Page 86 - IJB-5-2
P. 86
Exploring nanofibrous self-assembling peptide hydrogels using mouse myoblast cells for three-dimensional bioprinting and tissue engineering applications
Engineering. Journal of Biomedical Materials Research Part B: Organotypic Cultures. Nano Letters, 15(10):6919-25.
Applied Biomaterials, 106(2):672-9. DOI 10.1002/jbm.b.33859. DOI 10.1021/acs.nanolett.5b02859.
27. Kahin K, Khan Z, Albagami M, et al., 2019, Development of 32. Jayawarna V, Ali M, Jowitt TA, et al., 2006, Nanostructured
a Robotic 3D Bioprinting and Microfluidic Pumping System Hydrogels for Three-dimensional Cell Culture Through Self-
for Tissue and Organ Engineering. Microfluidics, Biomems, assembly of Fluorenylmethoxycarbonyl Dipeptides. Advanced
and Medical Microsystems, Doi 10.1117/12.2507237. Materials, 18(5):611-4. DOI 10.1002/adma.200501522.
28. Khan Z, Kahin K, Rauf S, et al., 2018, Optimization of a 33. Arab W, Rauf S, Al-Harbi O, et al., 2018, Novel Ultrashort
3D Bioprinting Process Using Ultrashort Peptide Bioinks. Self-Assembling Peptide Bioinks for 3D Culture
International Journal of Bioprinting, 5(1):1-3. DOI 10.18063/ of Muscle Myoblast Cells. International Journal of
ijb.v5i1.173. Bioprinting, 4(2):129. DOI 10.18063/ijb.v4i1.129.
29. Brenneisen P, Blaudschun R, Gille J, et al., 2003, Essential 34. Lakshmanan A, Cheong DW, Accardo A, et al., 2013,
role of an Activator Protein-2 (AP-2)/Specificity Protein 1 Aliphatic Peptides Show Similar Self-assembly to Amyloid
(Sp1) Cluster in the UVB-mediated Induction of the Human Core Sequences, Challenging the Importance of Aromatic
Vascular Endothelial Growth Factor in HaCaT Keratinocytes. Interactions in Amyloidosis. Proceedings of the National
Biochemical Journal, 369(2):341-9. DOI 10.1042/bj20021032. Academy of Sciences, 110(2):519-24. DOI 10.1073/
30. Hendriks J, Riesle J, van Blitterswijk CA, 2007, Co-culture in pnas.1217742110.
Cartilage Tissue Engineering. Journal of Tissue Engineering 35. Chen H, Zhong J, Wang J, et al., 2019, Enhanced Growth
and Regenerative Medicine, 1(3):170-8. DOI 10.1002/term.19. and Differentiation of Myoblast Cells Grown on E-jet 3D
31. Loo Y, Lakshmanan A, Ni M, et al., 2015, Peptide Bioink: Printed Platforms. International Journal of Nanomedicine,
Self-assembling Nanofibrous Scaffolds for Three-dimensional 14:937-50. DOI 10.2147/ijn.s193624.
82 International Journal of Bioprinting (2019)–Volume 5, Issue 2

