scholarly article | Q13442814 |
P50 | author | Stuart P Weisberg | Q57321271 |
P2093 | author name string | Matthias Mack | |
Israel F Charo | |||
Yue Si | |||
Ara M Aslanian | |||
Chia-Lin Tsou | |||
Sarah Slaymaker | |||
Wendy Peters | |||
P2860 | cites work | Molecular cloning and functional expression of two monocyte chemoattractant protein 1 receptors reveals alternative splicing of the carboxyl-terminal tails | Q24310185 |
Chemokines and disease | Q28200068 | ||
Impaired monocyte migration and reduced type 1 (Th1) cytokine responses in C-C chemokine receptor 2 knockout mice | Q28585385 | ||
Absence of monocyte chemoattractant protein 1 in mice leads to decreased local macrophage recruitment and antigen-specific T helper cell type 1 immune response in experimental autoimmune encephalomyelitis | Q28755978 | ||
Monocyte and macrophage heterogeneity | Q29547438 | ||
Blood monocytes consist of two principal subsets with distinct migratory properties | Q29614286 | ||
The many roles of chemokines and chemokine receptors in inflammation | Q29618880 | ||
Monocyte emigration from bone marrow during bacterial infection requires signals mediated by chemokine receptor CCR2 | Q29622852 | ||
The mononuclear phagocyte system revisited. | Q34960983 | ||
Monocyte chemoattractant protein-1 (CCL2) in inflammatory disease and adaptive immunity: therapeutic opportunities and controversies | Q35173613 | ||
Macrophage receptors and immune recognition | Q36072472 | ||
Distribution of cells bearing receptors for a colony-stimulating factor (CSF-1) in murine tissues | Q36208853 | ||
Immature monocytes acquire antigens from other cells in the bone marrow and present them to T cells after maturing in the periphery | Q36228368 | ||
Hypercholesterolemia and inflammation in atherogenesis: two sides of the same coin | Q36306350 | ||
Resistance to experimental autoimmune encephalomyelitis in mice lacking the CC chemokine receptor (CCR)2. | Q36368947 | ||
Abnormalities in monocyte recruitment and cytokine expression in monocyte chemoattractant protein 1-deficient mice | Q36400287 | ||
MHC class II expression restricted to CD8alpha+ and CD11b+ dendritic cells is sufficient for control of Leishmania major | Q36403901 | ||
Chemokine receptor 2 serves an early and essential role in resistance to Mycobacterium tuberculosis. | Q36532495 | ||
Selective expression of Ly-6G on myeloid lineage cells in mouse bone marrow. RB6-8C5 mAb to granulocyte-differentiation antigen (Gr-1) detects members of the Ly-6 family | Q42809489 | ||
Peripheral differential leukocyte counts in humans vary with hyperlipidemia, smoking, and body mass index | Q43598208 | ||
Rapid recruitment of inflammatory monocytes is independent of neutrophil migration | Q44353696 | ||
Pattern recognition receptors and differentiation antigens define murine myeloid cell heterogeneity ex vivo | Q44528083 | ||
Lipid lowering reduces oxidative stress and endothelial cell activation in rabbit atheroma | Q46200093 | ||
Decreased lesion formation in CCR2-/- mice reveals a role for chemokines in the initiation of atherosclerosis | Q46897070 | ||
Release of polymorphonuclear leukocytes from the bone marrow by interleukin-8. | Q47781459 | ||
Role of the CXCR4/SDF-1 chemokine axis in circulating neutrophil homeostasis | Q47850242 | ||
The Ly-6Chigh monocyte subpopulation transports Listeria monocytogenes into the brain during systemic infection of mice. | Q47914827 | ||
Subpopulations of mouse blood monocytes differ in maturation stage and inflammatory response. | Q47914837 | ||
Polymorphic expression of a neutrophil differentiation antigen revealed by monoclonal antibody 7/4 | Q71040073 | ||
C5a- and tumor necrosis factor-alpha-induced leukocytosis occurs independently of beta 2 integrins and L-selectin: differential effects on neutrophil adhesion molecule expression in vivo | Q71692109 | ||
