Lactic acid bacteria enhance autophagic ability of mononuclear phagocytes by increasing Th1 autophagy-promoting cytokine (IFN-γ) and nitric oxide (NO) levels and reducing Th2 autophagy-restraining cytokines (IL-4 and IL-13) in response to Mycobacterium tuberculosis antigen

被引:107
作者
Ghadimi, Darab [1 ]
de Vrese, Michael [1 ]
Heller, Knut J. [2 ]
Schrezenmeir, Juergen [3 ]
机构
[1] Max Rubner Inst, Dept Physiol & Biochem Nutr, D-24103 Kiel, Germany
[2] Max Rubner Inst, Dept Microbiol & Biotechnol, D-24103 Kiel, Germany
[3] Max Rubner Inst, Dept Physiol & Biochem Nutr, D-76131 Karlsruhe, Germany
关键词
Mycobacterium tuberculosis; Autophagy; Th1/Th2; cytokines; Probiotic bacteria; NECROSIS-FACTOR-ALPHA; IN-VITRO; INTERFERON PRODUCTION; INTERLEUKIN-12; IL-12; PROBIOTIC BACTERIA; LACTOBACILLUS-GG; LEVELS CORRELATE; MESSENGER-RNA; MACROPHAGES; CELLS;
D O I
10.1016/j.intimp.2010.03.014
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Background and objectives: Control of the intracellular Mycobacterium tuberculosis (Mtb), mainly requires an appropriate ratio of Th1/Th2 cytokines to induce autophagy, a physiologically, and immunologically regulated process that has recently been highlighted as an innate defense mechanism against intracellular pathogens. Current vaccines/adjuvants induce both protective Th1 autophagy-promoting cytokines, such as IFN-gamma, and immunosuppressive Th2 autophagy-restraining cytokines, such as IL-4 and IL-13. TB infection itself is also characterized by relatively high levels of Th2 cytokines, which down-regulate Th1 responses and subsequently subvert adequate protective immunity, and a low ratio of IFN-gamma/IL-4. Therefore, there is a need for a safe and non-toxic vaccine/adjuvant that will induce Th1 autophagy-promoting cytokine (IFN-gamma) secretion and suppress the pre-existing subversive Th2 autophagy-restraining cytokines (IL-4 and IL-13). As lactic acid bacteria (LAB) belonging to the natural intestinal microflora and their components have been shown to shift immune responses against other antigens from Th2-type cytokines toward Th1-type cytokines like IFN-gamma, we investigated whether LAB can improve the polarization of Th1/Th2 cytokines and autophagic ability of mononuclear phagocytes in response to Mtb antigen. Methods: Peripheral blood mononuclear cells (PBMCs), which are a part of the mononuclear phagocyte system and source of crucial macrophage activators in the in vivo situation, and human monocyte-derived macrophages (HMDMs) were treated with Mtb antigen in the presence or absence of two strains of LAB, L rhammosus GG (LGG) and Bifidobacterium bifidum MF 20/5 (B.b). PBMCs cell culture supernatants were analyzed for the production of the autophagy-promoting factors IFN-gamma, and nitric oxide (NO) and the autophagy-restraining cytokines IL-4 and IL-13, using ELISA and Griess assays to detect the production of cytokines and NO, respectively. In HMDMs, expression of microtubule-associated protein 1 light chain 3 (LC3-I), membrane-associated (LC3-II) forms of LC3 protein and Beclin-1, as hallmarks of autophagy, were assessed using Western blot to detect the autophagy markers. The secreted interleukin 6 (IL-6), interleukin 10 (IL-10), interleukin (IL)-12 and transformig growth factor-beta (TGF-beta), and chemokine (C-C motif) ligand 18 (CCL18) from HMDMs were determined by ELISA. Also, reverse transcription polymerase chain reaction (RT-PCR) analysis was used to assess the mRNA expressions of CCL18 in HMDMs. Results: Treatment of PBMCs with either Mtb antigen or with LAB significantly increased the IFN-gamma and NO production. Combination of MO antigen and LAB led to synergistic increase in IFN-gamma, and an additive increase in NO. Treatment with Mtb antigen alone significantly increased the IL-4 and IL-13 production. LAB significantly decreased IL-4 and IL-13 secretion in both unstimulated and Mtb antigen-stimulated PBMCs. The IFN-gamma/IL-4 + IL-13 ratio was enhanced, indicating Th1/Th2 polarization. Treatment of macrophages with combined use of Mtb antigen and LAB led to an additive increase in Beclin-1, LC3-II expression, as well as in synergistic increase in IL-12 production. Treatment of macrophages with combined use of Mtb antigen and LAB led to a decrease in IL-6, IL-10, and CCL18 secretion. LAB inhibited the secretion of TGF-beta by Mtb-stimulated macrophages, however not significantly. Treatment of macrophages with combined use of Mtb antigen and LAB led to a decrease in CCL18 mRNA expression. Conclusion: Our study implies that LAB may reinforce the response of the mononuclear phagocytes to Mtb antigen by inducing production of the autophagy-promoting factors IFN-gamma and NO, while decreasing the Th2 autophagy-restraining cytokines IL-4 and IL-13. Hence, combination of Mtb antigen and LAB may perhaps be safer in more efficacious TB vaccine formulation. (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:694 / 706
页数:13
相关论文
共 68 条
[1]  
AMONO A, 2006, J BIOCHEM-TOKYO, V140, P161
[2]   MECHANISM OF SUPPRESSION OF NITRIC-OXIDE SYNTHASE EXPRESSION BY INTERLEUKIN-4 IN PRIMARY MOUSE MACROPHAGES [J].
