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Extrinsic and intrinsic control of macrophage inflammatory responses
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title
Extrinsic and intrinsic control of macrophage inflammatory responses
(English)
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PubMed
main subject
macrophage
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inflammation
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author name string
H. B. Cohen
series ordinal
1
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Crossref
D. M. Mosser
series ordinal
2
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language of work or name
English
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PubMed
publication date
November 2013
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published in
Journal of Leukocyte Biology
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PubMed
volume
94
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PubMed
issue
5
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PubMed
page(s)
913-9
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PubMed
cites work
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TLR stimulation initiates a CD39-based autoregulatory mechanism that limits macrophage inflammatory responses
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Macrophages recruited via CCR2 produce insulin-like growth factor-1 to repair acute skeletal muscle injury
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Arginine usage in mycobacteria-infected macrophages depends on autocrine-paracrine cytokine signaling
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Macrophages: master regulators of inflammation and fibrosis
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Chemokine CXCL16 regulates neutrophil and macrophage infiltration into injured muscle, promoting muscle regeneration
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ATP released by electrical stimuli elicits calcium transients and gene expression in skeletal muscle.
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A transgenic mouse model of inducible macrophage depletion: effects of diphtheria toxin-driven lysozyme M-specific cell lineage ablation on wound inflammatory, angiogenic, and contractive processes.
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Lactate boosts TLR4 signaling and NF-kappaB pathway-mediated gene transcription in macrophages via monocarboxylate transporters and MD-2 up-regulation
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28 September 2017
The expression of heparin-binding epidermal growth factor-like growth factor by regulatory macrophages
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Shifts in macrophage phenotypes and macrophage competition for arginine metabolism affect the severity of muscle pathology in muscular dystrophy
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28 September 2017
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THE NATURE OF LEUKEMIC BLOOD CELLS AS DETERMINED BY THEIR METABOLISM.
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28 September 2017
ERK activation following macrophage FcgammaR ligation leads to chromatin modifications at the IL-10 locus
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28 September 2017
Satellite cells attract monocytes and use macrophages as a support to escape apoptosis and enhance muscle growth.
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PubMed Central
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28 September 2017
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28 September 2017
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28 September 2017
Degenerating and regenerating skeletal muscles contain several subpopulations of macrophages with distinct spatial and temporal distributions
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28 September 2017
Evidence for the involvement of interleukin 10 in the differential deactivation of murine peritoneal macrophages by prostaglandin E2.
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28 September 2017
Induction of tolerance to lipopolysaccharide (LPS)-D-galactosamine lethality by pretreatment with LPS is mediated by macrophages.
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28 September 2017
Macrophages in developing mammalian skeletal muscle: evidence for muscle fibre death as a normal developmental event
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28 September 2017
Interleukin 4 potently enhances murine macrophage mannose receptor activity: a marker of alternative immunologic macrophage activation
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28 September 2017
Muscle injury activates resident fibro/adipogenic progenitors that facilitate myogenesis
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21 January 2018
NF-kappaB expression in mononuclear cells of patients with sepsis resembles that observed in lipopolysaccharide tolerance
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IL-33 attenuates EAE by suppressing IL-17 and IFN-γ production and inducing alternatively activated macrophages.
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Modulation of murine dendritic cell function by adenine nucleotides and adenosine: involvement of the A(2B) receptor
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21 January 2018
Substrate fate in activated macrophages: a comparison between innate, classic, and alternative activation
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PubMed
reference URL
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12 December 2020
based on heuristic
inferred from PubMed ID database lookup
Human macrophages rescue myoblasts and myotubes from apoptosis through a set of adhesion molecular systems
1 reference
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PubMed
reference URL
https://pubmed.ncbi.nlm.nih.gov/23964115
retrieved
12 December 2020
based on heuristic
inferred from PubMed ID database lookup
Extracellular ATP triggers IL-1 beta release by activating the purinergic P2Z receptor of human macrophages
1 reference
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PubMed
reference URL
https://pubmed.ncbi.nlm.nih.gov/23964115
retrieved
12 December 2020
based on heuristic
inferred from PubMed ID database lookup
Macrophages and dendritic cells in normal and regenerating murine skeletal muscle
1 reference
stated in
PubMed
reference URL
https://pubmed.ncbi.nlm.nih.gov/23964115
retrieved
12 December 2020
based on heuristic
inferred from PubMed ID database lookup
2-Deoxyglucose and inflammation
1 reference
stated in
PubMed
reference URL
https://pubmed.ncbi.nlm.nih.gov/23964115
retrieved
12 December 2020
based on heuristic
inferred from PubMed ID database lookup
Macrophages regulate proliferation and differentiation of satellite cells
1 reference
stated in
PubMed
reference URL
https://pubmed.ncbi.nlm.nih.gov/23964115
retrieved
12 December 2020
based on heuristic
inferred from PubMed ID database lookup
Resolvin D1 and Its Precursor Docosahexaenoic Acid Promote Resolution of Adipose Tissue Inflammation by Eliciting Macrophage Polarization toward an M2-Like Phenotype
1 reference
stated in
PubMed
reference URL
https://pubmed.ncbi.nlm.nih.gov/23964115
retrieved
12 December 2020
based on heuristic
inferred from PubMed ID database lookup
Identifiers
DOI
10.1189/JLB.0413236
1 reference
stated in
Consolidated OpenCitations Corpus – April 2017
OpenCitations bibliographic resource ID
1089144
OpenCitations bibliographic resource ID
1089144
1 reference
stated in
Consolidated OpenCitations Corpus – April 2017
OpenCitations bibliographic resource ID
1089144
PMCID
4051261
1 reference
stated in
Consolidated OpenCitations Corpus – April 2017
OpenCitations bibliographic resource ID
1089144
PubMed ID
23964115
1 reference
stated in
Consolidated OpenCitations Corpus – April 2017
OpenCitations bibliographic resource ID
1089144
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