Innovative regenerative strategy for reconstructing breast defect: Gas-foamed gelatin methacryloyl scaffolds combined with human adipose-derived stem cell spheroids AITranslate
Abstract AITranslate
The construction of vascularized tissue-engineered adipose tissue offers a promising alternative for breast defect repairs. However, the lack of a vascularized environment and inefficient adipose tissue differentiation hinder its application. Herein, an adipose regeneration strategy is proposed that integrates an innovative gas-foamed method (soil) and three-dimensional (3D) cell spheroids (seeds). The soil is optimized using a combination of gas-foaming and light-cured technology to generate foamed gelatin methacryloyl (f-GelMA), which provides a new strategy for the preparation of nontoxic porous hydrogels that significantly enhances the vascularization of the regenerated tissue. Seed cells were optimized to promote adipogenesis by replacing 2D monolayer adipose-derived stem cells (m-ADSC) with 3D ADSC spheroids (s-ADSC). The culture model based on f-GelMA and s-ADSC effectively promotes cell survival, migration, and adipogenic differentiation in vitro and significantly promotes the regeneration of vascularized adipose tissue in vivo. This study provides a solution for the regeneration of vascularized adipose tissue and establishes a general research model for the reconstruction of breast defects. Graphical abstract A schematic illustration of s-ADSC@f-GelMA for the regeneration of vascularized adipose tissues for the repair of breast defects. Download : Download high-res image (297KB) Download : Download full-size image
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DOI:https://doi.org/10.1016/j.apmt.2023.101772
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The construction of vascularized tissue-engineered adipose tissue offers a promising alternative for breast defect repairs. However, the lack of a vascularized environment and inefficient adipose tissue differentiation hinder its application. Herein, an adipose regeneration strategy is proposed that integrates an innovative gas-foamed method (soil) and three-dimensional (3D) cell spheroids (seeds). The soil is optimized using a combination of gas-foaming and light-cured technology to generate foamed gelatin methacryloyl (f-GelMA), which provides a new strategy for the preparation of nontoxic porous hydrogels that significantly enhances the vascularization of the regenerated tissue. Seed cells were optimized to promote adipogenesis by replacing 2D monolayer adipose-derived stem cells (m-ADSC) with 3D ADSC spheroids (s-ADSC). The culture model based on f-GelMA and s-ADSC effectively promotes cell survival, migration, and adipogenic differentiation in vitro and significantly promotes the regeneration of vascularized adipose tissue in vivo. This study provides a solution for the regeneration of vascularized adipose tissue and establishes a general research model for the reconstruction of breast defects. Graphical abstract A schematic illustration of s-ADSC@f-GelMA for the regeneration of vascularized adipose tissues for the repair of breast defects. Download : Download high-res image (297KB) Download : Download full-size image
quote
| GB/T 7714-2015 | [1] Danli Zhu, Wanting Bao, Boxuan Wei, et al. Applied Materials Today, 2023(31). DOI:10.1016/j.apmt.2023.101772. |
| MLA | [1] Danli Zhu, et al., Applied Materials Today, no. 31, 2023, https://doi.org/10.1016/j.apmt.2023.101772. |
| APA | [1] Danli Zhu, Wanting Bao, Boxuan Wei, Hao Wei, Jinwu Wang, Guangdong Zhou, Xiansong Wang, & Shanyu Guo. (2023). Applied Materials Today(31). https://doi.org/10.1016/j.apmt.2023.101772 |
| IEEE | [1] Danli Zhu, Wanting Bao, Boxuan Wei, Hao Wei, Jinwu Wang, Guangdong Zhou, Xiansong Wang, and Shanyu Guo, Applied Materials Today, no. 31, 2023, doi: 10.1016/j.apmt.2023.101772. |
