Michael Seamus Haney - Publications

Affiliations: 
Stanford School of Medicine, Palo Alto, CA, United States 
Area:
Neurodegeneration, Neuroimmunology, Microglia, Aging, CRISPR screens

17 high-probability publications. We are testing a new system for linking publications to authors. You can help! If you notice any inaccuracies, please sign in and mark papers as correct or incorrect matches. If you identify any major omissions or other inaccuracies in the publication list, please let us know.

Year Citation  Score
2024 Haney MS, Pálovics R, Munson CN, Long C, Johansson PK, Yip O, Dong W, Rawat E, West E, Schlachetzki JCM, Tsai A, Guldner IH, Lamichhane BS, Smith A, Schaum N, et al. APOE4/4 is linked to damaging lipid droplets in Alzheimer's disease microglia. Nature. PMID 38480892 DOI: 10.1038/s41586-024-07185-7  0.728
2023 Oh HS, Rutledge J, Nachun D, Pálovics R, Abiose O, Moran-Losada P, Channappa D, Urey DY, Kim K, Sung YJ, Wang L, Timsina J, Western D, Liu M, Kohlfeld P, ... ... Haney M, et al. Organ aging signatures in the plasma proteome track health and disease. Nature. 624: 164-172. PMID 38057571 DOI: 10.1038/s41586-023-06802-1  0.495
2023 Haney MS, Pálovics R, Munson CN, Long C, Johansson P, Yip O, Dong W, Rawat E, West E, Schlachetzki JC, Tsai A, Guldner IH, Lamichhane BS, Smith A, Schaum N, et al. APOE4/4 is linked to damaging lipid droplets in Alzheimer's microglia. Biorxiv : the Preprint Server For Biology. PMID 37546938 DOI: 10.1101/2023.07.21.549930  0.699
2022 Iram T, Kern F, Kaur A, Myneni S, Morningstar AR, Shin H, Garcia MA, Yerra L, Palovics R, Yang AC, Hahn O, Lu N, Shuken SR, Haney MS, Lehallier B, et al. Author Correction: Young CSF restores oligodendrogenesis and memory in aged mice via Fgf17. Nature. PMID 36513761 DOI: 10.1038/s41586-022-05630-z  0.445
2022 Iram T, Kern F, Kaur A, Myneni S, Morningstar AR, Shin H, Garcia MA, Yerra L, Palovics R, Yang AC, Hahn O, Lu N, Shuken SR, Haney MS, Lehallier B, et al. Young CSF restores oligodendrogenesis and memory in aged mice via Fgf17. Nature. 605: 509-515. PMID 35545674 DOI: 10.1038/s41586-022-04722-0  0.537
2022 Vest RT, Chou CC, Zhang H, Haney MS, Li L, Laqtom NN, Chang B, Shuken S, Nguyen A, Yerra L, Yang AC, Green C, Tanga M, Abu-Remaileh M, Bassik MC, et al. Small molecule C381 targets the lysosome to reduce inflammation and ameliorate disease in models of neurodegeneration. Proceedings of the National Academy of Sciences of the United States of America. 119: e2121609119. PMID 35259016 DOI: 10.1073/pnas.2121609119  0.658
2021 Pluvinage JV, Sun J, Claes C, Flynn RA, Haney MS, Iram T, Meng X, Lindemann R, Riley NM, Danhash E, Chadarevian JP, Tapp E, Gate D, Kondapavulur S, Cobos I, et al. The CD22-IGF2R interaction is a therapeutic target for microglial lysosome dysfunction in Niemann-Pick type C. Science Translational Medicine. 13: eabg2919. PMID 34851695 DOI: 10.1126/scitranslmed.abg2919  0.651
2020 Marschallinger J, Iram T, Zardeneta M, Lee SE, Lehallier B, Haney MS, Pluvinage JV, Mathur V, Hahn O, Morgens DW, Kim J, Tevini J, Felder TK, Wolinski H, Bertozzi CR, et al. Author Correction: Lipid-droplet-accumulating microglia represent a dysfunctional and proinflammatory state in the aging brain. Nature Neuroscience. PMID 32719564 DOI: 10.1038/s41593-020-0682-y  0.67
