Establishment of a novel experimental model for muscle-invasive bladder cancer using a dog bladder cancer organoid culture.

利用犬膀胱癌类器官培养建立肌层浸润性膀胱癌的新型实验模型

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作者:Elbadawy Mohamed, Usui Tatsuya, Mori Takashi, Tsunedomi Ryouichi, Hazama Shoichi, Nabeta Rina, Uchide Tsuyoshi, Fukushima Ryuji, Yoshida Toshinori, Shibutani Makoto, Tanaka Takaharu, Masuda Sosuke, Okada Rena, Ichikawa Ryo, Omatsu Tsutomu, Mizutani Tetsuya, Katayama Yukie, Noguchi Shunsuke, Iwai Satomi, Nakagawa Takayuki, Shinohara Yuta, Kaneda Masahiro, Yamawaki Hideyuki, Sasaki Kazuaki
In human and dogs, bladder cancer (BC) is the most common neoplasm affecting the urinary tract. Dog BC resembles human muscle-invasive BC in histopathological characteristics and gene expression profiles, and could be an important research model for this disease. Cancer patient-derived organoid culture can recapitulate organ structures and maintains the gene expression profiles of original tumor tissues. In a previous study, we generated dog prostate cancer organoids using urine samples, however dog BC organoids had never been produced. Therefore we aimed to generate dog BC organoids using urine samples and check their histopathological characteristics, drug sensitivity, and gene expression profiles. Organoids from individual BC dogs were successfully generated, expressed urothelial cell markers (CK7, CK20, and UPK3A) and exhibited tumorigenesis in vivo. In a cell viability assay, the response to combined treatment with a range of anticancer drugs (cisplatin, vinblastine, gemcitabine or piroxicam) was markedly different in each BC organoid. In RNA-sequencing analysis, expression levels of basal cell markers (CK5 and DSG3) and several novel genes (MMP28, CTSE, CNN3, TFPI2, COL17A1, and AGPAT4) were upregulated in BC organoids compared with normal bladder tissues or two-dimensional (2D) BC cell lines. These established dog BC organoids might be a useful tool, not only to determine suitable chemotherapy for BC diseased dogs but also to identify novel biomarkers in human muscle-invasive BC. In the present study, for the 1st time, dog BC organoids were generated and several specifically upregulated organoid genes were identified. Our data suggest that dog BC organoids might become a new tool to provide fresh insights into both dog BC therapy and diagnostic biomarkers.

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