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Updated: May 24, 2026

Reprograming Model of Human Monocyte-derived Macrophages for In-vitro Assays
Published on: April 18, 2025
Bacterial reprogramming of PBMCs impairs monocyte phagocytosis and modulates adaptive T cell responses
Maya C André1, Christian Gille, Philip Glemser
1Department of Neonatology, University Children’s Hospital, Tuebingen, Germany. maya.andre@med.uni-tuebingen.de
Abstract:
Septic diseases are characterized by an initial systemic, proinflammatory phase, followed by a period of anti-inflammation. In the context of the latter, monocytes have been described to display altered functions, including reduced TNF secretion and T cell-stimulating capacities in response to recall antigens. This hyporesponsiveness is supposed to be detrimental for coping with secondary infections. We here characterize bacterially reprogrammed PBMC-derived monocytes with special focus on their phagocytic activity. Hence, we have implemented a surrogate model of the early, postinflammatory period by exposing PBMCs to Escherichia coli on d0 and rechallenging them with bacteria on d2. This induced the emergence of a distinct monocytic phenotype with profound phagocytic impairments but a preserved ability for naïve T cell stimulation. The compromising effects on phagocytosis required the presence of bacteria and were not mimicked by TLR4 ligation or exposure to isolated cytokines alone. Moreover, the impairments were specific for the engulfment of bacteria and were coupled to a selective down-regulation of FcγR and SR expression. Intriguingly, this monocytic phenotype contributed to the stimulation of a T(H)17-polarized adaptive immune response in the context of secondary infection. Our findings extend the current knowledge of monocytic reprogramming and identify the phagocytic capacity of monocytes as a putative sepsis biomarker.
Insights
Sepsis alters monocyte function, impairing their ability to engulf bacteria. This reprogramming, crucial for fighting secondary infections, highlights monocyte phagocytosis as a potential sepsis biomarker.
Area of Science:
- Immunology
- Cell Biology
- Infectious Diseases
Background:
- Sepsis involves a proinflammatory phase followed by anti-inflammation, during which monocytes exhibit hyporesponsiveness.
- This monocyte dysfunction, including reduced TNF secretion and T cell stimulation, may hinder secondary infection clearance.
Purpose of the Study:
- To investigate the functional reprogramming of peripheral blood mononuclear cell (PBMC)-derived monocytes in a sepsis model.
- To specifically characterize the phagocytic activity of these reprogrammed monocytes.
Main Methods:
- A surrogate model of early post-sepsis was created by exposing PBMCs to Escherichia coli, followed by rechallenge.
- Monocyte phagocytosis, T cell stimulation, FcγR and SR expression, and T helper 17 (TH17) polarization were analyzed.
Main Results:
- Bacterial exposure induced a monocyte phenotype with significantly impaired phagocytic activity but preserved naïve T cell stimulation.
- Phagocytic impairment was specific to bacteria, required bacterial presence, and involved down-regulation of FcγR and SR.
- This altered monocytic phenotype promoted a TH17-polarized adaptive immune response.
Conclusions:
- Monocyte reprogramming during sepsis profoundly affects their phagocytic capacity.
- The selective down-regulation of phagocytosis and its link to TH17 polarization offer new insights into sepsis pathogenesis.
- Monocyte phagocytic function emerges as a potential biomarker for sepsis.
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