Fritsche-Guenther Raphaela, Gloaguen Yoann, Kirchner Marieluise, Mertins Philipp, Tunn Per-Ulf, Kirwan Jennifer A
Berlin Institute of Health Metabolomics Platform, Berlin Institute of Health (BIH), 13125 Berlin, Germany.
Max Delbrück Center for Molecular Medicine (MDC) in the Helmholtz Association, 13125 Berlin, Germany.
Cancers (Basel). 2020 May 27;12(6):1371. doi: 10.3390/cancers12061371.
Osteosarcoma (OS) is a primary malignant bone tumor and OS metastases are mostly found in the lung. The limited understanding of the biology of metastatic processes in OS limits the ability for effective treatment. Alterations to the metabolome and its transformation during metastasis aids the understanding of the mechanism and provides information on treatment and prognosis. The current study intended to identify metabolic alterations during OS progression by using a targeted gas chromatography mass spectrometry approach. Using a female OS cell line model, malignant and metastatic cells increased their energy metabolism compared to benign OS cells. The metastatic cell line showed a faster metabolic flux compared to the malignant cell line, leading to reduced metabolite pools. However, inhibiting both glycolysis and glutaminolysis resulted in a reduced proliferation. In contrast, malignant but non-metastatic OS cells showed a resistance to glycolytic inhibition but a strong dependency on glutamine as an energy source. Our in vivo metabolic approach hinted at a potential sex-dependent metabolic alteration in OS patients with lung metastases (LM), although this will require validation with larger sample sizes. In line with the in vitro results, we found that female LM patients showed a decreased central carbon metabolism compared to metastases from male patients.
骨肉瘤(OS)是一种原发性恶性骨肿瘤,骨肉瘤转移大多发生在肺部。对骨肉瘤转移过程生物学的了解有限,限制了有效治疗的能力。代谢组的改变及其在转移过程中的转变有助于理解其机制,并为治疗和预后提供信息。本研究旨在通过使用靶向气相色谱质谱法确定骨肉瘤进展过程中的代谢改变。使用雌性骨肉瘤细胞系模型,与良性骨肉瘤细胞相比,恶性和转移性细胞增加了能量代谢。与恶性细胞系相比,转移细胞系显示出更快的代谢通量,导致代谢物池减少。然而,抑制糖酵解和谷氨酰胺分解均导致增殖减少。相比之下,恶性但非转移性骨肉瘤细胞对糖酵解抑制具有抗性,但强烈依赖谷氨酰胺作为能量来源。我们的体内代谢方法暗示了肺转移(LM)骨肉瘤患者可能存在性别依赖性代谢改变,尽管这需要更大样本量的验证。与体外结果一致,我们发现与男性患者的转移灶相比,女性肺转移患者的中心碳代谢降低。