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Characterization of human ovarian carcinomas in a SCID mouse model
1Department of Immunology, Division of Gynecologic Oncology, Roswell Park Cancer Institute, Elm and Carlton Streets, Buffalo, New York, 14263, USA.
Abstract:
This study characterizes a murine model which is promising for the study of the growth and natural history of ovarian cancer and for testing of new therapies for its treatment. Intact portions of 20 different human ovarian cancer surgical specimens were implanted in over 60 severe combined immunodeficient (SCID) mice using techniques previously developed in our laboratory. Growth of xenografts was evaluated by gross examination and histopathologic analysis. Confirmation of the human origin of the tumor outgrowth was obtained using in situ hybridization analysis. By histological evaluation, all of the patients' tumors showed evidence of invasive growth in at least 1 of the mice implanted with portions of each surgical specimen and these tumors remained morphologically similar to the parent tumors for a long period of time. Furthermore, 65% (13/20) of the xenografts grew rapidly enough (i.e., reached a diameter of 1-2 cm within 2-6 months) to allow passage to subsequent SCID mice. Among the passaged xenografts, 3 eventually developed metastases in a distribution pattern similar to that of naturally occurring ovarian cancer and 2 developed ascites without evidence of further metastatic spread. Upon evaluation of sera from tumor-bearing mice, human antibodies presumably derived from immunoglobulin-secreting cells present in the original tumor specimen were identified. In support of this, human B cells and plasma cells could be seen within the tumor xenograft for more than 6 months following implantation. In summary, transplantation of surgical specimens from ovarian cancer patients into SCID mice results in an attractive model for the study of the natural history of ovarian cancer and may also be useful for analysis or new experimental therapeutic approaches for the treatment of this disease.
Insights
This study developed a new mouse model for ovarian cancer research. Severe combined immunodeficient (SCID) mice implanted with human ovarian tumors provide a valuable platform for studying cancer growth and testing new treatments.
Area of Science:
- Oncology
- Immunology
- Animal Models
Background:
- Ovarian cancer remains a significant health challenge with limited treatment options.
- Developing reliable models for studying ovarian cancer progression and therapeutic response is crucial.
Purpose of the Study:
- To characterize a novel murine model for ovarian cancer research.
- To evaluate its utility in studying tumor growth, natural history, and treatment efficacy.
Main Methods:
- Human ovarian cancer surgical specimens were implanted into severe combined immunodeficient (SCID) mice.
- Tumor growth was assessed via gross examination and histopathology.
- Human origin was confirmed using in situ hybridization; B cells and plasma cells were identified.
Main Results:
- All implanted tumors demonstrated invasive growth and maintained morphological similarity to parent tumors.
- 65% of xenografts grew sufficiently for serial passage in SCID mice.
- Passaged xenografts exhibited metastatic patterns and ascites formation, mimicking human ovarian cancer.
Conclusions:
- Transplantation of human ovarian cancer specimens into SCID mice creates a promising model.
- This model facilitates the study of ovarian cancer natural history and preclinical therapeutic testing.