• Title/Summary/Keyword: Macrophages

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A novel approach for dietary regulation of macrophages through mitochondrial energy metabolism (식품을 이용한 대식세포 에너지 대사 조절)

  • Yu, Seungmin;Kim, Wooki
    • Food Science and Industry
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    • v.55 no.3
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    • pp.264-275
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    • 2022
  • The regulation of macrophages is a major target for dietary immune modulation for their involvement in both innate and adoptive immune responses. Studies revealed that macrophages are unique in their plasticity to polarize into either inflammatory M1 subset or anti-inflammatory M2 cells. Recently, cellular energy metabolism including both glycolysis and oxidative phosphorylation is demonstrated to control macrophage dichotomy. In this review, the differential utilization of glucose, lipids, amino acids, and irons by M1 and M2 cells are discussed in detail. In addition, several dietary approaches for the alteration of inflammatory M1 cells to M2 phenotypes are reviewed for development of functional foods for immune regulation.

Effect of White Ginseng on the Proliferation of Mouse Peritoneal Macrophages and Their Nitric Oxide Synthesis (백삼성분이 마우스 복강 탐식세포의 증식 및 Nitric Oxide 생성에 미치는 영향)

  • 김주원;배지현
    • Journal of the East Asian Society of Dietary Life
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    • v.7 no.4
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    • pp.484-490
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    • 1997
  • In an attempt to investigate the effects of white ginseng on the proliferation and the nitric oxide(NO) secretion of mouse peritoneal macrophages, which are the first mai or defense phagocytes in the immune system, the studies have been carried out. In the macrophage proliferation assay using the $^3$H-thymidine incorporation, the total saponin or Ginsenoside Rb$_2$ were added to the medium at the concentration of 0 to 256$\mu\textrm{g}$/$m\ell$. DNA synthesis of the macrophage was increased at 64$\mu\textrm{g}$/$m\ell$ of total saponin and either 16$\mu\textrm{g}$/$m\ell$ or 64$\mu\textrm{g}$/$m\ell$ of Ginsenoside Rb$_2$, respectively. Also, the effect o(white ginseng on the nitric oxide secretion of the macrophages was investigated. The addition of either total saponin or Ginsenoside Rb$_2$ at the concentration of 20$\mu\textrm{g}$/$m\ell$ significantly increased the secretion of NO from the macrophages. The nitric oxide synthase (NOS) gene expression which is responsible for the synthesis of the nitric oxide has been studied using reverse transcription polymerase chain reaction. In RT-PCR, the $\beta$-actin and nos gene expression have been analyzed. 20$\mu\textrm{g}$/$m\ell$ of either total saponin or Ginsenoside Rb$_2$ increased nos gene expression of the macrophages.

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Inhibitory Effect of NAD(P)H:Quinone Oxidoreductase 1 on the Activation of Macrophages (NQO1 (NAD(P)H:quinone oxidoreductase 1)에 의한 대식세포 활성화 억제)

  • Hong, Ji;Zhang, Peng;Yoon, I Na;Kim, Ho
    • Journal of Life Science
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    • v.27 no.8
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    • pp.873-878
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    • 2017
  • We previously reported that NAD(P)H:quinone oxidoreductase 1 (NQO1)-knockout (KO) mice exhibited spontaneous inflammation in the gut. We also found that NQO1-KO mice showed highly increased inflammatory responses compared with NQO1-WT control mice when subjected to DSS-induced experimental colitis. In a Clostridium difficile toxin-induced mouse enteritis model, NQO1-KO mice were also sensitive compared with NQO1-WT mice. Moreover, numerous studies have shown that NQO1 is functionally associated with immune regulation. Here, we assessed whether NQO1 defects can alter macrophage activation. We found that peritoneal macrophages isolated from NQO1-KO mice produced more IL-6 and $TNF-{\alpha}$ than those isolated from NQO1-WT mice. Moreover, the dicumarol-induced inhibition of NQO1 significantly increased IL-6 and $TNF-{\alpha}$ production in peritoneal macrophages isolated from NQO1-WT mice, as well as in the cultured mouse macrophage cell line, RAW264.7. These results indicate that NQO1 may negatively regulate the activation of macrophages. Knockout or chemical inhibition of NQO1 markedly reduced the expression of $I{\kappa}B$ (inhibitor of $NF{\kappa}B$) in both mouse peritoneal macrophages and RAW264.7 cells. Finally, RAW264.7 cells treated with dicumarol exhibited morphological changes reflecting macrophage activation. Our results suggest that NQO1 may suppress the $NF{\kappa}B$ pathways in macrophages, thereby suppressing the activation of these cells. Thus, immunosuppressive activity may be among the many possible functions of NQO1.

