• Advancing Frontiers in Bone Bioprinting 

      Ashammakhi N.; Hasan A.; Kaarela O.; Byambaa B.; Sheikhi A.; ... more authors ( Wiley-VCH Verlag , 2019 , Article Review)
      Three-dimensional (3D) bioprinting of cell-laden biomaterials is used to fabricate constructs that can mimic the structure of native tissues. The main techniques used for 3D bioprinting include microextrusion, inkjet, and ...
    • Kidney-on-a-chip: untapped opportunities 

      Ashammakhi N.; Wesseling-Perry K.; Hasan A.; Elkhammas E.; Zhang Y.S. ( Elsevier B.V. , 2018 , Article Review)
      The organs-on-a-chip technology has shown strong promise in mimicking the complexity of native tissues in vitro and ex vivo, and recently significant advances have been made in applying this technology to studies of the ...
    • Recent advances in 3D bioprinting of musculoskeletal tissues 

      Potyondy T.; Uquillas J.A.; Tebon P.J.; Byambaa B.; Hasan, Anwarul; ... more authors ( IOP Publishing Ltd , 2021 , Article)
      The musculoskeletal system is essential for maintaining posture, protecting organs, facilitating locomotion, and regulating various cellular and metabolic functions. Injury to this system due to trauma or wear is common, ...
    • Three-Dimensional Bioprinting, Oxygenated Tissue Constructs, and Intravital Tissue Regeneration 

      Ashammakhi N.; Tamimi F.; Caterson E.J. ( NLM (Medline) , 2021 , Article)
      [No abstract available]
    • Translating advances in organ-on-a-chip technology for supporting organs 

      Ashammakhi N.; Elkhammas E.; Hasan A. ( John Wiley and Sons Inc. , 2019 , Article Review)
      Organ‐on‐a‐chip platforms have recently seen tremendous progress. They have found potential applications in the study of physiology and pathology of tissues, drug toxicity, and development of tissue models for replacement ...