muscarinic receptors

毒蕈碱受体
  • 文章类型: Journal Article
    InstantCascara(IC)是一种由干咖啡樱桃果肉制成的可持续饮料,咖啡加工的副产品。它富含营养物质和生物活性化合物,并具有高浓度的抗氧化剂。本研究探讨了常规IC消耗对结肠运动功能和神经支配的影响。在4周的时间里,雄性和雌性健康大鼠均给予含10mg/mLIC的饮用水。此后,获得结肠样本以评估器官浴中对乙酰胆碱(ACh)和电场刺激(EFS)的纵向(LM)和圆形(CM)平滑肌收缩反应,阿托品给药前后(10-6M)。组织学和免疫组织化学分析评估结肠损伤,肌肉厚度,和对P物质(SP)和神经元一氧化氮合酶(nNOS)的免疫反应性。ACh和EFS在各组之间引起相似的反应,但是女性对EFS的CM反应比男性更大,尽管他们的体重较低。阿托品完全阻断了对ACh的反应,但仅部分拮抗了对EFS的神经反应,特别是在接受IC治疗的女性中的CM,比暴露在水中的液体摄入量更大。然而,在肌间神经节,SP或nNOS无统计学差异。我们的结果表明,定期IC暴露可能会增强特定的神经通路功能,尤其是女性,可能是由于其IC消耗增加。
    Instant Cascara (IC) is a sustainable beverage made from dried coffee cherry pulp, a by-product of coffee processing. It is rich in nutrients and bioactive compounds and has a high concentration of antioxidants. This study explored the impact of regular IC consumption on colonic motor function and innervation. Over a period of 4 weeks, male and female healthy rats were given drinking water containing 10 mg/mL of IC. Thereafter, colon samples were obtained to evaluate the longitudinal (LM) and circular (CM) smooth muscle contractile response to acetylcholine (ACh) and electrical field stimulation (EFS) in an organ bath, before and after atropine administration (10-6 M). Histological and immunohistochemical analyses assessed colon damage, muscle thickness, and immunoreactivity to substance P (SP) and neuronal nitric oxide synthase (nNOS). ACh and EFS induced similar responses across groups, but the CM response to EFS was greater in females compared with males, despite their lower body weight. Atropine completely blocked the response to ACh but only partially antagonized the neural response to EFS, particularly that of CM in females treated with IC, which had a greater liquid intake than those exposed to water. However, in the myenteric ganglia, no statistically significant differences were observed in SP or nNOS. Our results suggest that regular IC exposure may enhance specific neural pathway functions, particularly in females, possibly due to their increased IC consumption.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    与年龄有关的条件,比如肌肉减少症,导致越来越多的社会阶层的身体残疾。在神经肌肉连接处,突触后神经营养因子脑源性神经营养因子(BDNF)和神经营养因子4(NT-4)具有神经保护功能,并有助于正确调节胞吐机制。同样,突触前毒蕈碱信号在该突触中起着基本的调节功能。然而,这些信号通路在衰老的神经肌肉系统中是否受损尚未被分析。本研究分析,通过西方印迹,BDNF/NT-4和毒蕈碱途径的主要关键蛋白的表达和激活在年轻和衰老的趾长肌(EDL)大鼠肌肉中与神经传递相关的差异。主要结果表明这些途径的几个部分存在失衡:(i)BDNF/NT-4的化学计量变化,(ii)原肌球蛋白相关激酶B受体(TrkB)-FL/TrkB-T1和神经营养受体p75(p75NTR)的失衡,(iii)磷酸化下游蛋白激酶C(PKC)βI和PKCε的细胞质/膜分布没有变化,(iv)M2亚型毒蕈碱受体和P/Q亚型电压门控钙通道的减少,(v)磷酸化哺乳动物未协调的18-1(Munc18-1)(S313)和突触体相关蛋白25(SNAP-25)(S187)的失衡,和(vi)与乙酰胆碱(Ach)的管理相关的分子的正常水平。基于这种描述性分析,我们假设可以调整这些途径以确保神经传递,而不是经历衰老引起的负面改变。然而,需要进一步的研究来评估这一假设建议.我们的结果有助于理解一些先前描述的神经肌肉功能与年龄相关的损伤。促进这些信号通路的策略可以改善老年人的神经肌肉生理学和生活质量。