2020 Marschallinger J, Iram T, Zardeneta M, Lee SE, Lehallier B, Haney MS, Pluvinage JV, Mathur V, Hahn O, Morgens DW, Kim J, Tevini J, Felder TK, Wolinski H, Bertozzi CR, et al. Author Correction: Lipid-droplet-accumulating microglia represent a dysfunctional and proinflammatory state in the aging brain. Nature Neuroscience. PMID 32005940 DOI: 10.1038/S41593-020-0595-9  0.67
2020 Marschallinger J, Iram T, Zardeneta M, Lee SE, Lehallier B, Haney MS, Pluvinage JV, Mathur V, Hahn O, Morgens DW, Kim J, Tevini J, Felder TK, Wolinski H, Bertozzi CR, et al. Lipid-droplet-accumulating microglia represent a dysfunctional and proinflammatory state in the aging brain. Nature Neuroscience. PMID 31959936 DOI: 10.1038/S41593-019-0566-1  0.714
2019 Chai N, Haney MS, Couthouis J, Morgens DW, Benjamin A, Wu K, Ousey J, Fang S, Finer S, Bassik MC, Gitler AD. Genome-wide synthetic lethal CRISPR screen identifies FIS1 as a genetic interactor of ALS-linked C9ORF72. Brain Research. 146601. PMID 31843624 DOI: 10.1016/J.Brainres.2019.146601  0.563
2019 Cheng W, Wang S, Zhang Z, Morgens DW, Hayes LR, Lee S, Portz B, Xie Y, Nguyen BV, Haney MS, Yan S, Dong D, Coyne AN, Yang J, Xian F, et al. CRISPR-Cas9 Screens Identify the RNA Helicase DDX3X as a Repressor of C9ORF72 (GGGGCC)n Repeat-Associated Non-AUG Translation. Neuron. PMID 31587919 DOI: 10.1016/J.Neuron.2019.09.003  0.537
2019 Li J, Khankan RR, Caneda C, Godoy MI, Haney MS, Krawczyk MC, Bassik MC, Sloan SA, Zhang Y. Astrocyte-to-astrocyte contact and a positive feedback loop of growth factor signaling regulate astrocyte maturation. Glia. PMID 31033049 DOI: 10.1002/Glia.23630  0.538
2019 Pluvinage JV, Haney MS, Smith BAH, Sun J, Iram T, Bonanno L, Li L, Lee DP, Morgens DW, Yang AC, Shuken SR, Gate D, Scott M, Khatri P, Luo J, et al. CD22 blockade restores homeostatic microglial phagocytosis in ageing brains. Nature. PMID 30944478 DOI: 10.1038/S41586-019-1088-4  0.717
2018 Haney MS, Bohlen CJ, Morgens DW, Ousey JA, Barkal AA, Tsui CK, Ego BK, Levin R, Kamber RA, Collins H, Tucker A, Li A, Vorselen D, Labitigan L, Crane E, et al. Identification of phagocytosis regulators using magnetic genome-wide CRISPR screens. Nature Genetics. PMID 30397336 DOI: 10.1038/S41588-018-0254-1  0.573
2018 Kramer NJ, Haney MS, Morgens DW, Jovičić A, Couthouis J, Li A, Ousey J, Ma R, Bieri G, Tsui CK, Shi Y, Hertz NT, Tessier-Lavigne M, Ichida JK, Bassik MC, et al. CRISPR-Cas9 screens in human cells and primary neurons identify modifiers of C9ORF72 dipeptide-repeat-protein toxicity. Nature Genetics. PMID 29507424 DOI: 10.1038/S41588-018-0070-7  0.551
2017 Morgens DW, Wainberg M, Boyle EA, Ursu O, Araya CL, Tsui CK, Haney MS, Hess GT, Han K, Jeng EE, Li A, Snyder MP, Greenleaf WJ, Kundaje A, Bassik MC. Genome-scale measurement of off-target activity using Cas9 toxicity in high-throughput screens. Nature Communications. 8: 15178. PMID 28474669 DOI: 10.1038/Ncomms15178  0.528
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