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[Update on the treatment of RASopathies]
A Duat-Rodriguez1, A Hernandez-Martin1
1Hospital Infantil Universitario Nino Jesus, 28009 Madrid, Espana.
Introduction:
The term 'RASopathies' covers a series of diseases that present mutations in the genes that code for the proteins of the RAS/MAPK pathway. These diseases include neurofibromatosis type 1, Noonan syndrome, Legius syndrome, LEOPARD syndrome, Costello syndrome and cardiofaciocutaneous syndrome. Involvement of the RAS/MAPK pathway not only increases predisposition to develop tumours, but also determines the presence of phenotypic anomalies and alterations in learning processes.
Aim:
To review the use of therapeutic strategies with mechanisms that have a selective action on RASopathies.
Development:
The fact that the RAS pathway is involved in a third of all neoplasms has led to the development and study of different drugs at this level. Some of these pharmaceutical agents have been tested in RASopathies, mainly in neurofibromatosis type 1. Here we analyse the use of different antitarget treatments: drugs that act on the membrane receptors, such as tyrosine kinase inhibitors, in the mTOR pathway or MEK inhibitors. These latter have shown potential benefits in recent studies conducted on different RASopathies.
Conclusions:
Today, thanks to the results from the first studies conducted with MEK inhibitor based mainly on animal models, a number of promising clinical trials are being carried out.
Insights
Targeted therapies, like MEK inhibitors, show promise for treating RASopathies, a group of genetic disorders affecting the RAS/MAPK pathway. Clinical trials are underway to further evaluate these treatments.
Area of Science:
- Genetics
- Oncology
- Pharmacology
Background:
- RASopathies are a group of genetic disorders caused by mutations in the RAS/MAPK pathway.
- These conditions increase cancer risk and cause developmental and learning issues.
Purpose of the Study:
- To review therapeutic strategies targeting RASopathies.
- Focus on treatments with selective action on the RAS/MAPK pathway.
Main Methods:
- Analysis of antitarget treatments including tyrosine kinase inhibitors, mTOR pathway drugs, and MEK inhibitors.
- Review of studies, particularly in neurofibromatosis type 1, and emerging research on MEK inhibitors.
Main Results:
- MEK inhibitors have demonstrated potential benefits in recent studies across various RASopathies.
- The RAS pathway's involvement in a third of neoplasms drives drug development.
Conclusions:
- Early studies, primarily on animal models, support the development of MEK inhibitor-based clinical trials.
- Promising clinical trials are currently investigating MEK inhibitors for RASopathies.
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