Adiposity elevates plasma MCP-1 levels leading to the increased CD11b-positive monocytes in mice | Q73400431 | ||
Chemokines acting via CXCR2 and CXCR4 control the release of neutrophils from the bone marrow and their return following senescence | Q79175268 | ||
Expression and characterization of the chemokine receptors CCR2 and CCR5 in mice | Q95721029 | ||
P433 | issue | 4 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | bone marrow | Q546523 |
P304 | page(s) | 902-909 | |
P577 | publication date | 2007-03-15 | |
P1433 | published in | Journal of Clinical Investigation | Q3186904 |
P1476 | title | Critical roles for CCR2 and MCP-3 in monocyte mobilization from bone marrow and recruitment to inflammatory sites | |
P478 | volume | 117 |
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Q91824503 | Inflammatory Monocytes and Neutrophils Regulate Streptococcus suis-Induced Systemic Inflammation and Disease but Are Not Critical for the Development of Central Nervous System Disease in a Mouse Model of Infection |
Q28275259 | Inflammatory cell recruitment in cardiovascular disease: murine models and potential clinical applications |
Q36980064 | Inflammatory monocyte mobilization decreases patient survival in pancreatic cancer: a role for targeting the CCL2/CCR2 axis |
Q26861256 | Inflammatory monocytes and the pathogenesis of viral encephalitis |
Q47289858 | Inflammatory monocytes mediate control of acute alphavirus infection in mice. |
Q41786776 | Inflammatory monocytes mediate early and organ-specific innate defense during systemic candidiasis. |
Q34542698 | Inflammatory monocytes promote progression of Duchenne muscular dystrophy and can be therapeutically targeted via CCR2. |
Q28088301 | Inflammatory reaction after traumatic brain injury: therapeutic potential of targeting cell-cell communication by chemokines |
Q41433893 | Inhibition of soluble epoxide hydrolase alleviated atherosclerosis by reducing monocyte infiltration in Ldlr(-/-) mice |
Q37466096 | Innate immune activation in obesity |
Q42008009 | Insulin resistance, inflammation, and obesity: role of monocyte chemoattractant protein-1 (or CCL2) in the regulation of metabolism |
Q34001345 | Interleukin-1β mediates macrophage-induced impairment of insulin signaling in human primary adipocytes |
Q48575325 | Intermediate and nonclassical monocytes show heterogeneity in patients with different types of acute coronary syndrome |
Q37522003 | Intestinal macrophages: differentiation and involvement in intestinal immunopathologies. |
Q37194943 | Intestinal monocytes and macrophages are required for T cell polarization in response to Citrobacter rodentium |
Q91721662 | Intravascular innate immune cells reprogrammed via intravenous nanoparticles to promote functional recovery after spinal cord injury |
Q34211871 | Invariant NKT cells drive hepatic cytokinic microenvironment favoring efficient granuloma formation and early control of Leishmania donovani infection |
Q35815641 | Involvement of bone marrow cells and neuroinflammation in hypertension. |
Q35834715 | Is interleukin-1β a culprit in macrophage-adipocyte crosstalk in obesity? |
Q27326691 | Kinetic mRNA Profiling in a Rat Model of Left-Ventricular Hypertrophy Reveals Early Expression of Chemokines and Their Receptors |
Q58843506 | Kinetics of regulatory dendritic cells in inflammatory responses during Trypanosoma evansi infection |
Q33561481 | Leukocyte Trafficking in Cardiovascular Disease: Insights from Experimental Models |
Q37156803 | Listeria monocytogenes: epidemiology, human disease, and mechanisms of brain invasion |
Q37226747 | Local apoptosis mediates clearance of macrophages from resolving inflammation in mice |
