ALF, Acute liver failure

ALF,急性肝衰竭
  • 文章类型: Journal Article
    未经证实:对乙酰氨基酚(APAP)诱导的急性肝损伤(AILI)是急性肝衰竭(ALF)的主要原因。N-乙酰半胱氨酸(NAC)仅在APAP中毒后24小时内有效,迫切需要治疗这种疾病的替代方法。本研究旨在测试卡萨利菌素(Camp)是否,这是慢性肝病的保护因素,保护小鼠免受APAP诱导的肝损伤和ALF。
    未经证实:在小鼠中产生临床相关的AILI模型和APAP诱导的ALF模型。使用遗传和药理学方法来干扰体内cathelicidin的水平。
    未经证实:在APAP中毒的小鼠中观察到肝前CRAMP/CRAMP(小鼠cathelicidin的前体和成熟形式)的增加。上调的cathelicidin源自肝脏浸润的中性粒细胞。与野生型同窝相比,camp敲除对肝损伤没有影响,但抑制了AILI的肝修复,并降低了APAP诱导的ALF的生存率。在APAP攻击的Camp敲除小鼠中观察到CRAMP施用逆转了受损的肝脏恢复。延迟崩溃,CRAMP(1-39)(CRAMP的扩展形式),或LL-37(人导管素的成熟形式)治疗表现出对于AILI的治疗益处。在AILI中联合治疗cathelicidin和NAC显示出比单独的NAC更强的肝保护作用。在APAP诱导的ALF中观察到CRAMP(1-39)/LL-37和NAC的类似累加效应。cathelicidin在APAP受损肝脏中的修复作用归因于肝脏修复开始时炎症的加速消退。可能通过自分泌方式增强中性粒细胞吞噬坏死细胞碎片。
    UNASSIGNED:Cathelicidin通过促进炎症消退促进肝脏恢复,从而减少APAP诱导的小鼠肝损伤和ALF,提示晚期AILI伴或不伴ALF患者的治疗潜力。
    未经证实:对乙酰氨基酚诱导的急性肝损伤是急性肝衰竭的主要原因。N-乙酰半胱氨酸的功效,唯一的临床批准的药物对乙酰氨基酚诱导的急性肝损伤,对于晚期出现的患者显着降低。我们发现cathelicidin在对乙酰氨基酚诱导的肝损伤或急性肝衰竭的小鼠中表现出巨大的治疗潜力。通过特异性促进对乙酰氨基酚中毒后的肝脏修复,弥补了N-乙酰半胱氨酸治疗的局限性。cathelicidin的促修复作用,作为中性粒细胞的关键效应分子,在APAP损伤的肝脏中,炎症在肝脏修复开始时加速消退,可能通过自分泌方式增强中性粒细胞的吞噬功能。
    UNASSIGNED: Acetaminophen (APAP)-induced acute liver injury (AILI) is a leading cause of acute liver failure (ALF). N-acetylcysteine (NAC) is only effective within 24 h after APAP intoxication, raising an urgent need for alternative approaches to treat this disease. This study aimed to test whether cathelicidin (Camp), which is a protective factor in chronic liver diseases, protects mice against APAP-induced liver injury and ALF.
    UNASSIGNED: A clinically relevant AILI model and an APAP-induced ALF model were generated in mice. Genetic and pharmacological approaches were used to interfere with the levels of cathelicidin in vivo.
    UNASSIGNED: An increase in hepatic pro-CRAMP/CRAMP (the precursor and mature forms of mouse cathelicidin) was observed in APAP-intoxicated mice. Upregulated cathelicidin was derived from liver-infiltrating neutrophils. Compared with wild-type littermates, Camp knockout had no effect on hepatic injury but dampened hepatic repair in AILI and reduced survival in APAP-induced ALF. CRAMP administration reversed impaired liver recovery observed in APAP-challenged Camp knockout mice. Delayed CRAMP, CRAMP(1-39) (the extended form of CRAMP), or LL-37 (the mature form of human cathelicidin) treatment exhibited a therapeutic benefit for AILI. Co-treatment of cathelicidin and NAC in AILI displayed a stronger hepatoprotective effect than NAC alone. A similar additive effect of CRAMP(1-39)/LL-37 and NAC was observed in APAP-induced ALF. The pro-reparative role of cathelicidin in the APAP-damaged liver was attributed to an accelerated resolution of inflammation at the onset of liver repair, possibly through enhanced neutrophil phagocytosis of necrotic cell debris in an autocrine manner.
    UNASSIGNED: Cathelicidin reduces APAP-induced liver injury and ALF in mice by promoting liver recovery via facilitating inflammation resolution, suggesting a therapeutic potential for late-presenting patients with AILI with or without ALF.