Effects of Red Ginseng Extracts on Hydrogen Peroxide Production of Murine Prtitoneal Macrophages (홍삼추출물이 마우스 복강 대식세포 Hydrogen Peroxide 생산에 미치는 영향)

  • 박란숙
    • The Korean Journal of Food And Nutrition
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    • v.11 no.1
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    • pp.107-113
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    • 1998
  • This experiment has conducted to evaluate whether single injection of red ginseng extract including 50% ethanol extract, crude saponin, and lipid soluble fraction can induce oxidative burst of mouse peritoneal macrophages with use of fluorescence spectrophotometer. To optimize conditions of fluorescent spectrophotometry, concentrations of DCFH-DA(2', 7' -dichlorofluorescin diacetate) was 1.6 ${\mu}{\textrm}{m}$ and control oxidative burst by Zymosan A and PMA(phorbol myristate acetate) were 100$\mu\textrm{g}$, 250ng, respectively. Though in vitro macrophages failed to induce increment of H2O2 production, but 50% ethanol extract group induced significant enhancement of H2O2 production when zymosan A triggered oxidative burst. On the other hand, lipid soluble fraction enhanced significantly H2O2 production than that of control group. These findings consisted with the other reports which showed ginsenosides inhibited nitric oxide production and lipid soluble fraction activated colony stimulating factor(granulocyte - monocyte) activity in bone marrow stem cells. As is well known, lipid soluble fraction contains phenol compound, polyacetylene compound and alkaloids. Further study would unravel which component of it can induce H2O2 production of macrophages. Key words : Red ginseng(Panax ginseng), H2O2 production, macrophages.

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Antioxidative Effects of Water-Soluble Chitinous Compounds on Oxidation of Low Density Lipoprotein in Macrophages (대식세포에서 지단백 산화에 대한 수용성 Chitinous Compounds의 항산화 효과에 대한 연구)

  • 이세희;박성희;이용진;윤정한;최연정;최정숙;강영희
    • Journal of Nutrition and Health
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    • v.36 no.9
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    • pp.908-917
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    • 2003
  • It has been proposed that oxidative modification of LDL (oxLDL) plays a significant role in the pathogenicity of atherogenesis. We tested the hypothesis that chitin and chitosan may function as antioxidants with respect to 0.1 mg cholesterol/ml LDL incubated with 5 $\mu$ M Cu$^2$$^{+}$alone or in the P338Dl mouse macrophage system using L-ascorbic acid as a standard classical antioxidant. The degree of oxLDL formation was ascertained by the relative electrophoretic mobility (rEM) in the combination of thiobarbituric acid reactive substances (TBARS) levels, and the cytotoxicity of oxLDL was detected by macrophage viability. The oxLDL uptake and foam cell formation of macrophages were measured by Oil Red O staining. Incubation with Cu$^2$$^{+}$and macrophages increased rEM of LDL and stimulated TBARS formation. Culture of macrophages with LDL in the presence 5 $\mu$ M Cu$^2$$^{+}$induced macrophage death. In cell-free system 200 $\mu$g/ml water-soluble chitosan and chitosan-oligosaccharide blocked oxLDL formation. Water-soluble chitosan and chitosan-oligosaccharide blocked oxLDL formation near-completely relative to L-ascorbic acid, whereas water-soluble chitin and chitin-oligosaccharide had no measurable antioxidant effect. In macrophage system water-soluble chitosan and chitosan-oligosaccharide blocked oxidation of LDL with a significant increase in cell viability, and decreased TBARS in medium. As for the inhibitory effect on macrophage foam cell formation, chitosan and its oligosaccharide, but not watersoluble chitin, revealed the effectiveness. The endothelial expression of lectin-like oxLDL receptor-1 (LOX-1) was tested by Western blot analysis, and chitosan, chitosan-oligosaccharide and chitin-oligosaccharide blocked LOX-1 expression. These results indicate that water-soluble chitosan and its oligosaccharide showed the inhibitory effect on Cu$^2$$^{+}$-induced LDL oxidation of macrophages, and chitosan, chitosan-oligosaccharide and chitin-oligosaccharide had blocking effect on oxLDL receptor expression in the human umbilical vein endothelial system. Thus, water-soluble chitosan and its oligosaccharides possess anti-atherogenic potentials possibly through the inhibition of macrophage LDL oxidation or endothelial oxLDL receptor expression depending on chemical types.l types.

