![]() | Yuan‐Li HuangDepartment of Medical Laboratory Science and Biotechnology, College of Medical and Health Science, Asia University, Taichung, Taiwan | Department of Biotechnology, College of ... |
KOL Resume for Yuan‐Li Huang
Year | |
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2021 | Department of Medical Laboratory Science and Biotechnology, College of Medical and Health Science, Asia University, Taichung, Taiwan |
2020 | Department of Biotechnology, College of Health Science, Asia University, Taichung 40402, Taiwan;, (C.-K.H.);, (Y.-L.H.) |
2018 | Department of Biotechnology, College of Health Science, Asia University, Taichung 41354, Taiwan;, |
2015 | † Department of Biotechnology, College of Medical and Health Science, Asia University, Taichung, Taiwan, R.O.C. Graduate Institute of Basic Medical Science, China Medical University and Department of Biotechnology, College of Health Science, Asia University, Taichung, Taiwan |
2014 | Department of Biotechnology, College of Health Science, Asia University, Taichung 500, Taiwan; E-Mail:, Graduate Institute of Basic Medical Science, China Medical University, No. 91, Hsueh-Shih Road, Taichung 40402, Taiwan |
2013 | Department of Biotechnology, Asia University, Taichung, Taiwan, ROC Graduate Institute of Basic Medical Science, China Medical University and Hospital, Taichung, Taiwan |
2012 | Department of Biotechnology, College of Health Science, Asia University, No.500, Lioufeng Road, Wufeng, Taichung 41354, Taiwan; E-Mail:, |
2011 | Yuan-Li Huang, Department of Biotechnology, College of Health Science, Asia University, Taichung 41354, Taiwan, China. |
2009 | Institute of Molecular and Cellular Biology, National Taiwan University, No. 1, Sec. 4, Roosevelt Road, Taipei 106, Taiwan |
2007 | Institute of Molecular and Cellular Biology, National Taiwan University, Taipei 106, Taiwan, ROC |
2005 | Department of Cell Biology and Anatomy, College of Medicine, National Cheng Kung University, Tainan, Taiwan, Republic of China |
2004 | Department of Cell Biology and Anatomy, College of Medicine, National Cheng Kung University, #1, Ta-Hsueh Road, Tainan, Taiwan 70101, ROC |
2003 | Department of Cell Biology and Anatomy, College of Medicine, National Cheng Kung University, #1 Ta-Hsueh Road, Tainan 701, Taiwan |
Yuan‐Li Huang: Influence Statistics
Concept | World rank |
---|---|
niddm rats steroidogenesis | #3 |
gx fed | #3 |
suppressed iddm | #3 |
study ma10 | #3 |
weight steroidogenic organs | #3 |
plasma testosterone productions | #3 |
ecm adhesion mmp2 | #3 |
steroidogenic organs rats | #3 |
cultured endothelium mt1mmp | #3 |
tumorigenesis sphingosine | #3 |
effects tremella aurantia | #3 |
phosphate tumorigenesis | #3 |
fb iddm rats | #3 |
niddm fb | #3 |
mt1mmp member | #3 |
gx feeding | #3 |
normal rats feeding | #3 |
fb restore | #3 |
feeding niddm | #3 |
mmp2 expression mt1mmp | #3 |
iddm rats control | #3 |
fb iddm | #3 |
mt1mmp multifunctional protein | #3 |
corticosterone productions | #3 |
niddm rats expression | #3 |
time mmp2 expression | #3 |
normal niddm rats | #3 |
tumor survival ceramide | #3 |
fed iddm | #3 |
testosterone niddm | #3 |
sphingosine tumorigenesis | #3 |
aurantia testosterone | #3 |
niddm rats control | #3 |
restore steroidogenesis | #3 |
ma10 cell steroidogenesis | #3 |
csstimulated steroid production | #3 |
organs iddm | #3 |
testosterone productions fb | #3 |
subsequent conversion sphingosine | #3 |
stimulate ma10 | #3 |
gsalpha protein subunit | #3 |
bioactive sphingolipid variety | #3 |
weight steroidogenic | #3 |
functional role mt1mmp | #3 |
member matrix metalloproteinases | #4 |
ledgf signaling | #4 |
glucose treatments cells | #4 |
mycelium activates | #4 |
lpa1 3 plc | #4 |
cordyceps leydig | #4 |
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Prominent publications by Yuan‐Li Huang
CCL5/CCR5 axis induces vascular endothelial growth factor-mediated tumor angiogenesis in human osteosarcoma microenvironment
[ PUBLICATION ]
Chemokines modulate angiogenesis and metastasis that dictate cancer development in tumor microenvironment. Osteosarcoma is the most frequent bone tumor and is characterized by a high metastatic potential. Chemokine CCL5 (previously called RANTES) has been reported to facilitate tumor progression and metastasis. However, the crosstalk between chemokine CCL5 and vascular endothelial growth factor (VEGF) as well as tumor angiogenesis in human osteosarcoma microenvironment has not been well ...
