Intestinal Domination and the Risk of Bacteremia in Patients Undergoing Allogeneic Hematopoietic Stem Cell Transplantation

Колонизация кишечника доминирующими бактериями и риск бактериемии у пациентов, подвергающихся аллогенной трансплантации гемопоэтических стволовых клеток
Nicholas D. Socci, Agnès Viale, Eric G. Pamer, Marcel R.M. van den Brink, Miguel‐Angel Perales, Ying Taur, Robert R. Jenq, Carles Úbeda, Asia Gobourne, João B. Xavier, Krista Dubin, Yeon Joo Lee, Lauren Lipuma, Jenna Goldberg
2012-06-20

16S ribosomal RNA sequencingallogeneic hematopoietic stem cell transplantationbacteremiagut microbiotaintestinal domination
BACKGROUND: Bacteremia is a frequent complication of allogeneic hematopoietic stem cell transplantation (allo-HSCT). It is unclear whether changes in the intestinal microbiota during allo-HSCT contribute to the development of bacteremia. We examined the microbiota of patients undergoing allo-HSCT, and correlated microbial shifts with the risk of bacteremia. METHODS: Fecal specimens were collected longitudinally from 94 patients undergoing allo-HSCT, from before transplant until 35 days after transplant. The intestinal microbiota was characterized by 454 pyrosequencing of the V1-V3 region of bacterial 16S ribosomal RNA genes. Microbial diversity was estimated by grouping sequences into operational taxonomic units and calculating the Shannon diversity index. Phylogenetic classification was obtained using the Ribosomal Database Project classifier. Associations of the microbiota with clinical predictors and outcomes were evaluated. RESULTS: During allo-HSCT, patients developed reduced diversity, with marked shifts in bacterial populations inhabiting the gut. Intestinal domination, defined as occupation of at least 30% of the microbiota by a single predominating bacterial taxon, occurred frequently. Commonly encountered dominating organisms included Enterococcus, Streptococcus, and various Proteobacteria. Enterococcal domination was increased 3-fold by metronidazole administration, whereas domination by Proteobacteria was reduced 10-fold by fluoroquinolone administration. As a predictor of outcomes, enterococcal domination increased the risk of Vancomycin-resistant Enterococcus bacteremia 9-fold, and proteobacterial domination increased the risk of gram-negative rod bacteremia 5-fold. CONCLUSIONS: During allo-HSCT, the diversity and stability of the intestinal flora are disrupted, resulting in domination by bacteria associated with subsequent bacteremia. Assessment of fecal microbiota identifies patients at highest risk for bloodstream infection during allo-HCST.
1
Allogeneic hematopoietic stem cell transplantation disrupted intestinal microbiota, causing reduced diversity and major shifts in bacterial populations.
2
Enterococcal domination increased the risk of vancomycin-resistant Enterococcus bacteremia ninefold, while Proteobacteria domination increased gram-negative rod bacteremia risk fivefold.
3
Fecal microbiota assessment identified patients at highest risk for bloodstream infection during allo-HSCT.
4
Intestinal domination, defined as a single bacterial taxon occupying at least 30% of the microbiota, occurred frequently after transplantation.
5
Metronidazole increased Enterococcus domination threefold, whereas fluoroquinolone administration reduced Proteobacteria domination tenfold.

Intestinal microbiota of patients undergoing allogeneic hematopoietic stem cell transplantation

Microbiota disruption and intestinal domination as predictors of bacteremia risk

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2012-06-20
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Nicholas D. Socci
Agnès Viale
Eric G. Pamer
Marcel R.M. van den Brink
Miguel‐Angel Perales
Ying Taur
Robert R. Jenq
Carles Úbeda
Asia Gobourne
João B. Xavier
Krista Dubin
Yeon Joo Lee
Lauren Lipuma
Jenna Goldberg
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