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International Journal of Bioprinting Advancements in 3D printing
directly contributes to the development of organ 5. Neufeld L, Yeini E, Pozzi S, et al. 3D bioprinted cancer
transplantation and personalized medicine. models: from basic biology to drug development. Nat Rev
Cancer. 2022;22(12):679-692.
Acknowledgments doi: 10.1038/s41568-022-00514-w
6. Chae S, Cho DW. Three-dimensional bioprinting
None.
with decellularized extracellular matrix-based bioinks
in translational regenerative medicine. MRS Bullet.
Funding 2022;47(1):70-79.
This work was supported by Heilongjiang Province doi: 10.1557/s43577-021-00260-8
Key Research and Development Program Under Grant 7. Muskan, Gupta D, Negi NP. 3D bioprinting: printing the
(2022XJ03C07). future and recent advances. Bioprinting. 2022;27:e00211.
doi: 10.1016/j.bprint.2022.e00211
Conflict of interest 8. Antezana PE, Municoy S, Álvarez-Echazú MI, et al. The
The authors declare no conflicts of interest. 3D bioprinted scaffolds for wound healing. Pharmaceutics,
2022;14(2):464-509.
Author contributions doi: 10.3390/pharmaceutics14020464
9. Jiang Y, Zhou DZ, Yang B. 3D bioprinted GelMA/GO
Conceptualization: Ximin Yuan, Lixin Che, Xushuai Lv composite induces osteoblastic differentiation. J Biomater
Writing – original draft: Ximin Yuan, Zhenjia Wang, Appl. 2022;37(3):527-537.
Writing – review & editing: Jie Xu, Debin Shan, Bin Guo doi: 10.1177/08853282221098235
10. Koch L, Michael S, Reimers K, Strauß S, Vogt PM,
Ethics approval and consent to participate Chichkov B. Bioprinting for skin. In: 3D Bioprinting and
Not applicable. Nanotechnology in Tissue Engineering and Regenerative
Medicine. Elsevier;2022(9):397-425.
Consent for publication doi: 10.1016/B978-0-12-824552-1.00011-6
11. McMillan A, McMillan N, Gupta N, Kanotra SP, Salem AK.
Not applicable. 3D bioprinting in otolaryngology: a review. Adv Healthc
Mater. 2023;3268-3284.
Availability of data doi: 10.1002/adhm.202203268
Not applicable. 12. Shen MK, Wang LL, Gao Y, et al. 3D bioprinting of in situ
vascularized tissue engineered bone for repairing large
References segmental bone defects. Mater Today Bio. 2022;16 100382.
doi: 10.1016/j.mtbio.2022.100382
1. Lu YQ, Xu J, Su Y, et al. A biocompatible double-crosslinked 13. Prabhakaran P, Palaniyandi T, Kanagavalli B, et al. Prospect
gelatin/sodium alginate/dopamine/quaterniazed chitosan and retrospect of 3D bio-printing. Acta Histochem.
hydrogel for wound dressings based on 3D bioprinting 2022;124(7):151932.
technology. Int J Bioprint. 2023;9(2):439-452. doi: 10.1016/j.acthis.2022.151932
doi: 10.18063/ijb.v9i1.689
14. Banerjee D, Singh YP, Datta P, et al. Strategies for 3D
2. Ding YW, Zhang XW, Mi CH, Qi XY, Zhou J, Wei DX. bioprinting of spheroids: a comprehensive review.
Recent advances in hyaluronic acid-based hydrogels for 3D Biomaterials. 2022;291:121881.
bioprinting in tissue engineering applications. Smart Mater doi: 10.1016/j.biomaterials.2022.121881
Med. 2022;4:59-68.
doi: 10.1016/j.smaim.2022.07.003 15. Blevins KM, Danilkowicz RM, Fletcher AN, Allen
NB, Johnson LG, Adams SB. In situ 3D bioprinting of
3. Khalaf AT, Wei YY, Wan J, et al. Bone tissue engineering musculoskeletal tissues in orthopedic surgery. J 3D Print
through 3D bioprinting of bioceramic scaffolds: a review Med. 2022;6(1):25-36.
and update. Life. 2022;12(6):903-930. doi: 10.2217/3dp-2021-0022
doi: 10.3390/life12060903
16. Mohammadrezaei D, Moghimi N, Vandvajdi S, Powathil G,
4. Wang PP, Sun LJ, Li CC, et al. Study on drug screening Hamis S, Kohandel M. Predicting and elucidating the post-
multicellular model for colorectal cancer constructed by printing behavior of 3D printed cancer cells in hydrogel
three-dimensional bioprinting technology. Int J Bioprint. structures by integrating in-vitro and in-silico experiments.
2023;9(3) 379-398. Sci Rep. 2023;13(1):1211-1223.
doi: 10.18063/ijb.694 doi: 10.1038/s41598-023-28286-9
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