Neurons

Displaying 1 - 50 of 54CSV
Lish, A. M., Ashour, N., Pearse, R. V., Galle, P. C., Orme, G. A., Heuer, S. E., Benoit, C. R., Alexander, K. D., Grogan, E. F. L., Terzioglu, G., Scarpa, A., Stern, A. M., Seyfried, N., Menon, V., & Young-Pearse, T. L. (2025). Astrocyte induction of disease-associated microglia is suppressed by acute exposure to fAD neurons in human iPSC triple cultures. Cell Reports, 44(6), 115777. https://doi.org/10.1016/j.celrep.2025.115777
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Gholampour, M., Basu, M. K., Swerdlow, R. H., Zhuo, X., & Haeri, M. (2025). Cell‐specific protein expression in Alzheimer’s disease prefrontal cortex. Alzheimer’s & Dementia, 21(6). Portico. https://doi.org/10.1002/alz.70339
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Madrer, N., Perera, N. D., Uccelli, N. A., Abbondanza, A., Andersen, J. V., Carsana, E. V., Demmings, M. D., Fernandez, R. F., de Fragas, M. G., Gbadamosi, I., Kulshrestha, D., Lima‐Filho, R. A. S., Marian, O. C., Markussen, K. H., McGovern, A. J., Neal, E. S., Sarkar, S., Šimončičová, E., Soto‐Verdugo, J., … Fernández‐Moncada, I. (2025). Neural Metabolic Networks: Key Elements of Healthy Brain Function. Journal of Neurochemistry, 169(6). Portico. https://doi.org/10.1111/jnc.70084
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Carmona, L. M., Nelson, A., Tun, L. T., Kim, A., Shiao, R., Kissner, M. D., Menon, V., & Costa, R. M. (2025). Corticothalamic neurons in motor cortex have a permissive role in motor execution. Nature Communications, 16(1). https://doi.org/10.1038/s41467-025-59954-1
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Di Matteo, F., Bonrath, R., Pravata, V., Schmidt, H., Ayo Martin, A. C., Di Giaimo, R., Menegaz, D., Riesenberg, S., de Vrij, F. M. S., Maccarrone, G., Holzapfel, M., Straub, T., Kushner, S. A., Robertson, S. P., Eder, M., & Cappello, S. (2025). Neuronal hyperactivity in neurons derived from individuals with gray matter heterotopia. Nature Communications, 16(1). https://doi.org/10.1038/s41467-025-56998-1
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Pesini, A., Barriocanal-Casado, E., Compagnoni, G. M., Hidalgo-Gutierrez, A., Yanez, G., Bakkali, M., Chhonker, Y. S., Kleiner, G., Larrea, D., Tadesse, S., Lopez, L. C., Murry, D. J., Di Fonzo, A., Area-Gomez, E., & Quinzii, C. M. (2025). Coenzyme Q10 deficiency disrupts lipid metabolism by altering cholesterol homeostasis in neurons. Free Radical Biology and Medicine, 229, 441–457. https://doi.org/10.1016/j.freeradbiomed.2025.01.009
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Pedroni, A., Yilmaz, E., Del Vecchio, L., Bhattarai, P., Vidal, I. T., Dai, Y.-W. E., Koutsogiannis, K., Kizil, C., & Ampatzis, K. (2024). Decoding the molecular, cellular, and functional heterogeneity of zebrafish intracardiac nervous system. Nature Communications, 15(1). https://doi.org/10.1038/s41467-024-54830-w
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Bulthuis, N. E., McGowan, J. C., Ladner, L. R., LaGamma, C. T., Lim, S. C., Shubeck, C. X., Brachman, R. A., Sydnor, E., Pavlova, I. P., Seo, D., Drew, M. R., & Denny, C. A. (2024). GluN2B on Adult-Born Granule Cells Modulates (R,S)-Ketamine’s Rapid-Acting Effects in Mice. International Journal of Neuropsychopharmacology, 27(10). https://doi.org/10.1093/ijnp/pyae036
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Tomasello, D. L., Barrasa, M. I., Mankus, D., Alarcon, K. I., Lytton-Jean, A. K. R., Liu, X. S., & Jaenisch, R. (2024). Mitochondrial dysfunction and increased reactive oxygen species production in MECP2 mutant astrocytes and their impact on neurons. Scientific Reports, 14(1). https://doi.org/10.1038/s41598-024-71040-y
