Airflow‐assisted 3D bioprinting of human heterogeneous microspheroidal organoids with microfluidic nozzle H Zhao, Y Chen, L Shao, M Xie, J Nie, J Qiu, P Zhao, H Ramezani, J Fu, ... Small 14 (39), 1802630, 2018 | 111 | 2018 |
Electro‐assisted bioprinting of low‐concentration GelMA microdroplets M Xie, Q Gao, H Zhao, J Nie, Z Fu, H Wang, L Chen, L Shao, J Fu, Z Chen, ... Small 15 (4), 1804216, 2019 | 105 | 2019 |
3D printing of high-strength chitosan hydrogel scaffolds without any organic solvents L Zhou, H Ramezani, M Sun, M Xie, J Nie, S Lv, J Cai, J Fu, Y He Biomaterials Science 8 (18), 5020-5028, 2020 | 99 | 2020 |
In situ 3D bioprinting with bioconcrete bioink M Xie, Y Shi, C Zhang, M Ge, J Zhang, Z Chen, J Fu, Z Xie, Y He Nature communications 13 (1), 3597, 2022 | 65 | 2022 |
3D printed multi-scale scaffolds with ultrafine fibers for providing excellent biocompatibility Q Gao, C Xie, P Wang, M Xie, H Li, A Sun, J Fu, Y He Materials Science and Engineering: C 107, 110269, 2020 | 57 | 2020 |
Why choose 3D bioprinting? Part II: methods and bioprinters Y He, Z Gu, M Xie, J Fu, H Lin Bio-Design and Manufacturing 3, 1-4, 2020 | 53 | 2020 |
Gelatin methacryloyl hydrogel, from standardization, performance, to biomedical application J He, Y Sun, Q Gao, C He, K Yao, T Wang, M Xie, K Yu, J Nie, Y Chen, ... Advanced Healthcare Materials 12 (23), 2300395, 2023 | 42 | 2023 |
Bioprinting of novel 3D tumor array chip for drug screening M Xie, Q Gao, J Fu, Z Chen, Y He Bio-Design and Manufacturing 3, 175-188, 2020 | 41 | 2020 |
Self‐adaptive all‐in‐one delivery chip for rapid skin nerves regeneration by endogenous mesenchymal stem cells LH Peng, XH Xu, YF Huang, XL Zhao, B Zhao, SY Cai, MJ Xie, MZ Wang, ... Advanced Functional Materials 30 (40), 2001751, 2020 | 38 | 2020 |
Protocols of 3D bioprinting of gelatin methacryloyl hydrogel based bioinks M Xie, K Yu, Y Sun, L Shao, J Nie, Q Gao, J Qiu, J Fu, Z Chen, Y He JoVE (Journal of Visualized Experiments), e60545, 2019 | 34 | 2019 |
Facile 3D cell culture protocol based on photocurable hydrogels M Xie, Y Zheng, Q Gao, Y He Bio-Design and Manufacturing 4, 149-153, 2021 | 24 | 2021 |
3D biofabrication of microfiber-laden minispheroids: a facile 3D cell co-culturing system M Xie, Q Gao, J Qiu, J Fu, Z Chen, Y He Biomaterials science 8 (1), 109-117, 2020 | 23 | 2020 |
Patient-derived tumor organoids: new progress and opportunities to facilitate precision cancer immunotherapy J Wang, C Chen, L Wang, M Xie, X Ge, S Wu, Y He, X Mou, C Ye, Y Sun Frontiers in Oncology 12, 872531, 2022 | 21 | 2022 |
Why choose 3D bioprinting? Part I: a brief introduction of 3D bioprinting for the beginners Y He, M Xie, Q Gao, J Fu Bio-Design and Manufacturing 2, 221-224, 2019 | 17 | 2019 |
Rapid and mass manufacturing of soft hydrogel microstructures for cell patterns assisted by 3D printing C He, X Chen, Y Sun, M Xie, K Yu, J He, J Lu, Q Gao, J Nie, Y Wang, Y He Bio-Design and Manufacturing 5 (4), 641-659, 2022 | 16 | 2022 |
Why choose 3D bioprinting? Part III: printing in vitro 3D models for drug screening Y He, J Nie, M Xie, Q Gao Bio-Design and Manufacturing 3, 160-163, 2020 | 12 | 2020 |
Perfusable vessel-on-a-chip for antiangiogenic drug screening with coaxial bioprinting Z Gu, M Xie, S Lv, N Liu, J He, Y Li, Y Zhu, J Fu, H Lin, C Xie, Y He International journal of bioprinting 8 (4), 2022 | 8 | 2022 |
Cell-modified bioprinted microspheres for vascular regeneration J Shen, Y Ji, M Xie, H Zhao, W Xuan, L Yin, X Yu, F Xu, S Su, J Nie, Y Xie, ... Materials Science and Engineering: C 112, 110896, 2020 | 8 | 2020 |
Varying mechanical forces drive sensory epithelium formation M Xia, M Wu, Y Li, Y Liu, G Jia, Y Lou, J Ma, Q Gao, M Xie, Y Chen, Y He, ... Science Advances 9 (44), eadf2664, 2023 | 5 | 2023 |
Thermo-sensitive sacrificial microsphere-based bioink for centimeter-scale tissue with angiogenesis M Xie, Y Sun, J Wang, Z Fu, L Pan, Z Chen, J Fu, Y He International journal of bioprinting 8 (4), 2022 | 5 | 2022 |