Literature DB >> 19362682

The variation in cytoplasmic distribution of mouse peritoneal macrophage during phagocytosis modulated by mangiferin, an immunomodulator.

Atasi De1, Sukumar Chattopadhyay.   

Abstract

The peritoneal MPhi in the immunological defense removes foreign particles, pathogenic or otherwise, by phagocytosis, and shows movement in search of the target. The macrophage (MPhi) appears in various shapes and sizes, spherical, flattened spindle-shaped, amoeboid, polygonal and with very long extension. On activation, the MPhi shows changes in cell shape, cytokinesis and development of intercellular contacts. A dynamic redistribution of cytoskeleton with cytoplasmic spread and/or extensions occurs with immunomodulators, like Mangiferin (1,3,6,7-tetrahydroxyxanthone-C(2)-beta-D-glucoside). The MPhi isolated from the peritoneal fluid of BALB/c mice pretreated with mangiferin and saline control, on challenge, shows redistribution of cytoplasm with variable morphology. Using the image analyses technique for pattern recognition of individual shapes of MPhi leads to the observation of clustering of cells in the coverslip culture. The stimulation in phagocytosis due to mangiferin, shows cytoplasmic spread, long extensions and intercellular contacts. The individual variations in the cytoplasmic redistribution are due to changes in the balance between the cellular surface area and the long extensions where the shape and nature of the phagocytic particle and the type of MPhi are determinants.

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Year:  2008        PMID: 19362682     DOI: 10.1016/j.imbio.2008.10.001

Source DB:  PubMed          Journal:  Immunobiology        ISSN: 0171-2985            Impact factor:   3.144


  7 in total

1.  Pharmacokinetic study of mangiferin in rat plasma and retina using high-performance liquid chromatography.

Authors:  Yunlong Hou; Shengjun Fan; Hong Zhang; Yuanqin Gu; Xuhui Yu; Baoxin Li
Journal:  Mol Vis       Date:  2010-08-17       Impact factor: 2.367

2.  Mangiferin prevents guinea pig tracheal contraction via activation of the nitric oxide-cyclic GMP pathway.

Authors:  Aline B Vieira; Luciana P Coelho; Daniella B R Insuela; Vinicius F Carvalho; Marcelo H dos Santos; Patricia Mr Silva; Marco A Martins
Journal:  PLoS One       Date:  2013-08-08       Impact factor: 3.240

3.  Mangiferin inhibits macrophage classical activation via downregulating interferon regulatory factor 5 expression.

Authors:  Zhiquan Wei; Li Yan; Yixin Chen; Chuanhong Bao; Jing Deng; Jiagang Deng
Journal:  Mol Med Rep       Date:  2016-05-27       Impact factor: 2.952

4.  Antioxidant (gallic acid and quercetin) profile of Sumatran wild mangoes ( Mangifera spp.): a potential source for antidegenerative medicine.

Authors:  Fitmawati Fitmawati; Esi Resida; Sri Nur Kholifah; Rodesia Mustika Roza; Muhammad Almurdani; Emrizal Emrizal
Journal:  F1000Res       Date:  2020-03-31

5.  Mangiferin reduces the inhibition of chondrogenic differentiation by IL-1β in mesenchymal stem cells from subchondral bone and targets multiple aspects of the Smad and SOX9 pathways.

Authors:  Jeong-Eun Huh; Pil-Seong Koh; Byung-Kwan Seo; Yeon-Chul Park; Yong-Hyun Baek; Jae-Dong Lee; Dong-Suk Park
Journal:  Int J Mol Sci       Date:  2014-09-11       Impact factor: 5.923

6.  Dysfunctional endothelial-derived microparticles promote inflammatory macrophage formation via NF-кB and IL-1β signal pathways.

Authors:  Yanfang Wang; Jie Liu; Xiaoli Chen; Huimin Sun; Sheng Peng; Yashu Kuang; Jingjiang Pi; Tao Zhuang; Lin Zhang; Zuoren Yu; Brain Tomlinson; Paul Chan; Yihan Chen; Yuzhen Zhang; Ying Li
Journal:  J Cell Mol Med       Date:  2018-10-18       Impact factor: 5.310

7.  Multi-omics analysis identifies FoxO1 as a regulator of macrophage function through metabolic reprogramming.

Authors:  Kai Yan; Tian-Tian Da; Zhen-Hua Bian; Yi He; Meng-Chu Liu; Qing-Zhi Liu; Jie Long; Liang Li; Cai-Yue Gao; Shu-Han Yang; Zhi-Bin Zhao; Zhe-Xiong Lian
Journal:  Cell Death Dis       Date:  2020-09-24       Impact factor: 8.469

  7 in total

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