1.Nosrati H, Nosrati M. Artificial intelligence in regenerative medicine: applications and implications. Biomimetics. 2023;8(5):442.
2.Hade MD, Suire CN, Suo Z. Mesenchymal stem cell-derived exosomes: applications in regenerative medicine. Cells. 2021;10(8):1959.
3.Edgar L, Pu T, Porter B, Aziz J, La Pointe C, Asthana A, et al. Regenerative medicine, organ bioengineering and transplantation. Journal of British Surgery. 2020;107(7):793-800.
4.Brokesh AM, Gaharwar AK. Inorganic biomaterials for regenerative medicine. ACS applied materials & interfaces. 2020;12(5):5319-44.
5.Sivandzade F, Cucullo L. Regenerative stem cell therapy for neurodegenerative diseases: an overview. International journal of molecular sciences. 2021;22(4):2153.
6.Atala A. Regenerative medicine strategies. Journal of pediatric surgery. 2012;47(1):17-28.
7.Gurtner GC, Callaghan MJ, Longaker MT. Progress and potential for regenerative medicine. Annu Rev Med. 2007;58(1):299-312.
8.Nii T, Katayama Y. Biomaterial-assisted regenerative medicine. International journal of molecular sciences. 2021;22(16):8657.
9.Chun HJ, Park K, Kim C-H, Khang G. Novel biomaterials for regenerative medicine: Springer; 2018.
10.Khalilov R. A comprehensive review of advanced nano-biomaterials in regenerative medicine and drug delivery. Advances in Biology & Earth Sciences. 2023;8(1).
11.Rodrigo-Navarro A, Sankaran S, Dalby MJ, del Campo A, Salmeron-Sanchez M. Engineered living biomaterials. Nature Reviews Materials. 2021;6(12):1175-90.
12.Wang X, Wu D, Li W, Yang L. Emerging biomaterials for reproductive medicine. Engineered Regeneration. 2021;2:230-45.
13.Liu AP, Appel EA, Ashby PD, Baker BM, Franco E, Gu L, et al. The living interface between synthetic biology and biomaterial design. Nature materials. 2022;21(4):390-7.
14.Gilbert C, Tang T-C, Ott W, Dorr BA, Shaw WM, Sun GL, et al. Living materials with programmable functionalities grown from engineered microbial co-cultures. Nature materials. 2021;20(5):691-700.
15.Abdulghani S, Mitchell GR. Biomaterials for in situ tissue regeneration: a review. Biomolecules. 2019;9(11):750.
16.da Silva Morais A, Vieira S, Zhao X, Mao Z, Gao C, Oliveira JM, et al. Advanced biomaterials and processing methods for liver regeneration: state‐of‐the‐art and future trends. Advanced healthcare materials. 2020;9(5):1901435.
17.Xu Y, Chen C, Hellwarth PB, Bao X. Biomaterials for stem cell engineering and biomanufacturing. Bioactive materials. 2019;4:366-79.
18.Tang G, Liu Z, Liu Y, Yu J, Wang X, Tan Z, et al. Recent trends in the development of bone regenerative biomaterials. Frontiers in Cell and Developmental biology. 2021;9:665813.
19.Matai I, Kaur G, Seyedsalehi A, McClinton A, Laurencin CT. Progress in 3D bioprinting technology for tissue/organ regenerative engineering. Biomaterials. 2020;226:119536.
20.An B, Wang Y, Huang Y, Wang X, Liu Y, Xun D, et al. Engineered living materials for sustainability. Chemical Reviews. 2022;123(5):2349-419.
21.Bhusari S, Kim J, Polizzi K, Sankaran S, Del Campo A. Encapsulation of bacteria in bilayer Pluronic thin film hydrogels: A safe format for engineered living materials. Biomaterials Advances. 2023;145:213240.
22.Kim BJ, Cho H, Park JH, Mano JF, Choi IS. Strategic advances in formation of cell‐in‐shell structures: From syntheses to applications. Advanced materials. 2018;30(14):1706063.
23.Gaspar VM, Lavrador P, Borges J, Oliveira MB, Mano JF. Advanced bottom‐up engineering of living architectures. Advanced Materials. 2020;32(6):1903975.
24.Shang L, Shao C, Chi J, Zhao Y. Living materials for life healthcare. Accounts of Materials Research. 2020;2(1):59-70.
25.Li H, Kang A, An B, Chou L-Y, Shieh F-K, Tsung C-K, et al. Encapsulation of bacterial cells in cytoprotective ZIF-90 crystals as living composites. Materials Today Bio. 2021;10:100097.
26.Henkel J, Hutmacher DW. Design and fabrication of scaffold-based tissue engineering. BioNanoMaterials. 2013;14(3-4):171-93.
