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1.
CpG-DNA免疫刺激活性研究进展   总被引:2,自引:0,他引:2  
CpG—DNA是一些具有免疫激活功能的以未甲基化的CpG基序(CpG motif)为核心的DNA序列,它包括含CpG基序的人工合成的寡聚脱氧核苷酸(oligodeoxvnucleotides,ODN)和自然界中某些低等生物的基因组DNA。近几年研究证实,CpG基序能在体内诱导强烈的免疫反应,主要包括激活B细胞增殖、分化、分泌白细胞介素-12(IL-12)及其他细胞因子,激活自然杀伤细胞(NK)的裂解活性,分泌  相似文献   

2.
同戈  孙瑶 《中国畜牧兽医》2010,37(9):183-187
在细菌和DNA病毒的基因组中广泛存在着以非甲基化的胞嘧啶—鸟嘌呤核苷酸为核心的CpG基序。作为一种病原相关的分子模式(pathogen-associated molecular pattern, PAMP),含有CpG基序的寡聚脱氧核苷酸(CpG oligodeoxynucleotides,CpG ODN)能激活包括B淋巴细胞和类浆细胞在内的多种免疫细胞,并诱导产生以Th1型细胞免疫反应为主的免疫应答。CpG ODN在哺乳动物细胞中的受体是Toll样受体(Toll-like receptors, TLRs)家族中的Toll样受体 9(TLR9)。TLR9所介导的免疫激活作用在某些传染病的预防、新型疫苗佐剂的开发及过敏性疾病和癌症的治疗中有着巨大的应用前景。  相似文献   

3.
CpG序列免疫激活特性及其应用前景   总被引:3,自引:0,他引:3  
CpG序列是一些在动物体内具有强烈的免疫激活功能的寡聚脱氧核苷酸。作者探讨了CpG序列在动物体内免疫激活作用机理,简述了CpG应用研究的进展,并概述了CpG序列的应用前景。  相似文献   

4.
佐剂是先于抗原或与抗原同时应用、能非特异性地改变或增强机体对抗原的特异性免疫应答、增强相应抗原的免疫原性或改变免疫反应类型,而本身并无抗原性的物质。阐述了CpG寡脱氧核苷酸(CpG0DN)的作用特点、作用效果和应用等,提出了其发展前景,为新型佐剂的应用提供了理论基础。  相似文献   

5.
CpG-DNA对畜禽生物学活性的研究进展   总被引:1,自引:0,他引:1  
细菌DNA含有高频率CpG双核苷酸序列,且普遍未甲基化。这两个特点以及特殊侧链组成的CpG基序对哺乳动物的先天免疫系统是一个“危险”标志,当遇到这种基序时会诱导免疫反应。人工合成的CpG寡核苷酸序列(CpG-ODN)也能产生与细菌CpG-DNA相类似的免疫增强活性。先天性免疫系统对CpG基序的认识需要Toll-like受体(TLR9)的参与,TLR9诱导细胞信号并触发前炎性因子反应和以Th1型反应为主的免疫反应。基于这个发现,临床上已用CpG-ODN治疗人类的癌症、过敏和传染病,而在兽医上的应用还处于起步阶段。  相似文献   

6.
李娜 《中国兽药杂志》2008,42(10):54-56
含未甲基化CpG基序的寡脱氧核苷酸能够直接刺激B细胞等抗原递呈细胞,提高Th1产量并促进细胞因子的产生及抗原递呈细胞的成熟和活化.这使CpG 寡核苷酸具有良好的免疫佐剂活性,能够促进和提高抗原特异性免疫应答.本篇着重介绍了CpG寡核苷酸作为免疫佐剂的研究进展.  相似文献   

