The BAM-GelMA-ADSCs bilayer patch promotes tissue regeneration and functional recovery after large-area bladder defects in beagles.
An Z., Wang P., Ling Z., Bi K., Wang Z., Shao J.
Animal Study on Face & Skin, published in Bioeng Transl Med (2025) — summary generated from the PubMed abstract.
Evidence from laboratory and animal studies provides groundwork for understanding mechanisms and potential before human studies continue.
- Level A · Stronger Clinical Evidence
- Level B · Emerging clinical evidence with positive signals
- Level C · Early human research exploring benefits
- Level D · Scientific groundwork from lab and animal studies
- Emerging · Emerging topic under active research
This page is generated from the PubMed record. The Thai description is an automated summary of bibliographic fields and the abstract, not a full translation, and is not medical advice.
- Study type
- Animal Study
- Journal
- Bioeng Transl Med (2025)
- Country
- United States
- Reported sample size
- —
- Source database
- PubMed
- PMID
- 40385542
- PMCID
- PMC12079509
- DOI
- 10.1002/btm2.10745
- Citations
- 2
Abstract (original English)
Previous studies of bladder tissue engineering simply seeded cells onto the surface of the material, which makes the cells lack protection and makes it difficult to face the complex in vivo environment. The gelatin methacryloyl (GelMA) hydrogel possesses outstanding biocompatibility and distinctive photo-crosslinking characteristics and is capable of offering a suitable three-dimensional growth environment for cells. This study explored the optimal concentration of GelMA for encapsulating adipose-derived stem cells (ADSCs) and combined it with bladder acellular matrix (BAM) to create a tissue-engineered bladder patch. Results indicated that 10% GelMA more effectively promoted ADSCs proliferation and spreading compared to 7.5% and 12.5% concentrations, which can offer a better extracellular matrix environment for cells. BAM performed as an excellent substrate with mechanical properties and stitchability similar to natural tissues. Animal experiments demonstrated that the encapsulated ADSCs in GelMA enhanced patch vascularization in vivo and BAM-GelMA-ADSCs tissue-engineered bladder patch can repair large-scale bladder defects in beagles and promote bladder tissue regeneration and functional recovery. This photocrosslinking hydrogel-acellular matrix patch provides a protective semi-controlled environment for ADSCs, supporting the growth and viability of encapsulated cells in vivo
What this study does not prove
- • This study does not prove SVF is an approved treatment or a replacement for standard care.
- • This is preclinical work; animal or laboratory results cannot be applied to humans.
Evidence level
Evidence from laboratory and animal studies provides groundwork for understanding mechanisms and potential before human studies continue.
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