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One or more keywords matched the following properties of He, Tong-Chuan
PropertyValue
keywords BMP signaling
keywords Wnt signaling
overview I direct the Molecular Oncology Laboratory in the Department of Orthopaedic Surgery and Rehabilitation Medicine. Our lab consists of a dynamic group of basic science investigators and physician scientists, who have diverse expertise and a broad range of research interests. Our shared long-term objective is to better understand the molecular pathogenesis of bone and musculoskeletal diseases and to translate basic discoveries into potential therapies and/or preventive measures in clinical settings. Specifically, we focus on the following areas: LINEAGE COMMITMENT AND TERMINAL DIFFERENTIATION OF MESENCHYMAL STEM CELLS (MSCS) Multipotency of MSCs MSCs are pluripotent and capable of differentiating into osteogenic, chondrogenic, myogenic or adipogenic lineage. Understanding the molecular mechanisms of bone formation is pivotal for studying the pathogenesis of bone diseases. We are interested in elucidating the molecular mechanisms through which regulate the proliferation and differentiation of osteoblasts, chondrocytes, and adipocytes. Both Wnt/beta-catenin and bone morphogenetic proteins (BMPs) have been considered as important regulators of osteogenic differentiation of mesenchymal stem cells. We are investigating the biological functions of BMPs and Wnt/beta-catenin signaling in regulating the osteoblast differentiation of MSCs. We have therefore conducted a comprehensive analysis of BMP and Wnt3A-induced osteoblast differentiation of MSCs. Our findings indicate that osteoblast differentiation is a well-regulated process in normal progenitor cells, while osteosarcoma cells are refractory to osteogenic differentiation signal. BMP-9 is one of the most potent regulators of osteogenic differentiation The bone-forming osteoblasts are derived from pluripotent bone marrow fibroblasts (a.k.a., MSCs). Although the molecular mechanisms underlying bone formation remain to be defined, BMPs seem to play an important role in osteoblast differentiation. At least 15 types of BMPs have been identified in mice and humans. However, the ability of BMPs to induce osteoblast differentiation of mesenchymal stem cells has not been comprehensively investigated, mostly due to the fact that recombinant proteins are either not biologically active or not available for all BMPs. Through a comprehensive analysis, we found that BMP2, BMP6, and BMP9 (to a much lesser extent, BMP4 and BMP7) exhibited the greatest ability to induce osteoblast differentiation, whereas BMP3 was shown to inhibit osteogenesis, both in vitro and in vivo. Our findings about BMP9 as one of the most potent inducers of osteoblast differentiation are novel and particularly intriguing because BMP9 is one of the least characterized BMPs and its functions are largely unknown. Thus, many questions regarding BMP9 signaling need to be answered: What are the type I and type II TGFbeta/BMP receptors involved in BMP9 binding? What Smads are required for BMP9 signaling? How are the downstream targets regulated by BMP9? More importantly, what are the roles of BMP9 during embryonic and/or skeletal development? We are interested in addressing these questions. Critical mediators of BMP-induced differentiation of MSCs We have identified several potentially important signaling mediators of BMP-induced osteogenic differentiation. These targets include the Inhibitors of DNA binding/Differentiation helix-loop-helix (a.k.a., Id proteins) and CTGF. Interestingly, both Ids and CTGF have been shown to overexpress in human tumors. Our findings suggest that Ids and CTGF may play an important role in promoting the proliferation of early osteoblast progenitor cells and that their expression must be down-regulated during the terminal differentiation of committed osteoblasts, suggesting that a balanced regulation of their expression may be critical to BMP-induced osteoblast lineage-specific differentiation of MSCs. We are currently dissecting the functional roles of the important downstream mediators in BMP-induced osteogenic signaling. We are also interested in identifying the molecular switches that control the lineage-specific differentiation of osteoblasts, chondrocytes, and adipocytes in MSCs. We are especially interested in understanding at what stage osteogenic BMPs (e.g., BMP2 or BMP9)-induced osteogenic and adipogenic differentiation diverges. What are the potential regulators that control this lineage divergence? It has been long postulated that a disrupted balance between osteogenesis and adipogenesis may cause musculoskeletal diseases, such as