Papers
- Assaf, T., Habib, L., Sasson, A., Karni-Ashkenazi, S., & Rotenberg, M. Y. (2025). Illuminating the Underlying Mechanism of Intracellular Optoelectronic Modulation Using Silicon Nanowires. ACS Nano.
- Qin, X. H., Rotenberg, M. Y., Smits, A., Steinkühler, J., & Vallejo-Giraldo, C. (2025). Voices from the field: Expert perspectives on securing ERC Starting Grant funding for biomaterials innovation. Cell Biomaterials, 1(6).
- Hathot, N., Assaf, T., Habib, L., Cohen, N. M., Nir, D., Borodetsky, A., … & Rotenberg, M. Y. (2025). Three-dimensional cellular construct with impregnated silicon nanowires for intracellular optoelectronic biointerface. Materials Today Bio, 33, 102039.
- Zhang R, Duan R, Yang D, Wu H, Wang B, Chang Z, Chen J, Dai J, Lv Y, Liu Y, Rotenberg MY, Liang D, Chen YH, Fang Y. Fluorinated Amino-acid-doped microarray-based biochemical patches Deciphers in-situ spatiotemporal dynamics amidst intricate Bio-Interfaces. Chemical Engineering Journal. 2025 May 3:163222.
- Wang, B; Lv, A; Wu, H; Guo, B; Lu, Y; Chang, Z; Wu, Y; Li, X; Yang, Q; Nie, J; Wei, J; Ren, Q; Ji, D; Zhang, Y; Rotenberg, M.Y.* ; Fang, Y* (2025). Anti-freezing Ultrathin Bioionic Gel-Based Wearable System for Artificial Intelligence-assisted Arrhythmia Diagnosis in Hypothermia. ACS nano, *- co-corresponding authors
- Zhao L, Lu Y, Lu X, Guo B, Chang Z, Ren Q, Li X, Wang B, Lv A, Wei J, Nie J, Lv Y, Rotenberg MY*, Zhang Y, Ji D, Fang Y*. Hierarchical Porous Aerogel‐Hydrogel Interlocking Bioelectronic Interface for Arrhythmia Management. Small Methods. 2025 Jan 1:2401844. *- co-corresponding authors
- Chang, Z., Wang, B., Ren, Q., Nie, J., Guo, B., Lu, Y., … Rotenberg, MY & Fang, Y. (2024). Fully Implantable Wireless Cardiac Pacing and Sensing System Integrated with Hydrogel Electrodes. Advanced Science, 11(44), 2401982.
- Zhao, L., Chang, Z., Guo, B., Lu, Y., Lu, X., Ren, Q., Lv, A., Nie, J., Ji, d., Rotenberg, MY…. & Fang, Y. (2024). Robust, Stretchable Bioelectronic Interfaces for Cardiac Pacing Enabled by Interfacial Transfer of Laser-induced Graphene via Water-response, Nonswellable PVA Gels. Biosensors and Bioelectronics, 116453.
- Chen, J., Yang, D., Zhu, G., Zhang, R., Wang, B., Chang, Z., Dai, J., Wu, W., Rotenberg M.Y., Fang, Y. (2024). Automated and ultrasensitive point-of-care glycoprotein detection using boronate-affinity enhanced organic electrochemical transistor patch. Biosensors and Bioelectronics, 116229.
- Dai J., Wang B., Chang Z., Lu X., Nie J., Ren Q., Lv Y., Rotenberg M.Y., Fang Y. (2024). Injectable Mesh‐like Conductive Hydrogel Patch for Elimination of Atrial Fibrillation. Advanced Healthcare Materials: 2303219.
- Yitzhak-David, S. L. and Rotenberg, M. Y. (2023). Emerging Optoelectronic Technologies for Next-Generation Leadless Bioelectronic Modulation. Cell Reports Physical Science 4.5.
- Prominski, A., Shi, J., Li, P., Yue, J., Lin, Y., Park, J., …Tian B. & Rotenberg, M. Y. (2022). Porosity-based heterojunctions enable leadless optoelectronic modulation of tissues. Nature Materials, 21(6), 647-655.