7.
为获得对水貂具有免疫刺激活性的CpG ODN序列,设计合成了45种含不同CpG基序的DNA序列,应用MTS比色法测定合成CpG ODNs刺激水貂PBMC增殖的能力,结果有11条CpG ODN对水貂PBMC有刺激活性(SI>2);应用SI值大于5的6种CpG ODN分别与水貂伪狂犬灭活疫苗联合免疫水貂,免疫后经水貂血清抗伪狂犬中和抗体效价测定和水貂PBMC非特异性增殖效应检测,结果有3个CpG ODN序列对水貂具有较好免疫增强作用,分别是CpG-21(ATCGATTTGTCGTTATCGAT)、CpG-23(ATCGATGAACGTTAACGTTTC)和CpG-24(AACGTTCATCGATATCGATGT)。本研究获得3条对水貂具有较好免疫刺激活性的CpG ODN序列,可为水貂新型CpG佐剂的研究提供参考。  相似文献   

8.
胞嘧啶-鸟嘌呤寡脱氧核苷酸(cytosine phosphate guanidine oligodeoxynucleotide,CpG ODN)是指含有非甲基化的胞嘧啶和鸟嘌呤二核苷酸为核心序列的核苷酸序列,近年来,CpG ODN作为一种新型免疫佐剂的研究越来越多,可诱发机体产生多种免疫学效应,提高系统免疫和黏膜免疫水平,具有安全性高,耐受性强等特点。  相似文献   

9.
CpG ODN--一类潜在的新型免疫佐剂   总被引:3,自引:0,他引:3  
随着对CpG基序的DNA和寡核苷酸免疫学特性的深入了解,CpG DNA和CpG ODN在未来疫苗研究开发中的佐剂特性日益受到重视,本文对CpG ODN的结构特征、免疫活性、作用机制、佐剂效应及应用前景作了综述。  相似文献   

10.
CpG ODN的最新研究进展   总被引:1,自引:0,他引:1  
CpG C9DN是指含有CpG基序(以非甲基化胞嘧啶鸟嘌呤为基元构成的特定核苷酸序列结构)的C3DN。近期研究显示,CpG ODN作为佐剂,可明显促进Th1型免疫应答的产生。其与不完全弗氏佐剂(IFA)联合应用时,其效应甚至强于完全弗氏佐剂(CFA)。即使与Th2型佐剂如氢氧化铝合用亦可明显促进免疫应答的产生,且Th1型应答明显强于Th2型应答。CpG ODN能直接激活B细胞、树突状细胞、  相似文献   

11.
Biological activity of immunostimulatory CpG DNA motifs in domestic animals   总被引:15,自引:0,他引:15  
Bacterial DNA contains a much higher frequency of CpG dinucleotides than are present in mammalian DNA. Furthermore, bacterial CpG dinucleotides are often not methylated. It is thought that these two features in combination with specific flanking bases constitute a CpG motif that is recognized as a "danger" signal by the innate immune system of mammals and therefore an immune response is induced when these motifs are encountered. These immunostimulatory activities of bacterial CpG DNA can also be achieved with synthetic CpG oligodeoxynucleotides (ODN). Recognition of CpG motifs by the innate immune system requires engagement of Toll-like receptor 9 (TLR-9), which induces cell signaling and subsequently triggers a pro-inflammatory cytokine response and a predominantly Th1-type immune response. CpG ODN-induced innate and adaptive immune responses can result in protection in various mouse models of disease. Based on these observations, clinical trials are currently underway in humans to evaluate CpG ODN therapies for cancer, allergy and infectious disease. However, potential applications for immunostimulatory CpG ODN in species of veterinary importance are just being explored. In this review, we will highlight what is presently known about the immunostimulatory effects of CpG ODN in domestic animals.  相似文献   

12.
Immunostimulatory CpG oligodeoxynucleotides (ODN) have been tested as immunoadjuvants for various vaccines in mice and human. Findings from previous reports suggest that CpG ODN can be used to enhance magnitude and balance of an immune response while reducing undesirable side effects of commercial vaccine, when delivered by parenteral route. Recently, it has been showed that CpG ODN is a promising mucosal adjuvant in mice, but data on mucosal immune responses induced by CpG ODN in other animals, especially in chickens, are scarce. Herein, we evaluated intranasal (IN) delivery of CpG ODN with newcastle disease (ND) vaccine (NDV) to determine its potential as a mucosal adjuvant to a commercial vaccine. CpG ODN augmented systemic (IgG in serum, T cell proliferation) and mucosal (IgA in intestinal washings and feces) immune responses against antigen. CpG ODN stimulated effectively both systemic and mucosal immune responses when delivered intranasally. Results from this study indicate that stimulatory CpG ODN is a potential effective mucosal adjuvant for the NDV in SPF chickens and may be applicable to husbandry animals.  相似文献   

