Literature DB >> 24672677

Monocytes in health and disease - Minireview.

K R Karlmark, F Tacke, I R Dunay.   

Abstract

Monocytes are important cell types of the innate immune system. Recent scientific evidence suggests that monocytes not only play a crucial role in our innate immune system by defending the host from intruding microbial pathogens but they also contribute to the pathogenesis and progression of diseases such as liver fibrosis, atherosclerosis, multiple sclerosis, and tumor metastasis. In addition, monocytes and monocyte-derived macrophages play a crucial beneficial role in the liver fibrosis regression, muscle regeneration, and the clearance of the β-amyloid plaques in Alzheimer's disease. Here, we summarize the origin, plasticity, and pathogenic potential of monocytes and monocyte-derived macrophages, as well as their positive role in the regression of some common diseases. Elucidating the comprehensive immunological role of monocytes will provide therapeutic advantages in either controlling disease progression or favoring the regression of the disease state.

Entities:  

Keywords:  chemokine receptor; infection and injury; inflammation; liver fibrosis; monocytes; neurodegeneration; tumor metastasis

Year:  2012        PMID: 24672677      PMCID: PMC3956957          DOI: 10.1556/EuJMI.2.2012.2.1

Source DB:  PubMed          Journal:  Eur J Microbiol Immunol (Bp)        ISSN: 2062-509X


  38 in total

1.  The fractalkine receptor CX₃CR1 protects against liver fibrosis by controlling differentiation and survival of infiltrating hepatic monocytes.

Authors:  Karlin Raja Karlmark; Henning W Zimmermann; Christoph Roderburg; Nikolaus Gassler; Hermann E Wasmuth; Tom Luedde; Christian Trautwein; Frank Tacke
Journal:  Hepatology       Date:  2010-11       Impact factor: 17.425

2.  Monocyte subsets differentially employ CCR2, CCR5, and CX3CR1 to accumulate within atherosclerotic plaques.

Authors:  Frank Tacke; David Alvarez; Theodore J Kaplan; Claudia Jakubzick; Rainer Spanbroek; Jaime Llodra; Alexandre Garin; Jianhua Liu; Matthias Mack; Nico van Rooijen; Sergio A Lira; Andreas J Habenicht; Gwendalyn J Randolph
Journal:  J Clin Invest       Date:  2007-01       Impact factor: 14.808

3.  Distinct differentiation potential of blood monocyte subsets in the lung.

Authors:  Limor Landsman; Chen Varol; Steffen Jung
Journal:  J Immunol       Date:  2007-02-15       Impact factor: 5.422

Review 4.  Monocyte-mediated immune defense against murine Listeria monocytogenes infection.

Authors:  Natalya V Serbina; Chao Shi; Eric G Pamer
Journal:  Adv Immunol       Date:  2012       Impact factor: 3.543

5.  Mitochondrial DNA polymorphisms specifically modify cerebral β-amyloid proteostasis.

Authors:  Katja Scheffler; Markus Krohn; Tina Dunkelmann; Jan Stenzel; Bruno Miroux; Saleh Ibrahim; Oliver von Bohlen Und Halbach; Hans-Jochen Heinze; Lary C Walker; Jörg A Gsponer; Jens Pahnke
Journal:  Acta Neuropathol       Date:  2012-04-18       Impact factor: 17.088

6.  Recruitment of monocytes/macrophages by tissue factor-mediated coagulation is essential for metastatic cell survival and premetastatic niche establishment in mice.

Authors:  Ana M Gil-Bernabé; Spela Ferjancic; Monika Tlalka; Lei Zhao; Philip D Allen; Jae Hong Im; Karla Watson; Sally A Hill; Ali Amirkhosravi; John L Francis; Jeffrey W Pollard; Wolfram Ruf; Ruth J Muschel
Journal:  Blood       Date:  2012-02-10       Impact factor: 22.113

7.  Classical CD11c+ dendritic cells, not plasmacytoid dendritic cells, induce T cell responses to Plasmodium chabaudi malaria.

Authors:  Cecile Voisine; Beatris Mastelic; Anne-Marit Sponaas; Jean Langhorne
Journal:  Int J Parasitol       Date:  2009-12-05       Impact factor: 3.981

8.  Microglial dysfunction and defective beta-amyloid clearance pathways in aging Alzheimer's disease mice.

Authors:  Suzanne E Hickman; Elizabeth K Allison; Joseph El Khoury
Journal:  J Neurosci       Date:  2008-08-13       Impact factor: 6.167

9.  Monocyte emigration from bone marrow during bacterial infection requires signals mediated by chemokine receptor CCR2.

Authors:  Natalya V Serbina; Eric G Pamer
Journal:  Nat Immunol       Date:  2006-02-05       Impact factor: 25.606

10.  Histamine deficiency promotes inflammation-associated carcinogenesis through reduced myeloid maturation and accumulation of CD11b+Ly6G+ immature myeloid cells.