Q35647599 | Localized CCR2 Activation in the Bone Marrow Niche Mobilizes Monocytes by Desensitizing CXCR4. |
Q35822559 | Low-dose TNF augments fracture healing in normal and osteoporotic bone by up-regulating the innate immune response. |
Q37019615 | Lung epithelial apoptosis in influenza virus pneumonia: the role of macrophage-expressed TNF-related apoptosis-inducing ligand |
Q33596007 | Ly-6Chigh monocytes depend on Nr4a1 to balance both inflammatory and reparative phases in the infarcted myocardium |
Q61941968 | Ly6C Blood Monocyte/Macrophage Drive Chronic Inflammation and Impair Wound Healing in Diabetes Mellitus |
Q34075772 | Ly6Chi monocyte recruitment is responsible for Th2 associated host-protective macrophage accumulation in liver inflammation due to schistosomiasis |
Q27486985 | Ly6c+ "inflammatory monocytes" are microglial precursors recruited in a pathogenic manner in West Nile virus encephalitis |
Q90540508 | Lymph node stromal CCL2 limits antibody responses |
Q41189692 | M1-M2 balancing act in white adipose tissue browning - a new role for RIP140. |
Q46494231 | MAIDS resistance-associated gene expression patterns in secondary lymphoid organs |
Q40414424 | MARCH1 E3 Ubiquitin Ligase Dampens the Innate Inflammatory Response by Modulating Monocyte Functions in Mice. |
Q34061791 | MCP/CCR2 signaling is essential for recruitment of mesenchymal progenitor cells during the early phase of fracture healing |
Q33590469 | MGL1 promotes adipose tissue inflammation and insulin resistance by regulating 7/4hi monocytes in obesity |
Q34717864 | Macrophage adipose triglyceride lipase deficiency attenuates atherosclerotic lesion development in low-density lipoprotein receptor knockout mice |
Q37360584 | Macrophage colony-stimulating factor (CSF1) controls monocyte production and maturation and the steady-state size of the liver in pigs |
Q36196806 | Macrophage deficiency of Akt2 reduces atherosclerosis in Ldlr null mice |
Q38008842 | Macrophage differentiation and function in atherosclerosis: opportunities for therapeutic intervention? |
Q36320142 | Macrophage origin limits functional plasticity in helminth-bacterial co-infection |
Q37008855 | Macrophage peroxisome proliferator activated receptor gamma as a therapeutic target to combat Type 2 diabetes |
Q42696291 | Macrophage polarization and activation in response to implant debris: influence by "particle disease" and "ion disease" |
Q47608848 | Macrophage polarization and allergic asthma |
Q39384294 | Macrophage-Mediated Inflammation in Normal and Diabetic Wound Healing |
Q63915886 | Macrophages and Cardiovascular Health |
Q34067326 | Macrophages and immunologic inflammation of the kidney |
Q34421842 | Macrophages recruited via CCR2 produce insulin‐like growth factor‐1 to repair acute skeletal muscle injury |
Q46765214 | Measuring intravascular migration of mouse Ly6C(low) monocytes in vivo using intravital microscopy |
Q37096570 | Mechanisms of leukocyte migration across the blood-retina barrier |
Q28275105 | Mechanisms of mononuclear phagocyte recruitment in Alzheimer's disease |
Q40337268 | Mesenchymal Stromal Cells Modulate Monocytes Trafficking in Coxsackievirus B3-Induced Myocarditis |
Q60961590 | Metabolism Plays a Key Role during Macrophage Activation |
Q55514960 | MicroRNA 33 Regulates the Population of Peripheral Inflammatory Ly6Chigh Monocytes through Dual Pathways. |
Q38916635 | Microglia and Monocyte-Derived Macrophages in Stroke |
Q80105368 | Microgliosis: the questions shape the answers |
Q33999199 | Mitogen-activated protein kinase phosphatase-1 promotes neovascularization and angiogenic gene expression |
Q92221576 | Mo-derived perivascular macrophage recruitment protects against endothelial cell death in retinal vein occlusion |
Q41824538 | Mobilization and margination of bone marrow Gr-1high monocytes during subclinical endotoxemia predisposes the lungs toward acute injury |
