A cerebellopontine angle mouse model for the investigation of tumor biology, hearing, and neurological function in NF2-related vestibular schwannoma

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作者
Jie Chen
Lukas D. Landegger
Yao Sun
Jun Ren
Nir Maimon
Limeng Wu
Mei R. Ng
John W. Chen
Na Zhang
Yingchao Zhao
Xing Gao
Takeshi Fujita
Sylvie Roberge
Peigen Huang
Rakesh K. Jain
Scott R Plotkin
Konstantina M. Stankovic
Lei Xu
机构
[1] Massachusetts General Hospital and Harvard Medical School,Edwin L. Steele Laboratories, Department of Radiation Oncology
[2] Massachusetts Eye and Ear and Harvard Medical School,Eaton Peabody Laboratories, Department of Otolaryngology
[3] Massachusetts General Hospital,Institute for Innovation in Imaging, Department of Radiology, and Center for Systems Biology
[4] Massachusetts General Hospital,Department of Neurology and Cancer Center
[5] Harvard Medical School,The Speech and Hearing Bioscience and Technology Program and Harvard Program in Therapeutic Science
[6] Central South University,Department of Oral and Maxillofacial Surgery, Xiangya Hospital
[7] Medical University of Vienna,Department of Otolaryngology, Vienna General Hospital
[8] Beijing Tongren Hospital,Department of Otolaryngology–Head and Neck Surgery
[9] Capital Medical University,Cancer Center, Union Hospital, Tongji Medical College
[10] Huazhong University of Science and Technology,undefined
来源
Nature Protocols | 2019年 / 14卷
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摘要
Neurofibromatosis type II (NF2) is a disease that lacks effective therapies. NF2 is characterized by bilateral vestibular schwannomas (VSs) that cause progressive and debilitating hearing loss, leading to social isolation and increased rates of depression. A major limitation in NF2 basic and translational research is the lack of animal models that allow the full spectrum of research into the biology and molecular mechanisms of NF2 tumor progression, as well as the effects on neurological function. In this protocol, we describe how to inject schwannoma cells into the mouse brain cerebellopontine angle (CPA) region. We also describe how to apply state-of-the-art intravital imaging and hearing assessment techniques to study tumor growth and hearing loss. In addition, ataxia, angiogenesis, and tumor–stroma interaction assays can be applied, and the model can be used to test the efficacy of novel therapeutic approaches. By studying the disease from every angle, this model offers the potential to unravel the basic biological underpinnings of NF2 and to develop novel therapeutics to control this devastating disease. Our protocol can be adapted to study other diseases within the CPA, including meningiomas, lipomas, vascular malformations, hemangiomas, epidermoid cysts, cerebellar astrocytomas, and metastatic lesions. The entire surgical procedure takes ~45 min per mouse and allows for subsequent longitudinal imaging, as well as neurological and hearing assessment, for up to 2 months.
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页码:541 / 555
页数:14
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