    UNASSIGNED: Acetaminophen-induced acute liver injury is a leading cause of acute liver failure. The efficacy of N-acetylcysteine, the only clinically approved drug against acetaminophen-induced acute liver injury, is significantly reduced for late-presenting patients. We found that cathelicidin exhibits a great therapeutic potential in mice with acetaminophen-induced liver injury or acute liver failure, which makes up for the limitation of N-acetylcysteine therapy by specifically promoting liver repair after acetaminophen intoxication. The pro-reparative role of cathelicidin, as a key effector molecule of neutrophils, in the APAP-injured liver is attributed to an accelerated resolution of inflammation at the onset of liver repair, possibly through enhanced phagocytic function of neutrophils in an autocrine manner.
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  • 文章类型: Journal Article
    未经证实:对乙酰氨基酚(APAP)诱导的急性肝损伤(ALI)是一个全球性的健康问题,其特征是对其发病机制的不完全了解和治疗方法不令人满意。NEK7在细胞周期调控和炎症中起关键作用。在本研究中,我们研究了NEK7在APAP诱导的ALI中的作用和机制。
    UNASSIGNED:在NEK7过表达的小鼠中(流体动力学尾静脉注射NEK7质粒),肝细胞特异性NEK7敲除(cKO),和诱导型NEK7敲除(iKO),过量服用APAP诱导ALI.通过分析血清肝酶来确定肝损伤,病理变化,炎性细胞因子,和代谢学概况。体外,肝细胞损伤通过细胞活力分析进行评估,活性氧的水平,和线粒体在不同细胞系中的功能。通过Ki-67染色确定肝细胞增殖和细胞周期状态,EdU染色,和细胞周期蛋白水平。
    未经证实:NEK7在APAP诱导的受损肝脏和受损肝细胞中显著下调。肝脏中NEK7的过表达显著减轻APAP诱导的肝损伤,如肝功能恢复所示,减少病理损伤,减少炎症和氧化应激,这在肝细胞细胞系中得到证实。此外,NEK7cKO和iKO小鼠均表现出APAP诱导的ALI加重。最后,我们确定细胞周期蛋白B1介导的细胞周期进程可以介导NEK7对APAP诱导的ALI的保护作用。
    未经证实:降低的NEK7有助于APAP引起的ALI,可能是由于细胞周期蛋白失调和干扰细胞周期进程。
    UASSIGNED:对乙酰氨基酚引起的急性肝损伤是全球主要健康问题之一,由于其发病率高,潜在的严重程度,和有限的治疗选择。我们目前对其发病机制的理解是不完整的。在这里,我们已经证明,NEK7(一种在细胞周期中起关键作用的蛋白质)减少会加剧对乙酰氨基酚诱导的急性肝损伤.因此,NEK7可能是预防或治疗这种疾病的可能的治疗靶标。
    UNASSIGNED: Acetaminophen (APAP)-induced acute liver injury (ALI) is a global health issue characterised by an incomplete understanding of its pathogenesis and unsatisfactory therapies. NEK7 plays critical roles in both cell cycle regulation and inflammation. In the present study, we investigated the role and mechanism of NEK7 in APAP-induced ALI.
    UNASSIGNED: In mice with NEK7 overexpression (hydrodynamic tail vein injection of NEK7 plasmids), hepatocyte-specific NEK7 knockout (cKO), and inducible NEK7 knockout (iKO), an overdose of APAP was administered to induce ALI. Liver injury was determined by an analysis of serum liver enzymes, pathological changes, inflammatory cytokines, and metabonomic profiles. In vitro, hepatocyte damage was evaluated by an analysis of cell viability, the reactive oxygen species levels, and mitochondrial function in different cell lines. Hepatocyte proliferation and the cell cycle status were determined by Ki-67 staining, EdU staining, and the cyclin levels.
    UNASSIGNED: NEK7 was markedly downregulated in APAP-induced injured liver and damaged hepatocytes. NEK7 overexpression in the liver significantly alleviated APAP-induced liver injury, as shown by the restored liver function, reduced pathological injury, and decreased inflammation and oxidative stress, which was confirmed in a hepatocyte cell line. Moreover, both NEK7 cKO and iKO mice exhibited exacerbation of APAP-induced ALI. Finally, we determined that cyclin B1-mediated cell cycle progression could mediate the protective effect of NEK7 against APAP-induced ALI.
    UNASSIGNED: Reduced NEK7 contributes to APAP-induced ALI, possibly by dysregulating cyclins and disturbing cell cycle progression.
    UNASSIGNED: Acetaminophen-induced acute liver injury is one of the major global health issues, owing to its high incidence, potential severity, and limited therapeutic options. Our current understanding of its pathogenesis is incomplete. Herein, we have shown that reduced NEK7 (a protein with a key role in the cell cycle) exacerbates acetaminophen-induced acute liver injury. Hence, NEK7 could be a possible therapeutic target for the prevention or treatment of this condition.