Q90008068 | Modulation of Monocyte-Driven Myositis in Alphavirus Infection Reveals a Role for CX3CR1+ Macrophages in Tissue Repair |
Q38125279 | Molecular biology of atherosclerosis |
Q34725969 | Molecular pathways: myeloid complicity in cancer |
Q37122225 | Monocyte and macrophage heterogeneity in the heart |
Q33511278 | Monocyte and neutrophil recruitment during oral Salmonella infection is driven by MyD88-derived chemokines |
Q43168651 | Monocyte chemoattractant protein-1 (MCP-1), not MCP-3, is the primary chemokine required for monocyte recruitment in mouse peritonitis induced with thioglycollate or zymosan A. |
Q39258320 | Monocyte differentiation and antigen-presenting functions |
Q41436382 | Monocyte infiltration and proliferation reestablish myeloid cell homeostasis in the mouse retina following retinal pigment epithelial cell injury |
Q29620067 | Monocyte recruitment during infection and inflammation |
Q36117359 | Monocyte trafficking across the vessel wall |
Q35230750 | Monocyte trafficking in acute and chronic inflammation |
Q34065838 | Monocyte trafficking to hepatic sites of bacterial infection is chemokine independent and directed by focal intercellular adhesion molecule-1 expression |
Q38791792 | Monocyte-mediated defense against bacteria, fungi, and parasites |
Q34065898 | Monocyte-mediated defense against microbial pathogens. |
Q37975704 | Monocyte-mediated immune defense against murine Listeria monocytogenes infection |
Q30423561 | Monocyte/macrophage chemokine receptor CCR2 mediates diabetic renal injury |
Q45885554 | Monocyte/macrophage lineage commitment and distribution are affected by the lack of regulatory T cells in scurfy mice. |
Q38248578 | Monocytes and infection: modulator, messenger and effector |
Q39239967 | Monocytes and macrophages in abdominal aortic aneurysm |
Q37740369 | Monocytes and macrophages in cardiac injury and repair |
Q92715985 | Monocytes as an Early Predictor for Patients with Acute Paraquat Poisoning: A Retrospective Analysis |
Q36266567 | Monocytes from Irf5-/- mice have an intrinsic defect in their response to pristane-induced lupus |
Q34959012 | Monocytes in sterile inflammation: recruitment and functional consequences |
Q41860451 | Monocytes infiltrate the pancreas via the MCP-1/CCR2 pathway and differentiate into stellate cells |
Q36706259 | Monocytes promote liver carcinogenesis in an oncogene-specific manner |
Q33942337 | Monocytes: protagonists of infarct inflammation and repair after myocardial infarction |
Q28302789 | Mouse CCL8, a CCR8 agonist, promotes atopic dermatitis by recruiting IL-5+ T(H)2 cells |
Q35646486 | Much More than M1 and M2 Macrophages, There are also CD169(+) and TCR(+) Macrophages |
Q42737316 | Multiple roles for CCR2 during fracture healing |
Q61941956 | Murine macrophage chemokine receptor CCR2 plays a crucial role in macrophage recruitment and regulated inflammation in wound healing |
Q37327180 | MyD88 and Type I interferon receptor-mediated chemokine induction and monocyte recruitment during Listeria monocytogenes infection |
Q37866991 | Myeloid cells in cancer progression: unique subtypes and their roles in tumor growth, vascularity, and host immune suppression |
Q38118052 | Myeloid-derived suppressor cells in the inflammatory bowel diseases |
Q35115477 | Myeloid-derived suppressor cells regulate T cell and B cell responses during autoimmune disease |
Q34801150 | Neonatal hyperoxia leads to persistent alterations in NK responses to influenza A virus infection |
Q34002086 | Neurobiology of microglial action in CNS injuries: receptor-mediated signaling mechanisms and functional roles |
Q26745615 | Neuroinvasion and Inflammation in Viral Central Nervous System Infections |
