STING, stimulator of interferon genes

STING,干扰素基因刺激因子
  • 文章类型: Journal Article
    未经证实:XBP1调节巨噬细胞促炎反应,但其在巨噬细胞刺激因子干扰素基因(STING)激活和肝纤维化中的作用尚不清楚。X-box结合蛋白1(XBP1)已被证明可促进巨噬细胞核苷酸结合寡聚化结构域,脂肪性肝炎中富含亮氨酸的重复序列和含pyrin结构域3(NLRP3)的激活。在这里,我们旨在探讨XBP1在STING信号调节和随后的NLRP3激活肝纤维化过程中的潜在机制。
    未经证实:在人纤维化肝组织样品中测量XBP1表达。在骨髓特异性Xbp1-中诱导肝纤维化,发抖-,和Nlrp3缺陷小鼠通过四氯化碳注射,胆管结扎,或蛋氨酸/胆碱缺乏的饮食。
    UASSIGNED:尽管在小鼠和临床患者的纤维化肝巨噬细胞中观察到XBP1表达增加,骨髓特异性Xbp1缺乏或XBP1的药理抑制保护肝脏免受纤维化。此外,它以STING/IRF3依赖性方式抑制巨噬细胞NLPR3激活。氧化性线粒体损伤促进巨噬细胞自身mtDNA和cGAS/STING/NLRP3信号激活的胞浆渗漏以促进肝纤维化。机械上,RNA测序分析表明,在Xbp1缺陷型巨噬细胞中,mtDNA表达降低,BCL2/腺病毒E1B相互作用蛋白3(BNIP3)介导的线粒体自噬激活增加。染色质免疫沉淀(ChIP)分析进一步表明,剪接的XBP1直接与Bnip3启动子结合,并抑制巨噬细胞中Bnip3的转录。Xbp1缺乏通过促进巨噬细胞中BNIP3介导的线粒体自噬激活来降低mtDNA胞质释放和STING/NLRP3激活,被Bnip3击倒而废除。此外,巨噬细胞XBP1/STING信号传导有助于肝星状细胞的激活。
    UNASSIGNED:我们的研究结果表明,XBP1通过BNIP3介导的线粒体自噬调节巨噬细胞自身mtDNA胞质渗漏来控制巨噬细胞cGAS/STING/NLRP3的激活,从而提供了一种新的抗肝纤维化靶点。
    UNASSIGNED:肝纤维化是慢性肝病的典型进展过程,由炎症和免疫反应驱动,其特征在于肝脏中的细胞外基质过量。目前,目前尚无有效的肝纤维化治疗策略,导致全世界的高死亡率。在这项研究中,我们发现髓系特异性Xbp1缺乏保护小鼠肝脏免受纤维化,而XBP1抑制改善小鼠肝纤维化。这项研究得出结论,在巨噬细胞中靶向XBP1信号可能提供一种保护肝脏免受纤维化的新策略。
    UNASSIGNED: XBP1 modulates the macrophage proinflammatory response, but its function in macrophage stimulator of interferon genes (STING) activation and liver fibrosis is unknown. X-box binding protein 1 (XBP1) has been shown to promote macrophage nucleotide-binding oligomerization domain, leucine-rich repeat and pyrin domain-containing 3 (NLRP3) activation in steatohepatitis. Herein, we aimed to explore the underlying mechanism of XBP1 in the regulation of STING signalling and the subsequent NLRP3 activation during liver fibrosis.
    UNASSIGNED: XBP1 expression was measured in the human fibrotic liver tissue samples. Liver fibrosis was induced in myeloid-specific Xbp1-, STING-, and Nlrp3-deficient mice by carbon tetrachloride injection, bile duct ligation, or a methionine/choline-deficient diet.