    Age-related conditions, such as sarcopenia, cause physical disabilities for an increasing section of society. At the neuromuscular junction, the postsynaptic-derived neurotrophic factors brain-derived neurotrophic factor (BDNF) and neurotrophin 4 (NT-4) have neuroprotective functions and contribute to the correct regulation of the exocytotic machinery. Similarly, presynaptic muscarinic signalling plays a fundamental modulatory function in this synapse. However, whether or not these signalling pathways are compromised in ageing neuromuscular system has not yet been analysed. The present study analyses, through Western blotting, the differences in expression and activation of the main key proteins of the BDNF/NT-4 and muscarinic pathways related to neurotransmission in young versus ageing Extensor digitorum longus (EDL) rat muscles. The main results show an imbalance in several sections of these pathways: (i) a change in the stoichiometry of BDNF/NT-4, (ii) an imbalance of Tropomyosin-related kinase B receptor (TrkB)-FL/TrkB-T1 and neurotrophic receptor p 75 (p75NTR), (iii) no changes in the cytosol/membrane distribution of phosphorylated downstream protein kinase C (PKC)βI and PKCε, (iv) a reduction in the M2-subtype muscarinic receptor and P/Q-subtype voltage-gated calcium channel, (v) an imbalance of phosphorylated mammalian uncoordinated-18-1 (Munc18-1) (S313) and synaptosomal-associated protein 25 (SNAP-25) (S187), and (vi) normal levels of molecules related to the management of acetylcholine (Ach). Based on this descriptive analysis, we hypothesise that these pathways can be adjusted to ensure neurotransmission rather than undergoing negative alterations caused by ageing. However, further studies are needed to assess this hypothetical suggestion. Our results contribute to the understanding of some previously described neuromuscular functional age-related impairments. Strategies to promote these signalling pathways could improve the neuromuscular physiology and quality of life of older people.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    多发性硬化(MS)是一种导致炎性脱髓鞘的慢性和使人衰弱的神经系统疾病。虽然内源性髓鞘再生有助于恢复功能,随着时间的推移,这种恢复过程的效率往往会降低。目前,针对促进髓鞘再生的机制的努力被认为是有希望的治疗方法。M1毒蕈碱乙酰胆碱受体(M1R)先前被鉴定为少突胶质细胞分化和髓鞘形成的负调节剂。这里,我们通过使用高选择性M1R探针表征人和啮齿动物少突胶质细胞(包括人MS组织中的细胞)中的表达,验证M1R是髓鞘再生的靶标.作为传统方法论的突破,我们将荧光团与高度M1R选择性肽(MT7)缀合,该肽靶向亚纳摩尔范围的M1R。这允许异常检测人CNS中的M1R蛋白表达。更重要的是,我们引入PIPE-307,一种脑渗透剂,具有良好的药物样特性的小分子拮抗剂,选择性靶向M1R。我们在一系列体外和体内研究中评估了PIPE-307,以表征M1R相对于M2-5R的效力和选择性,并确认了阻断该受体以促进分化和髓鞘再生的充分性。Further,PIPE-307在MS的小鼠实验性自身免疫性脑脊髓炎模型中显示出显着疗效,组织学,电子显微镜,和视觉诱发电位。一起,这些发现支持靶向M1R用于髓鞘再生,并支持PIPE-307的进一步开发用于临床研究.
