• Title/Summary/Keyword: intestinal immunity

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Regulation of Intestinal Homeostasis by Innate Immune Cells

  • Kayama, Hisako;Nishimura, Junichi;Takeda, Kiyoshi
    • IMMUNE NETWORK
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    • v.13 no.6
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    • pp.227-234
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    • 2013
  • The intestinal immune system has an ability to distinguish between the microbiota and pathogenic bacteria, and then activate pro-inflammatory pathways against pathogens for host defense while remaining unresponsive to the microbiota and dietary antigens. In the intestine, abnormal activation of innate immunity causes development of several inflammatory disorders such as inflammatory bowel diseases (IBD). Thus, activity of innate immunity is finely regulated in the intestine. To date, multiple innate immune cells have been shown to maintain gut homeostasis by preventing inadequate adaptive immune responses in the murine intestine. Additionally, several innate immune subsets, which promote Th1 and Th17 responses and are implicated in the pathogenesis of IBD, have recently been identified in the human intestinal mucosa. The demonstration of both murine and human intestinal innate immune subsets contributing to regulation of adaptive immunity emphasizes the conserved innate immune functions across species and might promote development of the intestinal innate immunity-based clinical therapy.

Context-Dependent Regulation of Type17 Immunity by Microbiota at the Intestinal Barrier

  • Begum Akuzum;June-Yong Lee
    • IMMUNE NETWORK
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    • v.22 no.6
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    • pp.46.1-46.25
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    • 2022
  • T-helper-17 (Th17) cells and related IL-17-producing (type17) lymphocytes are abundant at the epithelial barrier. In response to bacterial and fungal infection, the signature cytokines IL-17A/F and IL-22 mediate the antimicrobial immune response and contribute to wound healing of injured tissues. Despite their protective function, type17 lymphocytes are also responsible for various chronic inflammatory disorders, including inflammatory bowel disease (IBD) and colitis associated cancer (CAC). A deeper understanding of type17 regulatory mechanisms could ultimately lead to the discovery of therapeutic strategies for the treatment of chronic inflammatory disorders and the prevention of cancer. In this review, we discuss the current understanding of the development and function of type17 immune cells at the intestinal barrier, focusing on the impact of microbiota-immune interactions on intestinal barrier homeostasis and disease etiology.

Mucosal immunity against parasitic gastrointestinal nematodes

  • Onah, Denis-Nnabuike;Nawa, Yukifumi
    • Parasites, Hosts and Diseases
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    • v.38 no.4
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    • pp.209-236
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    • 2000
  • The last two decades witnessed significant advances in the efforts of immune-parasitologists to elucidate the nature and role of the host mucosal defence mechanisms against intestinal nematode parasites. Aided by recent advances in basic immunology and biotechnology with the concomitant development of well defined laboratory models of infection, immunoparasitologists have more precisely analyzed and defined the different immune effector mechanisms during the infection; resulting in great improvement in our current knowledge and understanding of protective immunity against gastrointestinal (GI) nematode parasites. Much of this current understanding comes from experimental studies in laboratory rodents, which have been used as models of livestock and human GI nematode infections. These rodent studies, which have concentrated on Heligmosomoides polygyrus, Nippostrongylus brasiliensis, Strongyloides ratti/5. venezuelensis. Trichinella spiralis and trichuris muris infections in mice and rats, have helped in defining the types of T cell responses that regulate effector mechanisms and the effector mechanisms responsible for worm expulsion. In addition, these studies bear indications that traditionally accepted mechanisms of resistance such as eosinophilia and IgE responses may not play as important roles in protection as were previously conceived. In this review, we shall, from these rodent studies, attempt an overview of the mucosal and other effector responses against intestinal nematode parasites beginning with the indices of immune protection as a model of the protective immune responses that may occur in animals and man.

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A Study on the Physiological Activity and Industrial Prospects of Plant-origin Lactic Acid Bacteria (식물 유산균의 생리활성작용과 시장현황 및 전망)

  • Cho, Young-Hoon;Park, Seok-Nam;Jeong, Seung-Hwan
    • Journal of Dairy Science and Biotechnology
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    • v.27 no.1
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    • pp.53-57
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    • 2009
  • Lactic acid bacteria (LAB) Play an important role in the human diet and are used in the production of edible fermented products such as kimchi and yoghurt. LAB are regarded as safe food additives used to enhance the nutritive value of foods. Plant-origin lactic acid bacteria (PLAB) cultured in vegetal media are now widely used in food industries. PLAB have been found to activate intestinal immunity, modulate the balance of the intestinal bacterial from, and enhance intestinal function. They are known for their strong resistance to acid; this enables them to persist for a longer duration in the human intestine. PLAB can also survive in the intestinal environment under conditions of poor nutrition. They have stronger vitality as compared to LAB of animal origin. Due to the unique characteristics of PLAB, they are being widely used in Japan for processing foods such as yoghurt and beverages. Recently, PLAB has also been used as the culture for processing yoghurt in Korea. We expect further research on the functional effects of PLAB.

