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Chao, N. J.

Publications and source records attributed to Chao, N. J..

2 recordsLinked to original sources

The impact of transplant location on the gut microbiome and resistome in patients undergoing hematopoietic stem cell transplantation at home versus in the hospital

ObjectivesHome-based hematopoietic stem cell transplantation (HCT) is a novel approach that has the potential to improve outcomes, however, the impact of transplant location on the gut microbiome remains uncharacterized. We hypothesized that patients randomized to undergo home HCT would have higher gut taxonomic diversity and lower antimicrobial resistance (AMR) gene abundance compared to those undergoing standard hospital HCT. MethodsWe identified 28 patients enrolled in Phase II randomized trials of home (n=16) v. hospital (n=12) HCT at Duke and performed shotgun metagenomic sequencing of stools to compare taxonomic and AMR gene composition between groups. We performed a secondary analysis of patients from each group transplanted at an outpatient infusion clinic with those who underwent standard inpatient HCT ("outpatient" v. "inpatient"). ResultsNo significant differences in duration of hospitalization were found in those randomized to home v. hospital HCT. Taxonomic and AMR gene - and {beta}-diversity were comparable. In contrast, secondary analyses demonstrated that patients from both home and hospital groups transplanted at an outpatient infusion clinic spent significantly less time in the hospital and demonstrated higher taxonomic -diversity and differential {beta}-diversity compared to standard inpatient HCT, although AMR gene -diversity did not differ, and comparisons were confounded by both differences in transplant type and use of antibiotics. ConclusionsRandomization by transplant location did not impact the gut microbiota to the same extent as the duration of hospitalization, although secondary analyses were heavily confounded. Even when taxonomic differences were observed, AMR genes were similar between groups.

microbiology↗

Single-cell Landscape Analysis of the Circulating Human B Cell Pool under Selective Pressure of Allogeneic Stem Cell Transplantation

Alloreactivity can drive autoimmune syndromes. After allogeneic hematopoietic stem cell transplantation (allo-HCT) chronic graft-versus-host disease (cGVHD), a B cell-mediated autoimmune-like syndrome, commonly occurs. Because donor-derived B cells continually develop under selective pressure from host alloantigens, aberrant B Cell Receptor (BCR)-activation and IgG production can emerge and contribute to cGVHD pathobiology. To better understand molecular programing of B cells under selective pressure of alloantigens, we performed scRNA-Seq analysis on high numbers of purified B cells from allo-HCT patients. An unsupervised analysis revealed 10 clusters, distinguishable by signature genes for maturation, activation and memory. We found striking transcriptional differences in the memory B cell compartment after allo-HCT compared to healthy or infected individuals. To identify intrinsic properties when B-cell tolerance is lost after allo-HCT, we then assessed clusters for differentially expressed genes (DEGs) between patients with vs. without autoimmune-like manifestations (Active cGVHD vs. No cGVHD, respectively). DEGs were found in Active cGVHD in both naive and BCR-activated clusters, suggesting functional diversity. Some DEGs were also differentially expressed across most clusters, suggesting common molecular programs that may promote B cell plasticity. Our study of human allo-HCT and cGVHD provides new understanding of B-cell memory in the face of chronic alloantigen stimulation. One Sentence SummaryOur scRNA-Seq study of purified B cells after allo-HCT clarifies molecular differences in human B cell subsets when immune tolerance is lost or maintained. Graphical Abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=80 SRC="FIGDIR/small/512162v4_ufig1.gif" ALT="Figure 1"> View larger version (29K): org.highwire.dtl.DTLVardef@5c452eorg.highwire.dtl.DTLVardef@1c1d34borg.highwire.dtl.DTLVardef@171310org.highwire.dtl.DTLVardef@e4bf15_HPS_FORMAT_FIGEXP M_FIG C_FIG The circulating human B cell compartment under the selective pressure of allogeneic hematopoietic stem cell transplantation (Allo-HCT) has an intrinsically altered memory B cell pool. In allo-HCT, genetically disparate donor stem and progenitor cells engraft, regenerating a new peripheral B cell compartment in the host. During ongoing B lymphopoiesis and diversification, selective pressure from alloantigens and other extrinsic factors, including B Cell Activating Factor (BAFF), result in either B cell maturation and immune tolerance (No Chronic GVHD) or altered B cell homeostasis and autoimmune manifestations (Active Chronic GVHD). B cells within defined subsets in patients with Active GVHD have distinct intrinsic programs delineated by differentially expressed genes (DEGs). Some DEGs occur across nearly all B cell subsets ( Differentially Expressed Broadly), while other DEGs are more restricted within only one or a few B cell subsets ( Naive, BCR-activated, or Memory). We affirm altered trajectories for diversification (blue arrow) and enrichment of an atypical memory B cell (ABC) pool, with intrinsic differences when chronic GVHD occurs.

immunology↗