接头分子在Toll样受体(Toll like receptors,TLRs)识别病原相关分子模式或损伤相关分子模式、发动和调节先天与后天免疫反应的信号传导网络中发挥着重要的生物学作用,与Toll样受体相结合后,其下游激酶和转录因子传导信号,激活细胞内核...接头分子在Toll样受体(Toll like receptors,TLRs)识别病原相关分子模式或损伤相关分子模式、发动和调节先天与后天免疫反应的信号传导网络中发挥着重要的生物学作用,与Toll样受体相结合后,其下游激酶和转录因子传导信号,激活细胞内核转录因子调控作用元件。TLRs接头分子的共同特征是含有TIR结构域,不同TLRs家族成员可依赖于一个或多个接头分子传导信号。对目前已确认的MyD88、MAL/TIRAP、TRIF、TRAM和SARM 5种接头分子在TLRs信号传导途径中的调控作用进行综述,以期为研究接头分子在TLRs信号传导中的作用机制提供参考。展开更多
目的研究益气活血复方对脂多糖(LPS)诱导的人脐静脉内皮细胞(HUVECs)Toll样受体4(TLR4)及其下游信号转导通路元件髓样分化因子88(MyD88)、肿瘤坏死因子受体相关因子-6(TRAF-6)、Toll样受体相关分子(TRAM)、Toll样受体相关的干扰素活化子...目的研究益气活血复方对脂多糖(LPS)诱导的人脐静脉内皮细胞(HUVECs)Toll样受体4(TLR4)及其下游信号转导通路元件髓样分化因子88(MyD88)、肿瘤坏死因子受体相关因子-6(TRAF-6)、Toll样受体相关分子(TRAM)、Toll样受体相关的干扰素活化子(TRIF)表达的影响,探讨益气活血复方含药血清防治动脉粥样硬化(AS)的机制。方法选择新西兰大耳白兔20只,随机分为4组,即正常组、中药高浓度组、中药中浓度组、中药低浓度组,每组5只。以上各组白兔分别以生理盐水和高、中、低浓度益气活血复方连续灌胃7d。末次灌胃给药2h后,心脏采血,离心后分离血清。体外培养人脐静脉内皮细胞,用LPS刺激后,分别加入高、中、低浓度益气活血复方含药血清干预24h,收集细胞,用Real ti me PCR方法测定TLR4、MyD88、TRAF-6、TRAM及TRIF mRNA的表达。结果用LPS刺激人脐静脉内皮细胞后,引起TLR4、MyD88、TRAF-6、TRAM及TRIF mRNA的高表达(与空白对照组比较,P<0.01),用益气活血复方含药血清干预以后显著抑制TLR4、MyD88及TRAF-6 mRNA的高表达(与模型组比较P<0.05或P<0.01),对TRAM及TRIF作用不明显。结论益气活血复方可阻断TLR4高表达,同时阻断TLR4胞内信号转导的MyD88依赖性途径,而对MyD88非依赖性途径作用不明显,因此益气活血复方主要是通过阻断MyD88依赖性途径来发挥其抗动脉粥样硬化的作用。展开更多
The neuroprotective effect against spinal cord ischemia/reperfusion injury in rats exerted by delayed xenon post-conditioning is stronger than that produced by immediate xenon post-conditioning. However, the mechanism...The neuroprotective effect against spinal cord ischemia/reperfusion injury in rats exerted by delayed xenon post-conditioning is stronger than that produced by immediate xenon post-conditioning. However, the mechanisms underlying this process remain unclear. Activated microglia are the main inflammatory cell type in the nervous system. The release of pro-inflammatory factors following microglial activation can lead to spinal cord damage, and inhibition of microglial activation can relieve spinal cord ischemia/reperfusion injury. To investigate how xenon regulates microglial activation and the release of inflammatory factors, a rabbit model of spinal cord ischemia/reperfusion injury was induced by balloon occlusion of the infrarenal aorta. After establishment of the model, two interventions were given: (1) immediate xenon post-conditioning—after reperfusion, inhalation of 50% xenon for 1 hour, 50% N2/50%O2 for 2 hours; (2) delayed xenon post-conditioning—after reperfusion, inhalation of 50% N2/50%O2 for 2 hours, 50% xenon for 1 hour. At 4, 8, 24, 48 and 72 hours after reperfusion, hindlimb locomotor function was scored using the Jacobs locomotor scale. At 72 hours after reperfusion, interleukin 6 and interleukin 10 levels in the spinal cord of each group were measured using western blot assays. Iba1 levels were determined using immunohistochemistry and a western blot assay. The number of normal neurons at the injury site was quantified using hematoxylin-eosin staining. At 72 hours after reperfusion, delayed xenon post-conditioning remarkably enhanced hindlimb motor function, increased the number of normal neurons at the injury site, decreased Iba1 levels, and inhibited interleukin-6 and interleukin-10 levels in the spinal cord.Immediate xenon post-conditioning did not noticeably affect the above-mentioned indexes. These findings indicate that delayed xenon post-conditioning after spinal cord injury improves the recovery of neurological function by reducing microglial activation and the release of interleukin-6 and interleukin-10.展开更多
BACKGROUND Acute pancreatitis(AP)and recurring AP are serious health care problems causing excruciating pain and potentially lethal outcomes due to sepsis.The validated caerulein-(CAE)induced mouse model of acute/recu...BACKGROUND Acute pancreatitis(AP)and recurring AP are serious health care problems causing excruciating pain and potentially lethal outcomes due to sepsis.The validated caerulein-(CAE)induced mouse model of acute/recurring AP produces secondary persistent hypersensitivity and anxiety-like behavioral changes for study.AIM To determine efficacy of acetyl-L-carnitine(ALC)to reduce pain-related behaviors and brain microglial activation along the pain circuitry in CAE-pancreatitis.METHODS Pancreatitis was induced with 6 hly intraperitoneal(i.p.)injections of CAE(50μg/kg),3 d a week for 6 wk in male C57BL/6J mice.Starting in week 4,mice received either vehicle or ALC until experiment’s end.Mechanical hypersensitivity was assessed with von Frey filaments.Heat hypersensitivity was determined with the hotplate test.Anxiety-like behavior was tested in week 6 using elevated plus maze and open field tests.Microglial activation in brain was quantified histologically by immunostaining for ionized calcium-binding adaptor molecule 1(Iba1).RESULTS Mice with CAE-induced pancreatitis had significantly reduced mechanical withdrawal thresholds and heat response latencies,indicating ongoing pain.Treatment with ALC attenuated inflammation-induced hypersensitivity,but hypersensitivity due to abdominal wall injury caused by repeated intraperitoneal injections persisted.Animals with pancreatitis displayed spontaneous anxiety-like behavior in the elevated plus maze compared to controls.Treatment with ALC resulted in increased numbers of rearing activity events,but time spent in“safety”was not changed.After all the abdominal injections,pancreata were translucent if excised at experiment’s end and opaque if excised on the subsequent day,indicative of spontaneous healing.Post mortem histopathological analysis performed on pancreas sections stained with Sirius Red and Fast Green identified wide-spread fibrosis and acinar cell atrophy in sections from mice with CAE-induced pancreatitis that was not rescued by treatment with ALC.Microglial Iba1 immunostaining was significantly increased in hippocampus,thalamus(intralaminar nuclei),hypothalamus,and amygdala of mice with CAE-induced pancreatitis compared to naïve controls but unchanged in the primary somatosensory cortex compared to naïves.CONCLUSION CAE-induced pancreatitis caused increased pain-related behaviors,pancreatic fibrosis,and brain microglial changes.ALC alleviated CAE-induced mechanical and heat hypersensitivity but not abdominal wall injury-induced hypersensitivity caused by the repeated injections.展开更多
Evidence suggests that rapid changes to supporting glia may predispose individuals with spinal cord injury(SCI) to such comorbidities. Here, we interrogated the expression of astrocyte-and microglial-specific markers ...Evidence suggests that rapid changes to supporting glia may predispose individuals with spinal cord injury(SCI) to such comorbidities. Here, we interrogated the expression of astrocyte-and microglial-specific markers glial fibrillary acidic protein(GFAP) and ionized calcium binding adaptor molecule 1(Iba1) in the rat brain in the first 24 hours following SCI. Female Sprague-Dawley rats underwent thoracic laminectomy;half of the rats received a mild contusion injury at the level of the T10 vertebral body(SCI group), the other half did not(Sham group). Twenty-four hours post-surgery the amygdala, periaqueductal grey, prefrontal cortex, hypothalamus, lateral thalamus, hippocampus(dorsal and ventral) in rats were collected. GFAP and Iba1 m RNA and protein levels were measured by real-time quantitative polymerase chain reaction and Western blot. In SCI rats, GFAP m RNA and protein expression increased in the amygdala and hypothalamus. In contrast, gene and protein expression decreased in the thalamus and dorsal hippocampus. Interestingly, Iba1 transcripts and proteins were significantly diminished only in the dorsal and ventral hippocampus, where gene expression diminished. These findings demonstrate that as early as 24 hours post-SCI there are region-specific disruptions of GFAP and Iba1 transcript and protein levels in higher brain regions. All procedures were approved by the University of Technology Sydney Institutional Animal Care and Ethics Committee(UTS ACEC13-0069).展开更多
文摘接头分子在Toll样受体(Toll like receptors,TLRs)识别病原相关分子模式或损伤相关分子模式、发动和调节先天与后天免疫反应的信号传导网络中发挥着重要的生物学作用,与Toll样受体相结合后,其下游激酶和转录因子传导信号,激活细胞内核转录因子调控作用元件。TLRs接头分子的共同特征是含有TIR结构域,不同TLRs家族成员可依赖于一个或多个接头分子传导信号。对目前已确认的MyD88、MAL/TIRAP、TRIF、TRAM和SARM 5种接头分子在TLRs信号传导途径中的调控作用进行综述,以期为研究接头分子在TLRs信号传导中的作用机制提供参考。
文摘目的研究益气活血复方对脂多糖(LPS)诱导的人脐静脉内皮细胞(HUVECs)Toll样受体4(TLR4)及其下游信号转导通路元件髓样分化因子88(MyD88)、肿瘤坏死因子受体相关因子-6(TRAF-6)、Toll样受体相关分子(TRAM)、Toll样受体相关的干扰素活化子(TRIF)表达的影响,探讨益气活血复方含药血清防治动脉粥样硬化(AS)的机制。方法选择新西兰大耳白兔20只,随机分为4组,即正常组、中药高浓度组、中药中浓度组、中药低浓度组,每组5只。以上各组白兔分别以生理盐水和高、中、低浓度益气活血复方连续灌胃7d。末次灌胃给药2h后,心脏采血,离心后分离血清。体外培养人脐静脉内皮细胞,用LPS刺激后,分别加入高、中、低浓度益气活血复方含药血清干预24h,收集细胞,用Real ti me PCR方法测定TLR4、MyD88、TRAF-6、TRAM及TRIF mRNA的表达。结果用LPS刺激人脐静脉内皮细胞后,引起TLR4、MyD88、TRAF-6、TRAM及TRIF mRNA的高表达(与空白对照组比较,P<0.01),用益气活血复方含药血清干预以后显著抑制TLR4、MyD88及TRAF-6 mRNA的高表达(与模型组比较P<0.05或P<0.01),对TRAM及TRIF作用不明显。结论益气活血复方可阻断TLR4高表达,同时阻断TLR4胞内信号转导的MyD88依赖性途径,而对MyD88非依赖性途径作用不明显,因此益气活血复方主要是通过阻断MyD88依赖性途径来发挥其抗动脉粥样硬化的作用。
基金supported by the National Natural Science Foundation of China,No.81271387the Research Special Fund of Public Welfare and Health Department of China,No.201402009a grant form the National Key Technology R&D Program in China,No.Z141107002514031
文摘The neuroprotective effect against spinal cord ischemia/reperfusion injury in rats exerted by delayed xenon post-conditioning is stronger than that produced by immediate xenon post-conditioning. However, the mechanisms underlying this process remain unclear. Activated microglia are the main inflammatory cell type in the nervous system. The release of pro-inflammatory factors following microglial activation can lead to spinal cord damage, and inhibition of microglial activation can relieve spinal cord ischemia/reperfusion injury. To investigate how xenon regulates microglial activation and the release of inflammatory factors, a rabbit model of spinal cord ischemia/reperfusion injury was induced by balloon occlusion of the infrarenal aorta. After establishment of the model, two interventions were given: (1) immediate xenon post-conditioning—after reperfusion, inhalation of 50% xenon for 1 hour, 50% N2/50%O2 for 2 hours; (2) delayed xenon post-conditioning—after reperfusion, inhalation of 50% N2/50%O2 for 2 hours, 50% xenon for 1 hour. At 4, 8, 24, 48 and 72 hours after reperfusion, hindlimb locomotor function was scored using the Jacobs locomotor scale. At 72 hours after reperfusion, interleukin 6 and interleukin 10 levels in the spinal cord of each group were measured using western blot assays. Iba1 levels were determined using immunohistochemistry and a western blot assay. The number of normal neurons at the injury site was quantified using hematoxylin-eosin staining. At 72 hours after reperfusion, delayed xenon post-conditioning remarkably enhanced hindlimb motor function, increased the number of normal neurons at the injury site, decreased Iba1 levels, and inhibited interleukin-6 and interleukin-10 levels in the spinal cord.Immediate xenon post-conditioning did not noticeably affect the above-mentioned indexes. These findings indicate that delayed xenon post-conditioning after spinal cord injury improves the recovery of neurological function by reducing microglial activation and the release of interleukin-6 and interleukin-10.
基金United States Department of Veterans Affairs,VA Merit Grant,No.BX002695United States National Institute of Health,No.R01AG055359,No.R01GM126181 and No.R01NS39041-15.
文摘BACKGROUND Acute pancreatitis(AP)and recurring AP are serious health care problems causing excruciating pain and potentially lethal outcomes due to sepsis.The validated caerulein-(CAE)induced mouse model of acute/recurring AP produces secondary persistent hypersensitivity and anxiety-like behavioral changes for study.AIM To determine efficacy of acetyl-L-carnitine(ALC)to reduce pain-related behaviors and brain microglial activation along the pain circuitry in CAE-pancreatitis.METHODS Pancreatitis was induced with 6 hly intraperitoneal(i.p.)injections of CAE(50μg/kg),3 d a week for 6 wk in male C57BL/6J mice.Starting in week 4,mice received either vehicle or ALC until experiment’s end.Mechanical hypersensitivity was assessed with von Frey filaments.Heat hypersensitivity was determined with the hotplate test.Anxiety-like behavior was tested in week 6 using elevated plus maze and open field tests.Microglial activation in brain was quantified histologically by immunostaining for ionized calcium-binding adaptor molecule 1(Iba1).RESULTS Mice with CAE-induced pancreatitis had significantly reduced mechanical withdrawal thresholds and heat response latencies,indicating ongoing pain.Treatment with ALC attenuated inflammation-induced hypersensitivity,but hypersensitivity due to abdominal wall injury caused by repeated intraperitoneal injections persisted.Animals with pancreatitis displayed spontaneous anxiety-like behavior in the elevated plus maze compared to controls.Treatment with ALC resulted in increased numbers of rearing activity events,but time spent in“safety”was not changed.After all the abdominal injections,pancreata were translucent if excised at experiment’s end and opaque if excised on the subsequent day,indicative of spontaneous healing.Post mortem histopathological analysis performed on pancreas sections stained with Sirius Red and Fast Green identified wide-spread fibrosis and acinar cell atrophy in sections from mice with CAE-induced pancreatitis that was not rescued by treatment with ALC.Microglial Iba1 immunostaining was significantly increased in hippocampus,thalamus(intralaminar nuclei),hypothalamus,and amygdala of mice with CAE-induced pancreatitis compared to naïve controls but unchanged in the primary somatosensory cortex compared to naïves.CONCLUSION CAE-induced pancreatitis caused increased pain-related behaviors,pancreatic fibrosis,and brain microglial changes.ALC alleviated CAE-induced mechanical and heat hypersensitivity but not abdominal wall injury-induced hypersensitivity caused by the repeated injections.
基金The University of Technology Sydney(UTS)Start-up Research Grant 2018 funded this study(to AC)。
文摘Evidence suggests that rapid changes to supporting glia may predispose individuals with spinal cord injury(SCI) to such comorbidities. Here, we interrogated the expression of astrocyte-and microglial-specific markers glial fibrillary acidic protein(GFAP) and ionized calcium binding adaptor molecule 1(Iba1) in the rat brain in the first 24 hours following SCI. Female Sprague-Dawley rats underwent thoracic laminectomy;half of the rats received a mild contusion injury at the level of the T10 vertebral body(SCI group), the other half did not(Sham group). Twenty-four hours post-surgery the amygdala, periaqueductal grey, prefrontal cortex, hypothalamus, lateral thalamus, hippocampus(dorsal and ventral) in rats were collected. GFAP and Iba1 m RNA and protein levels were measured by real-time quantitative polymerase chain reaction and Western blot. In SCI rats, GFAP m RNA and protein expression increased in the amygdala and hypothalamus. In contrast, gene and protein expression decreased in the thalamus and dorsal hippocampus. Interestingly, Iba1 transcripts and proteins were significantly diminished only in the dorsal and ventral hippocampus, where gene expression diminished. These findings demonstrate that as early as 24 hours post-SCI there are region-specific disruptions of GFAP and Iba1 transcript and protein levels in higher brain regions. All procedures were approved by the University of Technology Sydney Institutional Animal Care and Ethics Committee(UTS ACEC13-0069).