osteoporosis. Wnts regulate osteogenic differentiation of mesenchymal stem cells Our earlier studies demonstrated that Wnt/beta-catenin signaling is de-regulated in over 70% of human osteosarcoma. Recent studies also suggest that Wnt signaling may play an important role in regulating bone density, and one of the Wnt signaling antagonists Dkk1 may be implicated in the development of osteolytic lesion in multiple myeloma patients. We demonstrated that Wnt3A can induce the early osteogenic marker alkaline phosphatase in MSCs. Upon analyzing the gene expression profile of MSCs that were stimulated with Wnt3A, we found that three members of the CCN family, CCN1/Cyr61, CCN2/CTGF, and CCN5/WISP2, were among the most significantly up-regulated genes. Further studies demonstrate that CTGF is a mutual target of Wnt and BMP-9, and plays an important role in regulating osteogenic differentiation. However, more questions remain to be answered. We are currently investigating how osteogenic differentiation of MSCs is regulated by canonical and non-canonical Wnt signaling. MOLECULAR BASES OF BONE AND SOFT TISSUE SARCOMAS Sarcomas represent a heterogeneous group of malignant mesenchymal tumors with numerous histologic subtypes and complex cytogenetic abnormalities. Unlike other common solid tumors, sarcomas are relatively uncommon and their molecular pathogenesis, in general, are poorly understood. We mainly focus on understanding the molecular biology of primary bone tumor (a.k.a., osteosarcoma, OS). Osteosarcoma is the most common primary malignancy of bone, and is among the most common non-hematological primary tumors of bone in both children and adults. The peak incidence occurs in the second decade. With preoperative chemotherapy, the five-year survival rate of patients with non-metastatic tumors has improved significantly to approximately 60-70%. However, cases with local recurrence and/or pulmonary metastasis are usually less sensitive, if not resistant, to conventional chemotherapies. Several cytogenetic studies suggest that certain chromosomal regions may be amplified, rearranged, or deleted in some, but not all, human osteosarcomas. Unfortunately, the low incidence of this disease and the absence of any familial predisposition have complicated efforts to identify osteosarcoma-associated genes. Thus, we are taking a comprehensive approach to elucidate the molecular mechanisms underlying the development of osteosarcoma. Wnt/beta-catenin signaling in the development of human osteosarcoma Aberrant activation of Wnt/beta-catenin signaling by inactivating APC tumor suppressor or oncogenic activation of beta-catenin plays an important role in colorectal tumorigenesis. Oncogenic activation of beta-catenin has also been reported in several types of human solid tumors. We found that beta-catenin signaling is de-regulated in about 70% of human osteosarcoma without beta-catenin mutations. As in many other types of non-colon cancer, little is known about how Wnt/beta-catenin signaling pathway is activated. Therefore, we are interested in elucidating the upstream regulatory mechanisms that may underline of the beta-catenin signaling pathway. We are also interested in investigating the possible pathogenic role of beta-catenin deregulation in bone and soft tissue tumors. Furthermore, we are investigating the potential roles of EF-hand calcium-binding S100 proteins in osteosarcoma progression and the development of pulmonary metastasis. Clinically relevant osteosarcoma animal model In order to investigate the pathogenesis of human osteosarcoma, there is a great need to develop a clinically relevant animal model. We have developed such an orthotopic animal model of osteosarcoma using several human osteosarcoma lines. This clinically relevant model of human osteosarcoma provides varying degrees of tumor growth at the primary site and of metastatic potential. Thus, this orthotopic model is being used as a valuable tool to investigate factors that promote or inhibit osteosarcoma growth and/or metastasis. For instance, we are now using this model to investigate the roles of genes that are known to promote cell proliferation and inhibit differentiation, and genes that potentially promote or inhibit cancer metastasis. This orthotopic model can also be used to test anti-tumor small molecules or other targeted therapies. Osteosarcoma is a differentiation disease We believe that understanding the molecular events behind normal osteoblast differentiation of MSCs may provide important clues to osteosarcoma development. Stem cell differentiation and tumorigenesis share some strikingly similar characteristics. Both normal stem cells and cancer stem cells have the ability to self-renew. Although stem cells