Q90230531 | New Insights into the Roles of Monocytes/Macrophages in Cardiovascular Calcification Associated with Chronic Kidney Disease |
Q36608863 | Nf1+/- monocytes/macrophages induce neointima formation via CCR2 activation |
Q35939425 | Nicotinic Acetylcholine Receptors Modulate Bone Marrow-Derived Pro-Inflammatory Monocyte Production and Survival |
Q63383609 | Non-classical monocytes as mediators of tissue destruction in arthritis |
Q38440153 | Non-invasive Macrophage Tracking Using Novel Porphysome Nanoparticles in the Post-myocardial Infarction Murine Heart. |
Q28080570 | Nonclassical patrolling monocyte function in the vasculature |
Q36976763 | Norepinephrine inhibits macrophage migration by decreasing CCR2 expression |
Q37503524 | Nr4a1-dependent Ly6C(low) monocytes monitor endothelial cells and orchestrate their disposal |
Q36931088 | Nuclear receptor REV-ERBα mediates circadian sensitivity to mortality in murine vesicular stomatitis virus-induced encephalitis |
Q37283558 | Obstructive renal injury: from fluid mechanics to molecular cell biology |
Q42771123 | Optimized dosing of a CCR2 antagonist for amplification of vaccine immunity |
Q34769434 | Organ-specific innate immune responses in a mouse model of invasive candidiasis |
Q38243843 | Origin of myofibroblasts and cellular events triggering fibrosis |
Q104576046 | Origins and diversity of macrophages in health and disease |
Q39396797 | Osteomacs and Bone Regeneration. |
Q46441158 | Overcoming hurdles in developing successful drugs targeting chemokine receptors |
Q35401796 | Ozone inhalation promotes CX3CR1-dependent maturation of resident lung macrophages that limit oxidative stress and inflammation |
Q51221187 | PET-based Imaging of Chemokine Receptor 2 in Experimental and Disease-related Lung Inflammation. |
Q37679212 | Particulate Air pollution mediated effects on insulin resistance in mice are independent of CCR2 |
Q55085773 | Peroxisome Proliferator-Activated Receptor-γ Modulates the Response of Macrophages to Lipopolysaccharide and Glucocorticoids. |
Q64889376 | Perspectives for Clinical Translation of Adipose Stromal/Stem Cells. |
Q35055028 | Phenotypic and functional characterization of lymphocytes from different age groups of Bolivian squirrel monkeys (Saimiri boliviensis boliviensis). |
Q36975445 | Phenotypic switching of adipose tissue macrophages with obesity is generated by spatiotemporal differences in macrophage subtypes |
Q35213593 | Platelet activation attracts a subpopulation of effector monocytes to sites of Leishmania major infection |
Q51287276 | Podocyte-specific chemokine (C-C motif) receptor 2 overexpression mediates diabetic renal injury in mice. |
Q89621254 | Polarization of Human Monocyte-Derived Cells With Vitamin D Promotes Control of Mycobacterium tuberculosis Infection |
Q36216243 | Profiling and Identification of Novel Immunogenic Proteins of Staphylococcus hyicus ZC-4 by Immunoproteomic Assay |
Q38083321 | Progress in the discovery of CC chemokine receptor 2 antagonists, 2009 - 2012. |
Q37000732 | Proinflammatory profile of in vitro monocytes in the ageing is affected by lymphocytes presence |
Q41728608 | Proliferation and Recruitment Contribute to Myocardial Macrophage Expansion in Chronic Heart Failure. |
Q36382156 | Protective role of spleen-derived macrophages in lung inflammation, injury, and fibrosis induced by nitrogen mustard |
Q37596100 | Proteinase-activated receptor-1, CCL2, and CCL7 regulate acute neutrophilic lung inflammation |
Q28394670 | Pulmonary fibrosis in response to environmental cues and molecular targets involved in its pathogenesis |
Q91272546 | Pulmonary monocytes interact with effector T cells in the lung tissue to drive TRM differentiation following viral infection |
Q36055706 | RIP3-mediated necrotic cell death accelerates systematic inflammation and mortality |
