• 제목/요약/키워드: immune response system

검색결과 488건 처리시간 0.026초

Immunomodulatory Effects of Lactic Acid Bacteria and Bioactive Peptides Derived from Milk (유산균과 유단백질 유래 Peptide의 면역 조절 기능 연구 동향)

  • Kim, Cherl-Hyun
    • Journal of Dairy Science and Biotechnology
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    • 제27권1호
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    • pp.37-43
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    • 2009
  • The mammalian immune system comprises a complex array of cells and molecules that interact to provide protection from pathogenic microorganisms. The beneficial role played by lactic acid bacteria and milk-derived peptides in humans, including their effect on the immune system, has been extensively reported. Lactic acid bacteria and milk-derived peptides, which are present in dairy products, are frequently used as nutraceuticals to improve some biological functions in the host. Activation of the systemic and secretory immune response by lactic acid bacteria and milk-derived peptides requires many complex interactions among the various constituents of the intestinal ecosystem. Thus, the aim of this review was to examine in detail the immunological potential of lactic acid bacteria and milk-derived peptides.

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Gene structure and expression characteristics of liver-expressed antimicrobial peptide-2 isoforms in mud loach (Misgurnus mizolepis, Cypriniformes)

  • Lee, Sang Yoon;Nam, Yoon Kwon
    • Fisheries and Aquatic Sciences
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    • 제20권12호
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    • pp.31.1-31.11
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    • 2017
  • Background: Liver-expressed antimicrobial peptide-2 (LEAP-2) is an important component of innate immune system in teleosts. In order to understand isoform-specific involvement and regulation of LEAP-2 genes in mud loach (Misgurnus mizolepis, Cypriniformes), a commercially important food fish, this study was aimed to characterize gene structure and expression characteristics of two paralog LEAP-2 isoforms. Results: Mud loach LEAP-2 isoforms (LEAP-2A and LEAP-2B) showed conserved features in the core structure of mature peptides characterized by four Cys residues to form two disulfide bonds. The two paralog isoforms represented a tripartite genomic organization, known as a common structure of vertebrate LEAP-2 genes. Bioinformatic analysis predicted various transcription factor binding motifs in the 5'-flanking regions of mud loach LEAP-2 genes with regard to development and immune response. Mud loach LEAP-2A and LEAP-2B isoforms exhibited different tissue expression patterns and were developmentally regulated. Both isoforms are rapidly modulated toward upregulation during bacterial challenge in an isoform and/or tissue-dependent fashion. Conclusion: Both LEAP-2 isoforms play protective roles not only in embryonic and larval development but also in early immune response to bacterial invasion in mud loach. The regulation pattern of the two isoform genes under basal and stimulated conditions would be isoform-specific, suggestive of a certain degree of functional divergence between isoforms in innate immune system in this species.

Design of Network Attack Detection and Response Scheme based on Artificial Immune System in WDM Networks (WDM 망에서 인공면역체계 기반의 네트워크 공격 탐지 제어 모델 및 대응 기법 설계)

  • Yoo, Kyung-Min;Yang, Won-Hyuk;Kim, Young-Chon
    • The Journal of Korean Institute of Communications and Information Sciences
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    • 제35권4B호
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    • pp.566-575
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    • 2010
  • In recent, artificial immune system has become an important research direction in the anomaly detection of networks. The conventional artificial immune systems are usually based on the negative selection that is one of the computational models of self/nonself discrimination. A main problem with self and non-self discrimination is the determination of the frontier between self and non-self. It causes false positive and false negative which are wrong detections. Therefore, additional functions are needed in order to detect potential anomaly while identifying abnormal behavior from analogous symptoms. In this paper, we design novel network attack detection and response schemes based on artificial immune system, and evaluate the performance of the proposed schemes. We firstly generate detector set and design detection and response modules through adopting the interaction between dendritic cells and T-cells. With the sequence of buffer occupancy, a set of detectors is generated by negative selection. The detection module detects the network anomaly with a set of detectors and generates alarm signal to the response module. In order to reduce wrong detections, we also utilize the fuzzy number theory that infers the degree of threat. The degree of threat is calculated by monitoring the number of alarm signals and the intensity of alarm occurrence. The response module sends the control signal to attackers to limit the attack traffic.