    UNASSIGNED: Although increased XBP1 expression was observed in the fibrotic liver macrophages of mice and clinical patients, myeloid-specific Xbp1 deficiency or pharmacological inhibition of XBP1 protected the liver against fibrosis. Furthermore, it inhibited macrophage NLPR3 activation in a STING/IRF3-dependent manner. Oxidative mitochondrial injury facilitated cytosolic leakage of macrophage self-mtDNA and cGAS/STING/NLRP3 signalling activation to promote liver fibrosis. Mechanistically, RNA sequencing analysis indicated a decreased mtDNA expression and an increased BCL2/adenovirus E1B interacting protein 3 (BNIP3)-mediated mitophagy activation in Xbp1-deficient macrophages. Chromatin immunoprecipitation (ChIP) assays further suggested that spliced XBP1 bound directly to the Bnip3 promoter and inhibited the transcription of Bnip3 in macrophages. Xbp1 deficiency decreased the mtDNA cytosolic release and STING/NLRP3 activation by promoting BNIP3-mediated mitophagy activation in macrophages, which was abrogated by Bnip3 knockdown. Moreover, macrophage XBP1/STING signalling contributed to the activation of hepatic stellate cells.
    UNASSIGNED: Our findings demonstrate that XBP1 controls macrophage cGAS/STING/NLRP3 activation by regulating macrophage self-mtDNA cytosolic leakage via BNIP3-mediated mitophagy modulation, thus providing a novel target against liver fibrosis.
    UNASSIGNED: Liver fibrosis is a typical progressive process of chronic liver disease, driven by inflammatory and immune responses, and is characterised by an excess of extracellular matrix in the liver. Currently, there is no effective therapeutic strategy for the treatment of liver fibrosis, resulting in high mortality worldwide. In this study, we found that myeloid-specific Xbp1 deficiency protected the liver against fibrosis in mice, while XBP1 inhibition ameliorated liver fibrosis in mice. This study concluded that targeting XBP1 signalling in macrophages may provide a novel strategy for protecting the liver against fibrosis.
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  • 文章类型: Journal Article
    未经证实:干扰素基因(STING)/TANK结合激酶1(TBK1)途径的刺激因子在介导氧化/内质网(ER)应激期间的先天免疫和炎症反应中至关重要。然而,目前尚不清楚巨噬细胞硫氧还蛋白相互作用蛋白(TXNIP)是否在氧化应激/ER应激过程中调节TBK1功能和细胞死亡途径.
    未经证实:肝缺血/再灌注损伤(IRI)小鼠模型,原代肝细胞,和骨髓来源的巨噬细胞用于骨髓特异性TXNIP敲除(TXNIPM-KO)和TXNIP熟练(TXNIPFL/FL)小鼠。
    UNASSIGNED:TXNIPM-KO小鼠对缺血/再灌注(IR)应激诱导的肝损伤具有抗性,血清丙氨酸氨基转移酶(ALT)/天冬氨酸氨基转移酶(AST)水平降低,巨噬细胞/中性粒细胞浸润,和促炎介质与TXNIPFL/FL对照相比。IR应力增加TXNIP,p-STING,缺血肝脏中p-TBK1的表达。然而,TXNIPM-KO抑制STING,TBK1,干扰素调节因子3(IRF3),和NF-κB激活与干扰素-β(IFN-β)表达。有趣的是,TXNIPM-KO增强核因子(红系衍生的2)样2(NRF2)活性,抗氧化基因表达增加,并减少IR应激肝脏中巨噬细胞活性氧(ROS)的产生和肝细胞凋亡/坏死。机械上,巨噬细胞TXNIP缺乏促进圆柱瘤病(CYLD),与NADPH氧化酶4(NOX4)共定位并相互作用,以通过去泛素化NOX4来增强NRF2活性。巨噬细胞NRF2或其靶基因2'的破坏,5'寡腺苷酸合成酶样1(OASL1)增强RasGTP酶激活蛋白结合蛋白1(G3BP1)和TBK1介导的炎症反应。值得注意的是,巨噬细胞OASL1缺乏诱导肝细胞凋亡肽酶活化因子1(APAF1),细胞色素c,和caspase-9激活,导致caspase-3引发的凋亡和受体相互作用的丝氨酸/苏氨酸蛋白激酶3(RIPK3)介导的坏死性凋亡增加。
    未经证实:巨噬细胞TXNIP缺乏增强CYLD活性并激活NRF2-OASL1信号,控制IR应激诱导的肝损伤。受NRF2调控的靶基因OASL1对于调节STING介导的TBK1激活和Apaf1/细胞色素c/caspase-9触发的凋亡/坏死细胞死亡途径至关重要。我们的发现强调了巨噬细胞TXNIP介导的CYLD-NRF2-OASL1轴在应激诱导的肝脏炎症和细胞死亡中的新作用,暗示肝脏炎症性疾病的潜在治疗靶点。
