PO.IM02.07 · 免疫学
一种免疫健全、持久的MB49-Luc原位膀胱癌模型展现膀胱特异性肿瘤免疫,用于转化性免疫治疗研究
An immune-competent, durable MB49-Luc orthotopic bladder cancer model demonstrates bladder-specific tumor immunity for translational immunotherapy research
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景和目的:膀胱癌在美国仍是一个重大健康问题,每年约有85,000例新发病例和17,000例死亡。近70%的病例表现为非肌层浸润性膀胱癌(NMIBC),通常采用经尿道切除术后进行膀胱内免疫治疗。然而,当前疗法反应有限且不一致,凸显了持续存在的临床挑战。为实现有效的治疗开发,一个可靠的、免疫健全的、可纵向追踪的、能够代表膀胱癌独特免疫和生理特征的临床前模型至关重要。尽管数十年来一直努力完善小鼠同基因原位膀胱癌模型,但肿瘤成瘤率低和体内研究持续时间有限仍是主要挑战。在此,我们提出一种具有延长的体内监测能力的同基因原位膀胱癌模型,其重现了膀胱肿瘤免疫并能实现稳健的免疫治疗评估。
方法和结果:通过慢病毒转导生成表达荧光素酶的MB49细胞系。将雌性C57BL/6小鼠经膀胱内植入以建立原位肿瘤模型。使用IVIS进行的体内生物发光成像(BLI)显示稳定且可定量的膀胱局部肿瘤信号持续超过21天,肿瘤成瘤率为100%。通过H&E组织病理学确认膀胱腔内存在肿瘤。在第10天和第21天采集的荷瘤膀胱进行了下一代测序(NGS)及后续富集分析。差异基因表达揭示了反映早期和晚期肿瘤负荷的生物标志物特征,以及动态的免疫谱变化。通路富集分析将这些基因水平差异与调控免疫调节、肿瘤进展和膀胱癌生理的功能网络相关联。
结论:我们建立了一种优化的MB49-Luc原位膀胱癌模型,其保留免疫相关性,提供延长的成像窗口,并在肿瘤进展过程中展现出独特的分子转变。这一长时程、免疫健全的平台能够严格评估膀胱内和免疫肿瘤学治疗药物,并提供有意义的转化性见解,以支持下一代NMIBC免疫治疗的开发。
查看英文原文 English abstract
Background and Objective: Bladder cancer remains a significant health concern in the United States, with approximately 85,000 new cases and 17,000 deaths annually. Nearly 70% of cases present as non-muscle-invasive bladder cancer (NMIBC), commonly treated with transurethral resection followed by intravesical immunotherapy. However, limited and inconsistent responses to current therapies underscore ongoing clinical challenges. To enable effective therapeutic development, a reliable, immune-competent, and longitudinally trackable preclinical model capable of representing the unique immune and physiological features of bladder cancer is essential. Despite decades of effort to refine syngeneic orthotopic bladder cancer models in mice, low tumor take rates and limited in-life study duration remain major challenges. Here, we present a syngeneic orthotopic bladder cancer model with extended in-life monitoring capacity that recapitulates bladder tumor immunity and enables robust immunotherapy evaluation.
Method and Result: A luciferase-expressing MB49 cell line was generated via lentiviral transduction. Female C57BL/6 mice were implanted intravesically to establish an orthotopic tumor model. In-life bioluminescence imaging (BLI) using IVIS revealed stable and quantifiable bladder-localized tumor signals for more than 21 days, with a 100% tumor take rate. Tumor presence in the bladder lumen was confirmed by H&E histopathology. Tumor-bearing bladders collected on Days 10 and 21 underwent next-generation sequencing (NGS) and subsequent enrichment analysis. Differential gene expression revealed biomarker signatures reflective of early- and late-stage tumor burden, along with dynamic immune-profiling changes. Pathway enrichment analysis linked these gene-level differences to functional networks governing immune regulation, tumor progression, and bladder cancer physiology.
Conclusion: We established an optimized MB49-Luc orthotopic bladder cancer model that preserves immune relevance, provides a prolonged imaging window, and demonstrates distinct molecular transitions during tumor progression. This long-duration, immune-competent platform enables rigorous evaluation of intravesical and immuno-oncology therapeutics and offers meaningful translational insights to support next-generation NMIBC immunotherapy development.
利益披露 Disclosure
M. He, None..
M. Sifuentes, None..
N. Wang, None..
Z. Peng, None..
M. Huang, None.