Establishment and characterization of intraperitoneal xenograft models by co‑injection of human tumor cells and extracellular matrix gel

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Abstract

Establishing a feasible intraperitoneal (i.p.) xeno­graft model in nude mice is a good strategy to evaluate the antitumor effect of drugs in vivo. However, the manipulation of human cancer cells in establishing a stable peritoneal carcinomatosis model in nude mice is problematic. In the present study, the ovarian and colorectal peritoneal tumor models were successfully established in nude mice by co-injection of human tumor cells and extracellular matrix gel. In ovarian tumor models, the mean number tumor nodes was significantly higher in the experimental group (intra­peritoneal tumor cell co-injection with ECM gel) compared with the PBS control group on the 30th day (21.0±3.0 vs. 3.6±2.5; P<0.05). The same results were observed in the colorectal peritoneal tumor models on the 28th day. The colorectal peritoneal tumor model was further used to evaluate the chemotherapy effect of irinotecan (CPT-11). The mean weight of peritoneal tumor nodes in CPT-11 treatment group was significantly less than that of the control group (0.81±0.16 vs. 2.18±0.21 g; P<0.05). The results confirmed the value of these i.p. xenograft models in nude mice as effi­cient and feasible tools for preclinical evaluation.

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Yao, Y., Zhou, Y., Su, X., Dai, L., Yu, L., Deng, H., … Yang, J. (2015). Establishment and characterization of intraperitoneal xenograft models by co‑injection of human tumor cells and extracellular matrix gel. Oncology Letters, 10(6), 3450–3456. https://doi.org/10.3892/ol.2015.3764

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