are often the target of genetic events that are necessary or sufficient for malignant transformation, in some cases restricted progenitors or even differentiated cells may become transformed. Thus, cancer stem cells may be derived from tissue-specific stem cells or progenitors, such as MSCs. Although cancer stem cells for osteosarcoma remain to be identified, OS cells indeed exhibit the characteristics of undifferentiated osteoblasts, and we have shown that differentiation-promoting agents can inhibit OS proliferation. Accordingly, we found that human osteosarcoma cells are in general refractory to osteogenic BMPs and exhibit no signs of terminal differentiation upon osteogenic BMP stimulation. Thus, we hypothesize that osteosarcoma development is caused by molecular/genetic disruptions of the osteogenic differentiation pathway. We are investigating and identifying the possible defects in osteogenic pathway, including the possible roles of the early target genes of BMP-induced osteoblast lineage-specific differentiation of MSCs. MOLECULAR BIOLOGY OF CANCER METASTASIS Cancer metastasis is an often overlooked and least understood problem. Metastasis is defined as the progressive growth of tumor cells at a site that is discontinuous from the primary tumor. Although not an efficient process, colonization at distant tissues by tumor cells represents the most dangerous attribute of cancer, because metastases, rather than primary tumors, are responsible for most cancer deaths. Metastatic cells are a subset of primary tumor cells that have acquired the ability to complete a multi-step metastatic cascade, including migration, dissemination, extravasation, and eventual proliferation at a discontinuous secondary site. Understanding the molecular biology of cancer metastasis may provide novel intervention strategies to control/contain metastatic lesions, and/or to improve the quality of life for the patients with these advanced diseases. Pulmonary metastasis of primary bone tumors Lung metastasis is the leading cause of OS mortality. Our orthotopic tumor model of human OS provides a unique opportunity for us to investigate the molecular events underlying osteosarcoma pulmonary metastasis. Using this model, we have conducted serial selections of highly metastatic human OS sublines, which were otherwise non-metastatic. Using microarray analysis, we have compared the gene expression profiles between these sublines and the parental lines in search for gene(s) that may cause or be associated with osteosarcoma metastasis. In an alternative approach, we are conducting functional selection assays, in which an RNAi library has been introduced into the non-metastatic or less metastatic human osteosarcoma cells to recover lung metastases and to identify potential metastasis suppressors of human osteosarcoma. Metastatic bone tumors Bone is one of the most frequently targeted organs for cancer metastasis, and bone is the most common site for distant relapse of most cancers. The bone microenvironment is unique among metastatic target tissues because it is subjected to continuous remodeling under the influence circulating hormones and local bone-derived factors. Interactions between the bone microenvironment and the cancer cells can give rise to osteolytic (bone resorbing) or osteoblastic (bone forming) metastasis. Osteolytic bone metastasis are characteristic for most malignancies, such as breast cancer and lung cancer, while osteoblastic metastasis is mostly associated with prostate cancer. We are investigating the molecular mechanisms through which the interactions between metastatic (breast and prostate) cancer cells and bone microenvironment are regulated. NOVEL THERAPEUTIC AND/OR PREVENTIVE STRATEGIES FOR BONE AND MUSCULOSKELETAL DISEASES The ultimate goal of biomedical research is to develop innovative diagnostic, therapeutic, and/or preventive strategies for human diseases. We are interested in developing innovative approaches for local or systemic delivery of therapeutic genes as effective treatment for bone and musculoskeletal diseases. We are investigating the use of osteogenic BMPs for bone regeneration, enhancing fracture healing, repairing segmental defects, promoting spinal fusion, and preventing implant wear particle-induced osteolysis. We have recently demonstrated the potential use of some of the BMPs in promoting biomechanical features of healing tendons/ligaments. We also demonstrated that Sox9, a master regulator of chondrogenesis, may be used in gene therapy to treat intervertebral disc degeneration and articular cartilage injuries. These lines of investigation reflect our commitment to the true spirit of translational research in bone and musculoskeletal disorders.
