Ultrasound-responsive hydrogels for bone and cartilage tissue engineering
Yang H., Li X., Yu Y., Li Q., Zheng Y., Xia D.
Narrative Review on Cartilage Damage, published in Mater Today Bio (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
- Narrative Review
- Journal
- Mater Today Bio (2025)
- Reported sample size
- —
- Source database
- Europe PMC
- PMID
- 41332938
- PMCID
- PMC12666586
- DOI
- 10.1016/j.mtbio.2025.102540
- Citations
- 2
Abstract (original English)
Ultrasound-responsive hydrogels have garnered significant attention for the treatment of bone and cartilage defects owing to their non-invasive regulation, precise drug delivery, and capacity to promote tissue regeneration. This review provides a comprehensive overview of the current research landscape on ultrasound-responsive hydrogels, encompassing their preparation strategies, distinctive advantages, application domains, and therapeutic mechanisms. Preparation methods predominantly involve physical and chemical cross-linking techniques, while the response mechanisms are mediated by both thermal and non-thermal effects of ultrasound. Ultrasound endows hydrogels with unique characteristics, including non-invasiveness, spatiotemporal controllability, the facilitation of cell migration, and the potential for synergistic therapy. The integration of ultrasound-responsive hydrogels with emerging technologies-such as nanotechnology and genetic engineering-has expanded their applicability in the regeneration of bone and cartilage defects, as well as in the treatment of associated infections and tumors. The underlying biological mechanisms are diverse, involving key signalling pathways such as MAPK/ERK, BMP/Smad, and HIF-1α/VEGF. In summary, ultrasound-responsive hydrogels demonstrate considerable promise and distinct advantages in bone and cartilage tissue engineering. Nevertheless,
What this study does not prove
- • This study does not prove SVF is an approved treatment or a replacement for standard care.
- • This is a narrative review: it collects no new patient data and does not systematically appraise evidence quality.
Evidence level
Evidence from laboratory and animal studies provides groundwork for understanding mechanisms and potential before human studies continue.
How we grade evidenceBrowse all related research
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