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Tschuck, J., Padmanabhan Nair, V., Galhoz, A., Zaratiegui, C., Tai, H.-M., Ciceri, G., Rothenaigner, I., Tchieu, J., Stockwell, B. R., Studer, L., Cabianca, D. S., Menden, M. P., Vincendeau, M., & Hadian, K. (2024). Suppression of ferroptosis by vitamin A or radical-trapping antioxidants is essential for neuronal development. Nature Communications, 15(1). https://doi.org/10.1038/s41467-024-51996-1
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Paryani, F., Kwon, J.-S., Ng, C. W., Jakubiak, K., Madden, N., Ofori, K., Tang, A., Lu, H., Xia, S., Li, J., Mahajan, A., Davidson, S. M., Basile, A. O., McHugh, C., Vonsattel, J. P., Hickman, R., Zody, M. C., Housman, D. E., Goldman, J. E., … Al-Dalahmah, O. (2024). Multi-omic analysis of Huntington’s disease reveals a compensatory astrocyte state. Nature Communications, 15(1). https://doi.org/10.1038/s41467-024-50626-0
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Elleman, A. V., Milicic, N., Williams, D. J., Simko, J., Liu, C. J., Haynes, A. L., Ehrlich, D. E., Makinson, C. D., & Du Bois, J. (2024). Behavioral control through the direct, focal silencing of neuronal activity. Cell Chemical Biology, 31(7), 1324-1335.e20. https://doi.org/10.1016/j.chembiol.2024.04.003
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Portela-Lomba, M., Simón, D., Callejo-Móstoles, M., de la Fuente, G., Fernández de Sevilla, D., García-Escudero, V., Moreno-Flores, M. T., & Sierra, J. (2024). Generation of functional neurons from adult human mucosal olfactory ensheathing glia by direct lineage conversion. Cell Death & Disease, 15(7). https://doi.org/10.1038/s41419-024-06862-9
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Demaestri, C., Pisciotta, M., Altunkeser, N., Berry, G., Hyland, H., Breton, J., Darling, A., Williams, B., & Bath, K. G. (2024). Central amygdala CRF+ neurons promote heightened threat reactivity following early life adversity in mice. Nature Communications, 15(1). https://doi.org/10.1038/s41467-024-49828-3
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Qu, W., Lam, M., McInvale, J. J., Mares, J. A., Kwon, S., Humala, N., Mahajan, A., Nguyen, T., Jakubiak, K. A., Mun, J.-Y., Tedesco, T. G., Al-Dalahmah, O., Hussaini, S. A., Sproul, A. A., Siegelin, M. D., De Jager, P. L., Canoll, P., Menon, V., & Hargus, G. (2024). Xenografted human iPSC-derived neurons with the familial Alzheimer’s disease APPV717I mutation reveal dysregulated transcriptome signatures linked to synaptic function and implicate LINGO2 as a disease signaling mediator. Acta Neuropathologica, 147(1). https://doi.org/10.1007/s00401-024-02755-5
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Cortese, G. P., Bartosch, A. M. W., Xiao, H., Gribkova, Y., Lam, T. G., Argyrousi, E. K., Sivakumar, S., Cardona, C., & Teich, A. F. (2024). ZCCHC17 knockdown phenocopies Alzheimer’s disease-related loss of synaptic proteins and hyperexcitability. Journal of Neuropathology & Experimental Neurology, 83(7), 626–635. https://doi.org/10.1093/jnen/nlae033
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Liu, Y., Flamier, A., Bell, G. W., Diao, A. J., Whitfield, T. W., Wang, H.-C., Wu, Y., Schulte, F., Friesen, M., Guo, R., Mitalipova, M., Liu, X. S., Vos, S. M., Young, R. A., & Jaenisch, R. (2024). MECP2 directly interacts with RNA polymerase II to modulate transcription in human neurons. Neuron, 112(12), 1943-1958.e10. https://doi.org/10.1016/j.neuron.2024.04.007
