2017
DOI: 10.1002/adbi.201700165
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Scalable Production and Cryostorage of Organoids Using Core–Shell Decoupled Hydrogel Capsules

Abstract: Organoids, organ-mimicking multicellular structures derived from pluripotent stem cells or organ progenitors, have recently emerged as an important system for both studies of stem cell biology and development of potential therapeutics; however, a large-scale culture of organoids and cryopreservation for whole organoids, a prerequisite for their industrial and clinical applications, has remained a challenge. Current organoid culture systems relying on embedding the stem or progenitor cells in bulk extracellular… Show more

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Cited by 41 publications
(46 citation statements)
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“…Thus, the organoids have identical cell pathways and similar cell types when compared to the intestine epithelium itself. These advantages have been used to study various topics, such as modeling infectious diseases (Liu, Huang, Ning, et al, ), applications to different drug delivery systems (Cheng et al, ; Peng, Wang, Xu, Yu, & Wang, ; Tu et al, ; Wang et al, ; Wu, Deng, Jiang, et al, ; Zhao, Wang, Zhang, et al, ), how they serve as a new drug loading material (Davoudi et al, ), various studies on nanomaterial's toxicity (Qi et al, ), modeling different virus infections (Garcez, Loiola, Da Costa, et al, ; Yin et al, ), studying microbiota interactions (Lukovac et al, ), and many more (Chiu, Song, Flanders, et al, ; Lu et al, ; Song et al, ; Zhang, An, Pardo, et al, ).…”
Section: Introductionmentioning
confidence: 99%
“…Thus, the organoids have identical cell pathways and similar cell types when compared to the intestine epithelium itself. These advantages have been used to study various topics, such as modeling infectious diseases (Liu, Huang, Ning, et al, ), applications to different drug delivery systems (Cheng et al, ; Peng, Wang, Xu, Yu, & Wang, ; Tu et al, ; Wang et al, ; Wu, Deng, Jiang, et al, ; Zhao, Wang, Zhang, et al, ), how they serve as a new drug loading material (Davoudi et al, ), various studies on nanomaterial's toxicity (Qi et al, ), modeling different virus infections (Garcez, Loiola, Da Costa, et al, ; Yin et al, ), studying microbiota interactions (Lukovac et al, ), and many more (Chiu, Song, Flanders, et al, ; Lu et al, ; Song et al, ; Zhang, An, Pardo, et al, ).…”
Section: Introductionmentioning
confidence: 99%
“…3d). The core-shell structure of the capsules provided better cell recovery after cryopreservation of organoids, probably through prevention of intracellular ice formation [73][74][75]. Electrohydrodynamic atomization (EHDA) is an attractive approach that immobilizes living cells into biomaterials permitting localized and minimally invasive delivery.…”
Section: Extrusion Methodsmentioning
confidence: 99%
“…Polysaccharides like alginate have also been shown to support growth of hiPSC-derived and patient-specific organoids, rendering similar phenotypic traits comparable to Matrigel-grown organoids ( Lu et al, 2017 ; Wilkinson et al, 2017 ; Broguiere et al, 2018 ; Capeling et al, 2019 ). Osteogenesis and angiogenesis could be achieved in an artificial sphere-shaped organoid using mesenchymal stem cells (MSCs) and human umbilical vain endothelial cells (HUVECs) ( Zhao et al, 2018 ).…”
Section: Engineering Strategies For 3d Organoid Models For Stem Cellsmentioning
confidence: 99%