    Multiple sclerosis (MS) is a chronic and debilitating neurological disease that results in inflammatory demyelination. While endogenous remyelination helps to recover function, this restorative process tends to become less efficient over time. Currently, intense efforts aimed at the mechanisms that promote remyelination are being considered promising therapeutic approaches. The M1 muscarinic acetylcholine receptor (M1R) was previously identified as a negative regulator of oligodendrocyte differentiation and myelination. Here, we validate M1R as a target for remyelination by characterizing expression in human and rodent oligodendroglial cells (including those in human MS tissue) using a highly selective M1R probe. As a breakthrough to conventional methodology, we conjugated a fluorophore to a highly M1R selective peptide (MT7) which targets the M1R in the subnanomolar range. This allows for exceptional detection of M1R protein expression in the human CNS. More importantly, we introduce PIPE-307, a brain-penetrant, small-molecule antagonist with favorable drug-like properties that selectively targets M1R. We evaluate PIPE-307 in a series of in vitro and in vivo studies to characterize potency and selectivity for M1R over M2-5R and confirm the sufficiency of blocking this receptor to promote differentiation and remyelination. Further, PIPE-307 displays significant efficacy in the mouse experimental autoimmune encephalomyelitis model of MS as evaluated by quantifying disability, histology, electron microscopy, and visual evoked potentials. Together, these findings support targeting M1R for remyelination and support further development of PIPE-307 for clinical studies.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    阿尔茨海默病(Alzheimer’sdisease,AD)是全球范围内最常见的神经退行性疾病之一。历史上,这种病理与胆碱能传递有关,尽管缺乏有效的治疗方法,已经提出了许多替代过程和目标,作为理解这种复杂疾病的潜在途径。然而,支持AD的基本病理生理机制在很大程度上仍然是神秘的,越来越多的证据表明毒蕈碱受体在调节大脑适应和产生新记忆的能力方面具有重要意义。这篇综述总结了毒蕈碱受体参与AD领域的最新技术。一个具体的关键因素是合并症与新机制的出现之间的关系。
    Alzheimer\'s disease (AD) is one of the most prevalent neurodegenerative diseases on a global scale. Historically, this pathology has been linked to cholinergic transmission, and despite the scarcity of effective therapies, numerous alternative processes and targets have been proposed as potential avenues for comprehending this complex illness. Nevertheless, the fundamental pathophysiological mechanisms underpinning AD remain largely enigmatic, with a growing body of evidence advocating for the significance of muscarinic receptors in modulating the brain\'s capacity to adapt and generate new memories. This review summarizes the current state of the art in the field of muscarinic receptors\' involvement in AD. A specific key factor was the relationship between comorbidity and the emergence of new mechanisms.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    背景:蛋白激酶A(PKA)增强神经肌肉接头(NMJ)的神经传递,受神经诱导的肌肉收缩的逆行调节,通过参与突触小泡胞吐作用的分子(SNAP-25和Synapsin-1)的磷酸化来促进乙酰胆碱(ACh)的释放。然而,BDNF/TrkB通路和毒蕈碱信号对PKA亚基及其靶标的逆行调节的分子机制至今尚未得到证实。在NMJ,逆行控制主要与BDNF/TrkB信号相关,因为肌肉收缩增强BDNF水平并控制参与神经传递的特定激酶。NMJ的神经传递也受到毒蕈碱受体M1和M2(mAChRs)的高度调节,与PKA和TrkB信号有关。这里,我们研究了TrkB的假设,与MAChRs合作,调节PKA亚基的活性依赖性动力学以磷酸化SNAP-25和Synapsin-1。
    方法:要探索这一点,我们以1Hz(30分钟)刺激大鼠膈神经,有或没有随后的收缩(被µ-conotoxinGIIIB废除)。用抗TrkB抗体克隆47/TrkB进行药物治疗,以抑制TrkB和外源性h-BDNF;用盐酸哌仑西平和盐酸甲辛四胺对M1和M2mAChRs进行毒蕈碱抑制,分别。Westernblotting检测diaphragm蛋白水平和磷酸化变化。使用免疫组织化学证实靶蛋白的位置。
    结果:虽然TrkB不直接影响PKA催化亚基Cα和Cβ的水平,它调节PKA调节亚基RIα和RIβ,促进关键胞吐靶标如SNAP-25和Synapsin-1的磷酸化。此外,毒蕈碱受体通路在这一调控过程中维持着微妙的平衡.这些发现解释了受BDNF/TrkB信号影响的PKA亚基的动态相互作用,M1和M2mAChRs途径,受突触前和突触后活动不同的调节,证明了BDNF/TrkB和毒蕈碱受体途径在逆行调节中的特定作用。
    结论:这种复杂的分子相互作用与PKA-突触调节中的两个基本途径相关:一个是逆行(神经营养),另一个是自分泌(毒蕈碱)。这加深了对神经传递的神经肌肉生理学的基本理解,该神经传递赋予突触可塑性,并具有在以神经肌肉沟通受损为特征的疾病中确定治疗策略的潜力。
    BACKGROUND: Protein kinase A (PKA) enhances neurotransmission at the neuromuscular junction (NMJ), which is retrogradely regulated by nerve-induced muscle contraction to promote Acetylcholine (ACh) release through the phosphorylation of molecules involved in synaptic vesicle exocytosis (SNAP-25 and Synapsin-1). However, the molecular mechanism of the retrograde regulation of PKA subunits and its targets by BDNF/TrkB pathway and muscarinic signalling has not been demonstrated until now. At the NMJ, retrograde control is mainly associated with BDNF/TrkB signalling as muscle contraction enhances BDNF levels and controls specific kinases involved in the neurotransmission. Neurotransmission at the NMJ is also highly modulated by muscarinic receptors M1 and M2 (mAChRs), which are related to PKA and TrkB signallings. Here, we investigated the hypothesis that TrkB, in cooperation with mAChRs, regulates the activity-dependent dynamics of PKA subunits to phosphorylate SNAP-25 and Synapsin-1.
    METHODS: To explore this, we stimulated the rat phrenic nerve at 1Hz (30 minutes), with or without subsequent contraction (abolished by µ-conotoxin GIIIB). Pharmacological treatments were conducted with the anti-TrkB antibody clone 47/TrkB for TrkB inhibition and exogenous h-BDNF; muscarinic inhibition with Pirenzepine-dihydrochloride and Methoctramine-tetrahydrochloride for M1 and M2 mAChRs, respectively. Diaphragm protein levels and phosphorylation\' changes were detected by Western blotting. Location of the target proteins was demonstrated using immunohistochemistry.
    RESULTS: While TrkB does not directly impact the levels of PKA catalytic subunits Cα and Cβ, it regulates PKA regulatory subunits RIα and RIIβ, facilitating the phosphorylation of critical exocytotic targets such as SNAP-25 and Synapsin-1. Furthermore, the muscarinic receptors pathway maintains a delicate balance in this regulatory process. These findings explain the dynamic interplay of PKA subunits influenced by BDNF/TrkB signalling, M1 and M2 mAChRs pathways, that are differently regulated by pre- and postsynaptic activity, demonstrating the specific roles of the BDNF/TrkB and muscarinic receptors pathway in retrograde regulation.
    CONCLUSIONS: This complex molecular interplay has the relevance of interrelating two fundamental pathways in PKA-synaptic modulation: one retrograde (neurotrophic) and the other autocrine (muscarinic). This deepens the fundamental understanding of neuromuscular physiology of neurotransmission that gives plasticity to synapses and holds the potential for identifying therapeutic strategies in conditions characterized by impaired neuromuscular communication.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    在七千万患有癫痫的人中,其中40%的人对一种以上的抗癫痫药物产生抗药性,并且死亡的可能性更高。虽然癫痫的经典定义是由于兴奋性谷氨酸能和抑制性γ-氨基丁酸(GABA)-能信号之间的不平衡,大量证据表明毒蕈碱受体参与神经兴奋性的调节。
    大麻素已显示出在几种癫痫模型中通过用调节其活性的药物激活毒蕈碱受体来降低癫痫发作活性和神经元兴奋性。大麻素也有效降低药物耐药个体的抗癫痫活性;然而,其在颞叶癫痫中的作用机制尚不清楚。
    这篇综述旨在阐明癫痫中毒蕈碱和大麻素受体与神经兴奋性之间的关系。
    UNASSIGNED: Of the seventy million people who suffer from epilepsy, 40 percent of them become resistant to more than one antiepileptic medication and have a higher chance of death. While the classical definition of epilepsy was due to the imbalance between excitatory glutamatergic and inhibitory γ-aminobutyric acid (GABA)-ergic signalling, substantial evidence implicates muscarinic receptors in the regulation of neural excitability.