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Wang, Y.-M., Liu, C.-W., Chen, S.-Y., Lu, L.-Y., Liu, W.-C., Wang, J.-H., Ni, C.-L., Wong, S.-B., Kumar, A., Lee, J.-C., Kuo, S.-H., Wu, S.-C., & Pan, M.-K. (2024). Neuronal population activity in the olivocerebellum encodes the frequency of essential tremor in mice and patients. Science Translational Medicine, 16(747). https://doi.org/10.1126/scitranslmed.adl1408
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Gordillo-Sampedro, S., Antounians, L., Wei, W., Mufteev, M., Lendemeijer, B., Kushner, S. A., de Vrij, F. M. S., Zani, A., & Ellis, J. (2024). iPSC-derived healthy human astrocytes selectively load miRNAs targeting neuronal genes into extracellular vesicles. Molecular and Cellular Neuroscience, 129, 103933. https://doi.org/10.1016/j.mcn.2024.103933
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Al-Dalahmah, O., Lam, M., McInvale, J. J., Qu, W., Nguyen, T., Mun, J.-Y., Kwon, S., Ifediora, N., Mahajan, A., Humala, N., Winters, T., Angeles, E., Jakubiak, K. A., Kühn, R., Kim, Y. A., De Rosa, M. C., Doege, C. A., Paryani, F., Flowers, X., … Hargus, G. (2024). Osteopontin drives neuroinflammation and cell loss in MAPT-N279K frontotemporal dementia patient neurons. Cell Stem Cell, 31(5), 676-693.e10. https://doi.org/10.1016/j.stem.2024.03.013
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Throesch, B. T., bin Imtiaz, M. K., Muñoz-Castañeda, R., Sakurai, M., Hartzell, A. L., James, K. N., Rodriguez, A. R., Martin, G., Lippi, G., Kupriyanov, S., Wu, Z., Osten, P., Izpisua Belmonte, J. C., Wu, J., & Baldwin, K. K. (2024). Functional sensory circuits built from neurons of two species. Cell, 187(9), 2143-2157.e15. https://doi.org/10.1016/j.cell.2024.03.042
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Virga, D. M., Hamilton, S., Osei, B., Morgan, A., Kneis, P., Zamponi, E., Park, N. J., Hewitt, V. L., Zhang, D., Gonzalez, K. C., Russell, F. M., Grahame Hardie, D., Prudent, J., Bloss, E., Losonczy, A., Polleux, F., & Lewis, T. L. (2024). Activity-dependent compartmentalization of dendritic mitochondria morphology through local regulation of fusion-fission balance in neurons in vivo. Nature Communications, 15(1). https://doi.org/10.1038/s41467-024-46463-w
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Simpson, E. H., Akam, T., Patriarchi, T., Blanco-Pozo, M., Burgeno, L. M., Mohebi, A., Cragg, S. J., & Walton, M. E. (2024). Lights, fiber, action! A primer on in vivo fiber photometry. Neuron, 112(5), 718–739. https://doi.org/10.1016/j.neuron.2023.11.016
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Labouesse, M. A., Torres-Herraez, A., Chohan, M. O., Villarin, J. M., Greenwald, J., Sun, X., Zahran, M., Tang, A., Lam, S., Veenstra-VanderWeele, J., Lacefield, C. O., Bonaventura, J., Michaelides, M., Chan, C. S., Yizhar, O., & Kellendonk, C. (2023). A non-canonical striatopallidal Go pathway that supports motor control. Nature Communications, 14(1). https://doi.org/10.1038/s41467-023-42288-1
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Herb, B. R., Glover, H. J., Bhaduri, A., Colantuoni, C., Bale, T. L., Siletti, K., Hodge, R., Lein, E., Kriegstein, A. R., Doege, C. A., & Ament, S. A. (2023). Single-cell genomics reveals region-specific developmental trajectories underlying neuronal diversity in the human hypothalamus. Science Advances, 9(45). https://doi.org/10.1126/sciadv.adf6251
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Odean, N. N., Sanayei, M., & Shadlen, M. N. (2023). Transient Oscillations of Neural Firing Rate Associated With Routing of Evidence in a Perceptual Decision. The Journal of Neuroscience, 43(37), 6369–6383. https://doi.org/10.1523/jneurosci.2200-22.2023
