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2026
Lokshtanov D, Gao SMax, Xu W, Kosman A, Roncato F, De La Cruz N, Khan NA, Woods A, Campbell I, Woehler A et al..  2026.  Reconstituting mouse embryogenesis Ex utero from Gastrulation to fetal development reveals maternally independent metabolic programs. bioRxiv.
Lokshtanov D, Gao SMax, Xu W, Kosman A, Roncato F, De La Cruz N, Khan NA, Woods A, Campbell I, Woehler A et al..  2026.  Reconstituting mouse embryogenesis Ex utero from Gastrulation to fetal development reveals maternally independent metabolic programs. bioRxiv.
Lokshtanov D, Gao SMax, Xu W, Kosman A, Roncato F, De La Cruz N, Khan NA, Woods A, Campbell I, Woehler A et al..  2026.  Reconstituting mouse embryogenesis Ex utero from Gastrulation to fetal development reveals maternally independent metabolic programs. bioRxiv.
Lokshtanov D, Gao SMax, Xu W, Kosman A, Roncato F, De La Cruz N, Khan NA, Woods A, Campbell I, Woehler A et al..  2026.  Reconstituting mouse embryogenesis Ex utero from Gastrulation to fetal development reveals maternally independent metabolic programs. bioRxiv.
Gándara L, Martelli F, Ravenscroft T, Crocker J, Batterham P.  2026.  Rethinking insecticide toxicology for the 21st century.. Insect Biochem Mol Biol. :104502.
Cheng A, DeWeese T, Zhou Y, Sueoka Y, Koukuntla S, Green M, Cullen K, Knierim J, Graves A, Harris T.  2026.  SCREWx: A Screwless, Chronic, Recoverable, and Lightweight Neuropixels fixture for freely-moving rodents. bioRxiv.
Cheng A, DeWeese T, Zhou Y, Sueoka Y, Koukuntla S, Green M, Cullen K, Knierim J, Graves A, Harris T.  2026.  SCREWx: A Screwless, Chronic, Recoverable, and Lightweight Neuropixels fixture for freely-moving rodents. bioRxiv.
Choi H, Liao Y-C, Yoon YJ, Grimm J, Wang N, Lavis LD, Singer RH, Lippincott-Schwartz J.  2026.  Secretome translation shaped by lysosomes and lunapark-marked ER junctions.. Nature. (649):227–236.
Holland KL, Plutkis SE, Daugird TA, Sau A, Grimm JB, English BP, Zheng Q, Dave S, Rahman F, Xie L et al..  2026.  A series of spontaneously blinking dyes for super-resolution microscopy. Nat Methods.
Holland KL, Plutkis SE, Daugird TA, Sau A, Grimm JB, English BP, Zheng Q, Dave S, Rahman F, Xie L et al..  2026.  A series of spontaneously blinking dyes for super-resolution microscopy. Nat Methods.
Graham K, Pomeroy-Tuck J, O’Brien GK, Kent-Webber L, Drillen AL, Coddington L, Zhao X, Bloss EB.  2026.  Sex-specific plasticity mechanisms mediating fear extinction. bioRxiv.
Esakova OA, Jung J, Lee H, Cho SHyun, Alumasa J, Schwalm EL, Grove TL, Bauerle MR, Hafenstein SL, Yu Z et al..  2026.  Structural Basis for C8 methylation of 23S ribosomal RNA by Cfr. bioRxiv.
Taka J, Jung J, Guo S, Jiao W, Kwai BXC, de Carvalho LPedro S, McNeil M, Huang EYu-Wen, Yu Z, Leung IKH et al..  2026.  Time-resolved cryo-EM reveals conformational trajectory of allosteric activation in isocitrate lyase. bioRxiv.
Abidi AA, Cattoglio C, Tang NN, Fan VB, Dailey GM, Hay AD, Kunamaneni P, Milkie DE, Darzacq X, Betzig E et al..  2026.  Unstructured transcription factor interactions enable emergent specificity.. Science. :eaeb6487.
2025
Sun Y, Squires JR, Hoffmann A, Zhang Y, Minor A, Singh A, Scholten D, Mao C, Luo Y, Fang D et al..  2025.  Abstract 2420: Deep learning enables automated detection of circulating tumor cell-immune cell interactions with prognostic insights in cancer. Cancer Research. 85:2420-2420.
Squires JR, Sun Y, Hoffmann AD, Zhang Y, Minor AC, Singh A, Scholten D, Ding H, Mao C, Platanias LC et al..  2025.  Abstract B049: Deep learning enables identification of cell types and clusters (iCTC) in immune tumor ecosystems for prognostic assessment in cancer. Clinical Cancer Research. 31:B049-B049.
Yu Z, Gutu A, Kim N, O’Shea EK.  2025.  Activity-dependent synapse elimination requires caspase-3 activation. eLife.
Liu H, Squires J, Sun Y, Hoffmann ADaniel, Zhang Y, Platanias LC, Gradishar WJohn, Cristofanilli M, Stringer C.  2025.  Analysis of deep learning for automated recognition of immune cells interacting with CTCs for prognostic assessment in cancer.. Journal of Clinical Oncology. 43:e13028-e13028.
Charvat AF, Mason-Chalmers K, Grabinska-Rogala A, Shivakumar S, Gale-Day Z, Wu T, Millbern Z, Grimm J, Carroll EC, Nilsson P et al..  2025.  Aurora 2.0: A fluorogenic dye library for expanding the capability of protein-adaptive Differential Scanning Fluorimetry (paDSF).. SLAS Discov. :100259.
Charvat AF, Mason-Chalmers K, Grabinska-Rogala A, Shivakumar S, Gale-Day Z, Wu T, Millbern Z, Grimm J, Carroll EC, Nilsson P et al..  2025.  Aurora 2.0: A fluorogenic dye library for expanding the capability of protein-adaptive Differential Scanning Fluorimetry (paDSF).. SLAS Discov. :100259.
Charvat AF, Mason-Chalmers K, Grabinska-Rogala A, Shivakumar S, Gale-Day Z, Wu T, Millbern Z, Grimm J, Carroll EC, Nilsson P et al..  2025.  Aurora 2.0: A fluorogenic dye library for expanding the capability of protein-adaptive Differential Scanning Fluorimetry (paDSF).. SLAS Discov. :100259.
Charvat AF, Mason-Chalmers K, Grabinska-Rogala A, Shivakumar S, Gale-Day Z, Wu T, Millbern Z, Grimm J, Carroll EC, Nilsson P et al..  2025.  Aurora 2.0: A fluorogenic dye library for expanding the capability of protein-adaptive Differential Scanning Fluorimetry (paDSF).. SLAS Discov. :100259.
Desissaire S, Ziemczonok M, Cantat-Moltrecht T, Kuś A, Godefroy G, Hervé L, Paviolo C, Krauze W, Allier C, Mandula O et al..  2025.  Bio-inspired 3D-printed phantom: Encoding cellular heterogeneity for characterization of quantitative phase imaging. Measurement. 247:116765.
Galbraith CG, English BP, Boehm U, Galbraith J.  2025.  BPS2025 - Local cytoplasmic tradewinds direct soluble proteins to their targets. Biophysical Journal. 124(3):375a-376a.
Galbraith CG, English BP, Boehm U, Galbraith J.  2025.  BPS2025 - Local cytoplasmic tradewinds direct soluble proteins to their targets. Biophysical Journal. 124(3):375a-376a.