One or more keywords matched the following items that are connected to He, Tong-Chuan
Item TypeName
Concept Wnt1 Protein
Concept Intercellular Signaling Peptides and Proteins
Concept Wnt3 Protein
Concept Wnt Proteins
Concept CCN Intercellular Signaling Proteins
Concept Adaptor Proteins, Signal Transducing
Concept MAP Kinase Signaling System
Concept Extracellular Signal-Regulated MAP Kinases
Concept Wnt3A Protein
Concept Intracellular Signaling Peptides and Proteins
Concept Wnt Signaling Pathway
Concept Signal Transduction
Academic Article Tyrosine kinase inhibitor STI-571/Gleevec down-regulates the beta-catenin signaling activity.
Academic Article Transcriptional characterization of bone morphogenetic proteins (BMPs)-mediated osteogenic signaling.
Academic Article Connective tissue growth factor (CTGF) is regulated by Wnt and bone morphogenetic proteins signaling in osteoblast differentiation of mesenchymal stem cells.
Academic Article Wnt signaling and human diseases: what are the therapeutic implications?
Academic Article Regulation of osteogenic differentiation during skeletal development.
Academic Article BMP-9-induced osteogenic differentiation of mesenchymal progenitors requires functional canonical Wnt/beta-catenin signalling.
Academic Article Wnt antagonist SFRP3 inhibits the differentiation of mouse hepatic progenitor cells.
Academic Article Neurogenesis-related genes expression profiling of mouse fibroblastic stem cells induced by Wnt signaling.
Academic Article Retinoic acid signalling induces the differentiation of mouse fetal liver-derived hepatic progenitor cells.
Academic Article A traditional Chinese medicine formulation consisting of Rhizoma Corydalis and Rhizoma Curcumae exerts synergistic anti-tumor activity.
Academic Article Distinct roles of bone morphogenetic proteins in osteogenic differentiation of mesenchymal stem cells.
Academic Article Insulin-like growth factor 2 (IGF-2) potentiates BMP-9-induced osteogenic differentiation and bone formation.
Academic Article Pre-activation of retinoid signaling facilitates neuronal differentiation of mesenchymal stem cells.
Academic Article Low serum concentration facilitates the differentiation of hepatic progenitor cells.
Academic Article The therapeutic potential of the Wnt signaling pathway in bone disorders.
Academic Article Tetrandrine inhibits Wnt/ß-catenin signaling and suppresses tumor growth of human colorectal cancer.
Academic Article Ginsenoside Rg3 inhibits colorectal tumor growth through the down-regulation of Wnt/ß-catenin signaling.
Academic Article LIGHT delivery to tumors by mesenchymal stem cells mobilizes an effective antitumor immune response.
Academic Article Crosstalk between NF-kappaB and beta-catenin pathways in bacterial-colonized intestinal epithelial cells.
Academic Article The CCN proteins: important signaling mediators in stem cell differentiation and tumorigenesis.
Academic Article TGFbeta/BMP type I receptors ALK1 and ALK2 are essential for BMP9-induced osteogenic signaling in mesenchymal stem cells.
Academic Article CCN1/Cyr61 is regulated by the canonical Wnt signal and plays an important role in Wnt3A-induced osteoblast differentiation of mesenchymal stem cells.
Academic Article All-trans retinoic acid inhibits tumor growth of human osteosarcoma by activating Smad signaling-induced osteogenic differentiation.
Academic Article Enhancement of canonical Wnt/ß-catenin signaling activity by HCV core protein promotes cell growth of hepatocellular carcinoma cells.
