The described approach closely mimics the supportive microenvironment of ovarian cancer (in particular, high grade serous carcinoma) by co-injection of patient-derived mesenchymal stem cells (CA-MSCs) and ovarian cancer cells into the ovarian bursa. First, CA-MSCs were isolated from primary, surgically resected human high grade serous ovarian cancer involving the omentum (all CA-MSCs used in this experiment were derived from the same patient). After 2 weeks of plating the tissue samples, CA-MSCs were tested to meet the criteria defined by the International Society for Cellular Therapy (ISCT) for mesenchymal stem cells/multipotent mesenchymal stromal cells. As CA-MSCs are patient-derived primary cells, slight differences in morphology can be observed between cell lines (Figure 1).
Following the orthotopic engraftment of OVCAR3-Luc tumor cells combined in a 1:1 ratio with CA-MSCs into the ovarian bursa of NSG mice, tumors formed with a 100% engraftment rate. Tumor engraftment was confirmed using an in vivo bioluminescent imaging system (IVIS) by day 7 post-injection. IVIS imaging was performed weekly to document tumor growth and the presence of metastases. Bioluminescent imaging revealed progressive tumor growth over time (Figure 2A). Serial imaging also demonstrated the formation of intra-abdominal metastases by day 14 post-injection, with increased metastatic disease burden over the experimental time course (Figure 2B). Further, mice experienced significant decreases in body weight during this experiment (Figure 3A). This weight loss is a surrogate marker of systemic illness and increased disease burden. By day 30 post-injection, the mouse cohort reached the endpoint criteria of greater than 10% loss of body weight. Ascites formation can compound the use of weight loss alone as an endpoint; therefore, additional endpoints including weight gain >20% with presence of ascites, weight loss <10%, tumor ulceration, and body condition scoring of 2 or less are also considered. In this experiment, the weight loss endpoint was reached first in all mice.
Upon reaching the experimental endpoint, necropsies were performed that confirmed aggressive, diffuse intra-abdominal metastasis in 100% of mice (based on visual inspection and immunohistochemical confirmation). Distant lung and parenchymal liver metastasis were confirmed in 80% and 60% of mice, respectively. Additionally, ascites was noted in 80% of mice (Figure 3B). In comparison, based on the previous work, OVCAR3-Luc cells injected without CA-MSCs demonstrate slower engraftment (though they do demonstrate 100% engraftment over time) and decreased metastasis formation (40% reduction in intra-peritoneal metastasis and no evidence of lung or parenchymal liver metastasis). Altogether, these results recapitulate the rapid, diffuse abdominal metastases and disease burden characterized by human ovarian cancer.

Figure 1: Representative examples of morphologic variation between cell lines of patient-derived CA-MSCs (scale bar = 100 µm, magnification at 10x). Panels (A-D) are representative pictures of CA-MSCs derived from four different high grade serous ovarian cancer samples. This demonstrates that while general morphologic similarities exist, each cell line has slight variations. Please click here to view a larger version of this figure.

Figure 2: Orthotopic ovarian tumor growth and progression. (A) Bioluminescent signal (photon flux per second) showed steadily increasing ovarian tumor growth over time. (n = 10, average and SEM). (B) Representative bioluminescent imaging demonstrating tumor growth and the development of intra-abdominal metastases. Please click here to view a larger version of this figure.

Figure 3: Orthotopic ovarian tumor metastases. (A) A significant reduction in average total body weight is demonstrated during the experimental time course (n = 10, average and SEM displayed). (B) Distribution of metastatic disease and ascites formation based on necropsy findings from 10 mice (percent of mice with metastasis is displayed). Please click here to view a larger version of this figure.