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April 5, 2026Cancer Research0 citations

Abstract 679: BRAF-defined canine urothelial carcinoma organoids as a comparative oncology platform for drug response evaluation.

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KBKieun BaeKYK. J. YoonDJDoyoung Jeon

Key Points

  • This research aims to evaluate the potential of BRAF-defined canine urothelial carcinoma organoids for drug response assessment.
  • Established organoids from surgically resected tissues of canine TCC cases and cystitis samples.
  • Evaluated proliferation and motility via expression of urothelial markers and BRAF status.
  • Conducted in vitro assays using targeted inhibitors and injected organoids into mice for metastatic capacity assessment.
  • Monitored tumor response and ctdna for treatment effects on BRAF pathway.
  • Analyzed efficacy of drugs like sorafenib and vemurafenib in xenografted mice.
  • Organoids retained identical BRAF status and exhibited enhanced proliferation and motility.
  • In vitro assays showed that targeted inhibitors reduced phosphorylated-ERK expression, with sorafenib being most effective.
  • In xenografted mice, sorafenib or vemurafenib significantly decreased tumor formation and metastatic progression.
  • Treatment led to lower BRAF mutant allele fractions in circulating tumor DNA, indicating effective inhibition of the oncogenic BRAF/MAPK pathway.

Abstract

Abstract Canine urothelial carcinoma, also referred to as transitional cell carcinoma (TCC), is the most common malignancy of the canine urinary tract, with the BRAF V595E mutation reported in approximately 70-85% of cases. This mutation is the canine homolog of the human oncogenic BRAF mutation, which is frequently detected in melanoma and papillary thyroid carcinoma. However, whereas BRAF mutation is a potent therapeutic target in human cancers, clinical efficacy in canine TCCs remains unclear, highlighting the need for additional research. In this study, cancer organoids were established from surgically resected tissues of canine patients six BRAF V595E-mutated TCCs, two BRAF wildtype TCCs, and two cystitis samples. The organoids expressed urothelial markers (cytokeratin-7, uroplakin-3A) and retained BRAF status identical to the parental tumors. Organoids harboring BRAF mutation showed enhanced proliferation and motility, consistent with Ki-67 and vimentin expression. To validate these in vitro results, canine TCC organoids were injected into mice via the tail vein. After seven weeks, all injected mice developed multiple pulmonary nodules, confirming strong metastatic capacity. Tumors were re-cultured as organoids, which retained aggressive phenotypes ex vivo alongside sustained ERK phosphorylation and the BRAF V595E mutation. Organoid-based in vitro assays demonstrated that six targeted inhibitors commonly used in human cancers effectively reduced phosphorylated-ERK expression. Among these agents, sorafenib showed the strongest cytotoxic activity. In xenografted mice, six weeks of oral administration of sorafenib or vemurafenib, markedly reduced tumor formation. Mice treated with BRAF inhibitors also showed decreased p-ERK expression in metastatic lesions and lower BRAF mutant allele fractions in circulating tumor DNA, indicating suppression of metastatic progression through inhibition of the BRAF/MAPK pathway. Collectively, our findings demonstrate that canine TCC organoids function as a comparative model bridging human and canine cancers, enabling us to dissect BRAF-dependent oncogenic mechanisms, evaluate anti-metastatic drug efficacy, and monitor treatment response via ctDNA. Citation Format: Kieun Bae, Kyong-Ah Yoon, Doyoung Jeon, Jimin Park, Aryung Nam, Jung-Hyun Kim, Hyun-Jung Han, Hun-Young Yoon. BRAF-defined canine urothelial carcinoma organoids as a comparative oncology platform for drug response evaluation abstract. In: Proceedings of the American Association for Cancer Research Annual Meeting 2026; Part 1 (Regular Abstracts); 2026 Apr 17-22; San Diego, CA. Philadelphia (PA): AACR; Cancer Res 2026;86(7 Suppl):Abstract nr 679.

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Cite This Study

Bae et al. (2026) studied this question.

synapsesocial.com/papers/69d1fdd4a79560c99a0a4261https://doi.org/10.1158/1538-7445.am2026-679
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