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Biocompatible Gelatinized Starch as a Functional Modulator to Expand the Scope of Injectable Hydrogels

Hangyu Li, Jingwen Wang, Xiushuai Shang, Xiaotian Su, Iek Man Lei, Xulin Hu, Yihe Hu, Shuai Li

Advanced Healthcare Materials · 2026

Vollständiger Abstract

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ABSTRACT Injectable hydrogels used in tissue engineering and minimally invasive therapies are limited by insufficient biocompatibility, poor scalability, high costs, and inconsistent performance. Here, we introduce gelatinized starch, a common polysaccharide, as a versatile and economical building block to expand the existing repertoire of injectable hydrogel materials. Derived from native corn starch via heating and gelatinization, this biopolymer exhibits shear‐thinning, thixotropic, and thermoreversible sol–gel transition properties, key rheological characteristics essential for syringeability and in situ structural recovery. It readily integrates with photo‐crosslinkable (e.g., GelMA, HAMA, AlgMA) and ionically crosslinkable (e.g., alginate, chitosan) hydrogels. Rheological tests confirm that starch incorporation imparts excellent injectability, rapid gelation, and robust structural recovery. Bone marrow mesenchymal stem cells (BMSCs) encapsulated in starch‐based composite hydrogels maintained high viability, showed enhanced protein expression, and exhibited strong proliferation, which were modulated by starch concentration and cell seeding density. Notably, injection depth influenced post‐delivery cell viability within the hydrogel, whereas injection width had no significant effect. In a rat femoral condyle defect model, injection of a BMSC‐laden gelatinized starch hydrogel markedly promoted bone regeneration. Collectively, gelatinized starch overcomes key limitations of conventional injectable hydrogels, providing a cost‐effective, biocompatible, and functionally adaptable platform for cell delivery and tissue regeneration.

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Publikationsdaten

Autor:innen
Hangyu Li, Jingwen Wang, Xiushuai Shang, Xiaotian Su, Iek Man Lei, Xulin Hu, Yihe Hu, Shuai Li
Quelle
Advanced Healthcare Materials
Publikation
2026-01-01
Band / Ausgabe
Nicht angegeben
Seiten
Nicht angegeben
ISSN / ISBN
2192-2640, 2192-2659
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Zitierfähiger Nachweis

Hangyu Li, Jingwen Wang, Xiushuai Shang, Xiaotian Su, Iek Man Lei, Xulin Hu, Yihe Hu, Shuai Li (2026). Biocompatible Gelatinized Starch as a Functional Modulator to Expand the Scope of Injectable Hydrogels. Advanced Healthcare Materials. https://doi.org/10.1002/adhm.71666
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