scholarly article | Q13442814 |
review article | Q7318358 |
P50 | author | Robert Chunhua Zhao | Q89349255 |
P2093 | author name string | Shihua Wang | |
Zhao Sun | |||
P2860 | cites work | The Hallmarks of Cancer | Q221226 |
Mesenchymal stem cells isolated from human uterine cervix cancer tissues | Q85100699 | ||
Clinical applications of mesenchymal stem cells | Q21198864 | ||
Origins of the tumor microenvironment: quantitative assessment of adipose-derived and bone marrow-derived stroma | Q27309626 | ||
Mesenchymal stem cells within tumour stroma promote breast cancer metastasis | Q29614303 | ||
The pro-inflammatory peptide LL-37 promotes ovarian tumor progression through recruitment of multipotent mesenchymal stromal cells. | Q30486489 | ||
Mesenchymal stem cells transmigrate between and directly through tumor necrosis factor-α-activated endothelial cells via both leukocyte-like and novel mechanisms | Q30525829 | ||
Mesenchymal stem cells in early entry of breast cancer into bone marrow | Q33346309 | ||
Human bone marrow mesenchymal stem cells display anti-cancer activity in SCID mice bearing disseminated non-Hodgkin's lymphoma xenografts | Q33618949 | ||
Tumour stromal cells derived from paediatric malignancies display MSC-like properties and impair NK cell cytotoxicity | Q33698636 | ||
Effects of transplantation of adipose tissue-derived stem cells on prostate tumor | Q33879286 | ||
Influence of bone marrow stromal microenvironment on forodesine-induced responses in CLL primary cells | Q34122323 | ||
TNFα-exposed bone marrow-derived mesenchymal stem cells promote locomotion of MDA-MB-231 breast cancer cells through transcriptional activation of CXCR3 ligand chemokines | Q34155350 | ||
Mesenchymal stem cells in inflammation microenvironment accelerates hepatocellular carcinoma metastasis by inducing epithelial-mesenchymal transition | Q34405052 | ||
Mesenchymal stem cell 1 (MSC1)-based therapy attenuates tumor growth whereas MSC2-treatment promotes tumor growth and metastasis | Q34429538 | ||
The different immunoregulatory functions of mesenchymal stem cells in patients with low-risk or high-risk myelodysplastic syndromes | Q34429788 | ||
Human bone marrow-derived MSCs can home to orthotopic breast cancer tumors and promote bone metastasis | Q34473242 | ||
Breast cancer stem cells are regulated by mesenchymal stem cells through cytokine networks | Q35001086 | ||
Effects of inflammatory factors on mesenchymal stem cells and their role in the promotion of tumor angiogenesis in colon cancer | Q35107504 | ||
Mesenchymal stromal cells promote tumor growth through the enhancement of neovascularization | Q35136732 | ||
Human ovarian carcinoma–associated mesenchymal stem cells regulate cancer stem cells and tumorigenesis via altered BMP production | Q35142842 | ||
p53 activation of mesenchymal stromal cells partially abrogates microenvironment-mediated resistance to FLT3 inhibition in AML through HIF-1α-mediated down-regulation of CXCL12. | Q35485832 | ||
Chimeric antigen receptor T cells shape myeloid cell function within the tumor microenvironment through IFN-γ and GM-CSF. | Q36016640 | ||
Bone marrow-derived myofibroblasts are the providers of pro-invasive matrix metalloproteinase 13 in primary tumor | Q36343778 | ||
Comparison of the characteristics of mesenchymal stem cells obtained from prostate tumors and from bone marrow cultured in conditioned medium | Q36409234 | ||
CCR2-dependent recruitment of macrophages by tumor-educated mesenchymal stromal cells promotes tumor development and is mimicked by TNFα | Q36456715 | ||
Hypoxia-inducible factor-dependent breast cancer-mesenchymal stem cell bidirectional signaling promotes metastasis | Q36497267 | ||
Creating a tumor-resistant microenvironment: cell-mediated delivery of TNFα completely prevents breast cancer tumor formation in vivo. | Q36654392 | ||
Tumor-promoting immune-suppressive myeloid-derived suppressor cells in the multiple myeloma microenvironment in humans | Q36761567 | ||
Study of the quantitative, functional, cytogenetic, and immunoregulatory properties of bone marrow mesenchymal stem cells in patients with B-cell chronic lymphocytic leukemia | Q36776849 | ||
