Nenad Bursac

Affiliations: 
Biomedical Engineering Duke University, Durham, NC 
Area:
Biomedical
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"Nenad Bursac"

Parents

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Robert S. Langer grad student (Chemistry Tree)
Leslie Tung post-doc Johns Hopkins (Physics Tree)

Children

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Marisa Patsy grad student 2021- Duke
Amber Detwiler grad student 2022- Duke
Dawn M. Pedrotty grad student 2007 Duke
Nima Badie grad student 2010 Duke
Weining Bian grad student 2011 Duke
Luke C. McSpadden grad student 2011 Duke
Robert D. Kirkton grad student 2012 Duke
Torie Broer grad student 2018-2024 Duke
Sophia DeLuca grad student 2018-2024 Duke
Abbi Helfer grad student 2017-2025 Duke
Nicholas Strash grad student 2017-2025 Duke
Tianyu Wu grad student 2018-2025 Duke
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Publications

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Broer T, Tsintolas N, Hammond S, et al. (2025) Human Myobundle Platform for Studying the Role of Notch Signaling in Satellite Cell Phenotype and Function. Advanced Healthcare Materials. e2404695
Li H, Shadrin I, Helfer A, et al. (2024) In vitro vascularization improves in vivo functionality of human engineered cardiac tissues. Acta Biomaterialia
DeLuca S, Strash N, Chen Y, et al. (2024) Engineered Cardiac Tissues as a Platform for CRISPR-Based Mitogen Discovery. Advanced Healthcare Materials. e2402201
Broer T, Tsintolas N, Purkey K, et al. (2024) Engineered myovascular tissues for studies of endothelial/satellite cell interactions. Acta Biomaterialia
Khodabukus A, Prabhu NK, Roberts T, et al. (2024) Bioengineered Model of Human LGMD2B Skeletal Muscle Reveals Roles of Intracellular Calcium Overload in Contractile and Metabolic Dysfunction in Dysferlinopathy. Advanced Science (Weinheim, Baden-Wurttemberg, Germany). e2400188
Strash N, DeLuca S, Janer Carattini GL, et al. (2024) Time-dependent effects of BRAF-V600E on cell cycling, metabolism, and function in engineered myocardium. Science Advances. 10: eadh2598
Nguyen HX, Wu T, Needs D, et al. (2023) Author Correction: Engineered bacterial voltage-gated sodium channel platform for cardiac gene therapy. Nature Communications. 14: 7411
Needs D, Wu T, Nguyen HX, et al. (2023) Prokaryotic Voltage-gated Sodium Channels are More Effective than Endogenous Na1.5 Channels in Rescuing Cardiac Action Potential Conduction: An Study. American Journal of Physiology. Heart and Circulatory Physiology
Chakraborty A, Peterson NG, King JS, et al. (2023) Conserved chamber-specific polyploidy maintains heart function in Drosophila. Development (Cambridge, England)
Zhang Q, Zhan RZ, Patsy M, et al. (2023) Differential Response of Engineered Human Cardiac Tissues to Delta and Omicron COVID-19 Virus. Journal of the American Heart Association. e029390
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