13.
Immunostimulatory CpG oligodeoxynucleotides (ODN) have been tested as immunoadjuvants for various vaccines in mice and human. Findings from previous reports suggest that CpG ODN can be used to enhance magnitude and balance of an immune response while reducing undesirable side effects of commercial vaccine, when delivered by parenteral route. Recently, it has been showed that CpG ODN is a promising mucosal adjuvant in mice, but data on mucosal immune responses induced by CpG ODN in other animals, especially in chickens, are scarce. Herein, we evaluated intranasal (IN) delivery of CpG ODN with newcastle disease (ND) vaccine (NDV) to determine its potential as a mucosal adjuvant to a commercial vaccine. CpG ODN augmented systemic (IgG in serum, T cell proliferation) and mucosal (IgA in intestinal washings and feces) immune responses against antigen. CpG ODN stimulated effectively both systemic and mucosal immune responses when delivered intranasally. Results from this study indicate that stimulatory CpG ODN is a potential effective mucosal adjuvant for the NDV in SPF chickens and may be applicable to husbandry animals.  相似文献   

14.
A review of CpGs and their relevance to aquaculture   总被引:8,自引:0,他引:8  
CpG oligodeoxynucleotides (ODN) have been described as functioning as natural adjuvants because they promote professional antigen presenting cell (APC) function and co-stimulate lymphocytes. The majority of studies into the immune effects of CpG ODN to date have been carried out on mammals where they are proving very successful at stimulating innate and adaptive immune responses in a variety of species as well as protecting them from bacterial, viral and protozoan pathogens. Fish also possess the ability to raise both innate and adaptive immune responses to invading pathogens and interest in the effect of CpG ODN on the piscine immune system is growing. Various studies have now been carried out to elicit the effects of CpG ODN on diverse fish species showing that 31 different B-class CpG ODN exert various immune responses both in vivo and in vitro in salmonids, cyprinids and pleuronectiformes. These responses include activation of macrophages, proliferation of leucocytes and stimulation of cytokine expression. CpG ODN have also been shown to be protective against bacterial and viral challenge as well as against pathogenic amoebae. As would be expected these effects are all dependent on not only the ODN sequence and length but on the concentration and the species in which it is being used. This review provides the first comprehensive overview of all CpG ODN tested in fish to date and brings together all the work carried out in this field.  相似文献   

15.
Oligodeoxynucleotides containing unmethylated CpG motifs (CpG ODN) have been proven to be immunoprotective in mouse models. However, little work has been conducted on in vivo immune responses in chicken with CpG ODN. The objective of this study was to investigate the immunoadjuvant effects of CpG ODN to Newcastle disease (ND) vaccine and its protective effects against ND virus in SPF chicken. In this report, the titre of serum IgG to ND vaccine and the proliferation of lymphocytes were monitored in SPF chickens. The results demonstrated that the above-mentioned immune responses were significantly stronger in chickens that received CpG ODN than in the birds that received only ND vaccine. Furthermore, ND vaccine plus CpG ODN protected SPF chicken from challenge with an otherwise lethal dose of ND virus. These data suggest that CpG ODN holds considerable promise as an adjuvant for future vaccines against ND virus.  相似文献   