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Research for Intestinal Mucosal Immunity Induced by Salmonella enteritidis Infection (Salmonella enteritidis 감염에 의해 장내 점막에서 유도되는 면역반응에 관한 연구)

  • Lee, Kang-Hee;Lee, Se-Hui;Yang, Jin-Young
    • Journal of Life Science
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    • v.32 no.1
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    • pp.36-43
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    • 2022
  • Mucosal immunity is a well-designed defense system that builds precise and dynamic relationships against pathogens, and the gastrointestinal tract is the most important organ with this system, acting as a guardian at the forefront of its activity. Salmonella spp. cause food poisoning, entering the body orally and mainly invading the Peyer's patches of the small intestine. Although Salmonella strains share similar mechanisms for inducing innate immunity, different serotypes may have different effects on the intestinal mucosa due to host specificities and pathogenicity. In this study, we evaluated the effects of Salmonella enteritidis infections in mouse intestine and observed significantly reduced dose-dependent survival rates in a challenge test. Flow cytometry data showed no significant differences in intestinal immune cell populations, although histology indicated increased mucin production and decreased goblet cell counts in the Salmonella-treated groups. Furthermore, Claudin expression was significantly decreased in the samples with Salmonella. To investigate the relationship between S. enteritidis infection and inflammatory response, dextran sodium sulfate (DSS) was administered after infection and the results indicate lower survival rate after DSS treatment. In conclusion, we were able to identify the optimal concentration of S. enteritidis to modulate the intestinal mucosal immunity of mice and inflammatory response.

Clinical efficacy and mechanism of probiotics in allergic diseases

  • Kim, Ha-Jung;Kim, Hyung Young;Lee, So-Yeon;Seo, Ju-Hee;Lee, Eun;Hong, Soo-Jong
    • Clinical and Experimental Pediatrics
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    • v.56 no.9
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    • pp.369-376
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    • 2013
  • A complex interplay between genetic and environmental factors partially contributes to the development of allergic diseases by affecting development during prenatal and early life. To explain the dramatic increase in the prevalence of allergic diseases, the hygiene hypothesis proposed that early exposure to infection prevented allergic diseases. The hygiene hypothesis has changed to the microbial hypothesis, in which exposure to microbes is closely linked to the development of the early immune system and allergic diseases. The intestinal flora may contribute to allergic disease through its substantial effect on mucosal immunity. Based on findings that exposure to microbial flora early in life can change the Th1/Th2 balance, thus favoring a Th1 cell response, probiotics may be beneficial in preventing allergic diseases. However, evidence from clinical and basic research to prove the efficacy of probiotics in preventing allergy is lacking. To date, studies have yielded inconsistent findings on the usefulness of probiotics in allergic diseases. It is difficult to demonstrate an exact effect of probiotics on asthma, allergic rhinitis, and food allergy because of study limitations, such as different first supplementation period, duration, different strains, short follow-up period, and host factors. However, many studies have demonstrated a significant clinical improvement in atopic dermatitis with the use of probiotics. An accurate understanding of the development of human immunity, intestinal barrier function, intestinal microbiota, and systemic immunity is required to comprehend the effects of probiotics on allergic diseases.

Evaluation of Intestinal Immunity Activity by Steam-Heat Treatment and Fermentation of Lactic Acid Bacteria of Fruit and Vegetable Complex Extracts containing Red Ginseng (홍삼함유 과채류 복합 추출물의 증숙열처리 및 유산균 발효에 의한 장관면역 활성)

  • Kim, Hyun Kyoung
    • The Journal of the Convergence on Culture Technology
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    • v.8 no.6
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    • pp.935-941
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    • 2022
  • The purpose of this study was to investigate whether the activity of ginsenoside metabolites and the intestinal immunity antioxidant activity were remarkably improved by lactic acid bacteria fermentation by adding a small amount of ginsenoside to the complex extracts of fruits and vegetables. It was confirmed that the increase in intestinal immunity antioxidant activity due to synergistic effect was observed in the fruit-vegetable extract containing ginsenoside compared to the ginsenoside-only extract or the fruit-vegetable extract. Then, by adding ginsenosides by content, the concentration of ginsenosides that can obtain a synergistic effect according to the fermentation of lactic acid bacteria was determined. As a result, it was confirmed that a synergistic effect was exhibited when lactic acid bacteria were fermented and extracted by mixing ginsenosides in a mass ratio of 3 to 10% with respect to the mass of the fruit-vegetable mixture. As a result, when treated at a concentration of 200 ㎍/ml, the fruit-vegetable complex extract containing ginsenoside metabolites inhibited the generation of NO by about 60% compared to the complex extract containing no ginsenoside, The expression of IL-1β was suppressed by 63%, the expression of IL-6 by 69%, and the expression of TNF-α by 76%, confirming that the intestinal immune antioxidant properties were significantly improved.