    UNASSIGNED: Cannabinoids have shown to reduce seizure activity and neuronal excitability in several epileptic models through the activation of muscarinic receptors with drugs which modulate their activity. Cannabinoids also have been effective in reducing antiepileptic activity in pharmaco-resistant individuals; however, the mechanism of its effects in temporal lobe epilepsy is not clear.
    UNASSIGNED: This review seeks to elucidate the relationship between muscarinic and cannabinoid receptors in epilepsy and neural excitability.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    尽管精神分裂症的多巴胺假说解释了所有可用的抗精神病药物在临床使用中的作用,越来越需要开发治疗阳性的新药,负,和慢性精神病的认知症状。Xanomeline-trospium(KarXT)是一种药物组合,基于乙酰胆碱在调节认知过程中以及该神经递质与中枢神经系统其他信号通路之间的相互作用中所起的重要作用,在精神分裂症的发病中起着潜在的作用,老年痴呆症,和物质使用障碍。包括四个电子数据库(PubMed,科克伦,Clarivate/WebofScience,和GoogleScholar)和美国国家医学图书馆的临床试验数据库检测到21个来源,这些来源涉及针对KarXT的14项研究,其中只有四个有可用的结果。根据这些试验的结果,黄松松药的短期疗效和耐受性良好,但在该药物组合可能被推荐用于临床之前,还需要更多的数据.然而,在理论层面上,KarXT的探索有助于增加研究人员发现新事物的兴趣,非多巴胺能,可以用作单一疗法或附加药物的抗精神病药。
    Although the dopamine hypothesis of schizophrenia explains the effects of all the available antipsychotics in clinical use, there is an increasing need for developing new drugs for the treatment of the positive, negative, and cognitive symptoms of chronic psychoses. Xanomeline-trospium (KarXT) is a drug combination that is based on the essential role played by acetylcholine in the regulation of cognitive processes and the interactions between this neurotransmitter and other signaling pathways in the central nervous system, with a potential role in the onset of schizophrenia, Alzheimer\'s disease, and substance use disorders. A systematic literature review that included four electronic databases (PubMed, Cochrane, Clarivate/Web of Science, and Google Scholar) and the US National Library of Medicine database for clinical trials detected twenty-one sources referring to fourteen studies focused on KarXT, out of which only four have available results. Based on the results of these trials, the short-term efficacy and tolerability of xanomeline-trospium are good, but more data are needed before this drug combination may be recommended for clinical use. However, on a theoretical level, the exploration of KarXT is useful for increasing the interest of researchers in finding new, non-dopaminergic, antipsychotics that could be used either as monotherapy or as add-on drugs.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    乙酰胆碱激活的受体大致分为两个主要的结构上不同的类别:配体门控离子通道烟碱型和G蛋白偶联的毒蕈碱型受体。每一类包括几种结构相关的受体亚型,具有不同的组织表达模式和受体后信号转导机制。烟碱和毒蕈碱胆碱能受体的激活与胃肠道肿瘤的诱导和进展有关。在这里,在简要回顾了乙酰胆碱激活受体的分类以及烟碱和毒蕈碱胆碱能信号在正常消化功能中的作用后,我们考虑了胃肠微环境中神经元和非神经元细胞合成和释放乙酰胆碱的机制,以及目前准确测量血清和组织乙酰胆碱水平的方法和挑战。然后,我们严格评估了组成型和配体诱导的乙酰胆碱激活受体激活在促进胃肠道肿瘤形成中起作用的证据.我们主要关注胃腺癌,胰腺,和结肠,因为这些癌症在世界范围内特别常见,当被诊断为晚期时,与非常高的发病率和死亡率有关。在整个全面审查中,我们专注于寻找新的方法来利用这些观察结果进行预后和治疗.
