| For: | Kim JA, Hong S, Rhee WJ. Microfluidic three-dimensional cell culture of stem cells for high-throughput analysis. World J Stem Cells 2019; 11(10): 803-816 [PMID: 31693013 DOI: 10.4252/wjsc.v11.i10.803] |
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| URL: | https://www.wjgnet.com/1948-0210/full/v11/i10/803.htm |
| Number | Citing Articles |
| 1 |
Xiao Li, Hui Zhu, Bingsong Gu, Cong Yao, Yuyang Gu, Wangkai Xu, Jia Zhang, Jiankang He, Xinyu Liu, Dichen Li. Advancing Intelligent Organ‐on‐a‐Chip Systems with Comprehensive In Situ Bioanalysis. Advanced Materials 2024; 36(18) doi: 10.1002/adma.202305268
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| 2 |
Benedetta Frizzi, Adriana Margarida Barbosa Correia, Irene Faravelli, Ludo Van Den Bosch, Stefania Corti. Using human 3D organoid models to gain mechanistic insight in motor neuron diseases. Nature Reviews Neuroscience 2026; doi: 10.1038/s41583-026-01057-x
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| 3 |
J. Zeitvogel, T. Werfel. Einsatz von 2-D- und 3-D-Kulturen in der Dermatologie. Der Hautarzt 2020; 71(2) doi: 10.1007/s00105-019-04537-7
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| 4 |
Qianyi Zhang, He Huang, Hongliang Dong, Qiang Ma, Hongyan Jin. Engineered Microfluidic Organoid Systems: New Paradigms for Menopause Mechanism Research and Personalized Medicine. Advanced Materials Technologies 2026; 11(9) doi: 10.1002/admt.202502306
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| 5 |
I. A. Ivashchenko, W. W. Wasielewski, O. S. Fedotova, V. N. Slautin, A. V. Semenov. 3D-Cell Culture Systems: Current State. Applied Biochemistry and Microbiology 2025; 61(9) doi: 10.1134/S0003683825700449
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| 6 |
Jiang Wu, Siqi Liu, Xiaowen Zeng, Yang Li, Yinlin Yao, Jing Wang, Guangdong Hu, Kai Kang. Construction and Performance Evaluation of an Astaxanthin–Chitosan/Chitooligosaccharide Hydrogel System for Ex Vivo Culture of Murine Spermatogonial Stem Cells. Biology 2025; 14(12) doi: 10.3390/biology14121664
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| 7 |
David H. Ramos-Rodriguez, Sheila MacNeil, Frederik Claeyssens, Ilida Ortega Asencio. The Use of Microfabrication Techniques for the Design and Manufacture of Artificial Stem Cell Microenvironments for Tissue Regeneration. Bioengineering 2021; 8(5) doi: 10.3390/bioengineering8050050
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| 8 |
Jiang Wu, Kai Kang, Siqi Liu, Yaodan Ma, Meng Yu, Xin Zhao. Recent Progress of In Vitro 3D Culture of Male Germ Stem Cells. Journal of Functional Biomaterials 2023; 14(11) doi: 10.3390/jfb14110543
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| 9 |
Sébastien Sart, Gustave Ronteix, Shreyansh Jain, Gabriel Amselem, Charles N. Baroud. Cell Culture in Microfluidic Droplets. Chemical Reviews 2022; 122(7) doi: 10.1021/acs.chemrev.1c00666
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| 10 |
Aarif Ali, Ishteyaq Majeed Shah, Mohammad Saleem Bhat, Zainab Manzoor, Aadil Ayaz, Muneeb U. Rehman, Sheikh Bilal Ahmad. Biological Insights of Multi-Omics Technologies in Human Diseases. 2024; doi: 10.1016/B978-0-443-23971-7.00014-6
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| 11 |
Floriana Jessica Di Paola, Giulia Calafato, Pier Paolo Piccaluga, Giovanni Tallini, Kerry Jane Rhoden. Patient-Derived Organoid Biobanks for Translational Research and Precision Medicine: Challenges and Future Perspectives. Journal of Personalized Medicine 2025; 15(8) doi: 10.3390/jpm15080394
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| 12 |
Noura A A Ebrahim, Thoraya A Farghaly, Ghada S Masaret, Amani M R Alsaedi, Soliman M A Soliman. From laboratory to clinic: Bridging regulatory and manufacturing gaps in stem cell-based therapies. World Journal of Stem Cells 2026; 18(5): 117591 doi: 10.4252/wjsc.v18.i5.117591
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| 13 |
Talha Chauhdari, Syeda Armana Zaidi, Jilei Su, Yongsheng Ding. Organoids meet microfluidics: recent advancements, challenges, and future of organoids-on-chip. In vitro models 2025; 4(1) doi: 10.1007/s44164-025-00086-7
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| 14 |
Kena Song, Guoqiang Li, Xiangyang Zu, Zhe Du, Liyu Liu, Zhigang Hu. The Fabrication and Application Mechanism of Microfluidic Systems for High Throughput Biomedical Screening: A Review. Micromachines 2020; 11(3) doi: 10.3390/mi11030297
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| 15 |
