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review Open Access

Role of platelet-derived growth factors in physiology and medicine

Genes & Development · 2008 · Vol. 22(10) · pp. 1276–1312
Johanna AndræR GalliniChrister Betsholtz

Abstract

Platelet-derived growth factors (PDGFs) and their receptors (PDGFRs) have served as prototypes for growth factor and receptor tyrosine kinase function for more than 25 years. Studies of PDGFs and PDGFRs in animal development have revealed roles for PDGFR-alpha signaling in gastrulation and in the development of the cranial and cardiac neural crest, gonads, lung, intestine, skin, CNS, and skeleton. Similarly, roles for PDGFR-beta signaling have been established in blood vessel formation and early hematopoiesis. PDGF signaling is implicated in a range of diseases. Autocrine activation of PDGF signaling pathways is involved in certain gliomas, sarcomas, and leukemias. Paracrine PDGF signaling is commonly observed in epithelial cancers, where it triggers stromal recruitment and may be involved in epithelial-mesenchymal transition, thereby affecting tumor growth, angiogenesis, invasion, and metastasis. PDGFs drive pathological mesenchymal responses in vascular disorders such as atherosclerosis, restenosis, pulmonary hypertension, and retinal diseases, as well as in fibrotic diseases, including pulmonary fibrosis, liver cirrhosis, scleroderma, glomerulosclerosis, and cardiac fibrosis. We review basic aspects of the PDGF ligands and receptors, their developmental and pathological functions, principles of their pharmacological inhibition, and results using PDGF pathway-inhibitory or stimulatory drugs in preclinical and clinical contexts.

Kruppel-like factors researchFibroblast Growth Factor ResearchEosinophilic Disorders and SyndromesBiologyPlatelet-derived growth factor receptorAutocrine signallingCancer researchAngiogenesisParacrine signallingReceptor tyrosine kinasePlatelet-derived growth factorSignal transductionFibroblast growth factor

MeSH terms

AnimalsBone and BonesCardiovascular SystemDiseaseEmbryo, MammalianHumansModels, BiologicalNervous SystemPlatelet-Derived Growth FactorTissue DistributionSignal TransductionReceptors, Platelet-Derived Growth FactorGenetic Predisposition to DiseasePolymorphism, Single NucleotideOrganogenesis

Funding

  • Ludwig Institute for Cancer Research
  • Swedish Cancer Foundation
Citations
2,412
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References
Integrins and anoikis
Current Opinion in Cell Biology · 1997 · 1,149 citations
The biology of VEGF and its receptors
Nature Medicine · 2003 · 9,519 citations
Openings between Defective Endothelial Cells Explain Tumor Vessel Leakiness
American Journal Of Pathology · 2000 · 1,663 citations
High interstitial fluid pressure — an obstacle in cancer therapy
Nature reviews. Cancer · 2004 · 2,134 citations
The Hallmarks of Cancer
Cell · 2000 · 28,385 citations
A molecular signature of metastasis in primary solid tumors
Nature Genetics · 2002 · 2,483 citations
Inflammation, Atherosclerosis, and Coronary Artery Disease
New England Journal of Medicine · 2005 · 8,682 citations
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