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Schaffer, E. S., Mishra, N., Whiteway, M. R., Li, W., Vancura, M. B., Freedman, J., Patel, K. B., Voleti, V., Paninski, L., Hillman, E. M. C., Abbott, L. F., & Axel, R. (2023). The spatial and temporal structure of neural activity across the fly brain. Nature Communications, 14(1). https://doi.org/10.1038/s41467-023-41261-2
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Stine, G. M., Trautmann, E. M., Jeurissen, D., & Shadlen, M. N. (2023). A neural mechanism for terminating decisions. Neuron, 111(16), 2601-2613.e5. https://doi.org/10.1016/j.neuron.2023.05.028
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Muller, S. Z., Abbott, L. F., & Sawtell, N. B. (2023). A mechanism for differential control of axonal and dendritic spiking underlying learning in a cerebellum-like circuit. Current Biology, 33(13), 2657-2667.e4. https://doi.org/10.1016/j.cub.2023.05.040
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Traunmüller, L., Schulz, J., Ortiz, R., Feng, H., Furlanis, E., Gomez, A. M., Schreiner, D., Bischofberger, J., Zhang, C., & Scheiffele, P. (2023). A cell-type-specific alternative splicing regulator shapes synapse properties in a trans-synaptic manner. Cell Reports, 42(3), 112173. https://doi.org/10.1016/j.celrep.2023.112173
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Ford, L., Asok, A., Tripp, A. D., Parro, C., Fitzpatrick, M., de Solis, C. A., Chen, P.-T. Y., Shafiian, N., Fioriti, L., Soni, R. K., & Kandel, E. R. (2023). CPEB3 low-complexity motif regulates local protein synthesis via protein–protein interactions in neuronal ribonucleoprotein granules. Proceedings of the National Academy of Sciences, 120(6). https://doi.org/10.1073/pnas.2114747120
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He, H., Ahsan, A., Bera, R., McLain, N., Faulkner, R., Ramachandran, K. V., Margolis, S. S., & Cline, H. T. (2023). Neuronal membrane proteasomes regulate neuronal circuit activity in vivo and are required for learning-induced behavioral plasticity. Proceedings of the National Academy of Sciences, 120(3). https://doi.org/10.1073/pnas.2216537120
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Schneeberger, M., Brice, N. L., Pellegrino, K., Parolari, L., Shaked, J. T., Page, K. J., Marchildon, F., Barrows, D. W., Carroll, T. S., Topilko, T., Mulligan, V. M., Newman, R., Doyle, K., Bürli, R., Barker, D. F., Glen, A., Ortuño, M. J., Nectow, A. R., Renier, N., … Friedman, J. M. (2022). Pharmacological targeting of glutamatergic neurons within the brainstem for weight reduction. Nature Metabolism, 4(11), 1495–1513. https://doi.org/10.1038/s42255-022-00677-8
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Li, M., Tan, H.-E., Lu, Z., Tsang, K. S., Chung, A. J., & Zuker, C. S. (2022). Gut–brain circuits for fat preference. Nature, 610(7933), 722–730. https://doi.org/10.1038/s41586-022-05266-z
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Hassan, A. R., Zhao, Z., Ferrero, J. J., Cea, C., Jastrzebska‐Perfect, P., Myers, J., Asman, P., Ince, N. F., McKhann, G., Viswanathan, A., Sheth, S. A., Khodagholy, D., & Gelinas, J. N. (2022). Translational Organic Neural Interface Devices at Single Neuron Resolution. Advanced Science, 9(27). Portico. https://doi.org/10.1002/advs.202202306
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Boni, N., Shapiro, L., Honig, B., Wu, Y., & Rubinstein, R. (2022). On the formation of ordered protein assemblies in cell–cell interfaces. Proceedings of the National Academy of Sciences, 119(34). https://doi.org/10.1073/pnas.2206175119
