1. Y. Takata, R. Banan Sadeghian, K. Fujimoto, and R. Yokokawa, “Online monitoring of epithelial barrier kinetics and cell detachment during cisplatin-induced toxicity of renal proximal tubule cells,” Analyst, 2024, Advance Article, https://doi.org/10.1039/D4AN00267A
2. R. Banan Sadeghian, R. Ueno, Y. Takata, A. Kawakami, C. Ma, T. Araoka, M. Takasato, and R. Yokokawa, “Cells sorted off hiPSC-derived kidney organoids coupled with immortalized cells reliably model the proximal tubule,” Communications Biology, vol. 6, no. 1, p. 483, 2023.
3. R. Ueno, M. Kuninori, T. Sumi, R. Banan Sadeghian, Y. Takata, A. Iguchi, M. Tsuda, F. Yamashita, K. Ichikawa, and R. Yokokawa, “Relationship between Adsorption and Toxicity of Nephrotoxic Drugs in Microphysiological Systems (MPS),” Micromachines, vol. 14, no. 4: p. 761. 2023.
4. Y. Takata, R. Ueno, R. Banan Sadeghian, K. Naganuma, K. Tsuji, K. Fujimoto and R. Yokokawa, “Evaluation of Trans-epithelial Electrical Resistance by Removal and Replenishment of Extracellular Ca2+,” IEEJ Transactions on Sensors and Micromachines, vol. 142, no. 2, pp. 21-28, 2022.
5. Y. Nashimoto, Y. Teraoka, R. Banan Sadeghian, A. Nakamasu, Y. Arima, S. Hanada, H. Kotera, K. Nishiyama, T. Miura and R. Yokokawa, “Perfusable Vascular Network with a Tissue Model in a Microfluidic Device,” JoVE, vol. 4, no. 134, 2018. doi: 10.3791/57242.
6. R. Banan Sadeghian, Majid Ebrahimi, and Sahar Salehi “Electrical Stimulation of Microengineered Skeletal Muscle Tissue, Effect of Stimulus Parameters on Myotube Contractility and Maturation”, Journal of Tissue Engineering and Regenerative Medicine, vol. 12, pp. 912-922, 2018.
7. S. Salehi, S. Ostrovidov, M. Ebrahimi, R. Banan Sadeghian, X. Liang, K. Nakajima, H. Bae, T. Fujie, A. Khademhosseini, “Development of Flexible Cell-Loaded Ultrathin Ribbons for Minimally Invasive Delivery of Skeletal Muscle Cells,” ACS Biomaterials Science & Engineering, vol. 3, pp. 579-589, 2017.
8. S. Ahadian, S. Yamada, M. Estili, X. Liang, R. Banan Sadeghian, K. Nakajima, H. Shiku, T. Matsue and A. Khademhosseini, “Carbon nanotubes embedded in embryoid bodies direct cardiac differentiation,” Biomedical Microdevices, vol.19, no. 3, p. 57, 2017.
9. R. Banan Sadeghian, J. Han, S. Ostrovidov†, S. Salehi†, B. Bahraminejad, S. Ahadian, M. Chen, and A. Khademhosseini, “Macroporous Mesh of Nanoporous Gold in Electrochemical Monitoring of Superoxide Release from Skeletal Muscle Cells,” Biosensors and Bioelectronics, Special Issue of Biosensors 2016, vol. 88, pp. 41-47, 2017.
10. W. Zhang†, Y-S. Zhang†, S. Mahwish Bakht†, J. Aleman, S-R. Shin, K. Yue, M. Sica, J. Ribas, M. Duchamp, R. Banan Sadeghian, D. Kim, M-R. Dokmeci, A. Atala and A. Khademhosseini, “Elastomeric free-form blood vessels for interconnecting organs on chip systems,” Lab on a Chip, vol. 16, pp. 1579-1586, 2016.
11. S-A. Mousavi Shaegh, F. De Ferrari, Y-S. Zhang, M. Nabavinia, N. B. Mohammad, J. Ryan, A. Pourmand, E. Laukaitis, R. Banan Sadeghian, A. Nadhman, S-R. Shin, A. Sanati Nezhad, A. Khademhosseini and M-R. Dokmeci, “A microfluidic optical platform for real-time monitoring of pH and oxygen in microfluidic bioreactors and organ-on-chip devices,” Biomicrofluidics, vol. 10, 044111 (14 pages), 2016.
