Impact of Intestinal Microbiota on Reconstitution of Circulating Monocyte, Dendritic Cell, and Natural Killer Cell Subsets in Adults Undergoing Single-Unit Cord Blood Transplantation
BIOLOGY OF BLOOD AND MARROW TRANSPLANTATION
Authors: Konuma, Takaaki; Kohara, Chisato; Watanabe, Eri; Takahashi, Shunsuke; Ozawa, Genki; Inomata, Kentaro; Suzuki, Kei; Mizukami, Motoko; Nagai, Etsuko; Okabe, Motohito; Isobe, Masamichi; Kato, Seiko; Oiwa-Monna, Maki; Takahashi, Satoshi; Tojo, Arinobu
Abstract
The intestinal microbiota plays a fundamental role in the development of host innate immune cells, such as monocytes, dendritic cells (DCs), and natural killer (NK) cells. We examined the association between intestinal microbiota and subsequent immune reconstitution of circulating monocyte, DC, and NK cell subsets in 38 adult patients undergoing single-unit cord blood transplantation (CBT). A higher diversity of intestinal microbiota at 1 month was significantly associated with higher counts of plasmacytoid DCs at 7 months after CBT, as measured by the Chao1 index. Principal coordinate analysis of unweighted UniFrac distances showed significant differences between higher and lower classical monocyte reconstitution at 7 months post-CBT. The families Neisseriaceae, Burkholderiaceae, Propionibacteriaceae, and Coriobacteriaceae were increased in higher classical monocyte reconstitution at 7 months post-CBT, whereas the family Bacteroidaceae was increased in lower classical monocyte reconstitution at 7 months post-CBT. These data show that intestinal microbiota composition affects immune reconstitution of classical monocyte and plasmacytoid DCs following single-unit CBT. (C) 2020 American Society for Transplantation and Cellular Therapy. Published by Elsevier Inc.
Transcriptional Memory-Like Imprints and Enhanced Functional Activity in gamma delta T Cells Following Resolution of Malaria Infection
FRONTIERS IN IMMUNOLOGY
Authors: Kumarasingha, Rasika; Ioannidis, Lisa J.; Abeysekera, Waruni; Studniberg, Stephanie; Wijesurendra, Dinidu; Mazhari, Ramin; Poole, Daniel P.; Mueller, Ivo; Schofield, Louis; Hansen, Diana S.; Eriksson, Emily M.
Abstract
gamma delta T cells play an essential role in the immune response to many pathogens, including Plasmodium. However, long-lasting effects of infection on the gamma delta T cell population still remain inadequately understood. This study focused on assessing molecular and functional changes that persist in the gamma delta T cell population following resolution of malaria infection. We investigated transcriptional changes and memory-like functional capacity of malaria pre-exposed gamma delta T cells using a Plasmodium chabaudi infection model. We show that multiple genes associated with effector function (chemokines, cytokines and cytotoxicity) and antigen-presentation were upregulated in P. chabaudi-exposed gamma delta T cells compared to gamma delta T cells from naive mice. This transcriptional profile was positively correlated with profiles observed in conventional memory CD8(+) T cells and was accompanied by enhanced reactivation upon secondary encounter with Plasmodium-infected red blood cells in vitro. Collectively our data demonstrate that Plasmodium exposure result in "memory-like imprints" in the gamma delta T cell population and also promotes gamma delta T cells that can support antigen-presentation during subsequent infections.