Bioengineering Tools to Resolve and Manipulate Neuroimmune Signaling
Bioengineering Tools to Resolve and Manipulate Neuroimmune Signaling
批准号:
10687761
负责人:
Benjamin B Bartelle
金额:
$133.65万
依托单位国家:
美国
项目类别:
财政年份:
2023
资助国家:
美国
项目状态:
未结题
起止时间:
2023-09-01 至 2028-08-31
关键词:
AccelerationAlzheimer&aposs DiseaseAutophagocytosisBindingBiological ModelsBiological ProcessBiologyBiomedical EngineeringBrainCellsChimera organismDiseaseDisease ProgressionDisease modelEngineeringGene DeliveryGenesGenetic ModelsHumanHuman EngineeringImageImplantInfectionInflammationMagnetic Resonance ImagingMental disordersMethodsMicrogliaModalityMusNatureNeurodegenerative DisordersNeuroimmuneParkinson DiseasePathologyReporterResearchResolutionRoleSignal TransductionTechnologyTherapeutic InterventionTissuesViral VectorZika Viruscell typegenetic manipulationhumanized mouseimplantationin vivoin vivo Modelneuroinflammationnon-invasive imagingnovelnovel therapeuticspathogenresponsesensorspatiotemporaltherapeutic evaluationtool
中文摘要
项目总结
英文摘要
PROJECT SUMMARY
Microglia have a role in nearly every incurable psychiatric and neurodegenerative disorder, but of all the
cell types in the brain, they remain the least tractable to study. Human cells in culture do not accurately
recapitulate microglial biology, yet mice have demonstrably non-human neuroimmune responses to pathogens
and disease models. Few methods are compatible with the highly reactive and tissue bound microglia, impeding
all efforts to dissect their biology. Tools to resolve and manipulate these cells in vivo would accelerate
neuroimmune research, from studies of basic biological function to disease mechanisms.
In this proposal we refine several technologies for application in neuroimmune research. Magnetic
Resonance Imaging (MRI), is one of the only modalities for noninvasive studies of the brain from mouse to
human scales. MRI based signaling reporters offer the spatiotemporal resolution and sensitivity to detect even
the rarest signals and each new sensor can change our view of neuroimmune signaling. Gene manipulations in
microglia formerly required transgenics, but engineered human microglial precusor cells can be ectopically
implanted to create human microglial chimeras, carrying new sensors and genetic models of disease. Finally
targeted gene delivery to microglia is currently beyond our capabilities, but in nature, the Zika virus infects
microglia, suppresses inflammation, and stimulates autophagy so expertly that almost half of
infections go unnoticed. If this bioactivity could be safely refined, it would offer relief for
neurodegenerative disorders from Parkinson’s to Alzheimer's disease. Together these technologies
offer a comprehensive tool kit to engineer model systems, image disease progression and test
therapeutic interventions in a humanized in vivo model, creating a path towards entirely new
therapies for neurodegenerative disorders.
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Engineering a human neuroimmune specific viral vector from Zika virus
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批准号:10727590
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项目类别:
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资助金额:$18.45万
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财政年份:2023
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负责人:Benjamin B Bartelle
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依托单位: