D-Mannose Slows Glioma Growth by Modulating Myeloperoxidase Activity

被引:6
|
作者
Motlagh, Negin Jalali [1 ,2 ]
Wang, Cuihua [1 ,2 ]
Kuellenberg, Enrico Giovanni [1 ,2 ]
Wojtkiewicz, Gregory R. [2 ]
Schmidt, Stephan [2 ]
Chen, John W. [1 ,2 ]
机构
[1] Harvard Med Sch, Massachusetts Gen Hosp, Dept Radiol, Inst Innovat Imaging, Charlestown, MA 02129 USA
[2] Harvard Med Sch, Massachusetts Gen Hosp, Ctr Syst Biol, Boston, MA 02114 USA
基金
美国国家卫生研究院;
关键词
D-mannose; leukocytes; MPO activity; glioma; TUMOR; INFLAMMATION; INVOLVEMENT; INFECTIONS; LESIONS; INNATE; HEALTH; CANCER; MODEL; MICE;
D O I
10.3390/cancers13246360
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Simple Summary Inflammation and oxidative stress are important host defense responses. However, while the host response can be cytotoxic and kill tumor cells, tumor cells can also alter and exploit the host immune environment to further their survival. Thus, the host response can impact both tumor suppression and progression. Modulating the tumor-host response interaction to favor tumor suppression would be highly desirable. D-mannose has been found to have anti-inflammatory properties and can block signaling related to myeloperoxidase (MPO), a highly oxidizing pro-inflammatory enzyme secreted in host defense. However, the effect of D-mannose on host immune response in the glioma microenvironment has not been explored. We found that D-mannose slowed glioma growth by increasing MPO activity and oxidative stress in the glioma microenvironment. Our findings revealed that D-mannose may be able to shift the host immune response toward tumor suppression and could be a potential new therapeutic direction for these difficult-to-treat tumors. Host immune response in the tumor microenvironment plays key roles in tumorigenesis. We hypothesized that D-mannose, a simple sugar with anti-inflammatory properties, could decrease oxidative stress and slow glioma progression. Using a glioma stem cell model in immunocompetent mice, we induced gliomas in the brain and tracked MPO activity in vivo with and without D-mannose treatment. As expected, we found that D-mannose treatment decreased the number of MPO+ cells and slowed glioma progression compared to PBS-treated control animals with gliomas. Unexpectedly, instead of decreasing MPO activity, D-mannose increased MPO activity in vivo, revealing that D-mannose boosted the MPO activity per MPO+ cell. On the other hand, D-glucose had no effect on MPO activity. To better understand this effect, we examined the effect of D-mannose on bone marrow-derived myeloid cells. We found that D-mannose modulated MPO activity via two mechanisms: directly via N-glycosylation of MPO, which boosted the MPO activity of each molecule, and indirectly by increasing H2O2 production, the main substrate for MPO. This increased host immune response acted to reduce tumor size, suggesting that increasing MPO activity such as through D-mannose administration may be a potential new therapeutic direction for glioma treatment.
引用
收藏
页数:12
相关论文
共 50 条
  • [41] A concise and practical synthesis of oseltamivir phosphate(Tamiflu) from D-mannose
    Chuanopparat, Nutthawat
    Kongkathip, Ngampong
    Kongkathip, Boonsong
    TETRAHEDRON, 2012, 68 (34) : 6803 - 6809
  • [42] Continuous isomerization of d-fructose to d-mannose by immobilized Agrobacterium radiobacter cells
    Jun Hirose
    Yuka Kinoshita
    Seijiro Fukuyama
    Sachio Hayashi
    Haruhiko Yokoi
    Yoshiyuki Takasaki
    Biotechnology Letters, 2003, 25 : 349 - 352
  • [43] D-Mannose promotes recovery from experimental colitis by inducing AMPK phosphorylation to stimulate epithelial repair
    Zhang, Haojie
    Zhao, Xue
    Gao, Yifei
    Shi, Yao
    Wei, Lina
    Li, Jingxin
    Liu, Chuanyong
    Ma, Xuelian
    FOOD & FUNCTION, 2024, 15 (02) : 625 - 646
  • [44] Characterization of two novel D-mannose 2-epimerases from Dyadobacter sp. CY327 and Rhabdobacter roseus DSM 105074 and their application in D-mannose production
    Ni, Dawei
    Wei, Yuhan
    Zhang, Yulei
    Zhang, Wenli
    Mu, Wanmeng
    PROCESS BIOCHEMISTRY, 2024, 147 : 109 - 117
  • [45] Oral D-mannose in recurrent urinary tract infections in women: a pilot study
    Porru, D.
    Parmigiani, A.
    Tinelli, C.
    Barletta, D.
    Choussos, D.
    Di Franco, C.
    Bobbi, V.
    Bassi, S.
    Miller, O.
    Gardella, B.
    Nappi, R. E.
    Spinillo, A.
    Rovereto, B.
    JOURNAL OF CLINICAL UROLOGY, 2014, 7 (03) : 208 - 213
  • [46] D-mannose administration improves autoimmune hepatitis by upregulating regulatory T cells
    Ito, Daisuke
    Ito, Hiroyasu
    Ideta, Takayasu
    Kanbe, Ayumu
    Shimizu, Masahito
    CELLULAR IMMUNOLOGY, 2022, 375
  • [47] Molecular Modification of D-lyxose Isomerase with Weak Acid Characteristic and D-mannose Production
    Chen M.
    Wu H.
    Zhang W.
    Mu W.
    Science and Technology of Food Industry, 2021, 42 (17) : 129 - 137
  • [48] Considerations on D-mannose Mechanism of Action and Consequent Classification of Marketed Healthcare Products
    Scaglione, Francesco
    Musazzi, Umberto M.
    Minghetti, Paola
    FRONTIERS IN PHARMACOLOGY, 2021, 12
  • [49] NMR studies on chiral intermediates in the total synthesis of (+)-biotin from D-mannose
    Chen, Wen-xue
    Zhang, Ping
    Chen, Fen-er
    MAGNETIC RESONANCE IN CHEMISTRY, 2010, 48 (08) : 651 - 655
  • [50] D-mannose reduces oxidative stress, inhibits inflammation, and increases treg cell proportions in mice with ulcerative colitis
    Lu, Yuqing
    Xiong, Yongjian
    Zhang, Shuangshuang
    Wang, Boya
    Feng, Yuntao
    Pu, Zhuonan
    Wei, Kun
    Chen, Jun
    Chen, Dapeng
    Zhang, Peng
    FRONTIERS IN PHARMACOLOGY, 2024, 15