Page 24 - Read Online
P. 24
Chen et al. Soft Sci. 2026, 6, 3 Page 21 of 26
67. Ren, Z.; Zhang, R.; Soon, R. H.; et al. Soft-bodied adaptive multimodal locomotion strategies in fluid-filled confined spaces. Sci. Adv.
2021, 7, eabh2022. DOI PubMed PMC
68. Yang, L.; Zhang, T.; Huang, H.; Ren, H.; Shang, W.; Shen, Y. An On-Wall-Rotating Strategy for Effective Upstream motion of
untethered millirobot: principle, design, and demonstration. IEEE. Trans. Robot. 2023, 39, 2419-28. DOI
69. Ren, Z.; Hu, W.; Dong, X.; Sitti, M. Multi-functional soft-bodied jellyfish-like swimming. Nat. Commun. 2019, 10, 2703. DOI PubMed
PMC
70. Sun, M.; Tian, C.; Mao, L.; et al. Reconfigurable magnetic slime robot: deformation, adaptability, and multifunction. Adv. Funct. Mater.
2022, 32, 2112508. DOI
71. Wu, Y.; Zhang, S.; Yang, Y.; Li, Z.; Wei, Y.; Ji, Y. Locally controllable magnetic soft actuators with reprogrammable contraction-
derived motions. Sci. Adv. 2022, 8, eabo6021. DOI PubMed PMC
72. Yang, X.; Shang, W.; Lu, H.; et al. An agglutinate magnetic spray transforms inanimate objects into millirobots for biomedical
applications. Sci. Robot. 2020, 5, eabc8191. DOI PubMed
73. Kim, H. J.; Koo, J. H.; Lee, S.; Hyeon, T.; Kim, D. Materials design and integration strategies for soft bioelectronics in digital
healthcare. Nat. Rev. Mater. 2025, 10, 654-73. DOI
74. Sun, B.; Jia, R.; Yang, H.; et al. Magnetic arthropod millirobots fabricated by 3D-printed hydrogels. Adv. Intell. Syst. 2021, 4, 2100139.
DOI
75. Chen, Z.; Wang, Y.; Chen, H.; et al. A magnetic multi-layer soft robot for on-demand targeted adhesion. Nat. Commun. 2024, 15, 644.
DOI PubMed PMC
76. Kim, Y.; Parada, G. A.; Liu, S.; Zhao, X. Ferromagnetic soft continuum robots. Sci. Robot. 2019, 4, eaax7329. DOI PubMed
77. Wang, T.; Ugurlu, H.; Yan, Y.; et al. Adaptive wireless millirobotic locomotion into distal vasculature. Nat. Commun. 2022, 13, 4465.
DOI PubMed PMC
78. Liu, X.; Wang, L.; Xiang, Y.; et al. Magnetic soft microfiberbots for robotic embolization. Sci. Robot. 2024, 9, eadh2479. DOI
79. Wang, H.; Zhu, Z.; Jin, H.; Wei, R.; Bi, L.; Zhang, W. Magnetic soft robots: Design, actuation, and function. J. Alloys. Compd. 2022,
922, 166219. DOI
80. Ebrahimi, N.; Bi, C.; Cappelleri, D. J.; et al. Magnetic actuation methods in bio/soft robotics. Adv. Funct. Mater. 2020, 31, 2005137.
DOI
81. Chen, J.; Jin, D.; Wang, Q.; Ma, X. Programming ferromagnetic soft materials for miniature soft robots: design, fabrication, and
applications. J. Mater. Sci. &. Technol. 2025, 219, 271-87. DOI
82. Eshaghi, M.; Ghasemi, M.; Khorshidi, K. Design, manufacturing and applications of small-scale magnetic soft robots. Extreme. Mech.
Lett. 2021, 44, 101268. DOI
83. Malappuram, K. M.; Chatterjee, K.; Homer-Vanniasinkam, S.; Nain, A. Clinical challenges in soft robotics. Adv. Robot. Res. 2025, 1,
202400018. DOI
84. Zhao, X.; Kim, J.; Cezar, C. A.; et al. Active scaffolds for on-demand drug and cell delivery. Proc. Natl. Acad. Sci. U. S. A. 2011, 108,
67-72. DOI PubMed PMC
85. Goudu, S. R.; Yasa, I. C.; Hu, X.; Ceylan, H.; Hu, W.; Sitti, M. Biodegradable untethered magnetic hydrogel Milli-Grippers. Adv. Funct.
Mater. 2020, 30, 2004975. DOI
86. Cezar, C. A.; Kennedy, S. M.; Mehta, M.; et al. Biphasic ferrogels for triggered drug and cell delivery. Adv. Healthc. Mater. 2014, 3,
1869-76. DOI PubMed PMC
87. Wang, H.; Hou, Y.; Chen, L.; et al. Superparamagnetic hydrogels: Precision-driven platforms for biomedicine, robotics, and
environmental remediation. Biomed. Technol. 2025, 10, 100084. DOI
88. Ikeda, J.; Takahashi, D.; Watanabe, M.; Kawai, M.; Mitsumata, T. Particle size in secondary particle and magnetic response for
carrageenan magnetic hydrogels. Gels 2019, 5, 39. DOI PubMed PMC
89. Zhou, C.; Wang, C.; Xu, K.; et al. Hydrogel platform with tunable stiffness based on magnetic nanoparticles cross-linked GelMA for
cartilage regeneration and its intrinsic biomechanism. Bioact. Mater. 2023, 25, 615-28. DOI PubMed PMC
90. Zhang, H.; Hua, S.; He, C.; et al. Application of 4D-printed magnetoresponsive FOGS hydrogel scaffolds in auricular cartilage
regeneration. Adv. Healthc. Mater. 2025, 14, e2404488. DOI PubMed
91. Ge, T. J.; Roquero, D. M.; Holton, G. H.; et al. A magnetic hydrogel for the efficient retrieval of kidney stone fragments during
ureteroscopy. Nat. Commun. 2023, 14, 3711. DOI PubMed PMC
92. Shen, Y.; Cao, J.; Zhou, E.; et al. Tough hydrogel-coated containment capsule of magnetic liquid metal for remote gastrointestinal
operation. Natl. Sci. Rev. 2025, 12, nwaf042. DOI PubMed PMC
93. Wu, W. S.; Yan, X.; Chen, S.; et al. Minimally invasive delivery of percutaneous ablation agent via magnetic colloidal hydrogel injection
for treatment of hepatocellular carcinoma. Adv. Mater. 2024, 36, e2309770. DOI PubMed

