A new insight into acute lymphoblastic leukemia in children: influences of changed intestinal microfloras

Previous studies have shown that changes in intestinal microfloras are associated with both gastrointestinal (GI) and non-GI tumors. It is not clear whether there is an association between GI microflora changes and hematological malignancies. In the current study, we used 16S rDNA gene sequencing te...

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Veröffentlicht in:BMC pediatrics 2020-06, Vol.20 (1), p.290-290, Article 290
Hauptverfasser: Gao, Xiaolin, Miao, Ruixue, Zhu, Yiping, Lin, Chao, Yang, Xue, Jia, Ruizhen, Linghan, Kuang, Wan, Chaomin, Deng, Jianjun
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Sprache:eng
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Zusammenfassung:Previous studies have shown that changes in intestinal microfloras are associated with both gastrointestinal (GI) and non-GI tumors. It is not clear whether there is an association between GI microflora changes and hematological malignancies. In the current study, we used 16S rDNA gene sequencing techniques to profile the GI microbiome in children with lymphoblastic leukemia (ALL, n = 18) and matched healthy control (n = 18). Using multiple specialized software [Heatmap, Principal coordinates analysis (PCoA), Claster and Metastates], we analyzed the sequencing data for microfloral species classification, abundance and diversity. A total of 27 genera between the ALL and control groups (FDR ≤ 0.05 and/or P ≤ 0.05) showed significantly different abundance between ALL patients and healthy controls: 12 of them were predominant in healthy group and other 15 species were significantly higher in ALL group. In addition, we compared the abundance and diversity of microfloral species in ALL patients prior to and during remission stage after chemotherapy, and no significant difference was detected. Compared to healthy controls, ALL patient showed significant changes of GI microfloras. Further explorations of the intestinal micro-ecology in ALL patients may provide important information to understand relationship between microfloras and ALL.
ISSN:1471-2431
1471-2431
DOI:10.1186/s12887-020-02192-9