Related Experiment Video
Updated: Sep 25, 2026

Identifying, Diagnosing, and Grading Malignant Peripheral Nerve Sheath Tumors in Genetically Engineered Mouse Models
Published on: May 17, 2024
Merlin restoration prevents schwannoma progression in a genetically engineered mouse model of NF2 -SWN
Purpose:
Patients with NF2 -related schwannomatosis ( NF2 -SWN) present with hallmark bilateral vestibular schwannomas, but also schwannomas on other cranial, spinal, and peripheral nerves, as well as meningiomas and ependymomas, caused by germline mutations in the tumor suppressor gene NF2 . Current therapies involving surgery and radiosurgery are effective for individual tumors but are not always a viable option for patients with multiple tumors, and harbor significant risk of neurological deficits and morbidity. Gene replacement therapy is becoming a promising new treatment strategy for several neurologic diseases. This study aims to understand if restoration of a functional merlin protein, gene product of the Nf2 gene, in Nf2 -deficient tumor cells, can provide preclinical therapeutic efficacy in a NF2 -SWN genetically engineered mouse model.
Methods:
We have developed a new Nf2 allele ( Nf2 FRT ) that allows to conditionally restore Nf2 expression by activation with the Flp recombinase. We generated a new mouse model using the Nf2 FRT allele in combination with Nf2 flox and Postn-Cre alleles.
Results:
Using the new conditional schwannoma mouse model Postn-Cre;Nf2 FRT/flox ;R26 FlpoER , we validated the hypothesis that restoration of Nf2 reduces the growth of schwannoma.
Conclusion:
Demonstrating that merlin restoration effectively controls schwannoma growth is a crucial first step toward developing this concept as a new therapeutic strategy for potentially treating schwannomas. The new mouse model will be used to better understand the cellular and molecular mechanisms involved in stopping the growth of Nf2 -deficient tumors.

