ArticleAdvanced science (Weinheim, Baden-Wurttemberg, Germany)2025
High-Throughput Formation of Pre-Vascularized hiPSC-Derived Hepatobiliary Organoids on a Chip via Nonparenchymal Cell Grafting.
Article in Advanced science (Weinheim, Baden-Wurttemberg, Germany), 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 12 papers.
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Who cites it
12 citing papers in PubMed.
- A clinically defined and xeno-free hydrogel system for regenerative medicine.Materials futures · 2026Article
- Advances in vascularized organoids.Chinese medical journal · 2026Review
- Liver Organoids: From Disease Modelling to Regenerative Medicine.Cell proliferation · 2026Review
- Self-assembly of tumor-related vascularized colorectal tumoroid-on-a-chip for precision medicine drug testing.Cell reports. Medicine · 2026Article
- Construction of liver organoid models by hepatobiliary differentiation from human induced pluripotent stem cells: state of the art, challenges and improving strategies.Stem cell research & therapy · 2026Review
- Microengineering the Liver: Strategies for Constructing Functional Liver-on-a-Chip Devices.Exploration (Beijing, China) · 2026Review
- Application of stem cells in the precise diagnosis and treatment of liver diseases.World journal of gastroenterology · 2025Review
- Hierarchically assembled curcumin-vitamin E-zinc thermo-gel for multi-synergistic prevention and treatment of radiation-induced oral mucositis.Materials today. Bio · 2025Article
- The role of 3D printing in skeletal muscle-on-a-chip models: Current applications and future potential.Materials today. Bio · 2025Article
- Biopolymers for Liver Tissue Engineering: A Systematic Review.Gels (Basel, Switzerland) · 2025Review
- Liver quad culture chip as a model for radiation injury research.Scientific reports · 2025Article
- High-Throughput Formation of Pre-Vascularized hiPSC-Derived Hepatobiliary Organoids on a Chip via Nonparenchymal Cell Grafting.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2025Article
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Authors and funding
13 authors.
Funding
Abstract
Liver organoids have been increasingly adopted as a critical in vitro model to study liver development and diseases. However, the pre-vascularization of liver organoids without affecting liver parenchymal specification remains a long-lasting challenge, which is essential for their application in regenerative medicine. Here, the large-scale formation of pre-vascularized human hepatobiliary organoids (vhHBOs) is presented without affecting liver epithelial specification via a novel strategy, namely nonparenchymal cell grafting (NCG). Endothelial and mesenchymal cells are grafted to human hepatobiliary organoids (hHBOs) at the different liver epithelial differentiation stages without supplementing with nonparenchymal culture medium and growth factors. Endothelial grafting at the stage of hepatic maturation offers an optimal integration efficiency compared to the stage of hepatic specification. Additionally, grafting with mesenchymal proves crucial in endothelial invading and sprouting into the liver epithelial cells during the establishment of vhHBOs. Ectopic liver implants into mice further displayed integration of vhHBOs into mice vascular networks. Notably, transplanted vhHBOs self-organized into native liver tissue like hepatic zone and bile ducts, indicating their potential to regenerate damaged hepatic and bile duct tissues. It is believed that nonparenchymal cell grafting will offer a novel technical route to form a high-fidelity complex in vitro model for tissue engineering and regenerative medicine.
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