scholarly article | Q13442814 |
P356 | DOI | 10.1007/978-3-030-36667-4_4 |
P698 | PubMed publication ID | 32060844 |
P2093 | author name string | Yong Beom Cho | |
Yeo Song Lee | |||
P2860 | cites work | Structural and functional identification of two human, tumor-derived monocyte chemotactic proteins (MCP-2 and MCP-3) belonging to the chemokine family | Q24675219 |
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Chemokines and leukocyte traffic | Q29618886 | ||
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The chemokine system: redundancy for robust outputs | Q33650445 | ||
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Dancing to the tune of chemokines | Q34139616 | ||
Let-7d suppresses growth, metastasis, and tumor macrophage infiltration in renal cell carcinoma by targeting COL3A1 and CCL7 | Q34207989 | ||
Obesity acceleratesHelicobacter felis-induced gastric carcinogenesis by enhancing immature myeloid cell trafficking and TH17 response | Q34348217 | ||
Autocrine TGF-beta and stromal cell-derived factor-1 (SDF-1) signaling drives the evolution of tumor-promoting mammary stromal myofibroblasts | Q34358613 | ||
Reciprocal interaction between carcinoma-associated fibroblasts and squamous carcinoma cells through interleukin-1α induces cancer progression | Q34558918 | ||
System-wide analysis reveals a complex network of tumor-fibroblast interactions involved in tumorigenicity | Q34998315 | ||
Biological mechanisms linking obesity and cancer risk: new perspectives | Q35007716 | ||
Microarray and proteomic analysis of breast cancer cell and osteoblast co-cultures: role of osteoblast matrix metalloproteinase (MMP)-13 in bone metastasis | Q35310572 | ||
Roles of the cyclooxygenase 2 matrix metalloproteinase 1 pathway in brain metastasis of breast cancer | Q35352078 | ||
Macrophage-elicited loss of estrogen receptor-α in breast cancer cells via involvement of MAPK and c-Jun at the ESR1 genomic locus. | Q35571726 | ||
Identification of Reprogrammed Myeloid Cell Transcriptomes in NSCLC | Q35654027 | ||
Critical roles for CCR2 and MCP-3 in monocyte mobilization from bone marrow and recruitment to inflammatory sites | Q35664094 | ||
CCL7 and CCL21 overexpression in gastric cancer is associated with lymph node metastasis and poor prognosis | Q35845411 | ||
Regulatory T cells in the bone marrow microenvironment in patients with prostate cancer | Q36038429 | ||
Opposite Effects of M1 and M2 Macrophage Subtypes on Lung Cancer Progression. | Q36099676 | ||
Transfection of colorectal cancer cells with chemokine MCP-3 (monocyte chemotactic protein-3) gene retards tumor growth and inhibits tumor metastasis | Q36308400 | ||
CCR2-dependent recruitment of macrophages by tumor-educated mesenchymal stromal cells promotes tumor development and is mimicked by TNFα | Q36456715 | ||
Periprostatic adipocytes act as a driving force for prostate cancer progression in obesity | Q36511320 | ||
Obesity and Prostate Cancer: Weighing the Evidence | Q36685022 | ||
CXCR3+ Regulatory T Cells Control TH1 Responses in Crescentic GN. | Q37051984 | ||
Chemosensitization of acute myeloid leukemia (AML) following mobilization by the CXCR4 antagonist AMD3100. | Q37234638 | ||
Obese men have more advanced and more aggressive prostate cancer at time of surgery than non-obese men after adjusting for screening PSA level and age: results from two independent nested case-control studies | Q37303688 | ||
Cancer-associated fibroblasts and tumor growth--bystanders turning into key players | Q37390989 | ||
Crosstalk between CCL7 and CCR3 promotes metastasis of colon cancer cells via ERK-JNK signaling pathways | Q37392851 | ||
The chemokine receptors CXCR4 and CXCR3 in cancer | Q37393013 | ||
Tumour cell-derived exosomes endow mesenchymal stromal cells with tumour-promotion capabilities | Q37424653 | ||
Chemokine receptor antagonists: Part 1. | Q37481238 | ||
Chemokine receptor antagonists: part 2. | Q37481304 | ||
Angiogenesis, adipokines and breast cancer | Q37516876 | ||
Brain metastasis in renal cancer patients: metastatic pattern, tumour-associated macrophages and chemokine/chemoreceptor expression | Q37559001 | ||
A high M1/M2 ratio of tumor-associated macrophages is associated with extended survival in ovarian cancer patients | Q37612098 | ||
CXCL12/CXCR4 blockade induces multimodal antitumor effects that prolong survival in an immunocompetent mouse model of ovarian cancer. | Q37649217 | ||
Cytokines, Obesity, and Cancer: New Insights on Mechanisms Linking Obesity to Cancer Risk and Progression | Q38057361 | ||
Chemokine receptor CCR2 is expressed by human multiple myeloma cells and mediates migration to bone marrow stromal cell-produced monocyte chemotactic proteins MCP-1, -2 and -3. | Q38308218 | ||
The primary growth of laryngeal squamous cell carcinoma cells in vitro is effectively supported by paired cancer-associated fibroblasts alone | Q38704743 | ||
Enhanced colorectal cancer metastases in the alcohol-injured liver | Q38717571 | ||