Impaired Functions of Lymphocytes on Nitric Oxide Production in Endotoxin- Tolerant Mice (내독소내성 마우스에서 Nitric Oxide 생성에 미치는 림프구 부전)

  • Gil, Young-Gi;Kang, Mi-Kyung
    • Journal of Life Science
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    • v.18 no.11
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    • pp.1471-1478
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    • 2008
  • In this study, nitric oxide (NO) production in a macrophage-lymphocyte co-culture system was used to assess the cytokine producing capability of cells during endotoxin tolerance in mice. Incubation of peritoneal macrophages with interferon-$\tau$ (IFN-$\tau$) in the presence of lipopolysaccharide (LPS) augmented NO synthesis. Exogenous tumor necrosis factor-$\alpha$(TNF-$\alpha$) could also replace LPS for the stimulation of NO production. Macrophages co-cultured with splenic lymphocytes showed augmented NO synthesis by LPS alone. However, pretreatment of mice with 2.5 mg/kg LPS completely prevented the lethality and the increase of blood TNF-$\alpha$ and IFN-$\tau$ after the second challenge with a lethal dose of LPS. In addition, when macrophages prepared from LPS-tolerant mice were co-cultured with normal splenocytes, LPS also could not induce the production of NO, even in the presence of exogenous TNF-$\alpha$. Moreover, when normal macrophages were co-cultured with splenocytes obtained from LPS-tolerant mice, stimulation with LPS could not evoke the NO production enhancement. However, this down-regulation was able to reverse by exogenous IFN-$\tau$ or concanavalin A (ConA), a stimulator of IFN-$\tau$ production. Our results indicate that not only macrophages but also lymphocytes contribute to LPS tolerance. As INF-$\tau$ can enhance the expression of TNF-$\alpha$, the decrease of INF-$\tau$synthesis from lymphocytes may orchestrate with the decrease of TNF-$\alpha$ synthesis from LPS-tolerant macrophages for the production of tolerant state and the prevention of excessive inflammation. Therefore, LPS tolerance may be exploited for prophylaxis of severe sepsis in patients at risk.

Activity and application of 20α-hydroxysteroid dehydrogenase in rat II. Changes in activities of the splenic macrophages and ovarian histological findings (Progesterone의 이화(異化)효소, 20α-hydroxysteroid dehydrogenase의 활성 및 활용에 관한 연구 II. 비장내(脾臟內) macrophage의 활성 및 난소에서의 조직학적 변화)

