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1.
马兴树 《中国畜牧兽医》2022,49(12):4756-4775
微生物耐药是威胁人类健康、动物保健和食品安全的重大问题。为减少耐药性及动物源食品的药物残留,迫切需要探索预防和治疗疾病的替代机制,其中之一便是激活先天免疫系统对病原体攻击产生强而持久的非特异性免疫应答,这一过程称为训练免疫,即先天免疫记忆。愈来愈多的研究表明,天然免疫细胞甚至组织驻留干细胞对某些感染和疫苗接种具有保护免受再感染的免疫记忆功能,即先天免疫系统也表现出适应性免疫特征。在兽医研究领域,通过改善先天免疫系统提高家禽抗病能力的概念并不新颖,但极少有可用的、有目的的针对训练免疫的应用研究。通过训练免疫途径增强动物免疫力是一个值得关注的崭新领域,将为设计新型广谱疫苗和寻找新的药物靶点开辟新的途径。笔者综述了训练免疫领域的最新进展,阐述了家禽训练免疫调控及未来研究方向。  相似文献   

2.
抗菌肽在哺乳动物防御系统中的作用   总被引:3,自引:0,他引:3  
抗菌肽是近年来发现的广泛存在于自然界的一类阳离子抗菌活性肽,它们在宿主先天性免疫和适应性免疫中有重要作用。多数抗菌肽具有分子小、带正电、两亲性、抗菌谱广等共同特点。防御素和calhelicidins是哺乳动物的两大主要抗菌肽家族,它们通过抵抗致病菌入侵为宿主提供了第一道防线而对宿主具有先天的抗菌防御功能,其中一些多肽对未分化的树突状细胞、淋巴细胞有趋化性,另外还有诱导细胞因子生成、肥大细胞脱粒等作用,从而表明这些多肽能动员并增强宿主的先天性免疫和适应性免疫。本文主要对哺乳动物抗菌肽的一般性质、基因及其表达、在宿主防御中的作用、作用机理及研究前景进行了概述。  相似文献   

3.
红细胞是机体的一种重要的固有免疫细胞,在天然免疫中有很重要的作用.文章综述了红细胞免疫功能检测方法和动物红细胞免疫的研究进展,从针对CR1分子的研究、红细胞免疫调控和红细胞系统免疫学等3个方面重点概述了近年红细胞免疫研究的热点.  相似文献   

4.
The use of dogs as animal model for human atopic dermatitis (AD) is well known. Striking similarities in the pathogenesis of AD have been demonstrated. Similar alteration of host defense peptides (HDP) have been identified in both species. However, the ultrastructural/molecular alterations associated with HDPs secretion in AD have not been elucidated. We were able to use a multidisciplinary approach to investigate the secretion of HDP in canine skin. The contemporary use of indirect immunofluorescence, ELISA and scanning immune-electron microscopy gave fundamental insights in the pathomechanism of HDP alteration in AD. An increased intracellular expression and a reduced secretion of HDPs is present in atopic skin. An increased presence of HDPs was seen on the surface of atopic skin. These results suggested a defective secretion and an increased adhesion of HDPs to atopic corneocytes might be the reason of the reduced killing activity of HDPs in AD.  相似文献   

5.
In ruminants, respiratory disease is multifactorial and a leading cause of morbidity and mortality. Pulmonary innate immunity is the first line of defense for the respiratory tract. Alteration of regulation, expression, and function of these factors may be important to disease development and resolution. Many antimicrobial peptides and surfactant proteins are constitutively expressed in the respiratory tract and expression levels are regulated. Beta-defensins are cationic peptides with broad antimicrobial activity against bacterial, viral and fungal pathogens. Beta-defensins are primarily expressed in mucosal epithelia (and in some species leukocytes); where they may also participate in chemotaxis, wound repair and adaptive immune responses. Surfactant proteins A and D are secreted pulmonary surfactant proteins that have antimicrobial and immune regulatory activity. Anionic peptide is a constitutively expressed, aspartate-rich peptide that has antimicrobial activity and is most prominent during reparative epithelial hyperplasia. Regulation of these immune defense components by stress, pathogens, and inflammatory cytokines may play a role in the susceptibility to, severity and resolution of respiratory infection. The expression patterns of these molecules can be specific for host-species, class of pathogen and stage of infection. Understanding the regulation of antimicrobial peptide/protein expression will further enhance the potential for novel prophylactic and therapeutic modalities to minimize the impact of respiratory disease.  相似文献   

