Ethan S. Lippmann, Ph.D.

Affiliations: 
2012 University of Wisconsin, Madison, Madison, WI 
Area:
Chemical Engineering, Biomedical Engineering, Cell Biology
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"Ethan Lippmann"

Parents

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Eric V. Shusta grad student 2012 UW Madison
 (Novel blood-brain barrier models derived from stem cell sources.)

Children

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Alexander G Sorets grad student Vanderbilt (Neurotree)
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Publications

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Kim H, Leng K, Park J, et al. (2022) Reactive astrocytes transduce inflammation in a blood-brain barrier model through a TNF-STAT3 signaling axis and secretion of alpha 1-antichymotrypsin. Nature Communications. 13: 6581
Leng K, Rose IVL, Kim H, et al. (2022) CRISPRi screens in human iPSC-derived astrocytes elucidate regulators of distinct inflammatory reactive states. Nature Neuroscience
Shi Y, Kim H, Hamann CA, et al. (2022) Nuclear receptor ligand screening in an iPSC-derived in vitro blood-brain barrier model identifies new contributors to leptin transport. Fluids and Barriers of the Cns. 19: 77
Rosch JC, Hoogenboezem EN, Sorets AG, et al. (2022) Albumin-Binding Aptamer Chimeras for Improved siRNA Bioavailability. Cellular and Molecular Bioengineering. 15: 161-173
Bosworth AM, Kim H, O'Grady KP, et al. (2021) Influence of Substrate Stiffness on Barrier Function in an iPSC-Derived Blood-Brain Barrier Model. Cellular and Molecular Bioengineering. 15: 31-42
Neal EH, Katdare KA, Shi Y, et al. (2021) Influence of basal media composition on barrier fidelity within human pluripotent stem cell-derived blood-brain barrier models. Journal of Neurochemistry
O'Grady BJ, Balotin KM, Bosworth AM, et al. (2020) Development of an N-Cadherin Biofunctionalized Hydrogel to Support the Formation of Synaptically Connected Neural Networks. Acs Biomaterials Science & Engineering. 6: 5811-5822
Rosch JC, Neal EH, Balikov DA, et al. (2020) CRISPR-Mediated Isogenic Cell-SELEX Approach for Generating Highly Specific Aptamers Against Native Membrane Proteins. Cellular and Molecular Bioengineering. 13: 559-574
Lippmann ES, Azarin SM, Palecek SP, et al. (2020) Commentary on human pluripotent stem cell-based blood-brain barrier models. Fluids and Barriers of the Cns. 17: 64
Sorets AG, Rosch JC, Duvall CL, et al. (2020) Caveolae-Mediated Transport at the Injured Blood-Brain Barrier as an Underexplored Pathway for Central Nervous System Drug Delivery. Current Opinion in Chemical Engineering. 30: 86-95
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