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Pouliopoulos, A. N., Murillo, M. F., Noel, R. L., Batts, A. J., Ji, R., Kwon, N., Yu, H., Tong, C.-K., Gelinas, J. N., Araghy, D. K., Hussaini, S. A., & Konofagou, E. E. (2022). Non-invasive optogenetics with ultrasound-mediated gene delivery and red-light excitation. Brain Stimulation, 15(4), 927–941. https://doi.org/10.1016/j.brs.2022.06.007
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de Prisco, N., Chemiakine, A., Lee, W., Botta, S., & Gennarino, V. A. (2022). Protocol to assess the effect of disease-driving variants on mouse brain morphology and primary hippocampal neurons. STAR Protocols, 3(2), 101244. https://doi.org/10.1016/j.xpro.2022.101244
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Hoffman, B. U., Baba, Y., Lee, S. A., Tong, C.-K., Konofagou, E. E., & Lumpkin, E. A. (2022). Focused ultrasound excites action potentials in mammalian peripheral neurons in part through the mechanically gated ion channel PIEZO2. Proceedings of the National Academy of Sciences, 119(21). https://doi.org/10.1073/pnas.2115821119
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Jeurissen, D., Shushruth, S., El-Shamayleh, Y., Horwitz, G. D., & Shadlen, M. N. (2022). Deficits in decision-making induced by parietal cortex inactivation are compensated at two timescales. Neuron, 110(12), 1924-1931.e5. https://doi.org/10.1016/j.neuron.2022.03.022
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Paulk, A. C., Kfir, Y., Khanna, A. R., Mustroph, M. L., Trautmann, E. M., Soper, D. J., Stavisky, S. D., Welkenhuysen, M., Dutta, B., Shenoy, K. V., Hochberg, L. R., Richardson, R. M., Williams, Z. M., & Cash, S. S. (2022). Large-scale neural recordings with single neuron resolution using Neuropixels probes in human cortex. Nature Neuroscience, 25(2), 252–263. https://doi.org/10.1038/s41593-021-00997-0
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Chang, W., Pedroni, A., Bertuzzi, M., Kizil, C., Simon, A., & Ampatzis, K. (2021). Locomotion dependent neuron-glia interactions control neurogenesis and regeneration in the adult zebrafish spinal cord. Nature Communications, 12(1). https://doi.org/10.1038/s41467-021-25052-1
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Pahl, M. C., Doege, C. A., Hodge, K. M., Littleton, S. H., Leonard, M. E., Lu, S., Rausch, R., Pippin, J. A., De Rosa, M. C., Basak, A., Bradfield, J. P., Hammond, R. K., Boehm, K., Berkowitz, R. I., Lasconi, C., Su, C., Chesi, A., Johnson, M. E., Wells, A. D., … Grant, S. F. A. (2021). Cis-regulatory architecture of human ESC-derived hypothalamic neuron differentiation aids in variant-to-gene mapping of relevant complex traits. Nature Communications, 12(1). https://doi.org/10.1038/s41467-021-27001-4
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Leszczynski, M., Chaieb, L., Staudigl, T., Enkirch, S. J., Fell, J., & Schroeder, C. E. (2021). Neural activity in the human anterior thalamus during natural vision. Scientific Reports, 11(1). https://doi.org/10.1038/s41598-021-96588-x
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Yu, T.-S., Tensaouti, Y., Stephanz, E. P., Chintamen, S., Rafikian, E. E., Yang, M., & Kernie, S. G. (2021). Astrocytic ApoE underlies maturation of hippocampal neurons and cognitive recovery after traumatic brain injury in mice. Communications Biology, 4(1). https://doi.org/10.1038/s42003-021-02841-4
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