• Title/Summary/Keyword: Mucosal immune system

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Aqueous Extract of Schizandra chinensis Suppresses Dextran Sulfate Sodiuminduced Generation of IL-8 and ROS in the Colonic Epithelial Cell Line HT-29

  • Lee, Young-Mi;Lee, Kang-Soo;Kim, Dae-Ki
    • Natural Product Sciences
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    • v.15 no.4
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    • pp.185-191
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    • 2009
  • Intestinal epithelial cells (IEC) play an important role in the mucosal immune system. IEC-derived mediators of inflammatory cascades play a principal role in the development of colon inflammation. The aim of this study was to investigate the inhibitory effect of aqueous extracts of Schizandra chinensis fruits (SC-Ex) on the production of inflammatory mediators by the human colonic epithelial cells. HT-29 cells were stimulated with dextran sulfate sodium in the presence or absence of SC-Ex to examine the cytoprotection and production of IL-8 and reactive oxygen species (ROS). It was shown that dextran sulfate sodium (DSS) caused the reduction of cell viability and production of IL-8 and ROS in DSS-treated HT-29 cells. We observed that the treatment of SC-Ex protected significantly cell proliferation from DSS-induced damage in dose-dependent manner. SC-Ex (10 and 100 ${\mu}g$/ml) also suppressed DSS-induced production of IL-8 mRNA and protein. Moreover, DSS-induced ROS production was inhibited markedly by the treatment of 100 ${\mu}g$/ml SC-Ex. These results suggest that SC-Ex has the protective effects on DSS-induced cell damage and the release of inflammatory mediators in the intestinal epithelial cells.

Inhibition of LSD1 phosphorylation alleviates colitis symptoms induced by dextran sulfate sodium

  • Oh, Chaeyoon;Jeong, Jiyeong;Oh, Se Kyu;Baek, Sung Hee;Kim, Keun Il
    • BMB Reports
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    • v.53 no.7
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    • pp.385-390
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    • 2020
  • Inflammatory Bowel Disease is caused by an acute or chronic dysfunction of the mucosal inflammatory system in the intestinal tract. In line with the results of our previous study, wherein we found that the PKCα-LSD1-NF-κB signaling plays a critical role in the prolonged activation of the inflammatory response, we aimed to investigate the effect of signaling on colitis in the present study. Lsd1 S112A knock-in (Lsd1SA/SA) mice, harboring a deficiency in phosphorylation by PKCα, exhibited less severe colitis symptoms and a relatively intact colonic epithelial lining in dextran sulfate sodium (DSS)-induced colitis models. Additionally, a reduction in pro-inflammatory gene expression and immune cell recruitment into damaged colon tissues in Lsd1SA/SA mice was observed upon DSS administration. Furthermore, LSD1 inhibition alleviated colitis symptoms and reduced colonic inflammatory responses. Both LSD1 phosphorylation and its activity jointly play a role in the progression of DSS-induced colitis. Therefore, the inhibition of LSD1 activity could potentially protect against the colonic inflammatory response.

Antitumor Effects of Mice Fed with Cell Lysate of Lactobacillus plantarum Isolated form Kimchi (경구투여된 김치 유산균 파쇄액이 쥐의 항암효과에 미치는 영향)

  • 신경섭;채옥화;박인철;홍석일;최태부
    • KSBB Journal
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    • v.13 no.4
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    • pp.357-363
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    • 1998
  • The antitumor effects of mice fed with cell lysate of Lactobacillus plantarum were studied. The abdominal cancer induced by Sarcoma-180 was markedly inhibited and the expected life span was extended by 60% for the Balb/c mice fed with L. plantarum cell lysate for two weeks. A similar result was obtained for the rat inoculated with Spontaneous Osteosarcoma(SOS). The primary tumor volume of SOS was reduced by 70% for the rats fed with L. plantarum cell lysate (100mg/kg/day) for one week before the inoculation of SOS, while only 42% for the rats fed with the same amount of cell lysate for one week after the inoculation of tumor cell line, SOS. As lung was the metastasis site of SOS, the weight of lung was measured to determine the degree of metastasis inhibition by the L. plantarum cell lysate feeding. The rats fed with cell lysate for one week showed a remarkable inhibition of lung metastasis by 63%(before) and 46%(after), respectively. These results indicate that the feeding of L. plantarum cell lysate to mouse or rat can induce a strong stimulation of mucosal or systemic immune system and these effects results in an efficient antitumor activity.

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A Comparative Study of Douchi Hataedock versus Omega-3 on the Effect of Anti-inflammation in the Colonic Muscle through Th2 Skewed Condition Control (Th2 skewed condition 조절을 통한 대장점막 내 염증개선효과에 대한 두시 하태독법과 오메가3 비교 연구)

