1.Expression of IFN-alpha/beta receptor in the PBMCs and liver of patients with hepatitis B and its clinical significance.
He-Bin FAN ; Ya-Bing GUO ; Bao-Ju WANG ; You-Fu ZHU ; Ai-Hua WU ; Jin-Lin HOU ; Dong-Liang YANG
Journal of Southern Medical University 2008;28(6):979-981
OBJECTIVETo explore the role of interferon (IFN)-alpha/beta receptor beta subunit (IFNAR2) in the patients' response to IFN-alpha therapy as influenced by the grade of chronic hepatic inflammation, and understand the relation of IFNAR2 expression in the peripheral blood mononuclear cells (PBMCs) with HBV infection.
METHODSLiver tissue specimens were obtained from 21 patients with chronic hepatitis B for examination of the hepatic inflammation, and PBMCs were isolated from another 16 patients with chronic hepatitis B and 15 health control subjects. Both the hepatic tissues and PBMCs were examined for IFNAR2 expression using immunohistochemistry.
RESULTSThe 21 patients with chronic hepatitis B were divided into 3 groups according to the severity of hepatic inflammation, namely G(1) (n=3), G(2) (n=7) and G(3) (n=11) groups. The patients in G(3) group showed had significantly higher IFNAR2 expressions in liver (25.1307-/+7.0700) than those of the G(1) (5.6913-/+1.8422) and G(2) (7.4706-/+5.3572) groups (P=0.000). The IFNAR2 levels in the PBMCs, however, did not show significant difference between patients with chronic hepatitis B and the healthy control subjects.
CONCLUSIONIn patients with chronic hepatitis B, IFNAR2 expression level is positively correlated to the severity of hepatic inflammation, and increased IFNAR2 expression in severe hepatic inflammation is therefore likely to result in increased response rate to INF-alpha therapy. The expression of IFNAR2 in the PBMCs is not associated with HBV infection.
Female ; Hepatitis B, Chronic ; metabolism ; pathology ; Humans ; Immunohistochemistry ; Leukocytes, Mononuclear ; metabolism ; Liver ; metabolism ; pathology ; Male ; Receptor, Interferon alpha-beta ; blood ; metabolism
2.The antiviral role of Toll-like receptor 3 in human lung epithelial cells infected with respiratory syncytial virus.
Chinese Journal of Experimental and Clinical Virology 2012;26(2):130-132
OBJECTIVEIn order to understand the production mechanism of interferon and provide a scientific basis for preventionand clinical therapy, the expression changes of Toll-like receptor (TLR3) mRNA and the role of TLR3 in human lung epithelial cells (A549 cells) infected with respiratory syncytial virus (RSV) were investigated in this study.
METHODSRSV infected A549 cells were treated with or without specific antibodies of TLR3 and collected at the selected timepoints after RSV infection (4, 8, 12, 16 and 24h). The expressions of TLR3, IFN-alpha, IFN-beta and RSV F mRNA were evaluated by RT-PCR.
RESULTIt was found that RSV infection could markedly up-regulate the mRNA expression of TLR3, IFN-alpha, IFN-beta and RSV F protein in a time-dependent manner as the 24h mRNA expressions of them were 4 times, 3 times, 3 times and 0.7 times more than the basic expression, respectively. Treatment of TLR3 specific antibodies, whereas, significantly down-regulated the activation of TLR3. The mRNA expression of IFN-alpha and IFN-1beta also decreased accordingly and that of IFN-beta reduced more obviously than IFN-alpha, but that of RSV F protein rose significantly.
CONCLUSIONAbove data indicate that RSV infection could induce an apparent increase of antiviral genes of IFN-alpha and IFN-beta by activating TLR3 in human lung epithelial cells and the activated cells mediated Type I interferon is antiviral, which suggesting that TLR3 might play an important role in antiviral activity of RSV-infected human lung epithelial cells.
Epithelial Cells ; immunology ; virology ; Humans ; Interferon-alpha ; genetics ; Interferon-beta ; genetics ; Lung ; immunology ; virology ; RNA, Messenger ; analysis ; Respiratory Syncytial Viruses ; immunology ; Time Factors ; Toll-Like Receptor 3 ; genetics ; physiology ; Viral Fusion Proteins ; genetics
3.Expression of Toll-Like Receptors in Verruca and Molluscum Contagiosum.
Ja Kyung KU ; Hyun Jo KWON ; Mi Yeon KIM ; Hoon KANG ; Peter I SONG ; Cheryl A ARMSTRONG ; John C ANSEL ; Hyung Ok KIM ; Young Min PARK
Journal of Korean Medical Science 2008;23(2):307-314
Recent studies indicate that several Toll-like receptors (TLRs) are implicated in recognizing viral structures and instigating immune responses against viral infections. The aim of this study is to examine the expression of TLRs and proinflammatory cytokines in viral skin diseases such as verruca vulgaris (VV) and molluscum contagiosum (MC). Reverse transcription-polymerase chain reaction and immunostaining of skin samples were performed to determine the expression of specific antiviral and proinflammatory cytokines as well as 5 TLRs (TLR2, 3, 4, 7, and 9). In normal human skin, TLR2, 4, and 7 mRNA was constitutively expressed, whereas little TLR3 and 9 mRNA was detected. Compared to normal skin (NS), TLR3 and 9 mRNA was clearly expressed in VV and MC specimens. Likewise, immunohistochemistry indicated that keratinocytes in NS constitutively expressed TLR2, 4, and 7; however, TLR3 was rarely detected and TLR9 was only weakly expressed, whereas 5 TLRs were all strongly expressed on the epidermal keratinocytes of VV and MC lesions. In addition, the mRNA expression of IFN-beta and TNF-alpha was upregulated in the VV and MC samples. Immunohistochemistry indicated that IFN-beta and TNF-alpha were predominately localized in the granular layer in the VV lesions and adjacent to the MC bodies. Our results indicated that VV and MC skin lesions expressed TLR3 and 9 in addition to IFN-beta and TNF-alpha. These viral-induced proinflammatory cytokines may play a pivotal role in cutaneous innate immune responses.