The Effect of Mesenchymal Stem Cells on the Activation of Dendritic Cells in the Cell Culture Insert System (세포배양삽입체계(Cell Culture Insert System)에서 중간엽 줄기세포(Mesenchymal Stem Cell)가 수지상세포(Dendritic Cell)의 활성화에 미치는 영향)

  • Kim, Kee Won;Park, Suk Young;Lee, Kyung Bock;Kim, Hyun-su
    • IMMUNE NETWORK
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    • 제4권2호
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    • pp.88-93
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    • 2004
  • Background: Bone marrow mesenchymal stem cells (MSC) inhibit the immune response of lymphocytes to specific antigens and dendritic cells (DC) are professional antigenpresenting cells whose function is to present antigen to naive T-lymphocytes with high efficiency and play a central role in the regulation of immune response. We studied the effects of MSC on DC to evaluate the relationship between MSC and DC in transplantation immunology. Methods: MSC were expanded from the bone marrow and DC were cultured from peripheral blood mononuclear cells (PBMNC) of 6 myelogenous leukemia after achieving complete response. Responder cells isolated from PBMNC and lysates of autologous leukemic cells are used as tumor antigen. The effect of MSC on the DC was analyzed by immunophenotype properties of DC and by proliferative capacity and the amount of cytokine production with activated PBMNC against the allogeneic lymphocytes. Also, cytotoxicity tests against leukemic cells studied to evaluate the immunologic effect of MSC on the DC. Results: MSC inhibit the CD83 and HLA-class II molecules of antigen-loaded DC. The proliferative capacity and the amount of INF-$\gamma$ production of lymphocytes to allogeneic lymphocytes were decreased in DC co-cultured with MSC. Also the cytotoxic activity of lymphocytes against leukemic cells was decreased in DC co-cultured with MSC. Conclusion: MSC inhibit the activation and immune response of DC induced by allogeneic or tumor antigen.

Effects of far infrared radiological materials on immune response and changes of fecal microorganism in pigs (돼지에 있어 원적외선 방사물질의 첨가가 면역반응 및 분중 미생물의 변화에 미치는 영향)

  • Kwon, Ki-bum;Kim, In-ho;Hong, Jong-wook;Moon, Tea-hyun;Choi, Sang-yul;Seok, Ho-bong
    • Korean Journal of Veterinary Research
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    • 제41권1호
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    • pp.37-42
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    • 2001
  • This research was conducted to investigate the effects of far infrared radiological materials on growth performance, immune response and changes of microbial flora in feces for growing pigs. Twelve growing pigs($Duroc{\times}Yorkshire{\times}Landrace$, average initial body weight of $15.6{\pm}0.5kg$) were used in a 40 day growth assay. Treatments were control(saline injection with diet: S); saline injection with Bio-Plus in diet(SBP); and vaccination with Bio-Plus in diet(VBP) in a randomized complete block design with initial BW as the blocking criterion. Serum concentrations of IgG of SBP and VBP were higher than those of S at day 10(p<0.05), 20(p<0.05), 30(p<0.05) and 40(p<0.05). Pigs fed with treatment diets had increased lymphocyte level compared to S at day 20(p<0.05) and 40(p<0.05). Cortisol was lower in treatments than in S at day 30(p<0.05). At day 20, there was no significant difference in E. coli among the treatments. However, it was observed that E, coli of the treatments was decreased compared to S at day 40(p<0.01). Lactobacillus of SBP was significantly higher(p<0.05) than that of S at day 40. In conclusion, the results of the experiment suggest that far infrared radiological materials could be a very beneficial immune response for growing pigs in health aspects.

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Establishment of Functionality Evaluation System for Anti-Allergy of Health Functional Food

  • Kim, Hyung-Min
    • Proceedings of the PSK Conference
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    • 대한약학회 2003년도 Proceedings of the Convention of the Pharmaceutical Society of Korea Vol.1
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    • pp.99-100
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    • 2003
  • The term allergy was originally defined by Clemens Yon Pirquet as ‘an altered capacity of the body to react to foreign substance’, which was an extremely board definition that included all immunological reactions. Allergy is now defined in a much more restricted manner as ‘disease following an immune response to an otherwise innocuous antigen’. Allergy is a member of a class of immune responses that have been termed hypersensitivity reactions; these are harmful immune responses that produce tissue injury and may cause serious disease. (omitted)

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A Systems Approach to Immune Response for Cancer Treatment (암 치료를 위한 면역반응의 체계적인 연구)

  • ;Ronald R.Mohier
    • Journal of Biomedical Engineering Research
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    • 제13권3호
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    • pp.181-188
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    • 1992
  • This paper provides an overview of system analysis of immunology. The theoretical research in this area is aimed at an understanding of the precise manner by which the immune system controls Infec pious diseases, cancer, and AIDS. This can provide a systematic plan for immunological experimentation by means of an integrated program of immune system analysis, mathematical modeling and computer simulation. Biochemical reactions and cellular fission are naturally modeled as nonlinear dynamical processes to synthesize the human immune system! as well as the complete organism it is intended to protect. A foundation for the control of tumors is presented, based upon the formulation of a realistic, knowledge based mathematical model of the interaction between tumor cells and the immune system. Ordinary bilinear differential equations which are coupled by such nonlinear term as saturation are derived from the basic physical phenomena of cellular and molecular conservation. The parametric control variables relevant to the latest experimental data are also considered. The model consists of 12 states, each composed of first-order, nonlinear differential equations based on cellular kinetics and each of which can be modeled bilinearly. Finally, tumor control as an application of immunotherapy is analyzed from the basis established.