  • Ahn, Sang Hyun;Kim, Ki Bong
    • The Journal of Pediatrics of Korean Medicine
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    • v.31 no.3
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    • pp.37-45
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    • 2017
  • Objectives Hataedock is an orally-administered herbal extract that used to treat toxic heat and help excrete meconium accumulates in the fetus from pregnancy. This study compared the effects of Hataedock using the extract of Douchi and omega-3 to control inflammation in the colonic mucosa. Methods NC/Nga mice were divided into three groups; Control group (no treatment), FGT group (given the extract of Douchi), and O3T group (given omega-3). The 3-week-old mouse from each group were given the extract of Douchi and omega-3. After 2 weeks, the colonic mucosa tissues of the mice were observed via Immunohistochemical staining for IL-4, IL-13, CD40, $Fc{\varepsilon}RI$, $p-I{\kappa}B$, EGF in the intestinal mucosa. Results In both FGT and O3T group, IL-4, IL-13, STAT-6 levels and CD40-positive reactions were decreased. However, EGF-positive responses were increased. FGT group showed 35% decrease in IL-4, 45% decrease in IL-13, 48% decrease in CD40, 50% decrease in $Fc{\varepsilon}RI$, 54% decrease in $p-I{\kappa}B$, 52% increase in EGF compared to the control group. O3T group also showed 14% decrease in IL-4, 23% decrease in IL-13, 22% decrease in CD40, 29% decrease in $Fc{\varepsilon}RI$, 41% decrease in $p-I{\kappa}B$, 39% increase in EGF compared to the control group. Conclusions Both early administration of Douchi extract and omega-3 were effective in regulating Th2, relieving inflammation and developing colonic mucosal tissues. Hataedock with Douchi extract may be more effective in modulating immune system in colonic mucosa than omega-3.

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.

Salmonella vector induces protective immunity against Lawsonia and Salmonella in murine model using prokaryotic expression system

  • Sungwoo Park;Eunseok Cho;Amal Senevirathne;Hak-Jae Chung;Seungmin Ha;Chae-Hyun Kim;Seogjin Kang;John Hwa Lee
    • Journal of Veterinary Science
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    • v.25 no.1
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    • pp.4.1-4.14
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    • 2024
  • Background: Lawsonia intracellularis is the causative agent of proliferative enteropathy and is associated with several outbreaks, causing substantial economic loss to the porcine industry. Objectives: In this study, we focused on demonstrating the protective effect in the mouse model through the immunological bases of two vaccine strains against porcine proliferative enteritis. Methods: We used live-attenuated Salmonella Typhimurium (ST) secreting two selected immunogenic LI antigens (Lawsonia autotransporter A epitopes and flagellin [FliC]-peptidoglycan-associated lipoprotein-FliC) as the vaccine carrier. The constructs were cloned into a Salmonella expression vector (pJHL65) and transformed into the ST strain (JOL912). The expression of immunogenic proteins within Salmonella was evaluated via immunoblotting. Results: Immunizing BALB/c mice orally and subcutaneously induced high levels of LI-specific systemic immunoglobulin G and mucosal secretory immunoglobulin A. In immunized mice, there was significant upregulation of interferon-γ and interleukin-4 cytokine mRNA and an increase in the subpopulations of cluster of differentiation (CD) 4+ and CD 8+ T lymphocytes upon splenocytes re-stimulation with LI antigens. We observed significant protection in C57BL/6 mice against challenge with 106.9 times the median tissue culture infectious dose of LI or 2 × 109 colony-forming units of the virulent ST strain. Immunizing mice with either individual vaccine strains or co-mixture inhibited bacterial proliferation, with a marked reduction in the percentage of mice shedding Lawsonia in their feces. Conclusions: Salmonella-mediated LI gene delivery induces robust humoral and cellular immune reactions, leading to significant protection against LI and salmonellosis.

Recent Studies on the Edible Plant Vaccine for Prophylactic Medicine against Microorganism-Mediated Diseases (세균성 질병 예방을 위한 식물 경구 백신 연구 동향)

  • Hahn Bum-Soo;Jeong Young-Jae;Roh Kyung-Hee;Park Jong-Sug;Cho Kang-Jin;Kim Yong-Hwan;Kim Jong-Bum
    • Journal of Plant Biotechnology
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    • v.32 no.4
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    • pp.233-241
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    • 2005
  • Plants have considerable advantages for the production of antigenic proteins because they provide an inexpensive source of protein and an easy administration of vaccine. Since a publication describing edible plant vaccine of HBsAg in 1992, a number of laboratories around the world have studied the use of plants as the bioreactor to produce antigenic proteins of human or animal pathogens. Over the last ten years, these works have been mainly focused on three major strategies for the production of antigenic proteins in plants: stable genetic transformation of either the nuclear or plastid genome, or transient expression in plants using viral vectors. As many antigenic proteins have been expressed in tobacco, also several laboratories have succeeded to express genes encoding antigenic proteins in other crop plants: potato, tomato, maize, carrot, soybean and spinach. At present many works for the production of edible plant vaccine against bacteria-mediated diseases have mostly performed the studies of enterotoxins and adhesion proteins. Also the development of new-type antigens (pili, flagella, surface protein, other enterotoxin and exotoxin etc.) is required for various targets and more efficacy to immunize against microorganism pathogens. Many works mostly studied in experimental animals had good results, and phase I clinical trial of LTB clearly indicated its immunogenic ability. On the other hand, edible plant vaccines have still problems remained to be solved. In addition to the accumulation of sufficient antigen in plants, human health, environment and agriculture regulation should be proven. Also oral tolerance, the physiological response to food antigens and commensal flora is the induction of a state of specific immunological unresponsiveness, needs to be addressed before plant-derived vaccine becomes a therapeutic option.