Bioinformatics, Department of Biology, Friedrich-Alexander-Universität Erlangen-Nürnberg, Erlangen, Germany.
Institute for Biostatistics and Informatics in Medicine and Ageing Research, Rostock University Medical Center, Rostock, Germany.
Sci Rep. 2018 Apr 19;8(1):6279. doi: 10.1038/s41598-018-23207-7.
In dogs as well as humans, lymphoma is one of the most common hematopoietic malignancies. Furthermore, due to its characteristics, canine lymphoma is recognized as a clinically relevant in vivo model to study the corresponding human disease. Immortalized cell lines are widely used as in vitro models to evaluate novel therapeutic agents and characterize their molecular mechanisms. However, it is known that long-term cultivation leads to clonal selection, genetic instability, and loss of the initial heterogenic character, limiting the usefulness of cell lines as preclinical models. Herein, we present a systematic characterization and comparison of the transcriptomic landscape of canine primary B- and T-cell lymphomas, five lymphoid cell lines (CLBL-1, CLBL-1M, GL-1, CL-1, and OSW) and four non-neoplastic control samples. We found that lymphomas and cell lines exhibit a common "differentiation and proliferation signature". However, our analysis also showed that, independently of the cell of origin, the transcriptional signatures of lymphomas are more similar to each other than they are to those of cell lines. In particular, we observed that not all common therapeutic targets are similarly expressed between lymphomas and lymphoid cell lines, and provide evidence that different lymphoid cell-lines should be used to model distinct aspects of lymphoma dysregulation.
在犬和人类中,淋巴瘤是最常见的造血系统恶性肿瘤之一。此外,由于其特点,犬淋巴瘤被认为是一种临床相关的体内模型,用于研究相应的人类疾病。永生化细胞系被广泛用作体外模型,以评估新的治疗药物,并研究其分子机制。然而,众所周知,长期培养会导致克隆选择、遗传不稳定性和初始异质性特征的丧失,从而限制了细胞系作为临床前模型的有用性。在此,我们对犬原发性 B 细胞和 T 细胞淋巴瘤、五种淋巴母细胞系(CLBL-1、CLBL-1M、GL-1、CL-1 和 OSW)和四个非肿瘤对照样本的转录组景观进行了系统的描述和比较。我们发现淋巴瘤和细胞系表现出共同的“分化和增殖特征”。然而,我们的分析还表明,无论细胞起源如何,淋巴瘤的转录特征彼此之间比与细胞系的转录特征更为相似。特别是,我们观察到并非所有常见的治疗靶点在淋巴瘤和淋巴母细胞系之间的表达都相同,并提供证据表明,不同的淋巴母细胞系应被用于模拟淋巴瘤失调的不同方面。