费PDF全文
Ki Wung Chung Eun Kyeong Lee Dae Hyun Kim Hye Jin An Nam Deuk Kim Dong Soon Im Jaewon Lee Byung Pal Yu Hae Young Chung 《Aging cell》2015,14(4):524-533
Aging is associated with increased vulnerability to inflammatory challenge. However, the effects of altered inflammatory response on the metabolic status of tissues or organs are not well documented. In this study, we present evidence demonstrating that lipopolysaccharide (LPS)-induced upregulation of the inflammasome/IL-1β pathway is accompanied with an increased inflammatory response and abnormal lipid accumulation in livers of aged rats. To monitor the effects of aging on LPS-induced inflammation, we administered LPS (2 mg kg−1) to young (6-month old) and aged (24-month old) rats and found abnormal lipid metabolism in only aged rats with increased lipid accumulation in the liver. This lipid accumulation in the liver was due to the dysregulation of PPARα and SREBP1c. We also observed severe liver inflammation in aged rats as indicated by increased ALT levels in serum and increased Kupffer cells in the liver. Importantly, among many inflammation-associated factors, the aged rat liver showed chronically increased IL-1β production. Increased levels of IL-1β were caused by the upregulation of caspase-1 activity and inflammasome activation. In vitro studies with HepG2 cells demonstrated that treatment with IL-1β significantly induced lipid accumulation in hepatocytes through the regulation of PPARα and SREBP1c. In summary, we demonstrated that LPS-induced liver inflammation and lipid accumulation were associated with a chronically overactive inflammasome/IL-1β pathway in aged rat livers. Based on the present findings, we propose a mechanism of aging-associated progression of steatohepatitis induced by endotoxin, delineating a pathogenic role of the inflammasome/IL-1β pathway involved in lipid accumulation in the liver. 相似文献
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Xiaoyong Li Jiaqiong Lin Yan Lin Zena Huang Yuguo Pan Peng Cui Chicai Yu Cun Cai Jintang Xia 《Journal of cellular biochemistry》2019,120(3):4385-4397
Acetaminophen (APAP) is a widely used over-the-counter analgesic and antipyretic. It can cause hepatotoxicity. Recent studies demonstrated that hydrogen sulfide (H2S) exhibits cell protection in several cell types. This study was designed to investigate whether H 2S ameliorated APAP-induced acute liver injury and to elucidate its mechanisms. In this study, we analyzed the detailed biological and molecular processes of APAP-induced hepatotoxicity using a bioinformatics analysis, which showed that apoptosis and the c-Jun N-terminal kinase (JNK)/mitogen-activated protein kinase pathway were confirmed to play critical roles in these processes. We further investigated the protective effects of H 2S on APAP-induced hepatotoxicity. In vivo, we observed that the exogenous supplement of H 2S ameliorated APAP-induced liver injury. Cystathionine-β-synthase (CBS) and cystathionine-γ-lyase (CSE) systems were the endogenous pathway of H 2S. The expression of CBS/CSE was decreased in APAP-treated mice, while H 2S could significantly restore it. In addition, APAP-induced JNK activation was inhibited by H 2S in vivo. In vitro, H 2S abolished the active effects of APAP on caspase3, Bax, and Bcl-2 expressions as well as JNK phosphorylation in hepatocytes. It was found through flow cytometry that the amount of APAP-induced apoptotic hepatocytes was decreased in the presence of H 2S. In conclusion, our results suggested that H 2S attenuated APAP-induced apoptosis in hepatocytes through JNK/MAPK siganaling pathway. 相似文献
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Xiaohe Li Shuaibo Shao Hailong Li Zhun Bi Shanshan Zhang Yiying Wei Jiakun Bai Ruotong Zhang Xiaoyang Ma Bowei Ma Liang Zhang Chunfeng Xie Wen Ning Honggang Zhou Cheng Yang 《Journal of cellular and molecular medicine》2020,24(15):8623-8635
Liver fibrosis is a disease caused by long‐term damage that is related to a number of factors. The current research on the treatment of liver fibrosis mainly focuses on the activation of hepatic stellate cell, in addition to protecting liver cells. byakangelicin has certain anti‐inflammatory ability, but its effect on liver fibrosis is unclear. This study aims to explore whether byakangelicin plays a role in the development of liver fibrosis and to explore its mechanism. We determined that byakangelicin has a certain ability to resist fibrosis and reduce liver cell damage in a model of carbon tetrachloride–induced liver fibrosis in mice. Thereafter, we performed further verification in vitro. The signalling pathways of two important pro‐fibrotic cytokines, transforming growth factor‐β and platelet‐derived growth factor, were studied. Results showed that byakangelicin can inhibit related pathways. According to the hepatoprotective effect of byakangelicin observed in animal experiments, we studied the effect of byakangelicin on 4‐HNE–induced hepatocyte (HepG2) apoptosis and explored its related pathways. The results showed that byakangelicin could attenuate 4‐HNE–induced hepatocyte apoptosis via inhibiting ASK‐1/JNK signalling. In conclusion, byakangelicin could improve carbon tetrachloride–induced liver fibrosis and liver injury by inhibiting hepatic stellate cell proliferation and activation and suppressing hepatocyte apoptosis. 相似文献
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A hot‐water extract of Sanguisorba officinalis ameliorates endotoxin‐induced septic shock by inhibiting inflammasome activation 下载免费PDF全文
Dong‐Won Seo Yong‐Il Cho Suna Gu Da‐Hee Kim Young‐Joo Yi Sang‐Myeong Lee 《Microbiology and immunology》2018,62(1):44-54
The inflammasome is a multiprotein signaling complex that mediates inflammatory innate immune responses through caspase 1 activation and subsequent IL‐1β secretion. However, because its aberrant activation often leads to inflammatory diseases, targeting the inflammasome holds promise for the treatment of inflammation‐related diseases. In this study, it was found that a hot‐water extract of Sanguisorba officinalis (HSO) suppresses inflammasome activation triggered by adenosine 5′‐triphosphate, nigericin, microbial pathogens, and double stranded DNA in bone marrow‐derived macrophages. HSO was found to significantly suppress IL‐1β production in a dose‐dependent manner; this effect correlated well with small amounts of caspase 1 and little ASC pyroptosome formation in HSO‐treated cells. The anti‐inflammatory activity of HSO was further confirmed in a mouse model of endotoxin‐induced septic shock. Oral administration of HSO reduced IL‐1β titers in the serum and peritoneal cavity, increasing the survival rate. Taken together, our results suggest that HSO is an inhibits inflammasome activation through nucleotide‐binding domain and leucine‐rich repeat pyrin domain 3, nucleotide‐binding domain and leucine‐rich repeat caspase recruitment domain 4 and absent in melanoma 2 pathways, and may be useful for treatment of inflammasome‐mediated diseases. 相似文献
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Jihye Han Joonbeom Bae Chang-Yong Choi Sang-Pil Choi Hyung-Sik Kang Eun-Kyeong Jo 《Autophagy》2016,12(12):2326-2343
Severe hepatic inflammation is a common cause of acute or chronic liver disease. Macrophages are one of the key mediators which regulate the progress of hepatic inflammation. Increasing evidence shows that the TAM (TYRO3, AXL and MERTK) family of RTKs (receptor tyrosine kinases), which is expressed in macrophages, alleviates inflammatory responses through a negative feedback loop. However, the functional contribution of each TAM family member to the progression of hepatic inflammation remains elusive. In this study, we explore the role of individual TAM family proteins during autophagy induction and evaluate their contribution to hepatic inflammation. Among the TAM family of RTKs, AXL (AXL receptor tyrosine kinase) only induces autophagy in macrophages after interaction with its ligand, GAS6 (growth arrest specific 6). Based on our results, autophosphorylation of 2 tyrosine residues (Tyr815 and Tyr860) in the cytoplasmic domain of AXL in mice is required for autophagy induction and AXL-mediated autophagy induction is dependent on MAPK (mitogen-activated protein kinase)14 activity. Furthermore, induction of AXL-mediated autophagy prevents CASP1 (caspase 1)-dependent IL1B (interleukin 1, β) and IL18 (interleukin 18) maturation by inhibiting NLRP3 (NLR family, pyrin domain containing 3) inflammasome activation. In agreement with these observations, axl?/? mice show more severe symptoms than do wild-type (Axl+/+) mice following acute hepatic injury induced by administration of lipopolysaccharide (LPS) or carbon tetrachloride (CCl4). Hence, GAS6-AXL signaling-mediated autophagy induction in murine macrophages ameliorates hepatic inflammatory responses by inhibiting NLRP3 inflammasome activation. 相似文献
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Wan‐Jung Lu Kuan‐Hung Lin Mei‐Fang Tseng Kuo‐Ching Yuan Hung‐Chang Huang Joen‐Rong Sheu Ray‐Jade Chen 《Journal of cellular and molecular medicine》2019,23(3):1723-1734
Haemorrhagic shock and resuscitation (HS/R) may cause global ischaemia‐reperfusion injury, which can result in systemic inflammation, multiorgan failure (particularly liver failure) and high mortality. Hinokitiol, a bioactive tropolone‐related compound, exhibits antiplatelet and anti‐inflammatory activities. Targeting inflammatory responses is a potential strategy for ameliorating hepatic injury during HS/R. Whether hinokitiol prevents hepatic injury during HS/R remains unclear. In the present study, we determined the role of hinokitiol following HS/R. The in vivo assays revealed that hinokitiol markedly attenuated HS/R‐induced hepatic injury. Hinokitiol could inhibited NF‐κB activation and IL‐6 and TNF‐α upregulation in liver tissues. Moreover, hinokitiol reduced caspase‐3 activation, upregulated Bax and downregulated Bcl‐2. These findings suggest that hinokitiol can ameliorate liver injury following HS/R, partly through suppression of inflammation and apoptosis. Furthermore, the in vitro data revealed that hinokitiol significantly reversed hypoxia/reoxygenation (H/R)‐induced cell death and apoptosis in the primary hepatocytes. Hinokitiol prevented H/R‐induced caspase‐3 activation, PPAR cleavage, Bax overexpression and Bcl‐2 downregulation. Moreover, hinokitiol attenuated H/R‐stimulated NF‐κB activation and reduced the levels of IL‐6 and TNF‐α mRNAs, suggesting that hinokitiol can protect hepatocytes from H/R injury. Collectively, our data suggest that hinokitiol attenuates liver injury following HS/R, partly through the inhibition of NF‐κB activation. 相似文献