27.Sarkhosh-Inanlou R, Shafiei-Irannejad V, Azizi S, Jouyban A, Dolatabadi JE-N, Mobed A, et al. Applications of scaffold-based advanced materials in biomedical sensing. TrAC Trends in Analytical Chemistry. 2021;143:116342.
28.Liang J, Liu P, Yang X, Liu L, Zhang Y, Wang Q, et al. Biomaterial-based scaffolds in promotion of cartilage regeneration: recent advances and emerging applications. Journal of Orthopaedic Translation. 2023;41:54-62.
29.Tan J, Zhang Q-Y, Huang L-P, Huang K, Xie H-Q. Decellularized scaffold and its elicited immune response towards the host: the underlying mechanism and means of immunomodulatory modification. Biomaterials Science. 2021;9(14):4803-20.
30.Zhang Z, Zeng J, Groll J, Matsusaki M. Layer-by-layer assembly methods and their biomedical applications. Biomaterials Science. 2022;10(15):4077-94.
31.Alkekhia D, Hammond PT, Shukla A. Layer-by-layer biomaterials for drug delivery. Annual review of biomedical engineering. 2020;22(1):1-24.
32.Yavari SA, Croes M, Akhavan B, Jahanmard F, Eigenhuis C, Dadbakhsh S, et al. Layer by layer coating for bio-functionalization of additively manufactured meta-biomaterials. Additive Manufacturing. 2020;32:100991.
33.Ariga K, Jia X, Song J, Hill JP, Leong DT, Jia Y, et al. Nanoarchitectonics beyond self‐assembly: challenges to create bio‐like hierarchic organization. Angewandte Chemie International Edition. 2020;59(36):15424-46.
34.Persaud A, Maus A, Strait L, Zhu D. 3D bioprinting with live cells. Engineered Regeneration. 2022;3(3):292-309.
35.Thai MT, Phan PT, Tran HA, Nguyen CC, Hoang TT, Davies J, et al. Advanced soft robotic system for in situ 3D bioprinting and endoscopic surgery. Advanced Science. 2023;10(12):2205656.
36.Yu J, Park SA, Kim WD, Ha T, Xin Y-Z, Lee J, et al. Current advances in 3D bioprinting technology and its applications for tissue engineering. Polymers. 2020;12(12):2958.
37.Ji S, Guvendiren M. Complex 3D bioprinting methods. APL bioengineering. 2021;5(1).
38.Chen Z, Lv Z, Zhang Z, Zhang Y, Cui W. Biomaterials for microfluidic technology. Materials Futures. 2022;1(1):012401.
39.Tien J, Dance YW. Microfluidic biomaterials. Advanced healthcare materials. 2021;10(4):2001028.
40.Cao UM, Zhang Y, Chen J, Sayson D, Pillai S, Tran SD. Microfluidic organ-on-a-chip: a guide to biomaterial choice and fabrication. International Journal of Molecular Sciences. 2023;24(4):3232.
41.Carvalho MR, Truckenmuller R, Reis RL, Oliveira JM. Biomaterials and microfluidics for drug discovery and development. Biomaterials-and Microfluidics-Based Tissue Engineered 3D Models. 2020:121-35.
42.Zhao X, Bian F, Sun L, Cai L, Li L, Zhao Y. Microfluidic generation of nanomaterials for biomedical applications. Small. 2020;16(9):1901943.
43.Todros S, Todesco M, Bagno A. Biomaterials and their biomedical applications: From replacement to regeneration. Processes. 2021;9(11):1949.
44.Ma L, Gao C, Mao Z, Zhou J, Shen J, Hu X, et al. Collagen/chitosan porous scaffolds with improved biostability for skin tissue engineering. Biomaterials. 2003;24(26):4833-41.
45.Muñoz‐González AM, Clavijo‐Grimaldo D, Leal‐Marin S, Glasmacher B. Optimizing Electroconductive PPy‐PCL Scaffolds for Enhanced Tissue Engineering Performance. Journal of Biomedical Materials Research Part B: Applied Biomaterials. 2024;112(12):e35511.
46.O’brien FJ. Biomaterials & scaffolds for tissue engineering. Materials today. 2011;14(3):88-95.
47.Li JJ, Ebied M, Xu J, Zreiqat H. Current approaches to bone tissue engineering: the interface between biology and engineering. Advanced healthcare materials. 2018;7(6):1701061.
48.Lee SS, Du X, Kim I, Ferguson SJ. Scaffolds for bone-tissue engineering. Matter. 2022;5(9):2722-59.
49.Cancedda R, Giannoni P, Mastrogiacomo M. A tissue engineering approach to bone repair in large animal models and in clinical practice. Biomaterials. 2007;28(29):4240-50.
50.Léonard A, Dandoy P, Danloy E, Leroux G, Meunier CF, Rooke JC, et al. Whole-cell based hybrid materials for green energy production, environmental remediation and smart cell-therapy. Chemical Society Reviews. 2011;40(2):860-85.
