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Accelerated Type 1 Diabetes Induction in Mice by Adoptive Transfer of Diabetogenic CD4+ T Cells
Published on: May 6, 2013
Defective interferon signaling in the circulating monocytes of type 2 diabetic mice
Abstract:
Type 2 diabetes mellitus (T2DM) is associated with poor outcome after stroke. Peripheral monocytes play a critical role in the secondary injury and recovery of damaged brain tissue after stroke, but the underlying mechanisms are largely unclear. To investigate transcriptome changes and molecular networks across monocyte subsets in response to T2DM and stroke, we performed single-cell RNA-sequencing (scRNAseq) from peripheral blood mononuclear cells and bulk RNA-sequencing from blood monocytes from four groups of adult mice, consisting of T2DM model db/db and normoglycemic control db/+ mice with or without ischemic stroke. Via scRNAseq we found that T2DM expands the monocyte population at the expense of lymphocytes, which was validated by flow cytometry. Among the monocytes, T2DM also disproportionally increased the inflammatory subsets with Ly6C+ and negative MHC class II expression (MO.6C+II-). Conversely, monocytes from control mice without stroke are enriched with steady-state classical monocyte subset of MO.6C+II+ but with the least percentage of MO.6C+II- subtype. Apart from enhancing inflammation and coagulation, enrichment analysis from both scRNAseq and bulk RNAseq revealed that T2DM specifically suppressed type-1 and type-2 interferon signaling pathways crucial for antigen presentation and the induction of ischemia tolerance. Preconditioning by lipopolysaccharide conferred neuroprotection against ischemic brain injury in db/+ but not in db/db mice and coincided with a lesser induction of brain Interferon-regulatory-factor-3 in the brains of the latter mice. Our results suggest that the increased diversity and altered transcriptome in the monocytes of T2DM mice underlie the worse stroke outcome by exacerbating secondary injury and potentiating stroke-induced immunosuppression.
Significance Statement:
The mechanisms involved in the detrimental diabetic effect on stroke are largely unclear. We show here, for the first time, that peripheral monocytes have disproportionally altered the subsets and changed transcriptome under diabetes and/or stroke conditions. Moreover, genes in the IFN-related signaling pathways are suppressed in the diabetic monocytes, which underscores the immunosuppression and impaired ischemic tolerance under the T2DM condition. Our data raise a possibility that malfunctioned monocytes may systemically and focally affect the host, leading to the poor outcome of diabetes in the setting of stroke. The results yield important clues to molecular mechanisms involved in the detrimental diabetic effect on stroke outcome.
Insights
Type 2 diabetes mellitus (T2DM) worsens stroke outcomes by altering peripheral monocytes. These diabetic monocytes show suppressed interferon pathways, leading to increased inflammation and impaired brain recovery after stroke.
Area of Science:
- Immunology
- Neuroscience
- Metabolic Disorders
Background:
- Type 2 diabetes mellitus (T2DM) is linked to poor stroke outcomes.
- Peripheral monocytes are crucial in post-stroke brain injury and recovery, but mechanisms in T2DM are unclear.
Purpose of the Study:
- To investigate transcriptome changes and molecular networks in monocyte subsets in response to T2DM and stroke.
- To understand how T2DM affects monocyte function and contributes to worse stroke outcomes.
Main Methods:
- Single-cell RNA sequencing (scRNAseq) and bulk RNA sequencing were performed on monocytes from T2DM and control mice, with and without ischemic stroke.
- Flow cytometry was used to validate monocyte population changes.
Main Results:
- T2DM expanded the monocyte population and increased inflammatory monocyte subsets (Ly6C+ MHC class II-).
- T2DM suppressed type-1 and type-2 interferon signaling pathways in monocytes.
- Diabetic mice showed impaired neuroprotection and reduced Interferon-regulatory-factor-3 induction after stroke.
Conclusions:
- Altered monocyte diversity and transcriptomes in T2DM exacerbate secondary injury and immunosuppression post-stroke.
- Malfunctioning monocytes in T2DM contribute to poor stroke outcomes.
- Suppressed interferon pathways in diabetic monocytes impair ischemic tolerance.
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