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Role of Dietary Zinc as a Nutritional Immunomodulator

  • Goswami, T.K.;Bhar, R.;Jadhav, S.E.;Joardar, S.N.;Ram, G.C.
    • Asian-Australasian Journal of Animal Sciences
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    • 제18권3호
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    • pp.439-452
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    • 2005
  • Zinc is ubiquitous in all living cells. Structural and catalytic properties of cellular enzymes are zinc dependent. Zinc deficiency leads to a variety of pathological abnormalities with immune impairment. It is an established fact that nutritional status contributes to overall immune response of individuals. Outcome of zinc deficiency on immune system is so drastic that it is difficult to conceive at the first instance. Zinc supplementation has been advocated to prevent diarrheal disease in children with poor nutritional status. The bioavailability of zinc depends upon its sources. Moreover it varies between monogastrics and ruminants. Controversy still prevails between inorganic and organic sources of zinc with respect to their superiority in bioavailability. Zinc exerts immunostimulatory effects in various laboratory and farm animals. Animals having congenital zinc deficiency diseases like A46 lethal trait usually die due to impairment of the immune system unless treated with zinc. The immune mechanism of zinc and its effect on animals and man are discussed. Zinc has been considered as extremely safe at higher therapeutic doses, but does not provide any beneficial effect but rather may cause immunosuppression. More recently, zinc has been prescribed for immunodeficient hosts, to modulate the immune system so that to a certain extent it can combat against opportunistic pathogens.

Immunosecurity: immunomodulants enhance immune responses in chickens

  • Yu, Keesun;Choi, Inhwan;Yun, Cheol-Heui
    • Animal Bioscience
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    • 제34권3_spc호
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    • pp.321-337
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    • 2021
  • The global population has increased with swift urbanization in developing countries, and it is likely to result in a high demand for animal-derived protein-rich foods. Animal farming has been constantly affected by various stressful conditions, which can be categorized into physical, environmental, nutritional, and biological factors. Such conditions could be exacerbated by banning on the use of antibiotics as a growth promoter together with a pandemic situation including, but not limited to, African swine fever, avian influenza, and foot-and-mouth disease. To alleviate these pervasive tension, various immunomodulants have been suggested as alternatives for antibiotics. Various studies have investigated how stressors (i.e., imbalanced nutrition, dysbiosis, and disease) could negatively affect nutritional physiology in chickens. Importantly, the immune system is critical for host protective activity against pathogens, but at the same time excessive immune responses negatively affect its productivity. Yet, comprehensive review articles addressing the impact of such stress factors on the immune system of chickens are scarce. In this review, we categorize these stressors and their effects on the immune system of chickens and attempt to provide immunomodulants which can be a solution to the aforementioned problems facing the chicken industry.

Effect of Kamibojoongikkitang on Immune Response in C57BL/6 Mice (가미보중익기탕(加味補中益氣湯)이 생쥐의 면역반응(免疫反應)에 미치는 영향(影響))

  • Song, Jong-Sek;Shin, Sun-Mi;Kim, Soo-Min;Kim, Eui-Il;Lee, Jung-Eun;Yoo, Dong-Youl
    • The Journal of Korean Obstetrics and Gynecology
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    • 제19권4호
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    • pp.1-16
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    • 2006
  • Purpose : The purpose of this research was to investigate the effects of Kamibojoongikkitang (KBT) on the immune cells in C57BL/6 mice. Methods : KBT (500mg/kg) was administerd p.o. once a day for 7 days. Results : KBT decreased the cell viability of thymocytes in vivo and in vitro system and decreased the cell viability of splenocytes in vivo, but increased the viability of splenocytes in vitro system. In addition, KBT did not affect the population of helper T (Th) cells and cytotoxic T (Tc) cells in thymocytes and decreased the population of T- and B-lymphocytes and the population of Th and Tc cells in splenocytes. Furthermore, KBT did not affect the production of ${\gamma}%-interferon and interleukin-4 in splenocytes. KBT increased the production of nitric oxide in vivo but decreased the production of nitric oxide in vitro system. KBT enhanced the phagocytic activity of peritoneal macrophages in vivo, but decreased the phagocytic activity in vitro. Conclusion : KBT has an inhibitory action on the specific immune response via decrease of the cell viability of thymocytes and splenocytes and has a potent action on the non-specific immunity via increase of phagocytic activity of peritoneal macrophages.

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