51.Hu T, Lo AC. Collagen–alginate composite hydrogel: Application in tissue engineering and biomedical sciences. Polymers. 2021;13(11):1852.
52.George SM, Nayak C, Singh I, Balani K. Multifunctional hydroxyapatite composites for orthopedic applications: a review. ACS biomaterials science & engineering. 2022;8(8):3162-86.
53.Meng Q, Li Y, Wang Q, Wang Y, Li K, Chen S, et al. Recent advances of electrospun nanofiber-enhanced hydrogel composite scaffolds in tissue engineering. Journal of Manufacturing Processes. 2024;123:112-27.
54.Ghofrani A, Taghavi L, Khalilivavdareh B, Shirvan AR, Nouri A. Additive manufacturing and advanced functionalities of cardiac patches: A review. European Polymer Journal. 2022;174:111332.
55.Carnevali F, Forciniti S, Onesto V, Siciliano AC, Iuele H, Grasso G, et al. Advancements in Cancer Research: 3D Models, Single‐Cell, and Live‐Cell Techniques for Better Insights. Advanced Therapeutics. 2024;7(12):2400351.
56.Wang Y, Qin J. Advances in human organoids-on-chips in biomedical research. Life Medicine. 2023;2(1):lnad007.
57.Zhao Y, Kankala RK, Wang S-B, Chen A-Z. Multi-organs-on-chips: towards long-term biomedical investigations. Molecules. 2019;24(4):675.
58.Zhao Z, Chen X, Dowbaj AM, Sljukic A, Bratlie K, Lin L, et al. Organoids. Nature Reviews Methods Primers. 2022;2(1):94.
59.Drost J, Clevers H. Organoids in cancer research. Nature Reviews Cancer. 2018;18(7):407-18.
60.Park SE, Georgescu A, Huh D. Organoids-on-a-chip. Science. 2019;364(6444):960-5.
61.Ingber DE. Human organs-on-chips for disease modelling, drug development and personalized medicine. Nature Reviews Genetics. 2022;23(8):467-91.
62.Van Den Berg A, Mummery CL, Passier R, Van der Meer AD. Personalised organs-on-chips: functional testing for precision medicine. Lab on a Chip. 2019;19(2):198-205.
63.Sun W, Lee J, Zhang S, Benyshek C, Dokmeci MR, Khademhosseini A. Engineering precision medicine. Advanced Science. 2019;6(1):1801039.
64.Osaki T, Sivathanu V, Kamm RD. Vascularized microfluidic organ-chips for drug screening, disease models and tissue engineering. Current opinion in biotechnology. 2018;52:116-23.
65.Zhou Z, Cong L, Cong X. Patient-derived organoids in precision medicine: drug screening, organoid-on-a-chip and living organoid biobank. Frontiers in oncology. 2021;11:762184.
66.Ramalho AS, Amato F, Gentzsch M. Patient-derived cell models for personalized medicine approaches in cystic fibrosis. Journal of Cystic Fibrosis. 2023;22:S32-S8.
67.Cholon DM, Gentzsch M. Recent progress in translational cystic fibrosis research using precision medicine strategies. Journal of Cystic Fibrosis. 2018;17(2):S52-S60.
68.Yilmaz EG, Hacıosmanoğlu N, Jordi SBU, Yilmaz B, Inci F. Revolutionizing IBD research with on-chip models of disease modeling and drug screening. Trends in Biotechnology. 2024.
69.Williams DF. Challenges with the development of biomaterials for sustainable tissue engineering. Frontiers in bioengineering and biotechnology. 2019;7:127.
70.Ullah S, Chen X. Fabrication, applications and challenges of natural biomaterials in tissue engineering. Applied Materials Today. 2020;20:100656.
71.Kleiner FH, Oh J-J, Aubin-Tam M-E. Solving Challenges in Microalgae-Based Living Materials. ACS Synthetic Biology. 2025;14(2):307-15.
72.Sharif F, Muhammad N, Zafar T. Cellulose based biomaterials: Benefits and challenges. Biofibers and Biopolymers for Biocomposites: Synthesis, Characterization and Properties. 2020:229-46.
73.Celikkin N, Presutti D, Maiullari F, Fornetti E, Agarwal T, Paradiso A, et al. Tackling current biomedical challenges with frontier biofabrication and organ-on-a-chip technologies. Frontiers in bioengineering and biotechnology. 2021;9:732130.
74.Nahak BK, Mishra A, Preetam S, Tiwari A. Advances in organ-on-a-chip materials and devices. ACS applied bio materials. 2022;5(8):3576-607.
75.Wikswo JP, Block III FE, Cliffel DE, Goodwin CR, Marasco CC, Markov DA, et al. Engineering challenges for instrumenting and controlling integrated organ-on-chip systems. IEEE Transactions on Biomedical Engineering. 2013;60(3):682-90.