  • Kang, Chung-boo;Kwak, Soo-dong
    • Korean Journal of Veterinary Research
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    • v.34 no.4
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    • pp.873-880
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    • 1994
  • Progesterone catabolizing enzyme, the enzyme $20{\alpha}$-hydroxysteroid deltydrgenase($20{\alpha}$-HSD) is pivotal in the regulation of ovarian function in rodents, which catabolizes progesterone into biologically inactive $20{\alpha}$ hydroxypregn-4-en-3-one($20{\alpha}$-OHP). In this study was carried out the influence of $20{\alpha}$-HSD activity to ovarian function and regulation such as ovulation, formation of corpus luteum, maintenance of estrous cycles and pregnancy, we investigated changes in activities of the splenic macrophages and ovarian histological findings in rat. During the estrous cycles, the ratious of phagocytotic macrophage in splenic adherent cells were highest on the proestrous, but they were lowest on metestrous. During the pregnancy, the ratious of phagocytotic macrophages in splenic adhrent cells were lowest by 1 day and then significantly increased toward the pregnancy, which were highest pregnancy on day 12. On histological findings in rat ovary, the mean number of growing, antral and mature follicles were 15.9(72.9%), 3.4(15.9%), and 2.4(11.2%), respectively. Growing follicles reached to lowest number at diestrus and mature follicle reached to lowest number at metestrus. The numbers of corpus luteums per tissue section of the ovary were 14.4 and the number of normal and atretic follicles were 11.0(76.4%) and 3.4(23.6%), respectively. The number of corpus luteum with vacolated cell were 1.7(11.8%). In this study suggests splenic macrophages are as a source of the substance which maintainer progesterone secretion from luteal cells, and are recognized pass the vessels and reside in the fresh corpora lutea soon after ovulation via inflammatory reactions, and these macrophages are felt to have a stimulatory effect on the formation of cropora lutea. In view of the results include previous report, ovarian $20{\alpha}$-hydroxysteroid dehydrogenase enzyme and splenic macrophages consider play central role in the control and maintenance of estrous cycles and pregnancy, and also applicable to both clinical and research in a wide variety such as control of reproductive system.

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Effect of Leptin on the Expression of Lipopolysaccharide-Induced Chemokine KC mRNA in the Mouse Peritoneal Macrophages

  • Lee, Dong-Eun;Kim, Hyo-Young;Song, In-Hwan;Kim, Sung-Kwang;Seul, Jung-Hyun;Kim, Hee-Sun
    • Journal of Microbiology and Biotechnology
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    • v.14 no.4
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    • pp.722-729
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    • 2004
  • Leptin is an adipocyte-secreted hormone and its plasma levels correlate with total body fat mass, however, it also plays a regulatory role in immunity, inflammation, and hematopoiesis. Chemokine is known as a chemoattractant cytokine in inflammatory reaction, but its role in leptin reaction has not been well studied. In this study, the direct effect of leptin on the expression of chemokine mRNAs and lipopolysaccharide (LPS)-induced chemokine KC mRNA in mouse peritoneal macrophages was investigated. Leptin did not induce the expression of lymphotactin, RANTES, eotaxin, MIP-1$\beta$, MIP-1$\alpha$, MIP-2, MCP-1, IP-10, TCA-3, and KC mRNA in mouse peritoneal macrophages, and had no direct effect on the expression of these LPS-induced chemokine mRNAs except KC mRNA. The synergistic effect of leptin on the expression of LPS-induced KC mRNA occurred late in the time course of response to LPS. The increased expressions of Ob-Rb mRNA and leptin receptor protein were detected during the LPS treatment. Leptin produced a substantial increase in the stability of the LPS-induced KC mRNA, and the synergistic effect of leptin on LPS-induced KC mRNA expression was further augmented by cycloheximide (CHX). Pyrrolidine dithiocarbamate (PDTC) did not block the synergistic effect of leptin on LPS-induced KC mRNA expression in mouse peritoneal macrophages. These data suggest that although leptin has no direct effect on the expression of lymphotactin, RANTES, eotaxin, MIP-1$\beta$, MIP-1$\alpha$, MIP-2, MCP-1, IP-10, TCA-3, and KC mRNA in mouse peritoneal macrophages, the synergistic effect of leptin on the expression of LPS-induced KC mRNA has the possibility that LPS might induce the expression of the Ob-Rb receptor or an unknown gene(s) that sensitizes macrophages to the synergistic function of leptin. Therefore, further studies are necessary to examine leptin as a regulatory factor of chemokine production.