- Highlighted in a news & views article. Micera, S., Redolfi Riva, E. Wireless neuromodulation with porous silicon. Nat. Mater. 21, 614–616 (2022).
- Rotenberg, M. Y.*, E. N. Schaumann*, A. Prominski, B. Tian, Silicon Nanowires and Optical Stimulation for Investigations of Intra- and Intercellular Electrical Coupling. Journal of Visualized Experiments: Jove 167, 2021.
- Fang, Y.*, Prominski A.*, Rotenberg, M. Y.*, … & Tian, B. Micelle-enabled self-assembly of porous and monolithic carbon membranes for bioelectronic interfaces. Nature Nanotechnology, 2020 1-8. *-equal contribution
- Nair, J. Yi, D. Isheim, Rotenberg, M. Y., L. Y. Meng, F. Y. Shi, X. Q. Chen, X. Gao, A. Prominski, Y. W. Jiang, J. P. Yue, C. T. Gallagher, D. N. Seidman, B. Tian, Laser writing of nitrogen-doped silicon carbide for biological modulation. Science Advances, 2020.
- Rotenberg, M. Y., B. Elbaz, V. Nair, E. N. Schaumann, N. Yamamoto, N. Sarma, L. Matino, F. Santoro, B. Z. Tian, Silicon nanowires for intracellular optical interrogation with subcellular resolution. Nano Letters, 2020, 20, 1226-1232.
- Rotenberg, M. Y., Yamamoto, N., Schaumann, E. N., Matino, L., Santoro, F., & Tian, B. (2019). Living myofibroblast–silicon composites for probing electrical coupling in cardiac systems. Proceedings of the National Academy of Sciences, 201913651.
- Parameswaran, R.*, Koehler, K.*, Rotenberg, M. Y., Burke, M. J., Kim, J., Jeong, K. Y., … & Tian, B. (2019). Optical stimulation of cardiac cells with a polymer-supported silicon nanowire matrix. Proceedings of the National Academy of Sciences, 116(2), 413-421.
- Rotenberg, M. Y., & Tian, B. (2018). Talking to Cells: Semiconductor Nanomaterials at the Cellular Interface. Advanced Biosystems, 2(4), 1700242.
- Rotenberg, M. Y., & Tian, B. (2017). Bioelectronic devices: Long-lived recordings. Nature Biomedical Engineering, 1(3), 0048.
- Polyak, B., Medved, M., Lazareva, N., Steele, L., Patel, T., Rai, A., Rotenberg, M.Y., Wasko, K., Kohut A.R., Sensenig, R., & Friedman, G. (2016). Magnetic nanoparticle-mediated targeting of cell therapy reduces in-stent stenosis in injured arteries. ACS nano, 10(10), 9559-9569.
- Rotenberg, M. Y., Gabay, H., Etzion, Y., & Cohen, S. (2016). Feasibility of leadless cardiac pacing using injectable magnetic microparticles. Scientific reports, 6, 24635.
- Sapir-Lekhovitser, Y., Rotenberg, M. Y., Jopp, J., Friedman, G., Polyak, B., & Cohen, S. (2016). Magnetically actuated tissue engineered scaffold: insights into mechanism of physical stimulation. Nanoscale, 8(6), 3386-3399.
- Rotenberg, M. Y., Ruvinov, E., Armoza, A., & Cohen, S. (2012). A multi-shear perfusion bioreactor for investigating shear stress effects in endothelial cell constructs. Lab on a Chip, 12(15), 2696-2703.
Patent Applications
Rotenberg M. Y, Tian, B,. US Provisional Application. Title: Methods and Systems for Modulating Cellular Activation.
Rotenberg M. Y, Etzion Y, Cohen S. PCT Patent Application No.: PCT/IL2015/050019 filed: 05-Jan-2015. Title: Method and System for Heart Pacing.
Rotenberg M. Y, Cohen S. US Provisional Application No. 61/350,492 Our Ref: 27336/US10PROV. Title: Micro-Fabricated Multi-Shear Perfusion Bioreactor.
