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目的:研究Toll样受体4(TLR4) mRNA及其下游炎性因子肿瘤坏死因子-α(TNF-α)与肝衰竭肠源性内毒素血症(IETM)大鼠肝细胞凋亡的关系,并探索温阳解毒化瘀颗粒对内毒素介导的肝细胞凋亡的调控机制。方法:SPF级雄性SD大鼠85只,随机分为正常组,模型组,TLR4单克隆抗体组和温阳解毒化瘀颗粒组(8.925 g·kg^-1)。采用D-半乳糖胺(D-Gal)腹腔注射建立肝衰竭IETM模型,TLR4单克隆抗体组和温阳解毒化瘀颗粒组在造模前5 d给予温阳解毒化瘀颗粒溶液灌胃,正常组、模型组以等容积蒸馏水代替,直至处死。各组分别在24,48,72 h随机处死大鼠并采集标本。检测24,48,72 h各组时间点血清丙氨酸氨基转移酶(ALT),天门冬氨酸氨基转移酶(AST)水平,苏木素-伊红(HE)染色观察肝组织病理变化,实时荧光定量聚合酶链式反应(Real-time PCR)检测肝组织TLR4 mRNA表达,酶联免疫吸附测定法(ELISA)检测肝组织TNF-α表达,流式细胞仪检测肝细胞凋亡率。结果:与正常组比较,模型组ALT,AST升高,肝组织病理损伤程度明显加重,TLR4mRNA,TNF-α表达均增高(P<0.05,P<0.01),肝细胞凋亡率明显上升(P<0.05,P<0.01);与模型组比较,温阳解毒化瘀颗粒组ALT,AST显著降低(P<0.01),肝组织病理损伤程度明显减轻(P<0.05),TLR4 mRNA,TNF-α表达显著下降(P<0.01),肝细胞凋亡率亦显著降低(P<0.01)。结论:TLR4 mRNA,TNF-α在肝衰竭时与肝细胞凋亡呈正相关,温阳解毒化瘀颗粒能够改善肝衰竭IETM大鼠肝功能,减轻肝细胞损伤,减少肝细胞凋亡,其机制可能与其下调肝脏TLR4 mRNA表达,抑制TNF-α释放,降低肝细胞凋亡率有关。 相似文献
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Jingjing He Lingyi Zhang Dan Guo Xingwen Han Hui Zhang Liang Wang Youcheng
Zhang 《Oncologie》2020,22(1):1-12
Hepatocellular carcinoma (HCC) ranks the sixth place of most common
cancers. Meanwhile, it is the tertiary mortality cause of cancer. There is no
effective therapeutic method to prevent and treat the liver cancer. Sinomenine is a
kind of Chinese traditional medicine herbal, it is reported that it can inhibit the
viability of several cancer cells. The study is to explore whether sinomenine is also
able to inhibit the cell viability of HCC and its potential mechanism. The IC50 of
sinomenine in BEL-7402 cells was 5.351 mmol/L, and the IC50 of sinomenine in
SMMC-7721 cells was 6.204 mmol/L. The gene expression results showed the
relative expression of FGF2, CCND2, DCN, F3, MMP7, NRG1, HMGB1,
TRIM29, HAS2, EHF, CTGF, PLK2 were down-regulated, and the relative
expression of VEGF A, CITED2, NUPR1, DDX58, IRF9, NAMPT, MMP1,
NDRG1, HMGA2, PPARGC1A, IFIT2, PARP9, HEY1, LOX, ETV1, ISG15,
BACH, CYLD were up-regulated. Moreover, the IPA analysis results suggested
that IFIT3, IFIT1, OAS1, MX1, IRF9, IFI6, IFITM1, ISG15 were up-regulated in
BEL-7402 cells treated with sinomenine by activating IFNA2. The findings
presented in this study may provide a promising method for the prevention and
treatment of liver cancer. 相似文献
54.
Microglia, as the resident immune cells in the central nervous system, play important roles in regulating neuronal processes, such as neural excitability, synaptic activity, and apoptotic cell clearance. Growth factors can activate multiple signaling pathways in central nervous system microglia and can regulate their immune effects, but whether growth factors can affect the morphological characteristics and ultrastructure of microglia has not been reported. After microinjecting 300 nL of a growth factor cocktail, including 10 μg/mL epidermal growth factor, 10 μg/mL basic fibroblast growth factor, 10 μg/mL hepatocyte growth factor and 10 μg/mL insulin-like growth factor into adult rat cortex, we found that the number of IBA1-positive microglia around the injection area increased significantly, indicating local activation of microglia. All CD68-positive labeling co-localized with IBA1 in microglia. Cell bodies and protrusions of CD68-positive cells were strongly attached to or were engulfing neurons. Characteristic huge phagosomes were observed in activated phagocytes by electron microscopy. The phagosomes generally included non-degraded neuronal protrusions and mitochondria, yet they contained no myelin membrane or remnants, which might indicate selective phagocytosis by the phagocytes. The remnant myelin sheath after phagocytosis still had regenerative ability and formed "myelin-like" structures around phagocytes. These results show that microinjection of a growth factor cocktail into the cerebral cortex of rodents can locally activate microglia and induce selective phagocytosis of neural structures by phagocytes. The study was approved by the Institute of Laboratory Animal Science, Beijing Institute of Basic Medical Sciences(approval No. IACUC-AMMS-2014-501) on June 30, 2014. 相似文献
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Alexandra Elliott Laura Schoenlaub Danielle Freches William Mitchell Guoquan Zhang 《Infection and immunity》2015,83(8):3104-3113
Coxiella burnetii is an obligate intracellular Gram-negative bacterium that causes the zoonotic disease Q fever. Although Q fever is mainly transmitted by aerosol infection, study of the immune responses in the lung following pulmonary C. burnetii infection is lacking. Neutrophils are considered the first immune cell to migrate into the lung and play an important role in host defense against aerosol infection with microbial pathogens. However, the role of neutrophils in the host defense against C. burnetii infection remains unclear. To determine the role of neutrophils in protective immunity against C. burnetii infection, the RB6-8C5 antibody was used to deplete neutrophils in mice before intranasal infection with C. burnetii. The results indicated that neutrophil-depleted mice developed more severe disease than their wild-type counterparts, suggesting that neutrophils play an important role in host defense against C. burnetii pulmonary infection. We also found that neither CXC chemokine receptor 2 (CXCR2) nor interleukin-17 (IL-17) receptor (IL-17R) deficiency changed the severity of disease following intranasal C. burnetii challenge, suggesting that keratinocyte-derived chemokine and IL-17 may not play essential roles in the response to C. burnetii infection. However, significantly higher C. burnetii genome copy numbers were detected in the lungs of IL-1R−/− mice at 14 days postinfection. This indicates that IL-1 may be important for the clearance of C. burnetii from the lungs following intranasal infection. Our results also suggest that neutrophils are involved in protecting vaccinated mice from C. burnetii challenge-induced disease. This is the first study to demonstrate an important role for neutrophils in protective immunity against C. burnetii infection. 相似文献