12. R. Banan Sadeghian, S. Ostrovidov, J. Han, S. Salehi, B. Bahraminejad, H. Bae, M. Chen, and A. Khademhosseini, “Online Monitoring of Superoxide Anions Released from Skeletal Muscle Cells using an Electrochemical Biosensor based on Thick-film Nanoporous Gold,” ACS Sensors, vol. 1, pp. 921-928, 2016.
13. S. Ahadian†, R. Banan Sadeghian†, S. Yaginuma, J. Ramón-Azcón, Y. Nashimoto, X. Liang, H. Bae, K. Nakajima, H. Shiku, T. Matsue, K. S. Nakayama, and A. Khademhosseini, “Hydrogels containing metallic glass sub-micron wires for regulating skeletal muscle cell behavior,” Biomaterial Sciences, vol. 3, no. 11, pp. 1449-1458, 2015.
14. Y. Bayam, Logeeswaran VJ, A. M. Katzenmeyer, R. Banan Sadeghian, R. J. Chacon, Mi. C. Wong, C. E. Hunt, M. Kenichi, B. Jeyadevan and M. Saif Islam, “Ultra-Sharp Ga2O3 Nanorods Synthesis for High Performance Field Emission Devices,” Science of Advanced Materials, vol. 7, no. 2, pp. 211-218, 2015.
15. S. Ahadian, R. Banan Sadeghian†, S. Salehi† S. Ostrovidov†, H. Bae, M. Ramalingam and A. Khademhosseini, “Bioconjugated Hydrogels for Tissue Engineering and Regenerative Medicine,” Bioconjugate Chemistry, vol. 26, pp. 1984-2001, 2015.
16. J-H. Bahk, R. Banan Sadeghian, Z. Bian and A. Shakouri, “Seebeck enhancement through miniband conduction in III-V semiconductor superlattices at low temperatures,” Journal of Electronic Materials, vol. 41, pp. 1498-1503, 2012.
17. R. Banan Sadeghian, J-H. Bahk, Z. Bian, and A. Shakouri, “Calculation of Nonlinear Thermoelectric Coefficients of InAs1-xSbx using Monte Carlo Method,” Journal of Electronic Materials, vol. 41, no. 6, pp. 1370-1375, 2011.
18. R. Banan Sadeghian, O. Pantchenko, D. Tate, and A. Shakouri, “Miniaturized concentration cells for small-scale energy harvesting based on reverse electrodialysis,” Applied Physics Letters, vol. 99, p. 173702 (3 pages), 2011.
19. R. Banan Sadeghian and M. Saif Islam, “Ultralow-voltage field-ionization discharge on whiskered silicon nanowires for gas-sensing applications,” Nature Materials, vol. 10, no. 2, pp. 135-140, 2011.
20. R. Banan Sadeghian, N. Chivu and M. Kahrizi, “Sub-torr Operation of a Miniature Gas Ionization Sensor Based on Gold Nanowires”, Sensors and Materials, vol. 21, no. 1, pp. 53-64, 2009.
21. R. Banan Sadeghian, S. Badilescu, Y. Djaoued, S. Balaji, V-V. Truong and M. Kahrizi, “Ultra-Low-Voltage Schottky-Barrier Field-Enhanced Electron Emission from Gold Nanowires Electrochemically Grown in Modified Porous Alumina Templates,” IEEE Electron Device Letters, vol. 29, no. 4, pp. 312-314, 2008.
22. R. Banan Sadeghian and M. Kahrizi, “A Novel Gas Sensor Based on Tunneling-Field-Ionization on Whisker-Covered Gold Nanowires,” IEEE Sensors Journal, vol. 8, no. 2, pp. 161-169, 2008.
23. S. Badilescu, A-R. Hajiaboli, N. Seirafianpour, R. Banan Sadeghian, M. Kahrizi and V-V. Truong, “Study of the Structural Evolution within Polystyrene and Polystyrene-Gold Composite Colloidal Crystals by Atomic Force Microscopy and Scanning Electron Microscopy,” Applied Physics Letters, vol. 90, p. 023113 (3 pages), 2007.
24. Y. Djaoued, S. Badilescu, S. Balaji, N. Seirafianpour, A-R. Hajiaboli, R. Banan Sadeghian, K. Braedley, R.Brüning, M. Kahrizi and V-V. Truong, “A Micro-Raman Spectroscopy Study of Colloidal Crystal Films of Polystyrene-Gold Composites,” Applied Spectroscopy, vol. 61, no. 11, pp. 1202-1210, 2007.