6.
抗菌肽又称抗微生物肽,是生物先天性免疫的重要组成成份,具有广谱抗菌作用并且不易产生耐药性。抗菌肽作为饲料添加剂有促生长、防病以及可提高机体免疫力的作用;作为兽药可治疗各类细菌性、病毒性疾病以及各类寄生虫疾病;抗菌肽在畜禽养殖上的功能正在逐渐被开发,有望被开发成为抗生素替代品而广泛应用于畜禽养殖业。本文就家畜来源的抗菌肽从结构、用途和作用机制以及在畜牧兽医领域中的应用进行系统的分析与讨论。  相似文献   

7.
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   

8.
机体识别病毒核酸的几种分子模式及途径   总被引:3,自引:1,他引:2  
近些年机体病原相关模式受体及其识别分子机制的研究,极大地促进了先天性分子免疫学的发展,并成为现代免疫学研究的重点和热点领域。作者通过机体识别病毒核酸的Toll样受体(Toll-like receptors,TLRs)、RIG-I样受体(RIG-I like receptors,RLRs)、NOD样受体(NOD-like receptors,NLRs)和DAI(DNA-dependent activatorof interferon-regulatory factors,DAI)等模式识别分子的细胞定位、分子结构及其识别病毒核酸途径的介绍,系统、全面地探讨了宿主机体如何全方位识别和消除入侵病毒的分子免疫防御途径,为抗病毒药物和疫苗的设计以及抗病育种提供了理论依据。  相似文献   

9.
Cationic antimicrobial peptides are present throughout the plant and animal kingdoms and bear striking structural and functional similarities across species lines. They provide primitive, nonspecific means of combating a variety of bacteria, fungi, enveloped viruses, and protozoa. Some are also cytotoxic against host cells, including neoplastic cells. Cationic antimicrobial peptides may play various roles in inflammation and tissue repair. Antimicrobial peptides are found in epithelial tissues regularly exposed to microbial attack as well as in cells whose primary function is defense against potential pathogens. They constitute an important part of the nonoxidative antimicrobial arsenal of leukocytes. They are preformed and/or readily synthesized when the cells are stimulated by exposure to pathogens. They exert their effects directly by inserting into membranes of target cells and forming ion channels which increase membrane permeability; however, antimicrobial peptides can also act as opsonins to facilitate phagocytosis. Resistance to defensins is a virulence factor for organisms such as Salmonella sp. The study of cationic antimicrobial peptides is increasing our understanding of innate immunity, inflammation, and the pathogenesis of genetic diseases such as specific granule disease in humans. Therapeutic applications of antimicrobial peptides are currently under investigation.  相似文献   

10.
beta-Defensins are cysteine-rich endogenously produced antimicrobial peptides that play an important role in innate immune defense. Although, previous investigations have identified beta-defensins in several mammalian species, no reports have identified equine beta-defensins. Using a strategy of database searching for expressed sequence tags (EST) we identified putative expression of equine beta-defensins in hepatic tissue. Based on this information, sequence specific primers were designed for the equine gene enabling the identification of the full-length cDNA sequence of equine beta-defensin-1. Comparative analyses showed that equine beta-defensin-1 has 46-52% amino-acid identity with other beta-defensins, sharing the greatest identity with porcine beta-defensin-1. Complete conservation of cysteine residues was maintained between the species evaluated, and RT-PCR analysis revealed diverse mRNA tissue expression for equine beta-defensin-1. These data extend the repertoire of equine antimicrobial peptides and expand our understanding of equine innate immunity.  相似文献   