A Comparison of Feeding Multi-Probiotics and Fermented Ginseng Byproducts on Performance, Intestinal Microflora and Immunity of Broiler Chicks

  • Hassan, Md. Rakibul;Choe, Ho Sung;Ryu, Kyeong Seon
    • Korean Journal of Poultry Science
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    • v.39 no.4
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    • pp.253-260
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    • 2012
  • This study was undertaken to investigate the influence of multi-probiotics, fermented ginseng byproducts and fermented sulfone as an alternative to probiotics on performance, intestinal microflora and immunity of broiler. A five weeks trial was conducted with one day old Ross${\times}$Ross broilers (n=340), divided into five groups which further divided into 4 replicates with 17 birds in each replicate. Birds were assigned to 5 dietary treatments as control, antibiotic avilamycin (AB), multi-probiotics (MP), fermented sulfone (FS) and fermented ginseng byproducts (FGB). Growth parameters were recorded on weekly basis while rest of the parameters viz. blood and faeces were collected at the end of the experiment. Growth parameters were not affected statistically by dietary treatments. However, numerically, higher body weight, splenocytes proliferation and lower total cholesterol and LDL values were found in MP treatment (P>0.05). Salmonella spp. count ($P{\leq}0.001$) and E. coli (P<0.001) concentrations in the ileum were found lowest in AB treatment while FS group showed lowest level of yeast (P<0.10) and Lactobacillus spp. ($P{\leq}0.001$). Fecal ammonia and $CO_2$ emission was significantly decreased in FGB than other dietary treatments (P<0.05). It was concluded that multi-probiotics would be valuable feed additives to improve the growth performance, Lactobacillus proliferation and immunity of broiler chicks.

A Review of the Relationship between the Theory of 'Pizhuweiwei(脾主爲衛)' and Intestinal Flora ('비주위위(脾主爲衛)'와 장내(腸內) 세균총(細菌叢)의 상관성(相關性)에 대한 고찰(考察))

  • Sook-Ei Jeong;Bumjung Kim
    • Journal of Korean Medical classics
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    • v.37 no.1
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    • pp.25-39
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    • 2024
  • Objectives : This paper focuses on recent research related to the relationship between 'Pizhuweiwei(脾主爲衛)' and intestinal flora, and suggests Korean Medical treatment methods that can treat and prevent diseases related to Spleen Deficiency(脾虛) such as ulcerative colitis, atrophic gastritis, diabetes, and obesity that is prevalent today. Methods : This study summarizes recent research results based on various literature on the relationship between the spleen and intestinal flora. Results : Polysaccharides contained in Jianpi herbs(健脾藥) have the effect of increasing beneficial bacteria and maintaining the diversity of intestinal microorganisms to improve intestinal function, managing intestinal metabolites to improve the body's immune function, and regulating the intestinal immune defense system. Therefore, based on the theory of 'Pizhuweiwei(脾主爲衛)', if the symptoms are treated through the spleen with Spleen-strengthening herbal medicinals, it could provide a substantial starting point for improving immunity. Conclusions : Polysaccharides contained in Jianpi herbs(健脾藥) could be considered as potential probiotics based on research findings which show that polysaccharides can regulate the intestinal flora and strengthen weak spleen, playing an important role.

Effects of Dietary Prebiotic, Probiotics and Synbiotic on Growth, Nonspecific Immunity, Antioxidant Capacity, Intestinal Microbiota and Antiinflammatory Activity of Hybrid Grouper (Epinephelus akaara ♀×Epinephelus lanceolatus ♂) (사료 내 Prebiotic, Probiotics와 Synbiotic의 첨가가 대왕붉바리(Epinephelus akaara ♀×Epinephelus lanceolatus ♂)의 성장, 비특이적 면역력, 항산화능, 장내 미생물 조성과 항염증에 미치는 영향)

  • Wonhoon Kim;Jongho Lim;Minjoo Kang;Choong Hwan Noh;Kyeong-Jun Lee
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.56 no.6
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    • pp.850-860
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    • 2023
  • The effects of dietary mannan oligosaccharides, Lactobacillus plantarum, Bacillus subtilis, and Bacillus licheniformis supplementation on hybrid grouper Epinephelus akaara ♀×Epinephelus lanceolatus ♂ were evaluated. The fish were fed a basal diet and five other diets consisting of 0.6% mannan oligosaccharides, L. plantarum, B. subtilis, and B. licheniformis and mixture of each 0.15% prebiotic and all the probiotics (designated as MOS, LP, BS, BL, and SYN) for 56 days. Growth performance and feed utilization showed no significant differences among all experimental groups. Lipid level of whole-body was significantly high in MOS and BL groups. Plasma aspartate aminotransferase was significantly low in BL and SYN groups. Nitro-blue tetrazolium, lysozyme and anti-protease, and glutathione peroxidase in BS, SYN, and all probiotic groups, respectively, were significantly high. Intestinal Vibrio bacteria was significantly low in all probiotic and SYN groups. Gene expression of interleukin-1β and interleukin-10 in SYN group; transforming growth factor β2 in MOS and BS groups, toll-like receptor 2-2 in BS and BL groups; and C-type lectin in MOS, LP and SYN groups were significantly upregulated. Our findings indicate that mannan oligosaccharides, L. plantarum, B. subtilis, and B. licheniformis could improve innate immunity, antioxidant capacity, anti-inflammation, and intestinal microbiota of hybrid grouper.