Q37042876 | Rapid αβ T-cell responses orchestrate innate immunity in response to Staphylococcal enterotoxin A. |
Q38028555 | Rational design of CCR2 antagonists: a survey of computational studies |
Q35528061 | Recruited exudative macrophages selectively produce CXCL10 after noninfectious lung injury |
Q92762045 | Recruitment of monocytes and mature macrophages in mouse pubic symphysis relaxation during pregnancy and postpartum recovery† |
Q34545557 | Reducing RIP140 expression in macrophage alters ATM infiltration, facilitates white adipose tissue browning, and prevents high-fat diet-induced insulin resistance |
Q64236064 | Regulation of Monocyte-Macrophage Responses in Cirrhosis-Role of Innate Immune Programming and Checkpoint Receptors |
Q27003124 | Regulation of atherogenesis by chemokines and chemokine receptors |
Q40150146 | Regulation of hierarchical clustering and activation of innate immune cells by dendritic cells |
Q34024156 | Regulation of inflammatory monocyte/macrophage recruitment from the bone marrow during murine cytomegalovirus infection: role for type I interferons in localized induction of CCR2 ligands |
Q39039876 | Regulation of monocyte subset proinflammatory responses within the lung microvasculature by the p38 MAPK/MK2 pathway |
Q58148836 | Regulation of monocyte subset systemic levels by distinct chemokine receptors controls post-ischaemic neovascularization |
Q34150281 | Regulation of skeletal muscle regeneration by CCR2-activating chemokines is directly related to macrophage recruitment |
Q37435783 | Regulation of the migration and survival of monocyte subsets by chemokine receptors and its relevance to atherosclerosis |
Q33562179 | Renal dendritic cells ameliorate nephrotoxic acute kidney injury |
Q38869831 | Repeated Social Defeat, Neuroinflammation, and Behavior: Monocytes Carry the Signal. |
Q38359435 | Role of CC chemokine receptor 2 in bone marrow cells in the recruitment of macrophages into obese adipose tissue. |
Q34153471 | Role of CCR2 in inflammatory conditions of the central nervous system |
Q46364899 | Role of Gut Inflammation in Altering the Monocyte Compartment and Its Osteoclastogenic Potential in HLA-B27-Transgenic Rats |
Q36138041 | Role of Inflammatory Monocytes in Vaccine-Induced Reduction of Helicobacter felis Infection |
Q50119083 | Role of Monocytes in Heart Failure and Atrial Fibrillation |
Q43125081 | Role of lung-marginated monocytes in an in vivo mouse model of ventilator-induced lung injury |
Q35633763 | S1P-Dependent trafficking of intracellular yersinia pestis through lymph nodes establishes Buboes and systemic infection |
Q36497213 | SMRT-GPS2 corepressor pathway dysregulation coincides with obesity-linked adipocyte inflammation |
Q90440175 | STAT3 inhibition reduces macrophage number and tumor growth in neurofibroma |
Q41447403 | Secreted ectodomain of sialic acid-binding Ig-like lectin-9 and monocyte chemoattractant protein-1 promote recovery after rat spinal cord injury by altering macrophage polarity. |
Q33742156 | Selective chemokine receptor usage by central nervous system myeloid cells in CCR2-red fluorescent protein knock-in mice |
Q37367175 | Selective expansion of the monocytic lineage directed by bacterial infection |
Q95271890 | Sepsis Triggers a Late Expansion of Functionally Impaired Tissue-Vascular Inflammatory Monocytes During Clinical Recovery |
Q46378953 | Sequential adaptive changes in a c-Myc-driven model of hepatocellular carcinoma |
Q35137323 | Serum cytokine profiles in healthy young and elderly population assessed using multiplexed bead-based immunoassays. |
Q48342319 | Severe Aortic Valve Stenosis in Adults is Associated with Increased Levels of Circulating Intermediate Monocytes. |
Q42987671 | Shear flow affects selective monocyte recruitment into MCP-1-loaded scaffolds |