The tumor microenvironment and its role in promoting tumor growth | Q36946019 | ||
The proinflammatory myeloid cell receptor TREM-1 controls Kupffer cell activation and development of hepatocellular carcinoma | Q36959905 | ||
Regulation of CXCR4 expression in human mesenchymal stem cells by cytokine treatment: role in homing efficiency in NOD/SCID mice. | Q50963245 | ||
Impairment in immuno-modulatory function of Flk1(+)CD31(-)CD34(-) MSCs from MDS-RA patients. | Q51047920 | ||
Isolation and comparison of mesenchymal stem-like cells from human gastric cancer and adjacent non-cancerous tissues. | Q53323838 | ||
Cancers as wounds that do not heal: differences and similarities between renal regeneration/repair and renal cell carcinoma. | Q53343847 | ||
Human mesenchymal stem cells inhibit cancer cell proliferation by secreting DKK-1. | Q54498583 | ||
Critical features of FAK-expressing AML bone marrow microenvironment through leukemia stem cell hijacking of mesenchymal stromal cells. | Q54584460 | ||
Mesenchymal stromal cells from primary osteosarcoma are non-malignant and strikingly similar to their bone marrow counterparts. | Q54647133 | ||
Immunosuppressive effect of mesenchymal stem cells favors tumor growth in allogeneic animals | Q62083511 | ||
Mesenchymal stem cell-like cells derived from human gastric cancer tissues | Q82266737 | ||
Mesenchymal stem cells enhance growth and metastasis of colon cancer | Q84233035 | ||
Impaired osteogenic differentiation of mesenchymal stem cells derived from multiple myeloma patients is associated with a blockade in the deactivation of the Notch signaling pathway | Q84264128 | ||
MSC and Tumors: Homing, Differentiation, and Secretion Influence Therapeutic Potential | Q84992912 | ||
Mesenchymal stem cells promote tumor engraftment and metastatic colonization in rat osteosarcoma model | Q85041679 | ||
CD133: a stem cell biomarker and beyond | Q36982860 | ||
In vitro evidence of the presence of mesenchymal stromal cells in cervical cancer and their role in protecting cancer cells from cytotoxic T cell activity. | Q37143714 | ||
Concentration-dependent inhibition of angiogenesis by mesenchymal stem cells | Q37176533 | ||
Immunosuppressive effect of bone marrow-derived mesenchymal stem cells in inflammatory microenvironment favours the growth of B16 melanoma cells | Q37294845 | ||
Matrix metalloproteinase 1 is necessary for the migration of human bone marrow-derived mesenchymal stem cells toward human glioma. | Q37407113 | ||
Tumour-associated fibroblasts and mesenchymal stem cells: more similarities than differences | Q37580254 | ||
Understanding tumor-stroma interplays for targeted therapies by armed mesenchymal stromal progenitors: the Mesenkillers | Q37948053 | ||
Infiltrating bone marrow mesenchymal stem cells increase prostate cancer stem cell population and metastatic ability via secreting cytokines to suppress androgen receptor signaling | Q39136417 | ||
Tumor promotion through the mesenchymal stem cell compartment in human hepatocellular carcinoma. | Q39143427 | ||
BRAF inhibition is associated with enhanced melanoma antigen expression and a more favorable tumor microenvironment in patients with metastatic melanoma. | Q39212469 | ||
Syndecan-1 modulates β-integrin-dependent and interleukin-6-dependent functions in breast cancer cell adhesion, migration, and resistance to irradiation | Q39216398 | ||
Interstitial flow in a 3D microenvironment increases glioma invasion by a CXCR4-dependent mechanism | Q39219986 | ||
Mesenchymal stem cells regulate epithelial-mesenchymal transition and tumor progression of pancreatic cancer cells | Q39250469 | ||
Mesenchymal stem cells promote growth and angiogenesis of tumors in mice | Q39255668 | ||
NF-κB activity regulates mesenchymal stem cell accumulation at tumor sites | Q39259185 | ||
Human bone marrow-derived mesenchymal stem cells suppress human glioma growth through inhibition of angiogenesis. | Q39266457 | ||
Human mesenchymal stem cell and epithelial hepatic carcinoma cell lines in admixture: concurrent stimulation of cancer-associated fibroblasts and epithelial-to-mesenchymal transition markers | Q39287485 | ||
