幽门螺杆菌感染人胃细胞株的分子指纹图谱

P. Sampaio, B. Cunha, Filipa Rosa, K. Sales, M. Lopes, C. Calado
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引用次数: 2

摘要

幽门螺杆菌感染是一个严重的健康问题,因为它与胃溃疡、癌症和MALT淋巴瘤等严重胃疾病有关。目前没有疫苗,基于抗生素的根除治疗在20%以上的病例中已经失败。为了增加对感染过程的了解,不同的胃细胞系,如胃腺癌(AGS)细胞系,通常用于体外胃上皮模型。本研究利用振动红外光谱技术对不同幽门螺杆菌感染的AGS细胞株和未感染的AGS细胞株进行了分子指纹图谱分析。通过主成分分析,这些分子指纹图谱能够区分感染和未感染的AGS细胞,以及不同菌株引起的感染。通过AGS细胞的分子指纹图谱,还可以估计感染对细胞多种生化代谢状态的影响。此外,红外光谱技术能够以最少的样品制备,以快速、高通量、经济的方式获得感染AGS细胞的分子指纹,产生高度敏感和信息丰富的数据,对促进幽门螺杆菌感染过程的关键知识最有用。
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Molecular fingerprint of human gastric cell line infected by Helicobacter pylori
Helicobacter pylori infection represents a serious health problem, given its association with serious gastric diseases as gastric ulcers, cancer and MALT lymphoma. Currently no vaccine exists and antibiotic-based eradication therapy is already failing in more than 20% of cases. To increase the knowledge on the infection process diverse gastric cell lines, e.g. the adenocarcinona gastric (AGS) cell line, are routinely used has in vitro models of gastric epithelia. In the present work the molecular fingerprint of infected and non-infected AGS cell lines, by diverse H. pylori strains, was acquired using vibrational infrared spectroscopy. These molecular fingerprints enabled to discriminate infected from non-infected AGS cells, and infection due to different strains, by performing Principal Component Analysis. It was also possible to estimate, from the AGS cells molecular fingerprint, the effect of the infection on diverse biochemical and metabolic cellular status. In resume infra-red spectroscopy enabled the acquisition of infected AGS cells molecular fingerprint with minimal sample preparation, in a rapid, high-throughput, economic process yielding highly sensitive and informative data, most useful for promoting critical knowledge on the H. pylori infection process.
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