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Biology subjects

Gratz, D.

Publications and source records attributed to Gratz, D..

3 recordsLinked to original sources

Coordinated expansion of CD163⁺ monocytes and immature CD177⁺ neutrophils marks severe neurotoxicity after CD19 CAR T cell therapy

Immune effector cell-associated neurotoxicity syndrome (ICANS) is a major complication after CAR T cell therapy, but its underlying mechanisms remain poorly understood. We performed longitudinal immune profiling of paired whole blood and serum samples from patients with relapsed or refractory diffuse large B cell lymphoma (DLBCL) treated with CD19 CAR T cells. At peak neurotoxicity, high-dimensional mass cytometry and serum proteomics identified the expansion of CD163 monocytes and immature CD10lowCD101low neutrophils correlated with elevated serum ST2 and IL-2RA concentrations. Integrative immune module analysis identified these features among the strongest predictors of ICANS severity. Independent single-cell transcriptomic profiling validated the emergence of immunoregulatory CD163 monocytes and identified CD177 as a biomarker of ICANS-associated immature neutrophils. Together, these findings reveal a coordinated myeloid inflammatory network associated with ICANS and nominate candidate biomarkers and therapeutic targets for improving the safety of CAR T cell therapy. SignificanceWe demonstrate that immunoregulatory CD163+ monocytes and immature, activated CD177hiCD10lowCD101low neutrophils emerge in patients with moderate to severe ICANS at peak toxicity following CD19 CAR T cell therapy. These findings identify an uncharacterized myeloid network potentially contributing towards ICANS pathogenesis.

immunology↗

Mitochondrial ROS-induced metabolic alterations differentially regulate ferroptosis sensitivity

Ferroptosis is an iron-catalyzed lipid peroxidation (LP)-dependent cell death. Induction of mitochondrial ROS (mtROS) is crucial in the execution of ferroptosis, but the underlying mechanism remains unclear. Through utilizing the hepatocyte model and RNA-seq analysis, we determined mtROS-dependent metabolic changes that modulate ferroptosis sensitivity. Elevated mtROS production and LP suppressed glycolysis, fatty acid oxidation, and citric acid cycle activity, representing adaptive responses that protect cells from ferroptosis. On the other hand, mtROS-driven signaling impaired glutathione biosynthesis and downregulated genes involved in coenzyme Q10 (CoQ) biosynthesis, including those in the mevalonate pathway and CoQ8A, a key stabilizer of the CoQ biosynthetic complex. Importantly, silencing CoQ8A expression enhanced, whereas overexpression of CoQ8A reduced, ferroptosis susceptibility of hepatocytes and various cancer cell types. The mtROS-mediated downregulation of CoQ8A was dependent on farnesoid X receptor (FXR) and retinoid X receptors (RXRs). Collectively, our findings highlight that mtROS promotes ferroptosis, at least in part, by suppressing glutathione and CoQ biosynthesis.

cell biology↗

Evaluating the practical aspects and performance of commercial single-cell RNA sequencing technologies

The rapid development of updated and new commercially available single-cell transcriptomics platforms provides users with a range of experimental options. Cost, sensitivity, throughput, flexibility, and ease of use, all influence the selection of an optimal workflow. We performed a comprehensive comparison of single-cell transcriptomic approaches using multiple standardized PBMCs from different donors. We report on standard single-cell metrics including cell recovery, sequencing efficiency, sensitivity, cell annotation, and differential gene expression for seven recently available kits that interrogate whole transcriptome mRNA, and two that include TCR profiling. We also discuss workflow throughput, sample requirements, timing, cost, and labor as critical factors to consider. In addition to variable experimental constraints imposed by each platform, our findings highlight differences in cell recovery and sensitivity, which we found to significantly influence the ability to resolve cell subtypes. This work provides a basis by which users can balance performance and practical considerations when selecting a single-cell RNA sequencing platform.

genomics↗