Wenqiang Chen, Ph.D.

Affiliations: 
2008-2011 Institute of Pharmacology & Toxicology 
 2011-2016 Physiology The University of Hong Kong, Hong Kong Island, Hong Kong, Hong Kong 
 2017-2019 Program in Cellular Molecular Medicine Harvard Medical School - Boston Children's Hospital 
 2019- Joslin Diabetes Center Harvard Medical School, Boston, MA, United States 
 2024- Steno Diabetes Center Copenhagen 
Area:
drug addiction, depression, diabetes, Alzheimer's disease
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"Wenqiang Chen"
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SNBCP
Cross-listing: Neurotree

Collaborators

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Hongbin Yang collaborator (Neurotree)
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Publications

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Yu Y, Wang G, Chen W, et al. (2025) Lrtm1 - A Novel Sensor of Insulin Signaling and Regulator of Metabolism and Activity. Diabetes
Li C, Miao C, Ge Y, et al. (2025) A molecularly distinct cell type in the midbrain regulates intermale aggression behaviors in mice. Theranostics. 15: 707-725
Chen W, Kahn CR. (2024) Insulin. Trends in Endocrinology and Metabolism: Tem
Chen W, Johansen VBI, Legido-Quigley C. (2024) Bridging brain insulin resistance to Alzheimer's pathogenesis. Trends in Biochemical Sciences
Chen W, Liu X, Munoz VR, et al. (2024) Loss of Insulin Signaling in Microglia Impairs Cellular Uptake of Aβ and Neuroinflammatory Response Exacerbating Alzheimer-like Neuropathology. Biorxiv : the Preprint Server For Biology
Zhou S, Chen W, Yang H. (2024) Dopamine. Trends in Endocrinology and Metabolism: Tem
Jiang Q, Wu KL, Hu XQ, et al. (2024) Neonatal GABAergic transmission primes vestibular gating of output for adult spatial navigation. Cellular and Molecular Life Sciences : Cmls. 81: 147
Chen W, Yang H. (2023) Editorial: New challenges and future perspectives in motivation and reward. Frontiers in Behavioral Neuroscience. 17: 1293938
Chen W, Huang Q, Lazdon EK, et al. (2023) Loss of insulin signaling in astrocytes exacerbates Alzheimer-like phenotypes in a 5xFAD mouse model. Proceedings of the National Academy of Sciences of the United States of America. 120: e2220684120
Zhao ZD, Han X, Chen R, et al. (2022) A molecularly defined D1 medium spiny neuron subtype negatively regulates cocaine addiction. Science Advances. 8: eabn3552
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