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Digital Light Processing Based Bioprinting with Composable Gradients.
Wang, Mian; Li, Wanlu; Mille, Luis S; Ching, Terry; Luo, Zeyu; Tang, Guosheng; Garciamendez, Carlos Ezio; Lesha, Ami; Hashimoto, Michinao; Zhang, Yu Shrike.
Afiliação
  • Wang M; Division of Engineering in Medicine, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Cambridge, MA, 02139, USA.
  • Li W; Division of Engineering in Medicine, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Cambridge, MA, 02139, USA.
  • Mille LS; Division of Engineering in Medicine, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Cambridge, MA, 02139, USA.
  • Ching T; Division of Engineering in Medicine, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Cambridge, MA, 02139, USA.
  • Luo Z; Pillar of Engineering Product Development, Singapore University of Technology and Design, Singapore, 487372, Singapore.
  • Tang G; Digital Manufacturing and Design Centre, Singapore University of Technology and Design, Singapore, 487372, Singapore.
  • Garciamendez CE; Department of Biomedical Engineering, National University of Singapore, Singapore, 117583, Singapore.
  • Lesha A; Division of Engineering in Medicine, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Cambridge, MA, 02139, USA.
  • Hashimoto M; Division of Engineering in Medicine, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Cambridge, MA, 02139, USA.
  • Zhang YS; Division of Engineering in Medicine, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Cambridge, MA, 02139, USA.
Adv Mater ; 34(1): e2107038, 2022 Jan.
Article em En | MEDLINE | ID: mdl-34609032
ABSTRACT
Recapitulation of complex tissues signifies a remarkable challenge and, to date, only a few approaches have emerged that can efficiently reconstruct necessary gradients in 3D constructs. This is true even though mimicry of these gradients is of great importance to establish the functionality of engineered tissues and devices. Here, a composable-gradient Digital Light Processing (DLP)-based (bio)printing system is developed, utilizing the unprecedented integration of a microfluidic mixer for the generation of either continual or discrete gradients of desired (bio)inks in real time. Notably, the precisely controlled gradients are composable on-the-fly by facilely by adjusting the (bio)ink flow ratios. In addition, this setup is designed in such a way that (bio)ink waste is minimized when exchanging the gradient (bio)inks, further enhancing this time- and (bio)ink-saving strategy. Various planar and 3D structures exhibiting continual gradients of materials, of cell densities, of growth factor concentrations, of hydrogel stiffness, and of porosities in horizontal and/or vertical direction, are exemplified. The composable fabrication of multifunctional gradients strongly supports the potential of the unique bioprinting system in numerous biomedical applications.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Bioimpressão Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Bioimpressão Idioma: En Ano de publicação: 2022 Tipo de documento: Article