Authors:  Xiang Dong Yang; Walden Ai; Samuel Asfaha; Govind Bhagat; Richard A Friedman; Guangchun Jin; Heuijoon Park; Benjamin Shykind; Thomas G Diacovo; Andras Falus; Timothy C Wang
Journal:  Nat Med       Date:  2010-12-19       Impact factor: 53.440

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  29 in total

1.  Campylobacter jejuni induces extra-intestinal immune responses via Toll-like-receptor-4 signaling in conventional IL-10 deficient mice with chronic colitis.

Authors:  B Otto; L-M Haag; A Fischer; R Plickert; A A Kühl; U B Göbel; M M Heimesaat; S Bereswill
Journal:  Eur J Microbiol Immunol (Bp)       Date:  2012-09-10

2.  Spinal cord pathology in chronic experimental Toxoplasma gondii infection.

Authors:  L Möhle; A Parlog; J Pahnke; I R Dunay
Journal:  Eur J Microbiol Immunol (Bp)       Date:  2014-03-14

3.  Glioma-derived versican promotes tumor expansion via glioma-associated microglial/macrophages Toll-like receptor 2 signaling.

Authors:  Feng Hu; Omar Dildar Dzaye; Alexander Hahn; Yong Yu; Rick Joey Scavetta; Gunnar Dittmar; Adrian Kamil Kaczmarek; Kylie R Dunning; Carmela Ricciardelli; Jan L Rinnenthal; Frank L Heppner; Seija Lehnardt; Michael Synowitz; Susanne A Wolf; Helmut Kettenmann
Journal:  Neuro Oncol       Date:  2014-12-01       Impact factor: 12.300

4.  Mass Cytometry Reveals Global Immune Remodeling with Multi-lineage Hypersensitivity to Type I Interferon in Down Syndrome.

Authors:  Katherine A Waugh; Paula Araya; Ahwan Pandey; Kimberly R Jordan; Keith P Smith; Ross E Granrath; Santosh Khanal; Eric T Butcher; Belinda Enriquez Estrada; Angela L Rachubinski; Jennifer A McWilliams; Ross Minter; Tiana Dimasi; Kelley L Colvin; Dmitry Baturin; Andrew T Pham; Matthew D Galbraith; Kyle W Bartsch; Michael E Yeager; Christopher C Porter; Kelly D Sullivan; Elena W Hsieh; Joaquin M Espinosa
Journal:  Cell Rep       Date:  2019-11-12       Impact factor: 9.423

5.  Characterization of neutrophils and macrophages from ex vivo-cultured murine bone marrow for morphologic maturation and functional responses by imaging flow cytometry.

Authors:  Margery G H Pelletier; Klaudia Szymczak; Anna M Barbeau; Gianna N Prata; Kevin S O'Fallon; Peter Gaines
Journal:  Methods       Date:  2016-09-20       Impact factor: 3.608

6.  Genomic background-related activation of microglia and reduced β-amyloidosis in a mouse model of Alzheimer's disease.

Authors:  Christina Fröhlich; Kristin Paarmann; Johannes Steffen; Jan Stenzel; Markus Krohn; Hans-Jochen Heinze; Jens Pahnke
Journal:  Eur J Microbiol Immunol (Bp)       Date:  2013-03-01

7.  Monocytes as Endothelial Progenitor Cells (EPCs), Another Brick in the Wall to Disentangle Tumor Angiogenesis.

Authors:  Filipa Lopes-Coelho; Fernanda Silva; Sofia Gouveia-Fernandes; Carmo Martins; Nuno Lopes; Germana Domingues; Catarina Brito; António M Almeida; Sofia A Pereira; Jacinta Serpa
Journal:  Cells       Date:  2020-01-01       Impact factor: 6.600

8.  The significance of macrophage polarization subtypes for animal models of tissue fibrosis and human fibrotic diseases.

Authors:  Peter J Wermuth; Sergio A Jimenez
Journal:  Clin Transl Med       Date:  2015-02-07

9.  Specific depletion of Ly6C(hi) inflammatory monocytes prevents immunopathology in experimental cerebral malaria.

Authors:  Beatrix Schumak; Katrin Klocke; Janina M Kuepper; Aindrila Biswas; Andrea Djie-Maletz; Andreas Limmer; Nico van Rooijen; Matthias Mack; Achim Hoerauf; Ildiko Rita Dunay
Journal:  PLoS One       Date:  2015-04-17       Impact factor: 3.240

Review 10.  Mechanisms and pathophysiological significance of sterile inflammation during acetaminophen hepatotoxicity.

Authors:  Hartmut Jaeschke; Anup Ramachandran
Journal:  Food Chem Toxicol       Date:  2020-03-04       Impact factor: 6.023

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