    UNASSIGNED:由缺血和再灌注引起的肝脏炎症和损伤(缺乏血液流向肝脏组织,然后再供应血液)是肝移植后肝功能障碍和肝功能衰竭的重要原因,切除,失血性休克.在这里,我们揭示了在这种情况下导致肝脏炎症和细胞死亡的潜在机制,并且可能是应激诱导的肝脏炎症损伤的治疗靶标。
    UNASSIGNED: The stimulator of interferon genes (STING)/TANK-binding kinase 1 (TBK1) pathway is vital in mediating innate immune and inflammatory responses during oxidative/endoplasmic reticulum (ER) stress. However, it remains unknown whether macrophage thioredoxin-interacting protein (TXNIP) may regulate TBK1 function and cell death pathways during oxidative/ER stress.
    UNASSIGNED: A mouse model of hepatic ischaemia/reperfusion injury (IRI), the primary hepatocytes, and bone marrow-derived macrophages were used in the myeloid-specific TXNIP knockout (TXNIPM-KO) and TXNIP-proficient (TXNIPFL/FL) mice.
    UNASSIGNED: The TXNIPM-KO mice were resistant to ischaemia/reperfusion (IR) stress-induced liver damage with reduced serum alanine aminotransferase (ALT)/aspartate aminotransferase (AST) levels, macrophage/neutrophil infiltration, and pro-inflammatory mediators compared with the TXNIPFL/FL controls. IR stress increased TXNIP, p-STING, and p-TBK1 expression in ischaemic livers. However, TXNIPM-KO inhibited STING, TBK1, interferon regulatory factor 3 (IRF3), and NF-κB activation with interferon-β (IFN-β) expression. Interestingly, TXNIPM-KO augmented nuclear factor (erythroid-derived 2)-like 2 (NRF2) activity, increased antioxidant gene expression, and reduced macrophage reactive oxygen species (ROS) production and hepatic apoptosis/necroptosis in IR-stressed livers. Mechanistically, macrophage TXNIP deficiency promoted cylindromatosis (CYLD), which colocalised and interacted with NADPH oxidase 4 (NOX4) to enhance NRF2 activity by deubiquitinating NOX4. Disruption of macrophage NRF2 or its target gene 2\',5\' oligoadenylate synthetase-like 1 (OASL1) enhanced Ras GTPase-activating protein-binding protein 1 (G3BP1) and TBK1-mediated inflammatory response. Notably, macrophage OASL1 deficiency induced hepatocyte apoptotic peptidase activating factor 1 (APAF1), cytochrome c, and caspase-9 activation, leading to increased caspase-3-initiated apoptosis and receptor-interacting serine/threonine-protein kinase 3 (RIPK3)-mediated necroptosis.
    UNASSIGNED: Macrophage TXNIP deficiency enhances CYLD activity and activates the NRF2-OASL1 signalling, controlling IR stress-induced liver injury. The target gene OASL1 regulated by NRF2 is crucial for modulating STING-mediated TBK1 activation and Apaf1/cytochrome c/caspase-9-triggered apoptotic/necroptotic cell death pathway. Our findings underscore a novel role of macrophage TXNIP-mediated CYLD-NRF2-OASL1 axis in stress-induced liver inflammation and cell death, implying the potential therapeutic targets in liver inflammatory diseases.
    UNASSIGNED: Liver inflammation and injury induced by ischaemia and reperfusion (the absence of blood flow to the liver tissue followed by the resupply of blood) is a significant cause of hepatic dysfunction and failure following liver transplantation, resection, and haemorrhagic shock. Herein, we uncover an underlying mechanism that contributes to liver inflammation and cell death in this setting and could be a therapeutic target in stress-induced liver inflammatory injury.