Q90578945 | Single-cell mass cytometry reveals cross-talk between inflammation-dampening and inflammation-amplifying cells in osteoarthritic cartilage |
Q28581471 | Single-dose gamma-irradiation induces up-regulation of chemokine gene expression and recruitment of granulocytes into the portal area but not into other regions of rat hepatic tissue |
Q33614998 | Skin-resident CD4+ T cells protect against Leishmania major by recruiting and activating inflammatory monocytes. |
Q35859027 | Spatiotemporal Cadence of Macrophage Polarisation in a Model of Light-Induced Retinal Degeneration |
Q92376163 | Specific targeting of CD163+ TAMs mobilizes inflammatory monocytes and promotes T cell-mediated tumor regression |
Q40279157 | Spontaneous development of autoimmune uveitis Is CCR2 dependent |
Q82540525 | Stem cell factor, interleukin-16, and interleukin-2 receptor alpha are predictive biomarkers for delayed and slow graft function |
Q26748401 | Sterile post-traumatic immunosuppression |
Q28481687 | Structural insights from binding poses of CCR2 and CCR5 with clinically important antagonists: a combined in silico study |
Q34876397 | Suppressed monocyte recruitment drives macrophage removal from atherosclerotic plaques of Apoe-/- mice during disease regression |
Q54245378 | Syncytium calcium signaling and macrophage function in the heart. |
Q47150573 | Synergistic Modulation of Inflammatory but not Metabolic Effects of High-Fat Feeding by CCR2 and CX3CR1. |
Q35186341 | Systemic responses during local viral infections: type I IFNs sound the alarm |
Q44133482 | T Helper 17 Promotes Induction of Antigen-Specific Gut-Mucosal Cytotoxic T Lymphocytes following Adenovirus Vector Vaccination |
Q34344254 | TGF-β type II receptor/MCP-5 axis: at the crossroad between joint and growth plate development |
Q35894071 | TNF Drives Monocyte Dysfunction with Age and Results in Impaired Anti-pneumococcal Immunity. |
Q59790037 | TNF, but not hyperinsulinemia or hyperglycemia, is a key driver of obesity-induced monocytosis revealing that inflammatory monocytes correlate with insulin in obese male mice |
Q38207732 | Targeting monocyte and macrophage subpopulations for immunotherapy: a patent review (2009 - 2013). |
Q39367745 | Targeting monocyte chemotactic protein-1 synthesis with bindarit induces tumor regression in prostate and breast cancer animal models. |
Q64947170 | The Angiotensin Receptor Blocker Losartan Suppresses Growth of Pulmonary Metastases via AT1R-Independent Inhibition of CCR2 Signaling and Monocyte Recruitment. |
Q91811483 | The HIV Reservoir in Monocytes and Macrophages |
Q47152801 | The Origins and Functions of Tissue-Resident Macrophages in Kidney Development. |
Q38691715 | The Role of Decidual Macrophages During Normal and Pathological Pregnancy |
Q37560012 | The Role of Immunogenicity in Cardiovascular Disease |
Q80787002 | The chemokine receptor CCR6 is an important component of the innate immune response |
Q36955871 | The coordinated action of G-CSF and ELR + CXC chemokines in neutrophil mobilization during acute inflammation. |
Q29618424 | The dendritic cell lineage: ontogeny and function of dendritic cells and their subsets in the steady state and the inflamed setting |
Q55046775 | The diversity of myeloid immune cells shaping wound repair and fibrosis in the lung. |
Q38423147 | The dynamics of monocytes and microglia in Alzheimer's disease |
Q52726107 | The effects of monocytes on tumor cell extravasation in a 3D vascularized microfluidic model. |
Q37561404 | The fate of monocytes in atherosclerosis |
Q29615381 | The healing myocardium sequentially mobilizes two monocyte subsets with divergent and complementary functions |
Q38091871 | The host immunological response to cancer therapy: An emerging concept in tumor biology |
