arrow
Return

Organoid bioinks: construction and application

delete2024-05-15
delete10
delete
OA
AI
F
Fuxiao Wang
P
Peiran Song
汪建 cover
汪建 (Jian Wang)
S
Sicheng Wang *
Y
Yuanyuan Liu *
L
Long Bai *
J
Jiacan Su *
DOI:10.1088/1758-5090/ad467cdelete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Organoids have emerged as crucial platforms in tissue engineering and regenerative medicine but confront challenges in faithfully mimicking native tissue structures and functions. Bioprinting technologies offer a significant advancement, especially when combined with organoid bioinks-engineered formulations designed to encapsulate both the architectural and functional elements of specific tissues. This review provides a rigorous, focused examination of the evolution and impact of organoid bioprinting. It emphasizes the role of organoid bioinks that integrate key cellular components and microenvironmental cues to more accurately replicate native tissue complexity. Furthermore, this review anticipates a transformative landscape invigorated by the integration of artificial intelligence with bioprinting techniques. Such fusion promises to refine organoid bioink formulations and optimize bioprinting parameters, thus catalyzing unprecedented advancements in regenerative medicine. In summary, this review accentuates the pivotal role and transformative potential of organoid bioinks and bioprinting in advancing regenerative therapies, deepening our understanding of organ development, and clarifying disease mechanisms.
Keywords:
organoids
bioinks
bioprinting
organ development
artificial intelligence

Journal

Biofabrication cover
Biofabrication
IF:
8
Papers:
1.6K
Citations:
9.3K

Organization

S
shanghai university
Scholars:
3.9W
Papers: 2.7W
Citations: 52
Cited Papers

Cited Papers

errShare
errSave
Advanced Soft Robotic System for In Situ 3D Bioprinting and Endoscopic Surgery
err2023-02-19
err35
errOAAI
errThai, Mai Thanh; Phan, Phuoc Thien; Tran, Hien Anh; Nguyen, Chi Cong; Hoang, Trung Thien; Davies, James; Rnjak-Kovacina, Jelena; Phan, Hoang-Phuong; Lovell, Nigel Hamilton; Do, Thanh Nho
errShare
errSave
3D Bioprinting Strategies for the Regeneration of Functional Tubular Tissues and Organs
err2020-03-31
err100
errOAAI
errJeong, Hun-Jin; Nam, Hyoryung; Jang, Jinah; Lee, Seung-Jae
errShare
errSave
Prospects for 3D bioprinting of organoids
err2021-01-28
err57
PREAI
errRawal, Preety; Tripathi, Dinesh M.; Ramakrishna, Seeram; Kaur, Savneet
errShare
errSave
3D bioprinting of in situ vascularized tissue engineered bone for repairing large segmental bone defects
err2022-12-01
err47
errOAAI
errShen, Mingkui; Wang, Lulu; Gao, Yi; Feng, Li; Xu, Chuangye; Li, Sijing; Wang, Xiaohu; Wu, Yulan; Guo, Yao; Pei, Guoxian
errShare
errSave
'Printability' of Candidate Biomaterials for Extrusion Based 3D Printing: State-of-the-Art
err2017-05-30
err372
PREAI
errKyle, Stuart; Jessop, Zita M.; Al-Sabah, Ayesha; Whitaker, Iain S.
errShare
errSave
Opportunities and challenges of three-dimensional printing technology in pharmaceutical formulation development
err2021-08-01
err54
errOAAI
errCui, Mengsuo; Pan, Hao; Su, Yupei; Fang, Dongyang; Qiao, Sen; Ding, Pingtian; Pan, Weisan
errShare
errSave
The horizon of bone organoid: A perspective on construction and application
err2022-12-01
err122
errOAAI
errChen, Shuangshuang; Chen, Xiao; Geng, Zhen; Su, Jiacan
errShare
errSave
Polymer Hydrogels to Guide Organotypic and Organoid Cultures
err2020-05-04
err68
errOAAI
errMagno, Valentina; Meinhardt, Andrea; Werner, Carsten
errShare
errSave
researcher View more