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  • 文章类型: Journal Article
    到目前为止,衰老是阿尔茨海默病(AD)最突出的危险因素,衰老和AD都与明显的代谢改变有关。由于开发有效的治疗干预措施来治疗AD显然是迫切需要的,在临床前模型和人类患者中调节全身和细胞内代谢的影响,关于疾病的发病机理,已经被探索过了。人们对与生物性别有关的不同风险和潜在目标策略的认识也越来越高,微生物组,和昼夜节律调节。作为细胞内代谢的重要组成部分,线粒体生物能学,线粒体质量控制机制,和线粒体相关的炎症反应已被考虑用于AD治疗干预。这篇综述总结并强调了这些努力。
    Aging is by far the most prominent risk factor for Alzheimer\'s disease (AD), and both aging and AD are associated with apparent metabolic alterations. As developing effective therapeutic interventions to treat AD is clearly in urgent need, the impact of modulating whole-body and intracellular metabolism in preclinical models and in human patients, on disease pathogenesis, have been explored. There is also an increasing awareness of differential risk and potential targeting strategies related to biological sex, microbiome, and circadian regulation. As a major part of intracellular metabolism, mitochondrial bioenergetics, mitochondrial quality-control mechanisms, and mitochondria-linked inflammatory responses have been considered for AD therapeutic interventions. This review summarizes and highlights these efforts.
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  • 文章类型: Journal Article
    结直肠癌(CRC),世界范围内的恶性肿瘤由微卫星不稳定性(MSI)和稳定(MSS)表型组成。尽管SHP2是癌症治疗的一个有希望的靶点,它与先天免疫抑制的关系仍然难以捉摸。为了解决这个问题,进行单细胞RNA测序以探索SHP2在小鼠MC38异种移植物的所有细胞类型的肿瘤微环境(TME)中的作用。发现瘤内细胞在功能上是异质的,并且对SHP2变构抑制剂SHP099有显着反应。SHP099明显阻止了肿瘤细胞的恶性演变。机械上,STING-TBK1-IRF3介导的I型干扰素信号在浸润的骨髓细胞中被SHP099高度激活。值得注意的是,与MSI高表型相比,具有MSS表型的CRC患者在CD68巨噬细胞中表现出更大的巨噬细胞浸润和更有效的SHP2磷酸化,提示巨噬细胞SHP2在TME中的潜在作用。总的来说,我们的数据揭示了SHP2介导的先天免疫抑制机制,提示SHP2是结肠癌免疫治疗的一个有前景的靶点.
    Colorectal cancer (CRC), a malignant tumor worldwide consists of microsatellite instability (MSI) and stable (MSS) phenotypes. Although SHP2 is a hopeful target for cancer therapy, its relationship with innate immunosuppression remains elusive. To address that, single-cell RNA sequencing was performed to explore the role of SHP2 in all cell types of tumor microenvironment (TME) from murine MC38 xenografts. Intratumoral cells were found to be functionally heterogeneous and responded significantly to SHP099, a SHP2 allosteric inhibitor. The malignant evolution of tumor cells was remarkably arrested by SHP099. Mechanistically, STING-TBK1-IRF3-mediated type I interferon signaling was highly activated by SHP099 in infiltrated myeloid cells. Notably, CRC patients with MSS phenotype exhibited greater macrophage infiltration and more potent SHP2 phosphorylation in CD68+ macrophages than MSI-high phenotypes, suggesting the potential role of macrophagic SHP2 in TME. Collectively, our data reveals a mechanism of innate immunosuppression mediated by SHP2, suggesting that SHP2 is a promising target for colon cancer immunotherapy.