Known for Human Osteosarcoma | Endothelial Growth | Ccl5 Ccr5 | Messenger Rna | Tumor Angiogenesis |
Osteoarthritis (OA), an inflammatory form of arthritis, is characterized by synovial inflammation and cartilage destruction largely influenced by two key proinflammatory cytokines-interleukin-6 (IL-6) and tumor necrosis factor α (TNF-α). Notably, levels of visfatin (a proinflammatory adipokine) are elevated in patients with OA, although the relationship of visfatin to IL-6 and TNF-α expression in OA pathogenesis has been unclear. In this study, visfatin enhanced the expression of IL-6 ...
Known for Human Synovial Fibroblasts | Visfatin Il6 | Jnk Erk | Tnf Α | Signaling Pathways |
Chondrosarcoma is a primary malignant bone cancer, with a potent capacity to invade locally and cause distant metastasis. Angiogenesis is a critical step in tumor growth and metastasis. Chemokine CCL5 (previously called RANTES) has been shown to facilitate tumor progression and metastasis. However, the relationship of CCL5 with vascular endothelial growth factor (VEGF) expression and angiogenesis in human chondrosarcoma is mostly unknown. In this study, CCL5 increased VEGF expression and ...
Known for Chondrosarcoma Cells | Endothelial Growth | Vegf Expression | Tumor Angiogenesis | Chemokine Ccl5 |
WISP-1 positively regulates angiogenesis by controlling VEGF-A expression in human osteosarcoma
[ PUBLICATION ]
In recent years, much research has focused on the role of angiogenesis in osteosarcoma, which occurs predominantly in adolescents and young adults. The vascular endothelial growth factor-A (VEGF-A) pathway is the key regulator of angiogenesis and in osteosarcoma. VEGF-A expression has been recognized as a prognostic marker in angiogenesis. Aberrant WNT1-inducible signaling pathway protein-1 (WISP-1) expression is associated with various cancers. However, the function of WISP-1 in ...
Known for Human Osteosarcoma | Vegfa Expression | Endothelial Cells | Tube Formation | Signaling Proteins |
The contractile-synthetic phenotypic modulation of vascular smooth muscle cells (VSMCs) is a key event during atherosclerosis progression. Although many studies have reported possible cytokines and growth factors implicated to this process, the critical factors affecting the VSMC phenotype remain unclear due to the lack of early de-differentiation marker identifications. In this study, we showed that nestin, an intermediate filament protein, is expressed in primary cultures of rat VSMCs ...
Known for Smooth Muscle | Epidermal Growth Factor | Nestin Expression | Vascular Myocytes | Signaling Axis |
Thrombin induces nestin expression via the transactivation of EGFR signalings in rat vascular smooth muscle cells
[ PUBLICATION ]
Regulation of nestin gene expression is largely unknown despite that it is widely used as a progenitor cell marker. In this study, we showed that nestin expression is regulated by the thrombin-mediated EGFR transactivation in serum-deprived primary cultures of rat vascular smooth muscle cells (VSMCs). This resulted from the direct binding of thrombin to PAR-1 rather than indirectly affecting through the binding to thrombomodulin, as demonstrated by thrombomodulin RNAi. In this process, ...
Known for Nestin Expression | Smooth Muscle | Vascular Myocytes | Cell Proliferation | Thrombin Induced |
Sphingosine 1-phosphate (S1P) is a bioactive lysophospholipid that binds to a family of G protein-coupled receptors (GPCRs), termed S1P1-S1P5. Our previous study has reported that S1P induces autophagy in human prostate cancer PC-3 cell. In addition, S1P-induced autophagy plays a prosurvival role in PC-3 cells. Accumulating evidence has shown that the autophagy responses triggered by ER stress signaling have cytoprotective effects. Thus, we attempted to investigate whether S1P-induced ...
Known for Sphingosine 1 | Endoplasmic Reticulum | Prostate Cancer | Cells Autophagy | Proteincoupled Receptors |
Resistin promotes tumor metastasis by down-regulation of miR-519d through the AMPK/p38 signaling pathway in human chondrosarcoma cells
[ PUBLICATION ]
Resistin is a recently discovered adipocyte-secreting adipokine, which may play a critical role in modulating cancer pathogenesis. Chondrosarcoma is a highly malignant tumor known to frequently metastasize; however, the role of resistin in the metastasis of human chondrosarcoma is largely unknown. Here, we found that the expression of resistin was higher in chondrosarcoma biopsy tissues than in normal cartilage. Moreover, treatment with resistin increased matrix metalloproteinase (MMP)-2 ...
Known for Human Chondrosarcoma Cells | Mmp2 Expression | Chondrosarcoma Metastasis | Signaling Pathway | Cell Migration |
Chondrosarcoma is the second most common primary malignancy of bone after myeloma and osteosarcoma. Chondrosarcoma development may be linked to angiogenesis, which is principally elicited by vascular endothelial growth factor-A (VEGF-A). The expression of VEGF-A has been recognized as a prognostic marker in angiogenesis. Amphiregulin (AR), an epidermal growth factor receptor ligand, promotes tumor proliferation, metastasis and angiogenesis. However, the role of AR in VEGF-A expression ...
