Self-assembling human heart organoids for the modeling of cardiac development and congenital heart disease YR Lewis-Israeli, AH Wasserman, MA Gabalski, BD Volmert, Y Ming, ... Nature communications 12 (1), 5142, 2021 | 312 | 2021 |
Heart organoids and engineered heart tissues: Novel tools for modeling human cardiac biology and disease YR Lewis-Israeli, AH Wasserman, A Aguirre Biomolecules 11 (9), 1277, 2021 | 48 | 2021 |
Longitudinal morphological and functional characterization of human heart organoids using optical coherence tomography Y Ming, S Hao, F Wang, YR Lewis-Israeli, BD Volmert, Z Xu, ... Biosensors and Bioelectronics 207, 114136, 2022 | 43 | 2022 |
A patterned human primitive heart organoid model generated by pluripotent stem cell self-organization B Volmert, A Kiselev, A Juhong, F Wang, A Riggs, A Kostina, C O’Hern, ... Nature communications 14 (1), 8245, 2023 | 32 | 2023 |
Generation of heart organoids modeling early human cardiac development under defined conditions Y Israeli, M Gabalski, K Ball, A Wasserman, J Zou, G Ni, C Zhou, A Aguirre bioRxiv, 2020.06. 25.171611, 2020 | 24 | 2020 |
Oxytocin promotes epicardial cell activation and heart regeneration after cardiac injury AH Wasserman, AR Huang, YR Lewis-Israeli, MKD Dooley, AL Mitchell, ... Frontiers in Cell and Developmental Biology 10, 985298, 2022 | 16 | 2022 |
Modeling the effects of maternal diabetes on the developing human heart using pluripotent stem cell–derived heart organoids YR Lewis‐Israeli, M Abdelhamid, I Olomu, A Aguirre Current protocols 2 (6), e461, 2022 | 16 | 2022 |
Generating self-assembling human heart organoids derived from pluripotent stem cells YR Lewis-Israeli, BD Volmert, MA Gabalski, AR Huang, A Aguirre Journal of visualized experiments: JoVE, 10.3791/63097, 2021 | 14 | 2021 |
ER stress and lipid imbalance drive diabetic embryonic cardiomyopathy in an organoid model of human heart development A Kostina, YR Lewis-Israeli, M Abdelhamid, MA Gabalski, A Kiselev, ... Stem Cell Reports 19 (3), 317-330, 2024 | 8 | 2024 |
Self-assembling human heart organoids for the modeling of cardiac development and congenital heart disease. Nat Commun 12 (1): 5142 YR Lewis-Israeli, AH Wasserman, MA Gabalski, BD Volmert, Y Ming, ... | 8 | 2021 |
A thin-film optogenetic visual prosthesis EB Knudsen, K Zappitelli, J Brown, J Reeder, KS Smith, M Rostov, J Choi, ... bioRxiv, 2023.01. 31.526482, 2023 | 7 | 2023 |
A patterned human heart tube organoid model generated by pluripotent stem cell self-assembly B Volmert, A Riggs, F Wang, A Juhong, A Kiselev, A Kostina, C O’hern, ... bioRxiv, 2022.12. 16.519611, 2022 | 7 | 2022 |
ER stress and lipid imbalance drive embryonic cardiomyopathy in a human heart organoid model of pregestational diabetes A Kostina, YR Lewis-Israeli, M Abdelhamid, MA Gabalski, BD Volmert, ... bioRxiv, 2023 | 6 | 2023 |
Self-Assembling Human Pluripotent Stem Cell-Derived Heart Organoids for the Study of Heart Development and Congenital Heart Disease YRL Israeli Michigan State University, 2023 | 1 | 2023 |
Generation of self-assembling heart organoids from human pluripotent stem cells YR Lewis-Israeli, BD Volmert, MA Gabalski, AR Huang, A Aguirre | 1 | 2022 |
Pluripotent stem cell-derived heart organoid A Aguirre, YR Israeli US Patent App. 18/010,946, 2023 | | 2023 |