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Establishment of an Orthotopic Mouse Non-Muscle Invasive Bladder Cancer Model Expressing the Mammalian Target of Rapamycin Signaling Pathway
Authors:Soon-Ja Kim  Ho Kyung Seo  Hye-Hyun Seo  Sang-Jin Lee  Jong Kyou Kwon  Tae-Jin Lee  Byung Hoon Chi  In Ho Chang
Affiliation:1.Biomedical Science, Department of Medicine, Chung-Ang University Graduate School, Seoul, Korea.;2.Center for Prostate Cancer, Research Institute National Cancer Center, Goyang, Korea.;3.Genitourinary Cancer Branch, Research Institute National Cancer Center, Goyang, Korea.;4.Department of Urology, Chung-Ang University College of Medicine, Seoul, Korea.;5.Department of Pathology, Chung-Ang University College of Medicine, Seoul, Korea.
Abstract:
We established an orthotopic non-muscle invasive bladder cancer (NMIBC) mouse model expressing the mammalian target of the rapamycin (mTOR) signaling pathway. After intravesical instillation of KU-7-lucs (day 0), animals were subsequently monitored by bioluminescence imaging (BLI) on days 4, 7, 14, and 21, and performed histopathological examination. We also validated the orthotopic mouse model expressing the mTOR signaling pathway immunohistochemically. In vitro BLI photon density was correlated with KU-7-luc cell number (r2 = 0.97, P < 0.01) and in vivo BLI photon densities increased steadily with time after intravesical instillation. The tumor take rate was 84.2%, formed initially on day 4 and remained NMIBC up to day 21. T1 photon densities were significantly higher than Ta (P < 0.01), and histological tumor volume was positively correlated with BLI photon density (r2 = 0.87, P < 0.01). The mTOR signaling pathway-related proteins were expressed in the bladder, and were correlated with the western blot results. Our results suggest successful establishment of an orthotopic mouse NMIBC model expressing the mTOR signaling pathway using KU-7-luc cells. This model is expected to be helpful to evaluate preclinical testing of intravesical therapy based on the mTOR signaling pathway against NMIBC.
Keywords:Urinary Bladder Neoplasms   Mouse Orthotopic Model   mTOR
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