Academic Article BMP-9 induced osteogenic differentiation of mesenchymal stem cells: molecular mechanism and therapeutic potential.
Academic Article Osteosarcoma development and stem cell differentiation.
Academic Article Expression of the Arf tumor suppressor gene is controlled by Tgfbeta2 during development.
Academic Article Activation of RXR and RAR signaling promotes myogenic differentiation of myoblastic C2C12 cells.
Academic Article Wnt/beta-catenin signaling pathway as a novel cancer drug target.
Academic Article Ginsenoside Rh2 induces apoptosis and paraptosis-like cell death in colorectal cancer cells through activation of p53.
Academic Article Growth hormone synergizes with BMP9 in osteogenic differentiation by activating the JAK/STAT/IGF1 pathway in murine multilineage cells.
Academic Article Wnt signaling in bone formation and its therapeutic potential for bone diseases.
Academic Article BMP9 signaling in stem cell differentiation and osteogenesis.
Academic Article Ginseng saponin metabolite 20(S)-protopanaxadiol inhibits tumor growth by targeting multiple cancer signaling pathways.
Academic Article Paraptosis and NF-?B activation are associated with protopanaxadiol-induced cancer chemoprevention.
Academic Article BMP9-regulated angiogenic signaling plays an important role in the osteogenic differentiation of mesenchymal progenitor cells.
Academic Article Regulation of cell proliferation and migration by p62 through stabilization of Twist1.
Academic Article Crosstalk between Wnt/ß-catenin and estrogen receptor signaling synergistically promotes osteogenic differentiation of mesenchymal progenitor cells.
Academic Article Cross-talk between EGF and BMP9 signalling pathways regulates the osteogenic differentiation of mesenchymal stem cells.
Academic Article Noggin resistance contributes to the potent osteogenic capability of BMP9 in mesenchymal stem cells.
Academic Article BMP9 regulates cross-talk between breast cancer cells and bone marrow-derived mesenchymal stem cells.
Academic Article A simplified and versatile system for the simultaneous expression of multiple siRNAs in mammalian cells using Gibson DNA Assembly.
Academic Article S100A8 and S100A9 are associated with colorectal carcinoma progression and contribute to colorectal carcinoma cell survival and migration via Wnt/ß-catenin pathway.
Academic Article Canonical Wnt signaling acts synergistically on BMP9-induced osteo/odontoblastic differentiation of stem cells of dental apical papilla (SCAPs).
Academic Article Dihydroartemisinin inhibits tumor growth of human osteosarcoma cells by suppressing Wnt/ß-catenin signaling.
Academic Article Inhibition of histone deacetylases potentiates BMP9-induced osteogenic signaling in mouse mesenchymal stem cells.
Academic Article TRAIL pathway is associated with inhibition of colon cancer by protopanaxadiol.
Academic Article Hedgehog signaling is involved in the BMP9-induced osteogenic differentiation of mesenchymal stem cells.
Academic Article Destabilization of heterologous proteins mediated by the GSK3ß phosphorylation domain of the ß-catenin protein.
Academic Article Modulation of ß-catenin signaling by the inhibitors of MAP kinase, tyrosine kinase, and PI3-kinase pathways.
Academic Article BMP9 inhibits proliferation and metastasis of HER2-positive SK-BR-3 breast cancer cells through ERK1/2 and PI3K/AKT pathways.
Academic Article Targeting BMP9-promoted human osteosarcoma growth by inactivation of notch signaling.
Academic Article S100A9 promotes the proliferation and invasion of HepG2 hepatocellular carcinoma cells via the activation of the MAPK signaling pathway.
Academic Article 5-azacytidine promotes terminal differentiation of hepatic progenitor cells.
Academic Article TqPCR: A Touchdown qPCR Assay with Significantly Improved Detection Sensitivity and Amplification Efficiency of SYBR Green qPCR.
Academic Article The Anthelmintic Drug Niclosamide Inhibits the Proliferative Activity of Human Osteosarcoma Cells by Targeting Multiple Signal Pathways.
