Page 551 - IJB-10-2
P. 551

International Journal of Bioprinting                          Bottom-up and top-down VAT photopolimerization




            48.  Lee Y, Kim M, Lee H. The measurement of stiffness for   55.  Pan C-C, Bruyas A, Yang YP. Bioprinting for tissue
               major muscles with shear wave elastography and myoton:    engineering and regenerative medicine. Mater Matt Aldrich.
               A quantitative analysis study. Diagnostics. 2021;11(3):524.  2016;(11):49-52.
            49.  Singh G, Chanda A. Mechanical properties of whole-  56.  Rainbow R, Ren W, Zeng L. Inflammation and joint tissue
               body soft human tissues: A review.  Biomed  Mater.   interactions in OA: Implications for potential therapeutic
               2021;16(6):062004.                                 approaches. Arthritis. 2012;741582.
            50.  Huh D, Hamilton GA, Ingber DE. From 3D cell culture to   57.  Pirosa A, Gottardi R, Alexander PG, Tuan RS. Engineering
               organs-on-chips. Trends Cell Biol. 2011;21(12):745-754.  in-vitro stem cell-based vascularized bone models for drug
                                                                  screening and predictive toxicology.  Stem  Cell Res  Ther.
            51.  Low LA, Mummery C, Berridge BR, Austin CP, Tagle DA.   2018;9: 112.
               Organs-on-chips: Into the next decade. Nat Rev Drug Discov,      doi: 10.1186/s13287-018-0847-8
               2021;20(5):345-361.
                                                               58.  McDowell SAC, Quail DF. Immunological regulation of
            52.  Ajalik RE, Alenchery RG, Cognetti JS, et al. Human   vascular inflammation during cancer metastasis.  Front
               organ-on-a-chip microphysiological systems  to model   Immunol. 2019;10:1984.
               musculoskeletal pathologies and accelerate therapeutic   59.  Goel  S,  Duda  DG,  Xu  L,  et  al.  Normalization  of  the
               discovery. Front Bioeng Biotechnol. 2022;(10):846230.  vasculature for treatment of cancer and other diseases.
            53.  Scaricamazza S, Salvatori I, Ferri A, Valle C. Skeletal muscle   Physiol Rev. 2011;91(3):1071-1121.
               in  ALS:  An unappreciated  therapeutic  opportunity?  Cells.   https://doi.org/10.1152/physrev.00038.2010
               2021;10(3):525.                                 60.  Naghieh S, Lindberg G, Tamaddon M, Liu C. Biofabrication
               doi: 10.3390/cells10030525                         strategies for musculoskeletal disorders: Evolution towards

            54.  Ma J, Holden K, Zhu J, Pan H, Li Y. The application of three-  clinical applications. Bioengineering (Basel). 2021;8(9):123.
               dimensional collagen-scaffolds seeded with myoblasts to   61.  Volpi M, Paradiso A, Costantini M,  Świȩszkowski W.
               repair skeletal muscle defects. J Biomed Biotechnol. 2011;2011:   Hydrogel-based fiber biofabrication techniques for
               812135.                                            skeletal muscle tissue engineering. ACS Biomater Sci Eng.
               doi: 10.1155/2011/812135                           2022;8:379-405.











































            Volume 10 Issue 2 (2023)                       543                                doi: 10.36922/ijb.1017
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