BOGDAN, C ;
VODOVOTZ, Y ;
PAIK, J ;
XIE, QW ;
NATHAN, C .
JOURNAL OF LEUKOCYTE BIOLOGY, 1994, 55 (02) :227-233
[3]   Down-modulation of lung immune responses by interleukin-10 and transforming growth factor β (TGF-β) and analysis of TGF-β receptors I and II in active tuberculosis [J].
Bonecini-Almeida, MG ;
Ho, JL ;
Boéchat, N ;
Huard, RC ;
Chitale, S ;
Doo, H ;
Geng, JY ;
Rego, L ;
Lazzarini, LCO ;
Kritski, AL ;
Johnson, WD ;
McCaffrey, TA ;
Silva, JRLE .
INFECTION AND IMMUNITY, 2004, 72 (05) :2628-2634
[4]  
Bonecini-Almeida MG, 1998, J IMMUNOL, V160, P4490
[5]   Cytokine levels correlate with a radiologic score in active pulmonary tuberculosis [J].
Casarini, M ;
Ameglio, F ;
Alemanno, L ;
Zangrilli, P ;
Mattia, P ;
Paone, G ;
Bisetti, A ;
Giosuè, S .
AMERICAN JOURNAL OF RESPIRATORY AND CRITICAL CARE MEDICINE, 1999, 159 (01) :143-148
[6]   Involvement of, CCL18 in. allergic asthma [J].
De Nadai, Patricia ;
Charbonnier, Anne-Sophie ;
Chenivesse, Ccile ;
Senechal, Stephanie ;
Fournier, Clement ;
Gilet, Jules ;
Vorng, Han ;
Chang, Ying ;
Gosset, Philippe ;
Wallaert, Benoit ;
Tonnel, Andre-Bernard ;
Lassalle, Philippe ;
Tsicopoulos, Anne .
JOURNAL OF IMMUNOLOGY, 2006, 176 (10) :6286-6293
[7]   Effect of Lactobacillus gasseri PA 16/8, Bifidobacterium longum SP 07/3, B-bifidum MF 20/5 on common cold episodes:: A double blind, randomized, controlled trial [J].
de Vrese, M ;
Winkler, P ;
Rautenberg, P ;
Harder, T ;
Noah, C ;
Laue, C ;
Ott, S ;
Hampe, J ;
Schreiber, S ;
Heller, K ;
Schrezenmeir, J .
CLINICAL NUTRITION, 2005, 24 (04) :481-491
[8]   RETRACTED: Interteukin-13-induced type II polarization of inflammatory macrophages is mediated through suppression of nuclear factor-κB and preservation of IκBα in a T cell lymphoma (retracted Article. See vol 158, pg 334, 2009) [J].
Deepak, P. ;
Kumar, S. ;
Acharya, A. .
CLINICAL AND EXPERIMENTAL IMMUNOLOGY, 2007, 149 (02) :378-386
[9]   The 6-kilodalton early secreted antigenic target-responsive, asymptomatic contacts of tuberculosis patients express elevated levels of interleukin-4 and reduced levels of gamma interferon [J].
Demissie, A ;
Wassie, L ;
Abebe, M ;
Aseffa, A ;
Rook, G ;
Zumla, A ;
Andersen, P ;
Doherty, TM .
INFECTION AND IMMUNITY, 2006, 74 (05) :2817-2822
[10]   Autophagy in Immunity Against Mycobacterium tuberculosis: a Model System to Dissect Immunological Roles of Autophagy [J].
Deretic, Vojo ;
Delgado, Monica ;
Vergne, Isabelle ;
Master, Sharon ;
De Haro, Sergio ;
Ponpuak, Marisa ;
Singh, Sudha .
AUTOPHAGY IN INFECTION AND IMMUNITY, 2009, 335 :169-188