Publications

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Total result(s) found: 6
  • Exploring nanofibrous self-assembling peptide hydrogels using mouse myoblast cells for three-dimensional bioprinting and tissue engineering applications

    W. Arab, K. Kahin, Z. Khan, C.A.E. Hauser

    Int. J. Bioprint, 5(2): 198, 2019
Keywords:
Three-dimensional bioprinting, Peptide, Biomaterials, Bioinks, Tissue engineering, Myoblasts
  • A chemically well-defined, self-assembling 3D substrate for long-term culture of human pluripotent stem cells

    Y. Loo, Y.S. Chan, I. Szczerbinska, B.C.P. Tan, A.C.A. Wan, H.H. Ng, C.A.E. Hauser

    ACS Appl. Bio Mater., 2, 4, 1406-1412, 2019  
Keywords:
Xeno-free nanofibrous scaffolds, Ultrashort peptides, Self-assembled peptide hydrogels Human pluripotent stem cells
  • Self‐assembling amyloid‐like peptides as exogenous second harmonic probes for bioimaging applications

    M. Ni, Sh. Zhuo, C. Iliescu, P.T.C. So, J.S. Mehta, H. Yu, C.A.E. Hauser

    Journal of Biophotonics, 2019
Keywords:
Bioimaging, Nonlinear optical materials, Second harmonic generation, Self‐assembly Ultrashort peptides
  • Development of a robotic 3D bioprinting and microfluidic pumping system for tissue and organ engineering

    K. Kahin, Z. Khan, M. Albagami, S. Usman, S. Bahnshal, H. Alwazani, M.A. Majid, S. Rauf, C. Hauser

    Proceedings Volume 10875, Microfluidics, BioMEMS, and Medical Microsystems XVII; 108750Q, 2019
Keywords:
Robotics, 3D printing, 3D modeling, MATLAB, 3D image processing
  • Optimization of a 3D bioprinting process using ultrashort peptide bioinks

    Z. Khan, K. Kahin, S. Rauf, G. Ramirez-Calderon, N. Papagiannis, M. Abdulmajid, C.A.E. Hauser

    International Journal of Bioprinting 5(1),173, 2019
Keywords:
3D bioprinting; Ultrashort peptides; Biomaterials; Bioinks; Tissue engineering; Vacuum system
  • Thin peptide hydrogel membranes suitable as scaffolds for engineering layered biostructures

    W.Y. Seow, K. Kandasamy, K. Purnamawati, W. Sun, C.A.E. Hauser

    Acta Biomaterialia, 2019​
    ​​
Keywords:
Ultrashort peptide hydrogel; Disulfide bonds; Tissue engineering; Scaffolds; Layered biostructures; Membranes