A Dual Role for NOTCH Signaling in Joint Cartilage Maintenance and Osteoarthritis
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Summary
A potential dual role for NOTCH in joint maintenance and osteoarthritis is investigated by generating two mouse models overexpressing the NOTCH1 intracellular domain (NICD) within postnatal joint cartilage and identifying downstream effectors of NOTCH signaling as potential targets for disease-modifying osteo arthritis drugs.
- Type
- article
- Published
- 2015-04-01
- Cited by
- 107
- References
- 65
- Access
- Open access
- OpenAlex
- https://openalex.org/W1904109990
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:23174315
Keywords
Notch signaling pathway, Osteoarthritis, Context (archaeology), Cartilage, Joint (building)
References
- Increased expression of nerve growth factor (NGF) and high affinity NGF receptor (p140 TrkA) in human osteoarthritic chondrocytes.
- RBPjκ-dependent Notch signaling is required for articular cartilage and joint maintenance
- Selective inhibition of inducible nitric oxide synthase in experimental osteoarthritis is associated with reduction in tissue levels of catabolic factors.
- Conditional and inducible transgene expression in mice through the combinatorial use of Cre-mediated recombination and tetracycline induction
- Expression patterns of Notch receptors and their ligands in human osteoarthritic and healthy articular cartilage.
- The role of the cartilage matrix in osteoarthritis
- Direct regulation of intestinal fate by Notch.
- The immunohistochemical localization of notch receptors and ligands in human articular cartilage, chondroprogenitor culture and ultrastructural characteristics of these progenitor cells.
- Notch signaling in chondrocytes modulates endochondral ossification and osteoarthritis development
- The Canonical Notch Signaling Pathway: Unfolding the Activation Mechanism
- Nitric oxide in osteoarthritis.
- Interleukin-6 is a significant predictor of radiographic knee osteoarthritis: The Chingford study
- Suppression of differentiation and proliferation of early chondrogenic cells by Notch
- Direct regulation of interleukin-6 expression by Notch signaling in macrophages
- The distribution of Notch receptors and their ligands during articular cartilage development
- Notch1 signaling regulates chondrogenic lineage determination through Sox9 activation
- Insights from human genetic studies into the pathways involved in osteoarthritis
- Mesenchymal progenitor cell markers in human articular cartilage: normal distribution and changes in osteoarthritis
- The individual and socioeconomic impact of osteoarthritis
- Osteoarthritis development in novel experimental mouse models induced by knee joint instability.
Cited by
- A top-notch dilemma: The complex role of NOTCH signaling in osteoarthritis
- Notch Signaling in Postnatal Joint Chondrocytes, but not Subchondral Osteoblasts, is Required for Articular Cartilage and Joint Maintenance
- Inhibition of Notch1 promotes hedgehog signalling in a HES1-dependent manner in chondrocytes and exacerbates experimental osteoarthritis
- Novel therapeutic targets in osteoarthritis: Narrative review on knock-out genes involved in disease development in mouse animal models.
- Notch Signaling and the Skeleton.
- HES factors regulate specific aspects of chondrogenesis and chondrocyte hypertrophy during cartilage development
- Notch signaling indirectly promotes chondrocyte hypertrophy via regulation of BMP signaling and cell cycle arrest
- Building and maintaining joints by exquisite local control of cell fate
- Systemic inhibition of IL-6/Stat3 signalling protects against experimental osteoarthritis
- A Whole Exome Study Identifies Novel Candidate Genes for Vertebral Bone Marrow Signal Changes (Modic Changes)
- LC-MS/MS analysis and evaluation of the anti-inflammatory activity of components from BushenHuoxue decoction
- Notch signaling mediated by TGF-β/Smad pathway in concanavalin A-induced liver fibrosis in rats
- Dwarfism in Homozygous Agc1CreERT Mice is Associated with Decreased Expression of Aggrecan
- Knockdown MiR-302b Alleviates LPS-Induced Injury by Targeting Smad3 in C28/I2 Chondrocytic Cells
- LncRNA GAS5 Overexpression Reverses LPS-Induced Inflammatory Injury and Apoptosis Through Up-Regulating KLF2 Expression in ATDC5 Chondrocytes
- Therapeutics in Osteoarthritis Based on an Understanding of Its Molecular Pathogenesis
- Evidence that miR‐146a attenuates aging‐ and trauma‐induced osteoarthritis by inhibiting Notch1, IL‐6, and IL‐1 mediated catabolism
- Cell type-specific effects of Notch signaling activation on intervertebral discs: Implications for intervertebral disc degeneration
- Inhibition of notch signaling pathway temporally postpones the cartilage degradation progress of temporomandibular joint arthritis in mice.
- MICE HARBORING A HAJDU CHENEY SYNDROME MUTATION ARE SENSITIZED TO OSTEOARTHRITIS
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