Spermidine Protects against Oxidative Stress in Inflammation Models Using Macrophages and Zebrafish

  • Jeong, Jin-Woo;Cha, Hee-Jae;Han, Min Ho;Hwang, Su Jung;Lee, Dae-Sung;Yoo, Jong Su;Choi, Il-Whan;Kim, Suhkmann;Kim, Heui-Soo;Kim, Gi-Young;Hong, Su Hyun;Park, Cheol;Lee, Hyo-Jong;Choi, Yung Hyun
    • Biomolecules & Therapeutics
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    • v.26 no.2
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    • pp.146-156
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    • 2018
  • Spermidine is a naturally occurring polyamine compound that has recently emerged with anti-aging properties and suppresses inflammation and oxidation. However, its mechanisms of action on anti-inflammatory and antioxidant effects have not been fully elucidated. In this study, the potential of spermidine for reducing pro-inflammatory and oxidative effects in lipopolysaccharide (LPS)-stimulated macrophages and zebrafish was explored. Our data indicate that spermidine significantly inhibited the production of pro-inflammatory mediators such as nitric oxide (NO) and prostaglandin $E_2$ ($PGE_2$), and cytokines including tumor necrosis $factor-{\alpha}$ and $interleukin-1{\beta}$ in RAW 264.7 macrophages without any significant cytotoxicity. The protective effects of spermidine accompanied by a marked suppression in their regulatory gene expression at the transcription levels. Spermidine also attenuated the nuclear translocation of $NF-{\kappa}B$ p65 subunit and reduced LPS-induced intracellular accumulation of reactive oxygen species (ROS) in RAW 264.7 macrophages. Moreover, spermidine prevented the LPS-induced NO production and ROS accumulation in zebrafish larvae and was found to be associated with a diminished recruitment of neutrophils and macrophages. Although more work is needed to fully understand the critical role of spermidine on the inhibition of inflammation-associated migration of immune cells, our findings clearly demonstrate that spermidine may be a potential therapeutic intervention for the treatment of inflammatory and oxidative disorders.

Cellular and Molecular Roles of $\beta$ Cell Autoantigens, Macrophages and T Cells in the Pathogenesis of Automimmune Diabetes

  • Yoon, Ji-Won;Jun, Hee-Sook
    • Archives of Pharmacal Research
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    • v.22 no.5
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    • pp.437-447
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    • 1999
  • Type I diabetes, also known as insulin-dependent diabetes mellitus (IDDM) results from the destruction of insulin-producing pancreatic $\beta$ cells by a progressive $\beta$ cell-specific autoimmune process. The pathogenesis of autoimmune IDDM has been extensively studied for the past two decades using animal models such as the non-obese diabetic (NOD) mouse and the Bio-Breeding (BB) rat. However, the initial events that trigger the immune responses leading to the selective destruction of the $\beta$ cells are poorly understood. It is thought that $\beta$ cell auto-antigens are involved in the triggering of $\beta$ cell-specific autoimmunity. Among a dozen putative $\beta$ cell autoantigens, glutamic acid decarboxylase (GAD) has bee proposed as perhaps the strongest candidate in both humans and the NOD mouse. In the NOD mouse, GAD, as compared with other $\beta$ cell autoantigens, provokes the earliest T cell proliferative response. The suppression of GAD expression in the $\beta$ cells results in the prevention of autoimmune diabetes in NOD mice. In addition, the major populations of cells infiltrating the iselts during the early stage of insulitis in BB rats and NOD mice are macrophages and dendritic cells. The inactivation of macrophages in NOD mice results in the prevention of T cell mediated autoimmune diabetes. Macrophages are primary contributors to the creation of the immune environment conducive to the development and activation of $\beta$cell-specific Th1-type CD4+ T cells and CD8+ cytotoxic T cells that cause autoimmune diabetes in NOD mice. CD4+ and CD8+ T cells are both believed to be important for the destruction of $\beta$ cells. These cells, as final effectors, can kill the insulin-producing $\beta$ cells by the induction of apoptosis. In addition, CD8+ cytotoxic T cells release granzyme and cytolysin (perforin), which are also toxic to $\beta$ cells. In this way, macrophages, CD4+ T cells and CD8+ T cells act synergistically to kill the $\beta$ cells in conjunction with $\beta$ cell autoantigens and MHC class I and II antigens, resulting in the onset of autoimmune type I diabetes.

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