Naiwen Cui Data-verified
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
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Biography and Research Information
OverviewAI-generated summary
Naiwen Cui's research investigates the differentiation of monocytes into microglia-like cells, particularly focusing on epigenetic adaptations that occur upon engraftment into the central nervous system and retina. This work explores how small molecule inhibitors, such as CSF1R inhibitors, impact not only microglia but also T-helper cell differentiation, independent of microglia depletion. Cui has also explored microfluidic technologies for enriching rare genomic sequences from mixed samples for metagenomic analysis. Their scholarship metrics include an h-index of 7 with 19 total publications and 804 total citations. Cui collaborates with Huidan Zhang from Harding University Main Campus, with whom they share two publications.
Metrics
- h-index: 8
- Publications: 19
- Citations: 823
Selected Publications
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Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System (2025)
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Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System (2025)
Collaboration Network
Top Collaborators
- Reply to Green and Hume: Nonmicroglia peripheral immune effects of short-term CSF1R inhibition with PLX5622
- CSF1R inhibition is not specific to innate immune cells but also affects T-helper cell differentiation independently of microglia depletion
- CSF1R inhibition by small molecule affects T-helper cell differentiation independently of microglia depletion
- Single-cell RNA-seq reveals a dynamic shift of engrafted peripheral macrophages in the CNS towards a microglia signature.
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
Showing 5 of 8 shared publications
- Reply to Green and Hume: Nonmicroglia peripheral immune effects of short-term CSF1R inhibition with PLX5622
- CSF1R inhibition is not specific to innate immune cells but also affects T-helper cell differentiation independently of microglia depletion
- CSF1R inhibition by small molecule affects T-helper cell differentiation independently of microglia depletion
- Single-cell RNA-seq reveals a dynamic shift of engrafted peripheral macrophages in the CNS towards a microglia signature.
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
Showing 5 of 8 shared publications
- Reply to Green and Hume: Nonmicroglia peripheral immune effects of short-term CSF1R inhibition with PLX5622
- CSF1R inhibition is not specific to innate immune cells but also affects T-helper cell differentiation independently of microglia depletion
- CSF1R inhibition by small molecule affects T-helper cell differentiation independently of microglia depletion
- Single-cell RNA-seq reveals a dynamic shift of engrafted peripheral macrophages in the CNS towards a microglia signature.
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
Showing 5 of 8 shared publications
- Reply to Green and Hume: Nonmicroglia peripheral immune effects of short-term CSF1R inhibition with PLX5622
- CSF1R inhibition is not specific to innate immune cells but also affects T-helper cell differentiation independently of microglia depletion
- CSF1R inhibition by small molecule affects T-helper cell differentiation independently of microglia depletion
- Single-cell RNA-seq reveals a dynamic shift of engrafted peripheral macrophages in the CNS towards a microglia signature.
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
Showing 5 of 7 shared publications
- Single-cell RNA-seq reveals a dynamic shift of engrafted peripheral macrophages in the CNS towards a microglia signature.
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic adaptation drives monocyte differentiation into microglia-like cells upon engraftment into the retina 2854
- Single-cell RNA-seq reveals a dynamic shift of engrafted peripheral macrophages in the CNS towards a microglia signature.
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic adaptation drives monocyte differentiation into microglia-like cells upon engraftment into the retina 2854
- Reply to Green and Hume: Nonmicroglia peripheral immune effects of short-term CSF1R inhibition with PLX5622
- CSF1R inhibition is not specific to innate immune cells but also affects T-helper cell differentiation independently of microglia depletion
- CSF1R inhibition by small molecule affects T-helper cell differentiation independently of microglia depletion
- Single-cell RNA-seq reveals a dynamic shift of engrafted peripheral macrophages in the CNS towards a microglia signature.
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic adaptation drives monocyte differentiation into microglia-like cells upon engraftment into the retina 2854
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic adaptation drives monocyte differentiation into microglia-like cells upon engraftment into the retina 2854
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic adaptation drives monocyte differentiation into microglia-like cells upon engraftment into the retina 2854
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic adaptation drives monocyte differentiation into microglia-like cells upon engraftment into the retina 2854
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic adaptation drives monocyte differentiation into microglia-like cells upon engraftment into the retina 2854
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic adaptation drives monocyte differentiation into microglia-like cells upon engraftment into the retina 2854
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic adaptation drives monocyte differentiation into microglia-like cells upon engraftment into the retina 2854
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic Adaptation Drives Monocyte Differentiation into Microglia-Like Cells Upon Engraftment into the Central Nervous System
- Epigenetic adaptation drives monocyte differentiation into microglia-like cells upon engraftment into the retina 2854
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