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  • 文章类型: Journal Article
    干扰素基因(STING)信号的环GMP-AMP合酶(cGAS)-刺激物通过诱导细胞因子在微生物和肿瘤免疫学中发挥重要的调节功能,主要是I型干扰素。最近,cGAS-STING轴的异常和紊乱信号与多种无菌性炎症性疾病密切相关,包括心力衰竭,心肌梗塞,心脏肥大,非酒精性脂肪性肝病,主动脉瘤和夹层,肥胖,等。这是因为大量的损伤相关分子模式(线粒体DNA,细胞外囊泡中的DNA)从代谢细胞器和组织的复发性损伤中释放,这是由路径感知。此外,cGAS-STING通路与细胞内基本稳态过程如细胞凋亡的串扰,自噬,调节细胞代谢.靶向脱轨的STING信号已经成为慢性炎性疾病所必需的。同时,过度的I型干扰素信号传导对心血管和代谢健康的影响仍然难以捉摸.在这次审查中,我们总结了cGAS-STING通路与心血管和代谢紊乱之间的密切联系。我们还讨论了该途径的一些潜在小分子抑制剂。这篇综述提供了见解,以激发人们对心血管和代谢组织和疾病中这种信号轴的兴趣并支持未来的研究。
    The cyclic GMP-AMP synthase (cGAS)-stimulator of interferon genes (STING) signaling exert essential regulatory function in microbial-and onco-immunology through the induction of cytokines, primarily type I interferons. Recently, the aberrant and deranged signaling of the cGAS-STING axis is closely implicated in multiple sterile inflammatory diseases, including heart failure, myocardial infarction, cardiac hypertrophy, nonalcoholic fatty liver diseases, aortic aneurysm and dissection, obesity, etc. This is because of the massive loads of damage-associated molecular patterns (mitochondrial DNA, DNA in extracellular vesicles) liberated from recurrent injury to metabolic cellular organelles and tissues, which are sensed by the pathway. Also, the cGAS-STING pathway crosstalk with essential intracellular homeostasis processes like apoptosis, autophagy, and regulate cellular metabolism. Targeting derailed STING signaling has become necessary for chronic inflammatory diseases. Meanwhile, excessive type I interferons signaling impact on cardiovascular and metabolic health remain entirely elusive. In this review, we summarize the intimate connection between the cGAS-STING pathway and cardiovascular and metabolic disorders. We also discuss some potential small molecule inhibitors for the pathway. This review provides insight to stimulate interest in and support future research into understanding this signaling axis in cardiovascular and metabolic tissues and diseases.
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  • 文章类型: Journal Article
    基因组不稳定性仍然是癌症的有利特征,并促进恶性转化。DNA损伤反应(DDR)途径的改变允许基因组不稳定,产生新抗原,上调程序性死亡配体1(PD-L1)的表达,并与信号传导如干扰素基因的环GMP-AMP合酶-刺激物(cGAS-STING)信号传导相互作用。这里,我们回顾了DDR途径的基本知识,DDR改变引起的基因组不稳定性的机制,DDR改变对免疫系统的影响,以及DDR改变作为生物标志物和治疗靶点在癌症免疫治疗中的潜在应用。
    Genomic instability remains an enabling feature of cancer and promotes malignant transformation. Alterations of DNA damage response (DDR) pathways allow genomic instability, generate neoantigens, upregulate the expression of programmed death ligand 1 (PD-L1) and interact with signaling such as cyclic GMP-AMP synthase-stimulator of interferon genes (cGAS-STING) signaling. Here, we review the basic knowledge of DDR pathways, mechanisms of genomic instability induced by DDR alterations, impacts of DDR alterations on immune system, and the potential applications of DDR alterations as biomarkers and therapeutic targets in cancer immunotherapy.