11.
Our understanding of innate immunity within the equine respiratory tract is limited despite growing evidence for its key role in both the immediate defense and the shaping of downstream adaptive immune responses to respiratory disease. As the first interface to undergo pathogen invasion, the respiratory epithelium is a key player in these early events and our goal was to examine the innate immune characteristics of equine respiratory epithelia and compare them to an in vitro equine respiratory epithelial cell model cultured at the air-fluid interface (AFI). Respiratory epithelial tissues, isolated epithelial cells, and four-week old cultured differentiated airway epithelial cells collected from five locations of the equine respiratory tract were examined for the expression of toll-like receptors (TLRs) and host defense peptides (HDPs) using conventional polymerase chain reaction (PCR). Cultured, differentiated, respiratory epithelial cells and freshly isolated respiratory epithelial cells were also examined for the expression of TLR3, TLR9 and major histocompatibility complex (MHC) class I and class II using fluorescence-activated cell sorting (FACS) analysis. In addition, cytokine and chemokine profiles from respiratory epithelial tissues, freshly isolated respiratory epithelial cells, and cultured, differentiated, epithelial cells from the upper respiratory tract were examined using real-time PCR. We found that respiratory epithelial tissues and isolated epithelial cells expressed TLRs 1-4 and 6-10 as well as HDPs, MxA, 2'5' OAS, β-defensin-1, and lactoferrin. In contrast, epithelial cells cultured at the AFI expressed TLRs 1-4 and 6 and 7 as well as MxA, 2'5' OAS, β-defensin-1, but had lost expression of TLRs 8-10 and lactoferrin. In addition, MHC-I and MHC-II surface expression decreased in epithelial cells cultured at the AFI compared to isolated epithelial cells whereas TLR3 and TLR9 were expressed at similar levels. Lastly, we found that equine respiratory epithelial cells express an array of pro-inflammatory, antiviral and regulatory cytokines and that after four weeks of in vitro growth conditions, equine respiratory epithelial cells cultured at the AFI retained expression of GM-CSF, IL-10, IL-8, TGF-β, TNF-α, and IL-6. In summary, we describe the development of an in vitro equine respiratory epithelial cell culture model that is morphologically similar to the equine airway epithelium and retains several key immunological properties. In the future this model will be a used to study equine respiratory viral pathogenesis and cell-to-cell interactions.  相似文献   

12.
宿主防御肽是动物体产生的一种多功能肽,不仅具有广谱的抗菌功能,还可作为先天性免疫调节因子,有效增强动物机体免疫力,阻止病原微生物的侵扰,对保证动物健康具有重要意义。宿主防御肽在动物体内的表达受到日粮中各种营养物质的调控,有研究者认为,以营养调控的方式促进宿主内源防御肽的表达有益于动物健康和生产性能的提高,是未来实现无抗、健康养殖的可能策略之一。本文综合论述了动物饲粮中多种营养物质对宿主内源防御肽表达的调控作用,为评价营养物质调节宿主免疫和对动物健康及生产的影响提供新的理论参考。  相似文献   

13.
ABSTRACT: Antimicrobial peptides play a pivotal role as key effectors of the innate immune system in plants and animals and act as endogenous antibiotics. The molecules exhibit an antimicrobial activity against bacteria, viruses, and eukaryotic pathogens with different specificities and potencies depending on the structure and amino-acid composition of the peptides. Several antimicrobial peptides were comprehensively investigated in the last three decades and some molecules with remarkable antimicrobial properties have reached the third phase of clinical studies. Next to the peptides themselves, numerous organisms were examined and analyzed regarding their repertoire of antimicrobial peptides revealing a huge number of candidates with potencies and properties for future medical applications. One of these organisms is the horse, which possesses numerous peptides that are interesting candidates for therapeutical applications in veterinary medicine. Here we summarize investigations and knowledge on equine antimicrobial peptides, point to interesting candidates, and discuss prospects for therapeutical applications.  相似文献   

14.
The immune mechanisms of defence against fungal infections are numerous, and range from protective mechanisms that were present early in evolution (innate immunity) to sophisticated adaptive mechanisms that are induced specifically during infection and disease (adaptive immunity). The first-line innate mechanism is the presence of physical barriers in the form of skin and mucous membranes, which is complemented by cell membranes, cellular receptors and humoral factors. There has been a debate about the relative contribution of humoral and cellular immunity to host defence against fungal infections. For a long time it was considered that cell-mediated immunity (CMI) was important, but humoral immunity had little or no role. However, it is accepted now that CMI is the main mechanism of defence, but that certain types of antibody response are protective. In general, Th1-type CMI is required for clearance of a fungal infection, while Th2 immunity usually results in susceptibility to infection. Aspergillosis, which is a disease caused by the fungus Aspergillus, has been the subject of many studies, including details of the immune response. Attempts to relate aspergillosis to some form of immunosuppression in animals, as is the case with humans, have not been successful to date. The defence against Aspergillus is based on recognition of the pathogen, a rapidly deployed and highly effective innate effector phase, and a delayed but robust adaptive effector phase. Candida albicans, part of the normal microbial flora associated with mucous surfaces, can be present as congenital candidiasis or as acquired defects of cell-mediated immunity. Resistance to this yeast is associated with Th1 CMI, whereas Th2 immunity is associated with susceptibility to systemic infection. Dermatophytes produce skin alterations in humans and other animals, and the essential role of the CMI response is to destroy the fungi and produce an immunoprotective status against re-infection. The resolution of the disease is associated with a delayed hypersensitive response. There are many effective veterinary vaccines against dermatophytoses. Malassezia pachydermatis is an opportunistic yeast that needs predisposing factors to cause disease, often related to an atopic status in the animal. Two species can be differentiated within the genus Cryptococcus with immunologic consequences: C. neoformans infects predominantly immunocompromised hosts, and C. gattii infects non-immunocompromised hosts. Pneumocystis is a fungus that infects only immunosupressed individuals, inducing a host defence mechanism similar to that induced by other fungal pathogens, such as Aspergillus.  相似文献   