    Acetylcholine-activated receptors are divided broadly into two major structurally distinct classes: ligand-gated ion channel nicotinic and G-protein-coupled muscarinic receptors. Each class encompasses several structurally related receptor subtypes with distinct patterns of tissue expression and post-receptor signal transduction mechanisms. The activation of both nicotinic and muscarinic cholinergic receptors has been associated with the induction and progression of gastrointestinal neoplasia. Herein, after briefly reviewing the classification of acetylcholine-activated receptors and the role that nicotinic and muscarinic cholinergic signaling plays in normal digestive function, we consider the mechanics of acetylcholine synthesis and release by neuronal and non-neuronal cells in the gastrointestinal microenvironment, and current methodology and challenges in measuring serum and tissue acetylcholine levels accurately. Then, we critically evaluate the evidence that constitutive and ligand-induced activation of acetylcholine-activated receptors plays a role in promoting gastrointestinal neoplasia. We focus primarily on adenocarcinomas of the stomach, pancreas, and colon, because these cancers are particularly common worldwide and, when diagnosed at an advanced stage, are associated with very high rates of morbidity and mortality. Throughout this comprehensive review, we concentrate on identifying novel ways to leverage these observations for prognostic and therapeutic purposes.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    M3毒蕈碱乙酰胆碱受体(M3R)是一种G蛋白偶联受体(GPCR),可调节重要的生理过程,包括血管张力,支气管收缩,和胰岛素分泌。它在各种各样的细胞类型上表达,包括胰腺β,平滑肌,神经元,和免疫细胞。激动剂与M3R的结合被认为主要通过异源三聚体G蛋白Gq启动细胞内信号传导事件。然而,有关M3R与Gq以外的其他G蛋白偶联的能力的报道有所不同。使用来自四个主要G蛋白家族的成员(Gq,Gi,Gs,和G13)在放射性配体结合中,GTP周转实验,和细胞信号测定,包括活细胞G蛋白解离和cAMP和肌醇三磷酸的第二信使评估,我们发现其他G蛋白家族,尤其是Gi和Gs,也可以与人类M3R交互。我们进一步表明,通过经典第二信使信号事件的扩增评估,这些相互作用是有效的。我们的发现表明,M3R在G蛋白相互作用方面比以前认识到的更加混杂。意义陈述研究表明,人M3毒蕈碱乙酰胆碱受体(M3R),以其在不同生理过程中的关键作用而闻名,不仅如先前所知通过Gq激活细胞内信号传导,而且在功能上与其他G蛋白家族相互作用,比如Gi和Gs,扩大了我们对其介导细胞反应的多功能性的理解。这些发现表明由M3R控制的更广泛和更复杂的调节网络,并对治疗靶向具有意义。
    The M3 muscarinic acetylcholine receptor (M3R) is a G protein-coupled receptor (GPCR) that regulates important physiologic processes, including vascular tone, bronchoconstriction, and insulin secretion. It is expressed on a wide variety of cell types, including pancreatic beta, smooth muscle, neuronal, and immune cells. Agonist binding to the M3R is thought to initiate intracellular signaling events primarily through the heterotrimeric G protein Gq. However, reports differ on the ability of M3R to couple to other G proteins beyond Gq. Using members from the four primary G protein families (Gq, Gi, Gs, and G13) in radioligand binding, GTP turnover experiments, and cellular signaling assays, including live cell G protein dissociation and second messenger assessment of cAMP and inositol trisphosphate, we show that other G protein families, particularly Gi and Gs, can also interact with the human M3R. We further show that these interactions are productive as assessed by amplification of classic second messenger signaling events. Our findings demonstrate that the M3R is more promiscuous with respect to G protein interactions than previously appreciated. SIGNIFICANCE STATEMENT: The study reveals that the human M3 muscarinic acetylcholine receptor (M3R), known for its pivotal roles in diverse physiological processes, not only activates intracellular signaling via Gq as previously known but also functionally interacts with other G protein families such as Gi and Gs, expanding our understanding of its versatility in mediating cellular responses. These findings signify a broader and more complex regulatory network governed by M3R and have implications for therapeutic targeting.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    背景:中枢神经系统对败血症病理生物学的贡献尚未完全了解。在以往的研究中,向小鼠施用内毒素会降低迷走神经抗炎反射的活性。用中枢作用的M1毒蕈碱乙酰胆碱(ACh)受体(M1AChR)治疗减弱了这种内毒素介导的变化。我们假设减少的M1AChR介导的活性有助于盲肠结扎和穿刺(CLP)后的炎症,脓毒症小鼠模型.