Distinct Osteomimetic Response of Androgen-Dependent and Independent Human Prostate Cancer Cells to Mechanical Action of Fluid Flow: Prometastatic Implications. | Q38733024 | ||
Cancer-associated fibroblasts promote hepatocellular carcinoma metastasis through chemokine-activated hedgehog and TGF-β pathways | Q38769001 | ||
The role of tumor microenvironment in collective tumor cell invasion | Q38771942 | ||
Targeting of tumour-infiltrating macrophages via CCL2/CCR2 signalling as a therapeutic strategy against hepatocellular carcinoma | Q38829170 | ||
Cancer-associated fibroblast-derived CXCL12 causes tumor progression in adenocarcinoma of the esophagogastric junction | Q38881343 | ||
IP-10/CXCL10 induction in human pancreatic cancer stroma influences lymphocytes recruitment and correlates with poor survival. | Q38938649 | ||
Cancer-associated fibroblasts modulate growth factor signaling and extracellular matrix remodeling to regulate tumor metastasis | Q39137387 | ||
CC chemokine ligand 7 expression in liver metastasis of colorectal cancer | Q39344822 | ||
Antitumoral activity of parvovirus-mediated IL-2 and MCP-3/CCL7 delivery into human pancreatic cancer: implication of leucocyte recruitment | Q39350562 | ||
Tumour hypoxia promotes tolerance and angiogenesis via CCL28 and T(reg) cells. | Q39507131 | ||
Tumor-stromal crosstalk in invasion of oral squamous cell carcinoma: a pivotal role of CCL7. | Q39926229 | ||
Carcinoma-associated fibroblast-like differentiation of human mesenchymal stem cells | Q39976240 | ||
Blocking transforming growth factor-beta up-regulates E-cadherin and reduces migration and invasion of hepatocellular carcinoma cells | Q40006010 | ||
Mogamulizumab for the treatment of relapsed or refractory adult T-cell leukemia-lymphoma | Q40102561 | ||
A non-glycosaminoglycan-binding variant of CC chemokine ligand 7 (monocyte chemoattractant protein-3) antagonizes chemokine-mediated inflammation | Q40400372 | ||
CXCL10/CXCR3 signaling mobilized-regulatory T cells promote liver tumor recurrence after transplantation. | Q40503436 | ||
Basophil Recruitment into Tumor-Draining Lymph Nodes Correlates with Th2 Inflammation and Reduced Survival in Pancreatic Cancer Patients | Q40792814 | ||
CCR5 in cancer immunotherapy: More than an "attractive" receptor for T cells | Q42027517 | ||
Monocyte chemotactic protein‐3 (MCP3) interacts with multiple leukocyte receptors: binding and signaling of MCP3 through shared as well as unique receptors on monocytes and neutrophils | Q42677928 | ||
Transduction of human MCP-3 by a parvoviral vector induces leukocyte infiltration and reduces growth of human cervical carcinoma cell xenografts | Q44831966 | ||
Differential induction of monocyte chemotactic protein-3 in mononuclear leukocytes and fibroblasts by interferon-alpha/beta and interferon-gamma reveals MCP-3 heterogeneity | Q45231204 | ||
Adipocyte-derived fibroblasts promote tumor progression and contribute to the desmoplastic reaction in breast cancer | Q47888215 | ||
Chemokines and the Arrest of Lymphocytes Rolling Under Flow Conditions | Q52040689 | ||
Targeting the microenvironment in solid tumors | Q52368266 | ||
CXCL12 Mediates Immunosuppression in the Lymphoma Microenvironment after Allogeneic Transplantation of Hematopoietic Cells | Q53282942 | ||
CXCR3 Deficiency Exacerbates Liver Disease and Abrogates Tolerance in a Mouse Model of Immune-Mediated Hepatitis | Q54380949 | ||
Bone marrow is a reservoir for CD4+CD25+ regulatory T cells that traffic through CXCL12/CXCR4 signals. | Q54692947 | ||
Crucial biological functions of CCL7 in cancer. | Q55364341 | ||
Induction of natural killer cell migration by monocyte chemotactic protein−1, −2 and −3 | Q56943553 | ||
Targeting macrophages: therapeutic approaches in cancer | Q58547311 | ||
Tumoral Immune Cell Exploitation in Colorectal Cancer Metastases Can Be Targeted Effectively by Anti-CCR5 Therapy in Cancer Patients | Q59541006 | ||
MCP-3 (CCL7) delivered by parvovirus MVMp reduces tumorigenicity of mouse melanoma cells through activation of T lymphocytes and NK cells | Q62019442 | ||
Chemokines and Chemokine Receptors: New Targets for Cancer Immunotherapy | Q64056551 | ||
Hypoxia-inducible factor-1alpha expression correlates with focal macrophage infiltration, angiogenesis and unfavourable prognosis in urothelial carcinoma | Q81381007 | ||
Mogamulizumab Tops Standard of Care for CTCL | Q89782195 | ||
The targeting of tumor-associated macrophages by vaccination | Q92932465 | ||
Cancer immunotherapy: the art of targeting the tumor immune microenvironment | Q93032171 | ||
P1104 | number of pages | 11 | |
P304 | page(s) | 33-43 | |
P577 | publication date | 2020-01-01 | |
P13046 | publication type of scholarly work | review article | Q7318358 |
P1433 | published in | Advances in Experimental Medicine and Biology | Q4686385 |
P1476 | title | CCL7 Signaling in the Tumor Microenvironment | |
P478 | volume | 1231 |
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