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  • 文章类型: Journal Article
    焦亡是炎性细胞死亡的过程。焦亡的主要功能是诱导强烈的炎症反应,保护宿主免受微生物感染。过度焦亡,然而,导致几种炎症性疾病,包括脓毒症和自身免疫性疾病。焦度可以是规范的或非规范的。微生物感染后,典型途径响应病原体相关分子模式(PAMPs)和损伤相关分子模式(DAMPs),而非经典途径对革兰氏阴性菌的细胞内脂多糖(LPS)有反应。焦亡的最后一步需要通过规范途径中的半胱天冬酶1和半胱天冬酶4/5/11(人类的半胱天冬酶4/5/11(半胱天冬酶4/5)将D275处的gasderminD(GsdmD)裂解为N和C末端,小鼠中的caspase11)在非规范途径中。在卵裂时,GsdmD(GsdmD-N)的N端形成跨膜孔,释放细胞因子,如IL-1β和IL-18,干扰离子和水的调节,最终导致强烈的炎症和细胞死亡。由于GsdmD是焦亡的效应物,GsdmD的有希望的抑制剂已经被开发用于炎症性疾病。本文将重点综述GsdmD在焦亡和疾病中的作用。
    Pyroptosis is the process of inflammatory cell death. The primary function of pyroptosis is to induce strong inflammatory responses that defend the host against microbe infection. Excessive pyroptosis, however, leads to several inflammatory diseases, including sepsis and autoimmune disorders. Pyroptosis can be canonical or noncanonical. Upon microbe infection, the canonical pathway responds to pathogen-associated molecular patterns (PAMPs) and damage-associated molecular patterns (DAMPs), while the noncanonical pathway responds to intracellular lipopolysaccharides (LPS) of Gram-negative bacteria. The last step of pyroptosis requires the cleavage of gasdermin D (GsdmD) at D275 (numbering after human GSDMD) into N- and C-termini by caspase 1 in the canonical pathway and caspase 4/5/11 (caspase 4/5 in humans, caspase 11 in mice) in the noncanonical pathway. Upon cleavage, the N-terminus of GsdmD (GsdmD-N) forms a transmembrane pore that releases cytokines such as IL-1β and IL-18 and disturbs the regulation of ions and water, eventually resulting in strong inflammation and cell death. Since GsdmD is the effector of pyroptosis, promising inhibitors of GsdmD have been developed for inflammatory diseases. This review will focus on the roles of GsdmD during pyroptosis and in diseases.
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  • 文章类型: Journal Article
    最近鉴定的新型胞质DNA传感器环GMP-AMP合酶(cGAS)通过催化环GMP-AMP的合成激活干扰素基因的下游衔接蛋白刺激物(STING)。这反过来通过释放各种细胞因子引发先天免疫反应,包括I型干扰素.外源DNA(微生物感染)或内源DNA(核或线粒体渗漏)可以充当cGAS配体并导致cGAS-STING信号传导的激活。因此,cGAS-STING通路在感染性疾病中起着至关重要的作用,无菌炎症,肿瘤,和自身免疫性疾病。此外,cGAS-STING信号通过其他机制影响肝脏炎症的进展,如自噬和代谢。在这次审查中,我们总结了我们对cGAS-STING信号传导在不同肝脏疾病的先天免疫调节中的作用的理解的最新进展。此外,我们讨论了靶向cGAS-STING途径治疗肝病的治疗潜力。
    The recently identified novel cytosolic DNA sensor cyclic GMP-AMP synthase (cGAS) activates the downstream adaptor protein stimulator of interferon genes (STING) by catalysing the synthesis of cyclic GMP-AMP. This in turn initiates an innate immune response through the release of various cytokines, including type I interferon. Foreign DNA (microbial infection) or endogenous DNA (nuclear or mitochondrial leakage) can serve as cGAS ligands and lead to the activation of cGAS-STING signalling. Therefore, the cGAS-STING pathway plays essential roles in infectious diseases, sterile inflammation, tumours, and autoimmune diseases. In addition, cGAS-STING signalling affects the progression of liver inflammation through other mechanisms, such as autophagy and metabolism. In this review, we summarise recent advances in our understanding of the role of cGAS-STING signalling in the innate immune modulation of different liver diseases. Furthermore, we discuss the therapeutic potential of targeting the cGAS-STING pathway in the treatment of liver diseases.
