Article

Novel approaches in anti-angiogenic treatment targeting endothelial F-actin: a new anti-angiogenic strategy?

Ludwig-Maximilian-Universität, Pharmaceutical Biology-Biotechnology, Butenandtstrasse 5-13, D-81377 Munich, Germany.
Current opinion in molecular therapeutics (impact factor: 3.68). 01/2009; 10(6):579-90. pp.579-90
Source: PubMed

ABSTRACT As a functional blood supply is crucial for growth of solid tumors, the development of anticancer agents to inhibit the formation of new tumor blood vessels is an area of extensive research. Endothelial cell motility driven by the dynamics of the cytoskeleton is a key feature of angiogenesis. Agents that preferentially target endothelial tubulin are well established, and inhibition of the endothelial actin dynamics appears to be another promising anti-angiogenic strategy. Remodeling of the actin cytoskeleton is regulated by several pathways involving a large number of signaling proteins. Therefore, therapeutic strategies for the modulation of actin dynamics include agents that target the actin cytoskeleton directly, as well as inhibitors of actin binding proteins and regulators in upstream pathways. This review provides an overview of the regulation of the actin cytoskeleton and proteins that could potentially be targeted by therapeutic agents. In addition, an outline of promising agents, which includes recombinant proteins, endogenous effectors and treatment regimes that exert anti-angiogenic effects partly mediated by affecting endothelial actin dynamics is provided.

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Keywords

actin binding proteins
 
actin cytoskeleton
 
actin dynamics
 
anticancer agents
 
endothelial actin dynamics
 
Endothelial cell motility
 
exert anti-angiogenic effects
 
extensive research
 
functional blood supply
 
includes recombinant proteins
 
key feature
 
new tumor blood vessels
 
preferentially target endothelial tubulin
 
promising agents
 
promising anti-angiogenic strategy
 
solid tumors
 
therapeutic agents
 
therapeutic strategies
 
treatment regimes
 
upstream pathways
 

Lilja Meissner