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Collaborations and top research areas from the last five years
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Cellular and molecular mechanisms of brain repair by glial scar formation following stroke
Doyle, K. (PI)
Project: Research project
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Interactions between the chronic sequelae of stroke and Alzheimer's disease
Doyle, K. (PI)
Project: Research project
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Cellular and molecular mechanisms of brain repair by glial scar formation following stroke
Doyle, K. (PI)
Project: Research project
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2-Hydroxypropyl-β-cyclodextrin accesses acute and subacute infarcts in a mouse model of ischemic stroke
Becktel, D. A., Le, E. H., Frye, J. B., Whitman, S. A., Schnellmann, R. G. & Doyle, K. P., Dec 2026, In: Fluids and Barriers of the CNS. 23, 1, 32.Research output: Contribution to journal › Article › peer-review
Open Access -
5-Hydroxytryptamine 2B receptor antagonism restores ATP and reduces tubulointerstitial fibrosis in the renal cortices of aged mice
McAlister, K. W., Scholpa, N. E., Thompson, A. D., Janda, J., Girdhar, I., Doyle, K. P., Sutphin, G. L. & Schnellmann, R. G., May 2026, In: Journal of Pharmacology and Experimental Therapeutics. 393, 5, 104321.Research output: Contribution to journal › Article › peer-review
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Assessing post-stroke cognition in pre-clinical models: Lessons and recommendations from a multi-center study
Brezzo, G., Zera, K. A., Straus, D. E., Goertz, J. E., Loppi, S. H., Crumpacker, R. R., Frye, J. B., Becktel, D. A., Cuartero, M. I., García Culebras, A., Dames, C., Berchtold, D., Fowler, J. H., Meisel, A., Anrather, J., Moro, M. A., Allan, S. M., Doyle, K. P., Buckwalter, M. S. & McColl, B. W., May 2026, In: Journal of Cerebral Blood Flow and Metabolism. 46, 5, p. 1119-1135 17 p.Research output: Contribution to journal › Article › peer-review
Open Access2 Link opens in a new tab Scopus citations -
Brain Health Across the Life Span: A Framework for Future Studies: A Scientific Statement From the American Heart Association
Marsh, E. B., Lavretsky, H., Kasparian, N. A., Pike, N. A., Doyle, K. P., Aggarwal, N. T., Fullerton, H. J., Ivy, A. S. & Dlamini, N., 2026, (Accepted/In press) In: Stroke.Research output: Contribution to journal › Review article › peer-review
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Cognitive loss after brain trauma results from sex-specific activation of synaptic pruning processes
Arizanovska, D., Bush, G. F., Dallera, C. A., Folorunso, O. O., Frye, J. B., Doyle, K. P., Jagid, J. R., Wolosker, H., Monaco, B. A., Graciolli Cordeiro, J., Atkins, C. M., Griswold, A. J. & Liebl, D. J., Mar 1 2026, In: Brain. 149, 3, p. 918-933 16 p.Research output: Contribution to journal › Article › peer-review
Open Access5 Link opens in a new tab Scopus citations
Datasets
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Increased fatty acid metabolism and decreased glycolysis are hallmarks of metabolic reprogramming within microglia in degenerating white matter during recovery from experimental stroke
Loppi, S. H. (Creator), Tavera-Garcia, M. A. (Creator), Becktel, D. A. (Creator), Maiyo, B. K. (Creator), Johnson, K. E. (Creator), Nguyen, T.-V. V. (Creator), Schnellmann, R. G. (Creator) & Doyle, K. P. (Creator), SAGE Journals, 2023
DOI: 10.25384/sage.c.6425585.v1, https://sage.figshare.com/collections/Increased_fatty_acid_metabolism_and_decreased_glycolysis_are_hallmarks_of_metabolic_reprogramming_within_microglia_in_degenerating_white_matter_during_recovery_from_experimental_stroke/6425585/1
Dataset
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Increased fatty acid metabolism and decreased glycolysis are hallmarks of metabolic reprogramming within microglia in degenerating white matter during recovery from experimental stroke
Loppi, S. H. (Creator), Tavera-Garcia, M. A. (Creator), Becktel, D. A. (Creator), Maiyo, B. K. (Creator), Johnson, K. E. (Creator), Nguyen, T.-V. V. (Creator), Schnellmann, R. G. (Creator) & Doyle, K. P. (Creator), SAGE Journals, 2023
DOI: 10.25384/sage.c.6425585, https://sage.figshare.com/collections/Increased_fatty_acid_metabolism_and_decreased_glycolysis_are_hallmarks_of_metabolic_reprogramming_within_microglia_in_degenerating_white_matter_during_recovery_from_experimental_stroke/6425585
Dataset
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sj-xlsx-3-jcb-10.1177_0271678X231157298 - Supplemental material for Increased fatty acid metabolism and decreased glycolysis are hallmarks of metabolic reprogramming within microglia in degenerating white matter during recovery from experimental stroke
Loppi, S. H. (Creator), Tavera-Garcia, M. A. (Creator), Becktel, D. A. (Creator), Maiyo, B. K. (Creator), Johnson, K. E. (Creator), Nguyen, T.-V. V. (Creator), Schnellmann, R. G. (Creator) & Doyle, K. P. (Creator), SAGE Journals, 2023
DOI: 10.25384/sage.22082600, https://sage.figshare.com/articles/dataset/sj-xlsx-3-jcb-10_1177_0271678X231157298_-_Supplemental_material_for_Increased_fatty_acid_metabolism_and_decreased_glycolysis_are_hallmarks_of_metabolic_reprogramming_within_microglia_in_degenerating_white_matter_during_recovery_from_experim/22082600
Dataset
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Increased fatty acid metabolism and decreased glycolysis are hallmarks of metabolic reprogramming within microglia in degenerating white matter during recovery from experimental stroke
Loppi, S. H. (Creator), Tavera-Garcia, M. A. (Creator), Becktel, D. A. (Creator), Maiyo, B. K. (Creator), Johnson, K. E. (Creator), Nguyen, T.-V. V. (Creator), Schnellmann, R. G. (Creator) & Doyle, K. P. (Creator), SAGE Journals, 2023
DOI: 10.25384/sage.c.6425585.v1, https://sage.figshare.com/collections/Increased_fatty_acid_metabolism_and_decreased_glycolysis_are_hallmarks_of_metabolic_reprogramming_within_microglia_in_degenerating_white_matter_during_recovery_from_experimental_stroke/6425585/1
Dataset
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sj-xlsx-4-jcb-10.1177_0271678X231157298 - Supplemental material for Increased fatty acid metabolism and decreased glycolysis are hallmarks of metabolic reprogramming within microglia in degenerating white matter during recovery from experimental stroke
Loppi, S. H. (Creator), Tavera-Garcia, M. A. (Creator), Becktel, D. A. (Creator), Maiyo, B. K. (Creator), Johnson, K. E. (Creator), Nguyen, T.-V. V. (Creator), Schnellmann, R. G. (Creator) & Doyle, K. P. (Creator), SAGE Journals, 2023
DOI: 10.25384/sage.22082603, https://sage.figshare.com/articles/dataset/sj-xlsx-4-jcb-10_1177_0271678X231157298_-_Supplemental_material_for_Increased_fatty_acid_metabolism_and_decreased_glycolysis_are_hallmarks_of_metabolic_reprogramming_within_microglia_in_degenerating_white_matter_during_recovery_from_experim/22082603
Dataset