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  • 文章类型: Journal Article
    对乙酰氨基酚(APAP)过量是药物性肝损伤的主要原因,其预后取决于肝细胞死亡和再生之间的平衡。据报道,Sirtuin6(SIRT6)可以防止氧化应激相关的DNA损伤。但SIRT6是否调节APAP诱导的肝毒性仍不清楚。在这项研究中,在APAP治疗后6和48小时,小鼠肝脏中核和总SIRT6的蛋白表达上调,分别。AML12细胞中Sirt6敲低加重APAP诱导的肝细胞死亡和氧化应激,抑制细胞活力和增殖,并下调CCNA1、CCND1和CKD4蛋白水平。Sirt6敲低可显著阻止APAP诱导的NRF2激活,降低了GSTμ和NQO1的转录活性以及Nrf2,Ho-1,Gstα和Gstμ的mRNA水平。此外,SIRT6显示与NRF2的潜在蛋白质相互作用,如通过共免疫沉淀(Co-IP)测定所证明的。此外,P53对APAP诱导的肝细胞损伤的保护作用是Sirt6依赖性的。在P53-/-小鼠中Sirt6mRNA显著下调。P53激活SIRT6的转录活性并与SIRT6相互作用。我们的结果表明,SIRT6通过减轻氧化应激和促进肝细胞增殖来保护APAP肝毒性,并为SIRT6作为连接P53和NRF2的关键对接分子的功能提供了新的见解。
    Acetaminophen (APAP) overdose is the leading cause of drug-induced liver injury, and its prognosis depends on the balance between hepatocyte death and regeneration. Sirtuin 6 (SIRT6) has been reported to protect against oxidative stress-associated DNA damage. But whether SIRT6 regulates APAP-induced hepatotoxicity remains unclear. In this study, the protein expression of nuclear and total SIRT6 was up-regulated in mice liver at 6 and 48 h following APAP treatment, respectively. Sirt6 knockdown in AML12 cells aggravated APAP-induced hepatocyte death and oxidative stress, inhibited cell viability and proliferation, and downregulated CCNA1, CCND1 and CKD4 protein levels. Sirt6 knockdown significantly prevented APAP-induced NRF2 activation, reduced the transcriptional activities of GSTμ and NQO1 and the mRNA levels of Nrf2, Ho-1, Gstα and Gstμ. Furthermore, SIRT6 showed potential protein interaction with NRF2 as evidenced by co-immunoprecipitation (Co-IP) assay. Additionally, the protective effect of P53 against APAP-induced hepatocytes injury was Sirt6-dependent. The Sirt6 mRNA was significantly down-regulated in P53 -/- mice. P53 activated the transcriptional activity of SIRT6 and exerted interaction with SIRT6. Our results demonstrate that SIRT6 protects against APAP hepatotoxicity through alleviating oxidative stress and promoting hepatocyte proliferation, and provide new insights in the function of SIRT6 as a crucial docking molecule linking P53 and NRF2.
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  • 文章类型: Journal Article
    为了探讨与乙型肝炎病毒(HBV)感染相关的急性肝衰竭(ALF)发病机制,本研究旨在使用HBV相关ALF患者的样本确定潜在的关键基因和通路。GSE38941阵列数据集从基因表达综合数据库下载,和差异表达基因(DEGs)来自10个健康供者的10个肝脏样本和17个肝脏标本来自4例HBV相关ALF使用线性模型的微阵列数据包进行分析。进行了DEGs的基因本体论和KEGG途径富集分析,然后是基因的功能注释和蛋白质-蛋白质相互作用(PPI)网络的构建。随后识别并分析了子网模块。总的来说,确定了3142个DEG,其中1755年上调,1387年下调。细胞外外泌体,免疫反应,和炎症反应通路可能被用作ALF发病机制的生物标志物。总的来说,17个基因(包括CCR5、CXCR4、ALB、C3、VGEFA、和IGF1)被鉴定为PPI网络中的hub基因,因此可能是HBV相关ALF的潜在标记基因。
    In order to explore the molecular mechanisms behind the pathogenesis of acute liver failure (ALF) associated with hepatitis B virus (HBV) infection, the present study aimed to identify potential key genes and pathways involved using samples from patients with HBV-associated ALF. The GSE38941 array dataset was downloaded from the Gene Expression Omnibus database, and differentially expressed genes (DEGs) between 10 liver samples from 10 healthy donors and 17 liver specimens from 4 patients with HBV-associated ALF were analyzed using the Linear Models for Microarray Data package. Gene Ontology and KEGG pathway enrichment analyses of the DEGs were performed, followed by functional annotation of the genes and construction of a protein-protein interaction (PPI) network. Subnetwork modules were subsequently identified and analyzed. In total, 3142 DEGs were identified, of which 1755 were upregulated and 1387 were downregulated. The extracellular exosome, immune response, and inflammatory response pathways may potentially be used as biomarkers of ALF pathogenesis. In total, 17 genes (including CCR5, CXCR4, ALB, C3, VGEFA, and IGF1) were identified as hub genes in the PPI network and may therefore be potential marker genes for HBV-associated ALF.
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