15.
固有免疫相关模式识别受体研究进展   总被引:2,自引:0,他引:2  
固有免疫是机体免疫系统防御微生物感染的第1道防线。模式识别受体(PRRs)中的Toll样受体(TLRs)、核苷酸寡聚结合域样受体(NLRs)和视黄酸诱导基因1样受体(RLRs)等识别不同或重叠的微生物组成成分,形成相应的信号转导产生免疫应答。近些年对于固有免疫相关PRRs的研究也取得了较大的进展,为免疫相关疾病的治疗提供了思路。本文对固有免疫相关PRRs的特征及不同PRRs的信号传导途径之间相互作用进行综述。  相似文献   

16.
猪繁殖与呼吸综合征的免疫学研究进展   总被引:5,自引:3,他引:2  
猪繁殖与呼吸综合征(porcine reporoductive and respiratory syndrome,PRRS)是严重危害养猪业的重要疾病之一。作者综述了近年来PRRS免疫学研究的最新进展,特别对细胞免疫、体液免疫、天然免疫、抗体依赖性增强作用等方面进行了深入的论述,对参与该病免疫反应中相关因子引起的免疫病理学研究做了详细的介绍。  相似文献   

17.
贝类免疫机制研究进展   总被引:5,自引:0,他引:5  
贝类动物细胞免疫主要通过细胞的吞噬作用完成。溶酶体酶、凝集素、抗菌肽等体液免疫因子以杀菌、促进吞噬等方式参与贝类的免疫防御,阿片样活性肽、细胞因子、细胞激酶等是贝类免疫通信中的化学递质。化学递质通过介导免疫信号传导参与贝类的免疫防御,也是近年贝类的免疫研究的新热点。贝类生活环境中的各种因子能显著改变贝类的免疫机能,贝类对生态因子的敏感性使贝类的生态学研究成为人类等高等动物的生态免疫学研究模式。现代养殖业通过基因工程技术的手段来提高贝类的免疫力以适应养殖业的发展。  相似文献   

18.
Toll样受体(TLRs)是近年来备受关注的一种模式识别受体,在脊椎与非脊椎动物中具有病原体传感器的功能。TLRs对体内外特异性配体的识别是启动先天免疫的基础,并迅速增加对抗入侵病原体的保护性反应,最终激活适应性免疫。TLRs在肠道免疫对病原菌与益生菌的区分过程中发挥重要作用,同时TLRs可调控动物肠道上皮分泌抗菌肽杀灭病原菌,对肠道健康具有积极的作用。本文介绍了TLRs的种类、配体及相应的信号通路,探讨TLRs在肠道免疫调节中的关键作用。  相似文献   

19.
As a discipline, comparative immunology enhances zoology and has gained wide acceptance in the biological sciences. It is an offshoot of the parent field, immunology, and is an amalgam of immunology and zoology. All animals from protozoans to humans have solved the threat of extinction by having evolved an immune‐defense strategy that ensures the capacity to react against foreign, non‐self microorganisms and cancers that disturb the homeostatic self. Invertebrate‐type innate immune responses evolved first and they characterize the metazoans. These rapid natural responses act immediately and are often essential for the occurrence of slower, more specific, adaptive vertebrate‐type immune responses. As components of the innate immune system, there is an emphasis on several major steps in the evolutionary process: (i) recognition; (ii) the phagocytic cell; and (iii) the natural killer cell. When vertebrates evolved, beginning with fish, thymus‐controlled T cells first appeared, as did bone marrow‐derived B cells (first found in amphibians with long bones). These were the precursors of the plasma cells that synthesize and secrete antibodies. Confirming the concept of self/non‐self, invertebrates possess natural, non‐adaptive, innate, non‐clonal, non‐anticipatory immune responses, whereas vertebrates possess adaptive, acquired, clonal, and anticipatory responses. This symposium concerns: (i) aspects of the immune spectrum in representative groups; (ii) specific findings (in particular models; e.g. earthworms); (iii) clues as to the possible biomedical application of relevant molecules derived from animals, notably invertebrates; and (iv) some views on the more practical applications of understanding immune systems of invertebrates and ectotherms, and their possible role in survival.  相似文献   

20.
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