Sandbox Reserved 1490: Difference between revisions

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== Medical relevance ==
== Medical relevance ==
===•Venous Malformations===
Venous malformations can cause significant morbidity due to pain, disfigurement and organ dysfunction. Before understanding a lot better the mechanisms leading to this disease, therapies were limited to compression therapy and ablation of malformed veins by sclerotherapy and surgery.  
Venous malformations can cause significant morbidity due to pain, disfigurement and organ dysfunction. Before understanding a lot better the mechanisms leading to this disease, therapies were limited to compression therapy and ablation of malformed veins by sclerotherapy and surgery.  


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Rapamycin is the first molecular therapy for VMs.
Rapamycin is the first molecular therapy for VMs.


[[Image:lesion area.png]]
===•Cancers===
Also in malignant cancers, combinations of pro-angiogenic signals activate endothelial cells attracted to the tumor microenvironment, from there enhancing vascular growth. It has previously been suggested that inhibiting angiogenesis by targeting the regulation and cross-interaction of such signals could form the basis of efforts aimed at engineering cancer therapeutics. Unfortunately, that method has only limited clinical benefit.  
Also in malignant cancers, combinations of pro-angiogenic signals activate endothelial cells attracted to the tumor microenvironment, from there enhancing vascular growth. It has previously been suggested that inhibiting angiogenesis by targeting the regulation and cross-interaction of such signals could form the basis of efforts aimed at engineering cancer therapeutics. Unfortunately, that method has only limited clinical benefit.  



Revision as of 17:17, 10 January 2019

This Sandbox is Reserved from 06/12/2018, through 30/06/2019 for use in the course "Structural Biology" taught by Bruno Kieffer at the University of Strasbourg, ESBS. This reservation includes Sandbox Reserved 1480 through Sandbox Reserved 1543.
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Kinase Domain of Tyrosine-protein kinase receptor TIE-2 (PDB:6MWE)

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