Interleukin-1α induces immunosuppression by mesenchymal stem cells promoting the growth of prostate cancer cells | Q39296936 | ||
Mesenchymal stem cells provide an advantageous tumor microenvironment for the restoration of cancer stem cells | Q39333106 | ||
Glioma cells promote the expression of vascular cell adhesion molecule-1 on bone marrow-derived mesenchymal stem cells: a possible mechanism for their tropism toward gliomas | Q39352864 | ||
Prospective dual role of mesenchymal stem cells in breast tumor microenvironment | Q39446303 | ||
Exosomes from breast cancer cells can convert adipose tissue-derived mesenchymal stem cells into myofibroblast-like cells | Q39476832 | ||
Exosomes from ovarian cancer cells induce adipose tissue-derived mesenchymal stem cells to acquire the physical and functional characteristics of tumor-supporting myofibroblasts | Q39477145 | ||
Adipose derived stem cells (ASCs) isolated from breast cancer tissue express IL-4, IL-10 and TGF-β1 and upregulate expression of regulatory molecules on T cells: do they protect breast cancer cells from the immune response? | Q39640772 | ||
Interleukin 6 mediated recruitment of mesenchymal stem cells to the hypoxic tumor milieu | Q39679811 | ||
Potential role of mesenchymal stem cells (MSCs) in the breast tumour microenvironment: stimulation of epithelial to mesenchymal transition (EMT). | Q39750162 | ||
Activation of signal transducers and activators of transcription 3 and focal adhesion kinase by stromal cell-derived factor 1 is required for migration of human mesenchymal stem cells in response to tumor cell-conditioned medium | Q39863427 | ||
Human mesenchymal stem cells (hMSCs) target osteosarcoma and promote its growth and pulmonary metastasis. | Q39864787 | ||
Therapeutic potential of mesenchymal stromal cells in a mouse breast cancer metastasis model | Q39869090 | ||
Tissue-resident stem cells promote breast cancer growth and metastasis | Q39889281 | ||
Suppression of tumorigenesis by human mesenchymal stem cells in a hepatoma model | Q39998770 | ||
The growth inhibitory effect of mesenchymal stem cells on tumor cells in vitro and in vivo | Q40039805 | ||
Monocyte chemotactic protein-1 secreted by primary breast tumors stimulates migration of mesenchymal stem cells. | Q40085462 | ||
Mesenchymal stem cells inhibit proliferation and apoptosis of tumor cells: impact on in vivo tumor growth. | Q40195961 | ||
Dependency of colorectal cancer on a TGF-β-driven program in stromal cells for metastasis initiation | Q41892760 | ||
Mesenchymal stem cells in non-small cell lung cancer--different from others? Insights from comparative molecular and functional analyses | Q46522652 | ||
Colon cancer mesenchymal stem cells modulate the tumorigenicity of colon cancer through interleukin 6. | Q46645861 | ||
Dkk-1 secreted by mesenchymal stem cells inhibits growth of breast cancer cells via depression of Wnt signalling | Q47620825 | ||
P275 | copyright license | Creative Commons Attribution 2.0 Generic | Q19125117 |
P6216 | copyright status | copyrighted | Q50423863 |
P407 | language of work or name | English | Q1860 |
P921 | main subject | tumor microenvironment | Q1786433 |
mesenchymal stem cell | Q1922379 | ||
inflammation | Q101991 | ||
neoplasm | Q1216998 | ||
neoplastic stem cells | Q1638475 | ||
P5008 | on focus list of Wikimedia project | ScienceSource | Q55439927 |
P304 | page(s) | 14 | |
P577 | publication date | 2014-02-06 | |
P1433 | published in | Journal of Hematology & Oncology | Q15724593 |
P1476 | title | The roles of mesenchymal stem cells in tumor inflammatory microenvironment | |
P478 | volume | 7 |
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Q38259249 | Gene expression profiling for targeted cancer treatment |
Q35984126 | Genetically modified "obligate" anaerobic Salmonella typhimurium as a therapeutic strategy for neuroblastoma. |
Q37064043 | Genome-wide screen identified let-7c/miR-99a/miR-125b regulating tumor progression and stem-like properties in cholangiocarcinoma |
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