Academic Article Activation of PKA/CREB Signaling is Involved in BMP9-Induced Osteogenic Differentiation of Mesenchymal Stem Cells.
Academic Article Antibiotic monensin synergizes with EGFR inhibitors and oxaliplatin to suppress the proliferation of human ovarian cancer cells.
Academic Article The evolving roles of canonical WNT signaling in stem cells and tumorigenesis: implications in targeted cancer therapies.
Academic Article Butyrate and bioactive proteolytic form of Wnt-5a regulate colonic epithelial proliferation and spatial development.
Academic Article A Blockade of IGF Signaling Sensitizes Human Ovarian Cancer Cells to the Anthelmintic Niclosamide-Induced Anti-Proliferative and Anticancer Activities.
Academic Article Multifaceted signaling regulators of chondrogenesis: Implications in cartilage regeneration and tissue engineering.
Academic Article Hypoxia pathway and hypoxia-mediated extensive extramedullary hematopoiesis are involved in ursolic acid's anti-metastatic effect in 4T1 tumor bearing mice.
Academic Article BMP signaling in mesenchymal stem cell differentiation and bone formation.
Academic Article Wnt/ß-catenin signaling plays an ever-expanding role in stem cell self-renewal, tumorigenesis and cancer chemoresistance.
Academic Article Wnt versus Hippo: A balanced act or dynamic duo?
Academic Article Notch Signaling Augments BMP9-Induced Bone Formation by Promoting the Osteogenesis-Angiogenesis Coupling Process in Mesenchymal Stem Cells (MSCs).
Academic Article Noncanonical Wnt signaling plays an important role in modulating canonical Wnt-regulated stemness, proliferation and terminal differentiation of hepatic progenitors.
Academic Article Inhibitory effects of BMP9 on breast cancer cells by regulating their interaction with pre-adipocytes/adipocytes.
Academic Article Wnt and BMP Signaling Crosstalk in Regulating Dental Stem Cells: Implications in Dental Tissue Engineering.
Academic Article In vitro effect of microRNA-107 targeting Dkk-1 by regulation of Wnt/ß-catenin signaling pathway in osteosarcoma.
Academic Article lncRNA H19 mediates BMP9-induced osteogenic differentiation of mesenchymal stem cells (MSCs) through Notch signaling.
Academic Article Signal transduction in the erythropoietin receptor system.
Academic Article Inhibition of erythropoietin-induced mitogenesis by a kinase-deficient form of Jak2.
Academic Article CDX2 is mutated in a colorectal cancer with normal APC/beta-catenin signaling.
Academic Article Neural EGF-like protein 1 (NELL-1): Signaling crosstalk in mesenchymal stem cells and applications in regenerative medicine.
Academic Article lncRNA H19 mediates BMP9-induced osteogenic differentiation of mesenchymal stem cells (MSCs) through Notch signaling.
Academic Article Identification of c-MYC as a target of the APC pathway.
Academic Article BMP9-induced osteoblastic differentiation requires functional Notch signaling in mesenchymal stem cells.
Academic Article The cerebral cavernous malformation disease causing gene KRIT1 participates in intestinal epithelial barrier maintenance and regulation.
Academic Article Breast cancer development and progression: Risk factors, cancer stem cells, signaling pathways, genomics, and molecular pathogenesis.
Academic Article A blockade of PI3K? signaling effectively mitigates angiotensin II-induced renal injury and fibrosis in a mouse model.
Academic Article Inhibitor of ß-catenin and TCF (ICAT) promotes cervical cancer growth and metastasis by disrupting E-cadherin/ß-catenin complex.
Academic Article Epigenetic silencing of SFRP5 promotes the metastasis and invasion of chondrosarcoma by expression inhibition and Wnt signaling pathway activation.
Academic Article Whole-Proteome Analysis of Human Craniosynostotic Tissue Suggests a Link between Inflammatory Signaling and Osteoclast Activation in Human Cranial Suture Patency.