Cytokines/metabolism
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*Gene Expression Regulation
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Humans
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Immunohistochemistry/methods
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Inflammation
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Interferon-beta/biosynthesis
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Keratinocytes/cytology
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Models, Biological
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Molluscum Contagiosum/*metabolism
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Toll-Like Receptor 3/biosynthesis
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Toll-Like Receptor 9/biosynthesis
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Toll-Like Receptors/*biosynthesis
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Tumor Necrosis Factor-alpha/biosynthesis
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Warts/*metabolism
4.Establishment and application of hepatitis B virus persistent replication model in IFNAR(-/-) mouse.
Ming-fa CHEN ; Yong LIN ; You-chen XIA ; Chan SUN ; Xue-mei FENG ; Meng-ji LU ; Dong-liang YANG ; Jun WU
Journal of Huazhong University of Science and Technology (Medical Sciences) 2013;33(3):392-397
The type I interferon and IFNAR play an important role in hepatitis B virus (HBV) infection and anti-HBV therapy. However, its mechanism of action is still poorly understood. To gain more insights into the role of type I interferon and type I interferon receptor (IFNAR) in HBV infection, we established an HBV persistent replication IFNAR knockout (IFNAR(-/-)) mouse model and preliminarily applied this model. At first, the progeny of IFNAR(-/-) mouse was reproduced. Then hydrodynamic injection with pAAV/HBV1.2 plasmid was conducted to establish the persistent HBV replication IFNAR(-/-) mouse model. At last, we applied this model to evaluate the effect of nucleoside analogues entecavir (ETV) on HBV replication. It was found that there was no difference in the serum HBsAg and HBeAg levels and HBcAg expression in the liver tissue between the ETV treated groups and normal saline (NS) treated group, but the serum HBV DNA levels were significantly suppressed 10, 25, 40 and 55 days after the ETV treatment [P=0.035, P=0.00, P=0.149 and P=0.084, IFNAR knockout (KO) control group vs. C57BL/6 ETV groups, respectively; P=0.081, P=0.001, P=0.243 and P=0.147, IFNAR KO control group vs. IFNAR KO ETV groups, respectively]. Interestingly, there was no difference in serum HBV DNA levels between the ETV treated IFNAR(-/-) and C57BL/6 mice. This result suggests that HBV suppression during ETV treatments doesn't depend on type I interferon and IFNAR. Collectively, persistent HBV replication IFNAR(-/-) mouse model that we established is a useful and convenient tool to detect the function of the type I interferon and IFNAR in HBV infection and anti-HBV treatments.
Animals
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Chronic Disease
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Disease Models, Animal
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Female
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Hepatitis B
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genetics
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virology
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Hepatitis B virus
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physiology
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Humans
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Male
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Mice
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Mice, Inbred C57BL
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Mice, Knockout
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Receptor, Interferon alpha-beta
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genetics
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metabolism
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Virus Replication
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genetics
5.Effect of Shensu Yin on the expression of toll-like receptors and the downstream signaling components on RAW 264.7 cells.
Bao-Sheng ZHAO ; Lan-Fang LI ; Yue-Ying MA ; Shu-Ying GUO ; Cang-Hai LI ; Hai-Ru HUO ; Ting-Liang JIANG
China Journal of Chinese Materia Medica 2007;32(4):327-332
OBJECTIVETo investigate the influences of Shensu Yin to RAW 264.7 on the expression of TLR3, TLR4 and the factors of the downstream in RAW 264. 7 cells.
METHODRAW 264.7 cell line was stimulated with Lipopolysaccharide and POLY I: C, respectively, and treated with the drug serum of Shensuyin simultaneously. 24 hours later, collected the supernatant and measured the inflammatory factors TNF-alpha and IFN-beta, extracted mRNA and measured the expression of TLR3, TLR4 and other correlated indexes of the downstream, analyzed and evaluated Shensu Yin's substance basis of pharmacodynamic actions.
RESULTShensu Yin drug serum depressed the expression of TLR4, MyD88, TRAF-6, TRAM and TRIF mRNA, as a result, it decreased the amount of TNF-alpha and IFN-beta.
CONCLUSIONDepressing the expression of TLR3, MyD88, TRAM and TRIF mRNA may be the elementary basis of Shensu Yin to play heat-clearing and detoxicating effect.
Adaptor Proteins, Vesicular Transport ; genetics ; Animals ; Cell Line ; Drug Combinations ; Drugs, Chinese Herbal ; isolation & purification ; pharmacology ; Interferon-beta ; secretion ; Lipopolysaccharides ; pharmacology ; Macrophages ; cytology ; drug effects ; metabolism ; Male ; Mice ; Myeloid Differentiation Factor 88 ; genetics ; Plants, Medicinal ; chemistry ; Poly I-C ; pharmacology ; RNA, Messenger ; biosynthesis ; genetics ; Random Allocation ; Rats ; Rats, Sprague-Dawley ; Receptors, Interleukin ; genetics ; Signal Transduction ; drug effects ; Toll-Like Receptor 3 ; genetics ; Toll-Like Receptor 4 ; genetics ; Tumor Necrosis Factor-alpha ; secretion