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3D bioprinting of corneal decellularized extracellular matrix: GelMA composite hydrogel for corneal stroma engineering.
Zhang, Mingshan; Yang, Fang; Han, Daobo; Zhang, Shi-Yao; Dong, Yipeng; Li, Xinyu; Ling, Liyun; Deng, Zhichao; Cao, Xuewei; Tian, Jianguo; Ye, Qing; Wang, Yan.
Afiliación
  • Zhang M; Key Laboratory of Weak-Light Nonlinear Photonics, Ministry of Education, School of Physics and TEDA Applied Physics, Nankai University, Tianjin, China.
  • Yang F; Institute of Modern Optics, Eye Institute, Nankai University, Tianjin, China.
  • Han D; Nankai University Eye Institute, Nankai University Afflicted Eye Hospital, Nankai University, Tianjin, China.
  • Zhang SY; Clinical College of Ophthalmology, Tianjin Medical University, Tianjin, China.
  • Dong Y; Department of Ophthalmology, Renmin Hospital, Hubei University of Medicine, Shiyan, China.
  • Li X; Key Laboratory of Weak-Light Nonlinear Photonics, Ministry of Education, School of Physics and TEDA Applied Physics, Nankai University, Tianjin, China.
  • Ling L; Clinical College of Ophthalmology, Tianjin Medical University, Tianjin, China.
  • Deng Z; Key Laboratory of Weak-Light Nonlinear Photonics, Ministry of Education, School of Physics and TEDA Applied Physics, Nankai University, Tianjin, China.
  • Cao X; Clinical College of Ophthalmology, Tianjin Medical University, Tianjin, China.
  • Tian J; Clinical College of Ophthalmology, Tianjin Medical University, Tianjin, China.
  • Ye Q; Key Laboratory of Weak-Light Nonlinear Photonics, Ministry of Education, School of Physics and TEDA Applied Physics, Nankai University, Tianjin, China.
  • Wang Y; Key Laboratory of Weak-Light Nonlinear Photonics, Ministry of Education, School of Physics and TEDA Applied Physics, Nankai University, Tianjin, China.
Int J Bioprint ; 9(5): 774, 2023.
Article en En | MEDLINE | ID: mdl-37555081
ABSTRACT
Millions of individuals across the world suffer from corneal stromal diseases that impair vision. Fortunately, three-dimensional (3D) bioprinting technology which has revolutionized the field of regenerative tissue engineering makes it feasible to create personalized corneas. In this study, an artificial cornea with a high degree of precision, smoothness, and programmable curvature was prepared by using digital light processing (DLP) 3D bioprinting in one piece with no support structure, and the construct was then confirmed by optical coherence tomography (OCT). On the basis of this approach, we developed a novel corneal decellularized extracellular matrix/gelatin methacryloyl (CECM-GelMA) bioink that can produce complex microenvironments with highly tunable mechanical properties while retaining high optical transmittance. Furthermore, the composite hydrogel was loaded with human corneal fibroblasts (hCFs), and in vitro experiments showed that the hydrogel maintained high cell viability and expressed core proteins. In vivo tests revealed that the hydrogel might promote epithelial regeneration, keep the matrix aligned, and restore clarity. This demonstrates how crucial a role CECM plays in establishing a favorable environment that encourages the transformation of cell function. Therefore, artificial corneas that can be rapidly customized have a huge potential in the development of in vitro corneal matrix analogs.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Int J Bioprint Año: 2023 Tipo del documento: Article País de afiliación: China

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Int J Bioprint Año: 2023 Tipo del documento: Article País de afiliación: China
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