16.
Mucosal delivery of CpG oligodeoxynucleotide (ODN) in mice has been shown to induce potent innate immunostimulatory responses and protection against infection. We evaluated the efficacy of CpG ODN in stimulating systemic innate immune responses in sheep following delivery to the pulmonary mucosa. Intrapulmonary (IPM) administration of B-Class CpG ODN in saline induced transient systemic responses which included increased rectal temperatures, elevated serum 2'5'-A synthetase and haptoglobin concentrations. The ODN dose required to induce detectable systemic responses following IPM delivery could be reduced by approximately 80% if the CpG ODN was administered in 30% emulsigen instead of saline. Intrapulmonary B-Class CpG ODN formulated in 30% emulsigen produced similar effects when compared to those seen following SC injection. These responses were CpG ODN-specific since control GpC ODN did not induce any detectable response. Intrapulmonary administration of both B-Class and the newly described C-Class CpG ODN produced similar effects indicating that both classes of CpG ODN were comparably effective in stimulating innate immune system following mucosal delivery. Administration of CpG ODN directly into the lungs or delivery of CpG ODN via an intratracheal (IT) infusion also produced similar systemic responses. These observations support the conclusion that mucosal delivery of CpG ODN is an effective route for induction of systemic acute phase responses and antiviral effector molecules in large animals, and may be helpful in controlling systemic infections.  相似文献   

17.
Toll like receptors (TLRs) are transmembrane glycoproteins that recognize conserved microbial molecules. Engagement of TLRs activates innate and adaptive immunity. TLR-mediated activation of immune cells results in upregulation of cytokines, chemokines and costimulatory molecules. These early innate responses control pathogen spread and initiates adaptive immune responses. Synthetic CpG oligodeoxynucleotides (ODN), agonists for TLR9, had shown great promise as immunotherapeutic agents and vaccine adjuvants in laboratory animal models of infectious disease, allergy and cancer. However, it has become apparent that CpG ODN are less potent immune activators in domestic animals and humans. The disparity in immune responses between rodents and mammals has been mainly attributed to differences in cellular expression of TLR9 in the various species. In this article, our current understanding of the immune mechanisms, as well as the potential applications of CpG ODN will be reviewed, with particular emphasis on domestic animals.  相似文献   

18.
Oligodeoxynucleotides (ODNs) with unmethylated CpG dinucleotide motifs may be useful as non-specific immune system stimulants and adjuvants for protein or nucleic acid vaccines in humans and other primates. They may also be useful in cancer immunotherapy and in the modulation of allergic responses or mucosal immunity. To begin to determine the potential utility of CpG ODN technology in small animal veterinary medicine, we developed procedures to analyze the effects of CpG ODN on canine and feline blood, spleen and lymph node (LN) cells. We find that certain CpG ODN cause good lymphocyte proliferation (as monitored by [(3)H]-thymidine incorporation) in both canine and feline spleen and LN cells, but not in blood. This overall stimulatory effect of CpG ODN on spleen and LN cells is CpG dependent. The reverse sequences, GpC ODNs, do not cause significant lymphocyte proliferation in the cat; however, dogs are more sensitive to stimulation by the non-specific immune effects of the phosphorothioate backbone. We conclude that unmethylated CpG ODNs may also have potential uses as immune stimulants for vaccines and other antimicrobial agents in veterinary medicine for companion animals.  相似文献   

19.
为了探讨CpG寡核苷酸(CpG oligonucleotide,CpG ODN)对鸡新城疫疫苗免疫效力的影响,将CpG2007与鸡淋巴细胞共孵育,测定淋巴细胞增殖率,结果发现CpG2007对鸡淋巴细胞具有显著的刺激活性。将CpG2007与不同浓度的新城疫抗原混合,制备灭活疫苗,免疫健康雏鸡。分别于免疫后不同时间采血,测定抗体效价和细胞因子表达量,并进行攻毒保护试验。结果发现,添加CpG ODN佐剂的试验组均比对应相同抗原剂量的免疫对照组的抗体水平高,产生抗体速度快;抗原剂量降低10倍的佐剂试验组与高抗原剂量免疫对照组抗体水平和攻毒保护率均相当,表明CpG ODN能显著增强新城疫疫苗的免疫效力,能促进机体产生更强烈的免疫应答,是有效的疫苗佐剂候选物质。  相似文献   

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