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Biology subjects

Ohlstrom, D.

Publications and source records attributed to Ohlstrom, D..

3 recordsLinked to original sources

Single-cell profiling of innate and adaptive immune dysregulation in Long COVID

The COVID-19 pandemic has infected more than 778 million people worldwide. Roughly 7% of these patients progress to Long COVID (LC), suffering from persistent symptoms and cognitive impairment well past the acute stage. As the mechanisms of LC remain elusive, we utilized single-cell profiling (SCP) on 156,478 peripheral blood mononuclear cells (PBMCs) from 20 LC patients and 18 recovered controls (RC) to characterize the disease-associated immune dysregulation. Comparative analysis of LC and RC profiles revealed cellular heterogeneity along with differential abundances across B, T, and myeloid cell compartments. The focused analysis on the B-cell compartment showed that naive B cells in the LC exhibit elevated IL4R expression and BCR signaling, indicative of sustained antigen exposure and aberrant chronic activation. Concurrently, monocytes adopted heightened interferon signaling and enhanced migratory states, culminating into impaired myeloid differentiation. Furthermore, the T-cell compartment exhibited a functional dichotomy, maintaining sustained quiescence in the central memory compartment while displaying chronic exhaustion within effector memory populations. This dysregulation of effector immunity extended to the NK compartment, where terminally differentiated cells exhibited increased cytotoxicity yet compromised regulatory function, potentially contributing to poor viral clearance. Cellular communication analysis further supports this NK cell dysfunction that is likely driven by galectin and prostaglandin signaling involving monocytes and B cells. We stratified LC patients into mild and severe groups based on symptom and cognitive severity, identifying a distinct immune signature where severe disease is linked to chronic AP-1-mediated inflammation in NK cells and CD14+ monocytes. In contrast, patients with mild symptoms retain functionally competent NK cells with significantly lower exhaustion and apoptosis scores. Collectively, these insights into persistent immune remodeling provide a crucial framework for future biomarker discovery and the development of targeted therapeutic strategies. Abstract (Short)COVID-19 has affected >778 million worldwide, with [~]7% developing Long COVID (LC), characterized by persistent symptoms and cognitive impairment. The mechanisms of LC remain elusive; we utilized single-cell profiling on 156,478 peripheral blood mononuclear cells from LC and recovered controls. Comparative analysis revealed cellular heterogeneity and differential abundance across multiple immune compartments. B-cells exhibited hallmarks of sustained antigen exposure and aberrant activation. Concurrently, monocytes adopted heightened interferon signaling, enhanced migratory states, and impaired differentiation. T-cells exhibited chronic exhaustion within the effector memory populations. Dysregulated effector immunity extended to NK, with increased expression of cytotoxic genes yet compromised regulatory function, potentially contributing to viral clearance. LC patients with severe symptoms showed enhanced AP-1-mediated inflammation in NK cells and CD14+ monocytes, whereas mild cases had fitter NK cells with significantly lower exhaustion and apoptosis. Collectively, these insights provide a framework for biomarker discovery and the development of targeted LC therapeutic strategies.

genomics↗

Longitudinal multi-omic profiling uncovers immune escape and predictors of response in multiple myeloma

Multiple myeloma (MM) is an incurable malignancy of clonally expanded plasma cells shaped by complex interactions with the immune microenvironment. To investigate immune factors driving treatment response and resistance, we conducted multi-omics profiling including CD138neg single-cell RNA sequencing of 243 bone marrow samples from 102 patients (631,226 cells) and CD138pos bulk RNA and whole-genome sequencing from 209 samples. Longitudinal analyses revealed that interferon gamma signaling impairs T cell memory after autologous stem cell transplant, while naive B cell abundance and immunoglobulin diversity correlated with improved progression-free survival (HR = 0.48, p = 2.3e-4). At disease progression, MM cells upregulated cancer-testis antigens and immune effector genes, with concurrent B cell depletion, enrichment of myeloid-derived suppressor cell genes in monocytes, and T cell exhaustion. These findings highlight dynamic immune-tumor interactions, identifying naive B cell reconstitution as a biomarker of durable response, and cancer-testis antigens as potential targets for high-risk disease at progression. Statement of SignificanceLongitudinal profiling of multiple myeloma and the immune microenvironment revealed dynamic immune-tumor interactions across the disease course. Dysfunctional CD8 T cells limited memory formation post-transplant, while naive B recovery associated with sustained treatment response. At progression, cancer-testis antigen expression associated with immunosuppression, revealing novel mechanisms of immune escape.

cancer biology↗

Single-cell analysis of pediatric acute myeloid leukemia samples uncovers treatment-resistant stem and mast cells

Pediatric acute myeloid leukemia (pAML) is a heterogeneous malignancy driven by diverse cytogenetic mutations. While risk stratification improved by identifying cytogenetic lesions, prognostication remains inadequate with 30% of standard-risk patients experiencing relapse within 5 years. Single-cell RNA sequencing (scRNAseq) enabled the interrogation of malignant cell heterogeneity in pAML and characterization of the immune microenvironment. Herein we report the largest pAML scRNAseq analysis to date with 708,285 cells from 164 bone marrow biopsies of 95 patients and 11 healthy controls. We uncovered treatment-resistant (TR) subtypes of pAML specific to RUNX1-RUNX1T1, FLT3-ITD, and CBFB-MYH11 patients. The enrichment of TR subtype gene signatures on the TARGET pAML data supported an association with significantly poor outcomes. Intriguingly, in addition to leukemic stem cells, we identified mast cell-like pAML associated with treatment resistance and poor outcomes. Together, immature and mature pAML subtypes are promising biomarkers for identifying patients at increased risk of relapse within cytogenetic categories.

cancer biology↗