    方法:在雄性C57Bl/6小鼠中,我们量化了基底前脑胆碱能活性(免疫染色),海马神经元活动,基线时血清细胞因子/趋化因子水平(ELISA)和脾细胞亚型(流式细胞术),在用M1AChR激动剂xanomeline治疗的小鼠中,在CLP之后和CLP之后。
    结果:在CLP后48小时,表达胆碱乙酰转移酶(ChAT)的基底前脑细胞的活性是基线时的一半.海马区的活动也较低,其中包含来自表达ChAT的基底前脑神经元的投影。血清TNFα水平,IL-1β,MIP-1α,CLP后IL-6、KC和G-CSF高于基线。CLP后脾巨噬细胞和炎性单核细胞的数量,TNFα+和ILβ+中性粒细胞和ILβ+单核细胞高于基线,而中央树突状细胞(cDCs)的数量,CD4+和CD8+T细胞较低。When,在CLP之后,在基底前脑表达ChAT的神经元中,用xanomeline活性治疗小鼠,并且在海马中明显高于未治疗的动物。CLP后血清TNFα浓度,IL-1β,和MIP-1α,但不是IL-6,KC和G-CSF,在xanomeline治疗的小鼠中显着低于未治疗的小鼠。CLP后脾中性粒细胞数量,巨噬细胞,xanomeline治疗的小鼠的炎性单核细胞和TNFα+中性粒细胞也低于未治疗的动物.IL-1β+中性粒细胞的百分比,IL-1β+单核细胞,cDC,在xanomeline处理和未处理的CLP后小鼠中,CD4+T细胞和CD8+T细胞相似。
    结论:我们的发现表明,M1AChR介导的反应调节CLP诱导的某些血清水平的改变,但不是全部,细胞因子/趋化因子和受影响的脾免疫反应表型。
    BACKGROUND: The contribution of the central nervous system to sepsis pathobiology is incompletely understood. In previous studies, administration of endotoxin to mice decreased activity of the vagus anti-inflammatory reflex. Treatment with the centrally-acting M1 muscarinic acetylcholine (ACh) receptor (M1AChR) attenuated this endotoxin-mediated change. We hypothesize that decreased M1AChR-mediated activity contributes to inflammation following cecal ligation and puncture (CLP), a mouse model of sepsis.
    METHODS: In male C57Bl/6 mice, we quantified basal forebrain cholinergic activity (immunostaining), hippocampal neuronal activity, serum cytokine/chemokine levels (ELISA) and splenic cell subtypes (flow cytometry) at baseline, following CLP and following CLP in mice also treated with the M1AChR agonist xanomeline.
    RESULTS: At 48 h. post-CLP, activity in basal forebrain cells expressing choline acetyltransferase (ChAT) was half of that observed at baseline. Lower activity was also noted in the hippocampus, which contains projections from ChAT-expressing basal forebrain neurons. Serum levels of TNFα, IL-1β, MIP-1α, IL-6, KC and G-CSF were higher post-CLP than at baseline. Post-CLP numbers of splenic macrophages and inflammatory monocytes, TNFα+ and ILβ+ neutrophils and ILβ+ monocytes were higher than baseline while numbers of central Dendritic Cells (cDCs), CD4+ and CD8+ T cells were lower. When, following CLP, mice were treated with xanomeline activity in basal forebrain ChAT-expressing neurons and in the hippocampus was significantly higher than in untreated animals. Post-CLP serum concentrations of TNFα, IL-1β, and MIP-1α, but not of IL-6, KC and G-CSF, were significantly lower in xanomeline-treated mice than in untreated mice. Post-CLP numbers of splenic neutrophils, macrophages, inflammatory monocytes and TNFα+ neutrophils also were lower in xanomeline-treated mice than in untreated animals. Percentages of IL-1β+ neutrophils, IL-1β+ monocytes, cDCs, CD4+ T cells and CD8+ T cells were similar in xanomeline-treated and untreated post-CLP mice.
    CONCLUSIONS: Our findings indicate that M1AChR-mediated responses modulate CLP-induced alterations in serum levels of some, but not all, cytokines/chemokines and affected splenic immune response phenotypes.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

公众号