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Establishment of a patient-derived xenograft mouse model of pleomorphic leiomyosarcoma
Yasuhiro Shimada1, Tomoharu Naito1, Takuo Hayashi1
1Department of Human Pathology, School of Medicine, Juntendo University, 1-1-19 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
Abstract:
Soft tissue sarcomas are difficult to treat using chemotherapy owing to a current deficiency in candidate drugs for specific targets. Screening candidate compounds and analyzing therapeutic targets in sarcomas is insufficient, given the lack of an appropriate human sarcoma animal model to accurately evaluate their efficacy, as well as the lack of an adequate technical protocol for efficient transplantation and engraftment of sarcoma specimens in patient-derived xenograft (PDX) models. Accordingly, in this study, we sought to identify the optimal type of sarcoma and develop a protocol for generating a PDX model. We characterized a PDX mouse model using histopathological and immunohistochemical analyses to determine whether it would show pathological characteristics similar to those of human sarcomas. We achieved engraftment of one of the 10 transplanted sarcoma specimens, the xenografted tumor of which exhibited massive proliferation. Histologically, the engrafted sarcoma foci resembled a primary tumor of pleomorphic leiomyosarcoma and maintained their histological structure in all passages. Moreover, immunohistochemical analysis revealed the expression of specific markers of differentiation to smooth muscle, which is consistent with the features of leiomyosarcoma. We thus demonstrated that our pleomorphic leiomyosarcoma PDX mouse model mimics at least one aspect of human sarcomas, and we believe that this model will facilitate the development of novel therapies for sarcomas.
Insights
Developing a patient-derived xenograft (PDX) model for pleomorphic leiomyosarcoma is crucial for advancing soft tissue sarcoma treatments. This new model accurately reflects human sarcoma characteristics, aiding drug development.
Area of Science:
- Oncology
- Translational Research
- Animal Models
Background:
- Soft tissue sarcomas present treatment challenges due to limited targeted chemotherapy options.
- Current therapeutic target analysis is hindered by the lack of suitable human sarcoma models for efficacy evaluation.
Purpose of the Study:
- To identify the optimal sarcoma type for developing a patient-derived xenograft (PDX) model.
- To establish an effective protocol for generating sarcoma PDX models for preclinical research.
Main Methods:
- Histopathological and immunohistochemical analyses were employed to characterize the PDX model.
- Ten sarcoma specimens were transplanted to identify successful engraftment and model development.
Main Results:
- One of ten sarcoma specimens successfully engrafted, showing massive tumor proliferation.
- The engrafted tumor, identified as pleomorphic leiomyosarcoma, maintained histological structure and smooth muscle differentiation markers across passages.
- The developed PDX model demonstrated pathological characteristics similar to human sarcomas.
Conclusions:
- A novel pleomorphic leiomyosarcoma PDX mouse model was successfully generated.
- This model accurately mimics key pathological features of human sarcomas.
- The established PDX model is expected to facilitate the development of novel therapeutic strategies for soft tissue sarcomas.