Q33817936 | The journey from stem cell to macrophage |
Q37741022 | The multiple roles of monocyte subsets in steady state and inflammation |
Q34568601 | The pathological effects of CCR2+ inflammatory monocytes are amplified by an IFNAR1-triggered chemokine feedback loop in highly pathogenic influenza infection |
Q37692374 | The role and therapeutic potential of monocytic cells in Alzheimer's disease. |
Q40515876 | The role of chemokines and their receptors during protist parasite infections |
Q42208932 | The role of chemokines in acute liver injury |
Q34911490 | The role of macrophage class a scavenger receptors in a laser-induced murine choroidal neovascularization model |
Q34954361 | The role of microglia and myeloid immune cells in acute cerebral ischemia |
Q37050929 | The role of the vascular dendritic cell network in atherosclerosis |
Q39211384 | The significance of macrophage polarization subtypes for animal models of tissue fibrosis and human fibrotic diseases |
Q37890186 | The spatial and developmental relationships in the macrophage family |
Q37619992 | The transcriptional repressor BLIMP1 curbs host defenses by suppressing expression of the chemokine CCL8. |
Q38235867 | The tumour-induced systemic environment as a critical regulator of cancer progression and metastasis |
Q28305924 | Therapeutic inflammatory monocyte modulation using immune-modifying microparticles |
Q51151707 | Time course of chemokine expression and leukocyte infiltration after acute skeletal muscle injury in mice. |
Q40612978 | Tissue factor pathway inhibitor gene transfer prevents vascular smooth muscle cell proliferation by interfering with the MCP-3/CCR2 pathway |
Q86486185 | To B or not to B--that is the question for myocardial infarction |
Q38174528 | Toll-like receptors: Role in inflammation and therapeutic potential |
Q37611168 | Tracking Monocyte Recruitment and Macrophage Accumulation in Atherosclerotic Plaque Progression Using a Novel hCD68GFP/ApoE-/- Reporter Mouse-Brief Report |
Q37246472 | Transcription factor Runx2 controls the development and migration of plasmacytoid dendritic cells |
Q38204490 | Transcriptomic network support distinct roles of classical and non-classical monocytes in human. |
Q35134219 | Transmigration and phagocytosis of macrophages in an airway infection model using four-dimensional techniques |
Q40358106 | Tumor Necrosis Factor Alpha-Induced Recruitment of Inflammatory Mononuclear Cells Leads to Inflammation and Altered Brain Development in Murine Cytomegalovirus-Infected Newborn Mice. |
Q47644033 | Tumor-associated macrophages (TAMs) depend on ZEB1 for their cancer-promoting roles |
Q35607653 | Two Blood Monocytic Biomarkers (CCL15 and p21) Combined with the Mini-Mental State Examination Discriminate Alzheimer's Disease Patients from Healthy Subjects |
Q37413679 | Type I interferon modulates monocyte recruitment and maturation in chronic inflammation |
Q28481589 | Type I interferons promote fatal immunopathology by regulating inflammatory monocytes and neutrophils during Candida infections |
Q34314664 | Tyro3 receptor tyrosine kinases in the heterogeneity of apoptotic cell uptake |
Q38144939 | Unilateral ureteral obstruction: beyond obstruction. |
Q35142886 | VEGF-production by CCR2-dependent macrophages contributes to laser-induced choroidal neovascularization |
Q90541775 | Variety matters: Diverse functions of monocyte subtypes in vascular inflammation and atherogenesis |
Q41858851 | Yes-associated protein mediates immune reprogramming in pancreatic ductal adenocarcinoma. |
Q53172787 | [Old immune system- new information? Importance of mononuclear phagocytes in corneal allograft rejection]. |
Q36900801 | sRAGE induces human monocyte survival and differentiation |
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