Academic Article Monensin inhibits cell proliferation and tumor growth of chemo-resistant pancreatic cancer cells by targeting the EGFR signaling pathway.
Academic Article Imiquimod Acts Synergistically with BMP9 through the Notch Pathway as an Osteoinductive Agent In Vitro.
Academic Article Developing a Versatile Shotgun Cloning Strategy for Single-Vector-Based Multiplex Expression of Short Interfering RNAs (siRNAs) in Mammalian Cells.
Academic Article A simplified 3D liver microsphere tissue culture model for hepatic cell signaling and drug-induced hepatotoxicity studies.
Academic Article Long non-coding RNA (lncRNA) H19 induces hepatic steatosis through activating MLXIPL and mTORC1 networks in hepatocytes.
Academic Article ARRB1-Promoted NOTCH1 Degradation Is Suppressed by OncomiR miR-223 in T-cell Acute Lymphoblastic Leukemia.
Academic Article Bone morphogenetic protein 4 (BMP4) alleviates hepatic steatosis by increasing hepatic lipid turnover and inhibiting the mTORC1 signaling axis in hepatocytes.
Academic Article Correction for: Bone morphogenetic protein 4 (BMP4) alleviates hepatic steatosis by increasing hepatic lipid turnover and inhibiting the mTORC1 signaling axis in hepatocytes.
Academic Article Leptin Potentiates BMP9-Induced Osteogenic Differentiation of Mesenchymal Stem Cells Through the Activation of JAK/STAT Signaling.
Academic Article Blockade of IGF/IGF-1R signaling axis with soluble IGF-1R mutants suppresses the cell proliferation and tumor growth of human osteosarcoma.
Academic Article Notch signaling: Its essential roles in bone and craniofacial development.
Academic Article BMP9-initiated osteogenic/odontogenic differentiation of mouse tooth germ mesenchymal cells (TGMCS) requires Wnt/ß-catenin signalling activity.
Academic Article Antiparasitic mebendazole (MBZ) effectively overcomes cisplatin resistance in human ovarian cancer cells by inhibiting multiple cancer-associated signaling pathways.
Academic Article Argonaute (AGO) proteins play an essential role in mediating BMP9-induced osteogenic signaling in mesenchymal stem cells (MSCs).
Academic Article The Pleiotropic Intricacies of Hedgehog Signaling: From Craniofacial Patterning to Carcinogenesis.
Academic Article Pyrvinium doubles against WNT-driven cancer.
Academic Article [Retracted] Hedgehog signaling is involved in the BMP9-induced osteogenic differentiation of mesenchymal stem cells.
Academic Article The HPV16 E6, E7/miR-23b-3p/ICAT signaling axis promotes proliferation, migration, invasion and EMT of cervical cancer cells.
Academic Article [Corrigendum] S100A9 promotes the proliferation and invasion of HepG2 hepatocellular carcinoma cells via the activation of the MAPK signaling pathway.
Academic Article Effect of antibiotic monensin on cell proliferation and IGF1R signaling pathway in human colorectal cancer cells.
Academic Article [Corrigendum] A simplified 3D liver microsphere tissue culture model for hepatic cell signaling and drug-induced hepatotoxicity studies.
Concept Wnt-5a Protein
Grant Regulation of beta-Catenin Signaling by Tyrosine Phosphorylation
Academic Article Systematic Review of Nonsyndromic Craniosynostosis: Genomic Alterations and Impacted Signaling Pathways.
Academic Article Correction: BMP9-regulated angiogenic signaling plays an important role in the osteogenic differentiation of mesenchymal progenitor cells.
Academic Article BMP4 upregulates glycogen synthesis through the SMAD/SLC2A1 (GLUT1) signaling axis in hepatocellular carcinoma (HCC) cells.
Academic Article Canonical and noncanonical Wnt signaling: Multilayered mediators, signaling mechanisms and major signaling crosstalk.
Academic Article The evolving roles of Wnt signaling in stem cell proliferation and differentiation, the development of human diseases, and therapeutic opportunities.
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