Basement membranes: structure, assembly and role in tumour angiogenesis
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Summary
Vascular basement membranes are important structural and functional components of all blood vessels/capillaries and have a crucial role in determining the progression of cancer, making them attractive candidate targets for potential cancer therapies.
- Type
- review
- Published
- 2003-06-01
- Cited by
- 1,794
- References
- 233
- OpenAlex
- https://openalex.org/W2803499602
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:7906893
Keywords
Extracellular matrix, Basement membrane, Angiogenesis, Cell biology, Regulator
References
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- Specific interaction of SPARC with endothelial cells is mediated through a carboxyl-terminal sequence containing a calcium-binding EF hand.
- Structure and function of basement membrane proteoglycans.
- Crystal structure and mutational analysis of a perlecan-binding fragment of nidogen-1
Cited by
- Preclinical Molecular Imaging of Tumor Angiogenesis
- Effects of recombinant human canstatin protein in the treatment of pancreatic cancer.
- Evaluation of Chloride Intracellular Channels 4 and 1 Functions in Developmental and Pathological Angiogenesis
- Generation of biologically active endostatin fragments from human collagen XVIII by distinct matrix metalloproteases.
- Secretion of pleiotrophin stimulates breast cancer progression through remodeling of the tumor microenvironment
- KLF2 Transcription Factor Modulates Blood Vessel Maturation through Smooth Muscle Cell Migration*
- Matrix metalloproteinase-2 regulates vascular patterning and growth affecting tumor cell survival and invasion in GBM.
- Adult stem cells and repair through granulation tissue.
- The Epigenetic Influence of Tumor and Embryonic Microenvironments: How Different are They?
- Mesenchymal stem cell modification of endothelial matrix regulates their vascular differentiation
- Development of a Cancer Vaccine Targeting Tumor Blood Vessels
- Matrix Architecture Dictates Three-Dimensional Migration Modes of Human Macrophages: Differential Involvement of Proteases and Podosome-Like Structures
- Spatiotemporal controlled delivery of nanoparticles to injured vasculature
- Mesenchymal stem cells inhibit both endogenous and exogenous MMPs via secreted TIMPs
- Sensing and modulation of invadopodia across a wide range of rigidities.
- Increased circulating levels of basement-membrane components in patients with abdominal aortic aneurysms--a pilot study.
- MMP Mediated Degradation of Type IV Collagen Alpha 1 and Alpha 3 Chains Reflects Basement Membrane Remodeling in Experimental and Clinical Fibrosis – Validation of Two Novel Biomarker Assays
- The hemostatic system in angiogenesis.
- p63/MT1-MMP axis is required for in situ to invasive transition in basal-like breast cancer
- C60(OH)22: a potential histone deacetylase inhibitor with anti-angiogenic activity.
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