关于碎玻璃结核致癌的代谢组学研究

IF 2.5 4区 医学 Q2 PATHOLOGY Cytojournal Pub Date : 2024-03-18 DOI:10.25259/cytojournal_68_2023
Xiaomiao Zhang, Xin Tong, Yuan Chen, Jun Chen, Yu Li, Chengming Ding, Sheng Ju, Yi Zhang, Hang Zhang, Jun Zhao
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引用次数: 0

摘要

本研究旨在利用代谢组学技术鉴定肺腺癌(LUAD)组织与正常肺(NL)组织之间的差异代谢物和关键代谢通路,从而发现肺癌早期诊断的潜在生物标志物。研究招募了45名经计算机断层扫描成像确定的原发性磨玻璃结节(GGN)患者,这些患者愿意在2021年12月至2022年12月期间在上海总医院接受手术治疗。所有参与者均接受了视频胸腔镜手术,并进行了肺段或楔形切除。病理检查的组织样本取自磨玻璃结节(GGN)病变部位和距离病变3厘米处(NL)。病理结果为 35 例肺腺癌(LUAD)(13 例浸润性腺癌、14 例微小浸润性腺癌和 8 例原位腺癌)、10 例良性样本和 45 例 NL 组织。在非靶向代谢组学技术中,25 个 LUAD 样本被指定为病例组,30 个 NL 组织被指定为对照组。对于靶向代谢组学技术,10 个 LUAD 样本被指定为病例组,15 个 NL 组织被指定为对照组。样本通过非靶向和靶向代谢组学进行分析,实验过程中使用了液相色谱-串联质谱检测。非靶向代谢组学发现病例组和对照组之间存在 164 种不同的代谢物,包括 110 种上调代谢物和 54 种下调代谢物。非靶向方法发现的主要代谢差异是有机酸及其衍生物。靶向代谢组学发现病例组和对照组之间存在 77 种不同的代谢物,其中 69 种向上调节,8 种向下调节。靶向方法发现的主要代谢变化是脂肪酸、氨基酸和有机酸。与 NL 相比,LUAD 组织中乳酸、富马酸和苹果酸等有机酸的含量明显增加。具体来说,非靶向(预测中的可变重要性[VIP] = 1.332,折变[FC] = 1.678,q = 0.000)和靶向代谢组学(VIP = 1.240,FC = 1.451,q = 0.043)均发现 L-乳酸的含量增加。靶向代谢组学还发现富马酸(VIP = 1.481,FC = 1.764,q = 0.106)和 L-苹果酸(VIP = 1.376,FC = 1.562,q = 0.012)的含量增加。在已确定的 20 种差异脂肪酸中,大部分都出现了下调,包括十二烷酸(VIP = 1.416,FC = 0.378,q = 0.043)和十三烷酸(VIP = 0.880,FC = 0.780,q = 0.106)。此外,在 LUAD 样本中还发现了差异氨基酸水平的升高。肺癌是一种复杂的异质性疾病,具有多种多样的基因改变。对这种癌症类型进行代谢谱研究是一个很有前景的研究领域。靶向和非靶向代谢组学揭示了LUAD和NL组织代谢物的显著差异,包括有机酸水平升高、脂肪酸水平降低和氨基酸水平升高。这些代谢特征为了解LUAD的发病机制提供了宝贵的信息,并有可能成为预后和治疗反应的生物标志物。
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A metabolomics study on carcinogenesis of ground-glass nodules
This study aimed to identify differential metabolites and key metabolic pathways between lung adenocarcinoma (LUAD) tissues and normal lung (NL) tissues using metabolomics techniques, to discover potential biomarkers for the early diagnosis of lung cancer. Forty-five patients with primary ground-glass nodules (GGN) identified on computed tomography imaging and who were willing to undergo surgery at Shanghai General Hospital from December 2021 to December 2022 were recruited to the study. All participants underwent video thoracoscopy surgery with segmental or wedge resection of the lung. Tissue samples for pathological examination were collected from the site of ground-glass nodules (GGN) lesion and 3 cm away from the lesion (NL). The pathology results were 35 lung adenocarcinoma (LUAD) cases (13 invasive adenocarcinoma, 14 minimally invasive adenocarcinoma, and eight adenocarcinoma in situ), 10 benign samples, and 45 NL tissues. For the untargeted metabolomics technique, 25 LUAD samples were assigned as the case group and 30 NL tissues as the control group. For the targeted metabolomics technique, ten LUAD samples were assigned as the case group and 15 NL tissues as the control group. Samples were analyzed by untargeted and targeted metabolomics, with liquid chromatography-tandem mass spectrometry detection used as part of the experimental procedure. Untargeted metabolomics revealed 164 differential metabolites between the case and control groups, comprising 110 up regulations and 54 down regulations. The main metabolic differences found by the untargeted method were organic acids and their derivatives. Targeted metabolomics revealed 77 differential metabolites between the case and control groups, comprising 69 up regulations and eight down regulations. The main metabolic changes found by the targeted method were fatty acids, amino acids, and organic acids. The levels of organic acids such as lactic acid, fumaric acid, and malic acid were significantly increased in LUAD tissue compared to NL. Specifically, an increased level of L-lactic acid was found by both untargeted (variable importance in projection [VIP] = 1.332, fold-change [FC] = 1.678, q = 0.000) and targeted metabolomics (VIP = 1.240, FC = 1.451, q = 0.043). Targeted metabolomics also revealed increased levels of fumaric acid (VIP = 1.481, FC = 1.764, q = 0.106) and L-malic acid (VIP = 1.376, FC = 1.562, q = 0.012). Most of the 20 differential fatty acids identified were downregulated, including dodecanoic acid (VIP = 1.416, FC = 0.378, q = 0.043) and tridecane acid (VIP = 0.880, FC = 0.780, q = 0.106). Furthermore, increased levels of differential amino acids were found in LUAD samples. Lung cancer is a complex and heterogeneous disease with diverse genetic alterations. The study of metabolic profiles is a promising research field in this cancer type. Targeted and untargeted metabolomics revealed significant differences in metabolites between LUAD and NL tissues, including elevated levels of organic acids, decreased levels of fatty acids, and increased levels of amino acids. These metabolic features provide valuable insights into LUAD pathogenesis and can potentially serve as biomarkers for prognosis and therapy response.
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来源期刊
Cytojournal
Cytojournal PATHOLOGY-
CiteScore
2.20
自引率
42.10%
发文量
56
审稿时长
>12 weeks
期刊介绍: The CytoJournal is an open-access peer-reviewed journal committed to publishing high-quality articles in the field of Diagnostic Cytopathology including Molecular aspects. The journal is owned by the Cytopathology Foundation and published by the Scientific Scholar.
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