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  • 文章类型: Journal Article
    包括嵌合抗原受体T细胞和免疫检查点抑制剂(ICI)的多种癌症免疫疗法已经被成功地开发以通过激发适应性抗肿瘤免疫来治疗各种癌症。特别是,检查点阻断方法在临床上取得了巨大的成功,美国食品和药物管理局(FDA)批准的几种抗程序性死亡受体1/配体1或抗细胞毒性T淋巴细胞相关蛋白4抗体证明了这一点.然而,由于肿瘤免疫原性差,大多数癌症对这些ICI的临床应答率低.的确,环磷酸鸟苷-磷酸腺苷合成酶-干扰素基因刺激因子-TANK结合激酶1(cGAS-STING-TBK1)轴现在被认为是不同物种先天免疫应答中的主要信号通路.该通路的异常信号与多种疾病密切相关,包括自身炎症,病毒感染和癌症。从这个角度来看,我们对靶向cGAS-STING-TBK1信号通路的小分子调节剂的开发及其作为新的免疫刺激疗法的临床前和临床应用的最新进展进行了最新综述.同时,临床候选人的亮点,限制和挑战,以及该领域的未来方向也进行了讨论。Further,还讨论了靶向该信号轴的小分子抑制剂及其在各种适应症中的潜在治疗用途.
    Multiple cancer immunotherapies including chimeric antigen receptor T cell and immune checkpoint inhibitors (ICIs) have been successfully developed to treat various cancers by motivating the adaptive anti-tumor immunity. Particularly, the checkpoint blockade approach has achieved great clinic success as evidenced by several U.S. Food and Drug Administration (FDA)-approved anti-programmed death receptor 1/ligand 1 or anti-cytotoxic T lymphocyte associated protein 4 antibodies. However, the majority of cancers have low clinical response rates to these ICIs due to poor tumor immunogenicity. Indeed, the cyclic guanosine monophosphate-adenosine monophosphate synthase‒stimulator of interferon genes‒TANK-binding kinase 1 (cGAS‒STING‒TBK1) axis is now appreciated as the major signaling pathway in innate immune response across different species. Aberrant signaling of this pathway has been closely linked to multiple diseases, including auto-inflammation, virus infection and cancers. In this perspective, we provide an updated review on the latest progress on the development of small molecule modulators targeting the cGAS‒STING‒TBK1 signaling pathway and their preclinical and clinical use as a new immune stimulatory therapy. Meanwhile, highlights on the clinical candidates, limitations and challenges, as well as future directions in this field are also discussed. Further, small molecule inhibitors targeting this signaling axis and their potential therapeutic use for various indications are discussed as well.
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  • 文章类型: Journal Article
    由于其简单性,DNA疫苗接种已成为一种有吸引力的癌症免疫治疗方法。稳定性,和安全。许多临床试验的结果表明,DNA疫苗对患者的耐受性良好,不会引发重大不良反应。DNA疫苗也是非常具有成本效益的,并且可以重复施用以用于长期保护。尽管有所有的实际优势,由于针对肿瘤中的内源性自身抗原的免疫耐受,DNA疫苗在诱导有效的抗原特异性细胞免疫应答方面面临挑战。已经研究了增强针对自身抗原的DNA疫苗的免疫原性的策略,包括编码异种形式的抗原,抗原与激活T细胞或触发相关识别的分子融合,用DNA载体引发,然后用病毒载体加强,和免疫调节分子的利用。这篇综述将重点讨论规避免疫耐受的策略,并提供最近临床试验的最新发现。
    DNA vaccination has emerged as an attractive immunotherapeutic approach against cancer due to its simplicity, stability, and safety. Results from numerous clinical trials have demonstrated that DNA vaccines are well tolerated by patients and do not trigger major adverse effects. DNA vaccines are also very cost effective and can be administered repeatedly for long-term protection. Despite all the practical advantages, DNA vaccines face challenges in inducing potent antigen specific cellular immune responses as a result of immune tolerance against endogenous self-antigens in tumors. Strategies to enhance immunogenicity of DNA vaccines against self-antigens have been investigated including encoding of xenogeneic versions of antigens, fusion of antigens to molecules that activate T cells or trigger associative recognition, priming with DNA vectors followed by boosting with viral vector, and utilization of immunomodulatory molecules. This review will focus on discussing strategies that circumvent immune tolerance and provide updates on findings from recent clinical trials.
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