2020
DOI: 10.1038/s41586-020-3034-x
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Creation of bladder assembloids mimicking tissue regeneration and cancer

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Cited by 155 publications
(135 citation statements)
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“… 77 To overcome these limitations of organoids, a multilayer bladder called an “assembloids” has been created by reconstituting tissue stem cells with stromal components representative of an organized architecture. 78 In sum, either classical 2D/3D cultures or assembloids will benefit functional studies of CAFs in the context of the gradually accepted importance of TME.…”
Section: From Fibroblasts To Cafs In Tmementioning
confidence: 99%
“… 77 To overcome these limitations of organoids, a multilayer bladder called an “assembloids” has been created by reconstituting tissue stem cells with stromal components representative of an organized architecture. 78 In sum, either classical 2D/3D cultures or assembloids will benefit functional studies of CAFs in the context of the gradually accepted importance of TME.…”
Section: From Fibroblasts To Cafs In Tmementioning
confidence: 99%
“…Some of them were even patented (Cross, 2003). Recently, Kim et al reported the most complex 3D bladder multilayered model, mimicking an organized architecture of a mature organ through the assembly of a urothelium surrounding stroma and an outer muscle layer (Kim et al, 2020). Interestingly, apart from the 3D organoid described by Horsley et al in 2018, all the aforementioned in vitro models were not exposed to urine, or if so, only for a few hours, up to a dayalthough a few studies report the use of urine components (e.g.…”
Section: In Vitro Human Cell-based Modelsmentioning
confidence: 99%
“…Some of them were even patented ( Cross, 2003 ). Recently, Kim et al reported the most complex 3D bladder multilayered model, mimicking an organized architecture of a mature organ through the assembly of a urothelium surrounding stroma and an outer muscle layer ( Kim et al., 2020 ).…”
Section: In Vitro Human Cell-based Modelsmentioning
confidence: 99%
“…Therefore, signal transduction pathway regulation may vary depending on cancer types and tissue origins (Schneider et al, 2017). Recently, bioprinted in vitro cancer models have been demonstrated to closely simulate the properties of actual cancers, including their defining phenotypes and pathological characteristics and distinct tissue-specific TME heterogeneity (Yi et al, 2019;Kim E. et al, 2020;Yoon et al, 2020). Heinrich et al (2019) developed a glioblastoma (GBM) model based on a mini-brain construct containing macrophages (Figure 7A).…”
Section: D Bioprinting Approaches For the Recapitulation Of Tumor Microenvironmentsmentioning
confidence: 99%