25. R. Banan Sadeghian and M. Kahrizi, “A Novel Miniature Gas Ionization Sensor Based on Freestanding Gold Nanowires,” Sensors and Actuators: A Physical, vol. 137, no. 2, pp. 248-255, 2007.
† Shared authorship
1. A. K. Kopec, R. Yokokawa, N. Khan, I. Horii, J. E. Finley, C. P. Bono, C. Donovan, J. Roy, J. Harney, A. D. Burdick, B. Jessen, S. Lu, M. Collinge, R. Banan Sadeghian, M. Derzi, L. Tomlinson, and J. E. Burkhardt, “Microphysiological systems in early stage drug development: Perspectives on current applications and future impact,” The Journal of Toxicological Sciences, vol. 15, no. 3, pp. 99-114, 2021.
2. S. Ostrovidov, Sahar Salehi, M. Costantini, K. Suthiwanich, M. Ebrahimi, R. Banan Sadeghian, T. Fujie, X. Shi, S. Cannata, C. Gargioli, A. Tamayol, M. R. Dokmeci, G. Orive, W. Swieszkowski and A. Khademhosseini, “3D Bioprinting in Skeletal Muscle Tissue Engineering,” Small, vol. 15, no. 24, p. 1805530, 2019.
3. S. Ostrovidov, X. Shi, R. Banan Sadeghian, S. Salehi, T. Fujie, H. Bae, M. Ramalingam and A. Khademhosseini, “Stem Cell Differentiation Toward the Myogenic Lineage for Muscle Tissue Regeneration: A Focus on Muscular Dystrophy,” Stem Cell Reviews and Reports, pp. 1-19, ISSN: 1550-8943 (Print) 1558-6804 (Online), 2015.
1. R. Banan Sadeghian, C. Ma, A. Kawakami, M. Takasato, and R. Yokokawa, “Apical Microvilli of a Hybrid hiPSC-derived Proximal Tubule Microtissue React to Flow-Induced Shear Stress in a Microphysiological System,” Transducers, pp. 658-661, Kyoto, Japan, 25-29 June 2023. (Oral)
2. C. Ma, R. Banan Sadeghian, A. Kawakami, K. Fujimoto, T. Araoka, and R. Yokokawa, “Investigation of Flow-Induced Intracellular Ca2+ Increase in Proximal Tubule Cells on a Microphysiological System for ADPKD Modeling,” Transducers, pp. 997-1000, Kyoto, Japan, 25-29 June 2023. (Poster)
3. R. Banan Sadeghian, Y. Takata, C. Ma, M. Takasato, and R. Yokokawa, “An MPS model to study the effect of infinitesimally small shear stress on the morphology and performance of a hybrid proximal tubule microtissue,” 2nd Microphysiological Systems (MPS) World Summit, p. 279, Berlin, Germany, 26-30 June 2023. (Poster)
4. Y. Takata, R. Banan Sadeghian, K. Fujimoto, and R. Yokokawa, “Monitoring drug-induced nephrotoxicity modified by cell polarity in renal proximal tubule epithelial tissue with an impedance measurement system”, 2nd Microphysiological Systems (MPS) World Summit, p. 294, Berlin, Germany, 26-30 June 2023. (Poster)
5. R. Banan Sadeghian, C. Ma., A. Kawakami, Y. Takata, T. Araoka, M. Takasato, and R. Yokokawa, “Application of pseudo proximal tubule cells extracted from hiPSC-derived kidney organoids in modeling the organ in a microphysiological system,” RIKEN BDR-CuSTOM Joint Organoid Symposium, Kobe, Japan, 15-17 Feb. 2023, S5-3 (Oral) and P03-B (Poster)
6. C. Ma, R. Banan Sadeghian, K. Fujimoto, A. Kawakami, T. Araoka, R. Yokokawa, “Investigation of Flow-Induced Intracellular Ca2+ Increase in Proximal Tubule Cells Extracted from hiPSC-Derived Kidney Organoids in a Microphysiological System for Modeling ADPKD,” RIKEN BDR-CuSTOM Joint Organoid Symposium, Kobe, Japan, 15-17 Feb. 2023, P34-A (Poster)