Known for Chondrosarcoma Cells | Inbred Balb Mice | Vegf Expression | Amphiregulin Enhances | Neoplastic Humans |
Glucose suppresses IL‐1β‐induced MMP‐1 expression through the FAK, MEK, ERK, and AP‐1 signaling pathways
[ PUBLICATION ]
Osteoarthritis (OA) commonly affects the synovial joint and is characterized by degradation of articular cartilage. Increased matrix metalloproteinase (MMP) activity plays a major role in this degradation. Dextrose (D-glucose) prolotherapy has shown promising activity in the treatment of different musculoskeletal disorders, including OA. However, little is known about the role of glucose on MMP inhibition in OA therapy. We found that stimulating chondrocytes with the proinflammatory ...
Known for Mek Erk | Mmp1 Expression | Signaling Pathways | Matrix Metalloproteinase | Articular Cartilage |
LPA1/3 signaling mediates tumor lymphangiogenesis through promoting CRT expression in prostate cancer
[ PUBLICATION ]
Lysophosphatidic acid (LPA) is a bioactive lipid growth factor which is present in high levels in serum and platelets. LPA binds to its specific G-protein-coupled receptors, including LPA1 to LPA6, thereby regulating various physiological functions, including cancer growth, angiogenesis, and lymphangiogenesis. Our previous study showed that LPA promotes the expression of the lymphangiogenic factor vascular endothelial growth factor (VEGF)-C in prostate cancer (PCa) cells. Interestingly, ...
Known for Prostate Cancer | Tumor Lymphangiogenesis | Lpa Receptors | Pca Progression | Lysophosphatidic Acid |
Lysophosphatidic acid induces reactive oxygen species generation by activating protein kinase C in PC-3 human prostate cancer cells
[ PUBLICATION ]
Prostate cancer is one of the most frequently diagnosed cancers in males, and PC-3 is a cell model popularly used for investigating the behavior of late stage prostate cancer. Lysophosphatidic acid (LPA) is a lysophospholipid that mediates multiple behaviors in cancer cells, such as proliferation, migration and adhesion. We have previously demonstrated that LPA enhances vascular endothelial growth factor (VEGF)-C expression in PC-3 cells by activating the generation of reactive oxygen ...
Known for Lysophosphatidic Acid | Prostate Cancer | Oxygen Species | Protein Kinase | Ros Generation |
TGF-β1 enhances FOXO3 expression in human synovial fibroblasts by inhibiting miR-92a through AMPK and p38 pathways
[ PUBLICATION ]
Osteoarthritis (OA) is an age-related disease marked by synovial inflammation and cartilage destruction arising from synovitis, joint swelling and pain. OA therapy that targets the synovium is a promising strategy for mitigating the symptoms and disease progression. Altered activity of the transforming growth factor-β1 isoform (TGF-β1) during aging underlies OA progression. Notably, aberrant forkhead box class O 3 (FOXO3) activity is implicated in the pathogenesis of various age-related ...
Known for Foxo3 Expression | Synovial Fibroblasts | Tgf Β1 | Oasfs Ampk | P38 Pathways |
BackgroundThrombospondin-2 (TSP-2) is a secreted matricellular glycoprotein that is found to mediate cell-to-extracellular matrix attachment and participates in many physiological and pathological processes. The expression profile of TSP-2 on tumors is controversial, and it up-regulates in some cancers, whereas it down-regulates in others, suggesting that the functional role of TSP-2 on tumors is still uncertain.MethodsThe expression of TSP-2 on prostate cancer progression was determined ...
Known for Bone Metastasis | Prostate Cancer | Mmp2 Expression | Matrix Metalloproteinase | Tsp2 Cell Migration |
Leptin Induces Oncostatin M Production in Osteoblasts by Downregulating miR-93 through the Akt Signaling Pathway
[ PUBLICATION ]
Inflammatory response and articular destruction are common symptoms of osteoarthritis (OA) and rheumatoid arthritis (RA). Leptin, an adipocyte-secreted hormone that centrally regulates weight control, may exert proinflammatory effects in the joint, depending on the immune response. Yet, the mechanism of leptin interacting with the arthritic inflammatory response is unclear. This study finds that leptin increased expression of oncostatin M (OSM) in human osteoblasts in a concentration- ...
Known for Signaling Pathway | Oncogene Proteins | Immune Response | Expression Mir93 | Akt Phosphorylation |
Key People For Growth Factor
Yuan‐Li Huang:Expert Impact
Concepts for whichYuan‐Li Huanghas direct influence:Growth factor, Human chondrosarcoma, Human chondrosarcoma cells, Fibroblast growth factor, Human osteosarcoma, Nestin expression, Cordyceps sinensis, Synovial fibroblasts.
Yuan‐Li Huang:KOL impact
Concepts related to the work of other authors for whichfor which Yuan‐Li Huang has influence:Lysophosphatidic acid, Endothelial cells, Cordyceps sinensis, Growth factor, Nestin expression, Tumor microenvironment, Cell migration.
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