Devan Patel, Saniya Shetty, Chris Acha, Itzy E. Morales Pantoja, Alice Zhao, Derosh George, David H. Gracias. Microinstrumentation for Brain Organoids. Advanced Healthcare Materials 2024; 13(21) doi: 10.1002/adhm.202302456
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| 16 |
Anna Mihaylova, Dobromira Shopova, Nikoleta Parahuleva, Antoniya Yaneva, Desislava Bakova. (3D) Bioprinting—Next Dimension of the Pharmaceutical Sector. Pharmaceuticals 2024; 17(6) doi: 10.3390/ph17060797
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| 17 |
Brooke Schuster, Michael Junkin, Sara Saheb Kashaf, Isabel Romero-Calvo, Kori Kirby, Jonathan Matthews, Christopher R. Weber, Andrey Rzhetsky, Kevin P. White, Savaş Tay. Automated microfluidic platform for dynamic and combinatorial drug screening of tumor organoids. Nature Communications 2020; 11(1) doi: 10.1038/s41467-020-19058-4
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| 18 |
Austin P. Passaro, Steven L. Stice. Electrophysiological Analysis of Brain Organoids: Current Approaches and Advancements. Frontiers in Neuroscience 2021; 14 doi: 10.3389/fnins.2020.622137
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| 19 |
Hui Zhu, Cong Yao, Zhengqi Xu, Guojin Shang, Jianhua Peng, Huangfan Xie, Tingyu Qian, Zhennan Qiu, Lidia Maeso, Mao Mao, Yucheng Liao, Yong Jiang, Dichen Li, Gorka Orive, Aldo R. Boccaccini. Recent advances in 3D models of the nervous system for neural regeneration research and drug development. Acta Biomaterialia 2025; 202 doi: 10.1016/j.actbio.2025.06.013
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| 20 |
Yaqing WANG, Tingting TAO, Jianhua QIN. Organoids-on-a-chip. SCIENTIA SINICA Vitae 2022; doi: 10.1360/SSV-2022-0027
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| 21 |
Antonio Varone, Justin Ke Nguyen, Lian Leng, Riccardo Barrile, Josiah Sliz, Carolina Lucchesi, Norman Wen, Achille Gravanis, Geraldine A. Hamilton, Katia Karalis, Christopher D. Hinojosa. A novel organ-chip system emulates three-dimensional architecture of the human epithelia and the mechanical forces acting on it. Biomaterials 2021; 275 doi: 10.1016/j.biomaterials.2021.120957
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| 22 |
Shu-Wei Huang, Shian-Chiuan Tzeng, Jem-Kun Chen, Jui-Sheng Sun, Feng-Huei Lin. A Dynamic Hanging-Drop System for Mesenchymal Stem Cell Culture. International Journal of Molecular Sciences 2020; 21(12) doi: 10.3390/ijms21124298
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| 23 |
Natalie Thielen, Chaoyuan Kuang, Edward Chu, Ning Wei. High-throughput screening for novel drug combinations using patient-derived organoids. Biochemical Pharmacology 2026; 251 doi: 10.1016/j.bcp.2026.118090
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| 24 |
Yaqing Wang, Jianhua Qin. Advances in human organoids-on-chips in biomedical research. Life Medicine 2023; 2(1) doi: 10.1093/lifemedi/lnad007
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| 25 |
María Beatriz Durán-Alonso, Hrvoje Petković. Induced Pluripotent Stem Cells, a Stepping Stone to In Vitro Human Models of Hearing Loss. Cells 2022; 11(20) doi: 10.3390/cells11203331
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| 26 |
Na Zeng. The Impact of Cellular Microenvironments and Biomaterials on Induced Pluripotent Stem Cell Generation. Journal of Smart and Sustainable Farming 2025; doi: 10.64026/JSSF/2025012
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| 27 |
Margot J. Amitrano, Mina Cho, William L. Murphy. Screening of Biomaterials for Stem Cell Culture Applications. ACS Biomaterials Science & Engineering 2025; 11(7) doi: 10.1021/acsbiomaterials.5c00088
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| 28 |
Negar Farhang Doost, Soumya K. Srivastava. A Comprehensive Review of Organ-on-a-Chip Technology and Its Applications. Biosensors 2024; 14(5) doi: 10.3390/bios14050225
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| 29 |
Simone Sleep, Jennifer Gunter, Deanne H Hryciw, Roy George. A 3D naive biological model for high-throughput live-cell analysis of mitochondrial oxygen consumption in response to photobiomodulation treatment. Lasers in Dental Science 2025; 9(1) doi: 10.1007/s41547-025-00296-y
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| 30 |
Raghu Ram Achar, Archer Ann Catherine, Sanya Hazel Soans, Shraman Kumar Bohra, Manjunatha H Boregowda, SubbaRao V. Madhunapantula, Asha Srinivasan. Microfluidics and Multi Organs on Chip. 2022; doi: 10.1007/978-981-19-1379-2_14
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