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Constructing a Collagen Hydrogel for the Delivery of Stem Cell-loaded Chitosan Microspheres
Published on: June 1, 2012
Mechanically enhanced chitosan hydrogels based on micellar cross-linking for wound hemostasis
Yanhao Liu1, Shubin Li1, Jiang Zhu2
1State Key Laboratory of Urban Water Resource and Environment, School of Chemistry and Chemical Engineering, Harbin Institute of Technology, 92 West Da-Zhi Street, 150001 Harbin, China.
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Excessive blood loss caused by severe trauma is often life-threatening, so a kind of hemostatic material with superior performance is urgently needed to achieve rapid hemostasis of wounds. Here, we prepared CDCS/PF/PVA/Agar hydrogels by blending chitosan modified by catechol groups, PF127-NH2 micelles, PVA and agarose. The hydrogel showed adjustable swelling and degradation properties. The CDCS/PF/PVA/Agar hydrogel exhibited exceptional mechanical properties with an elastic modulus of 351.4 kPa after four freeze-thaw cycles, surpassing traditional polysaccharide hydrogels by 7-20 fold. Its tissue adhesion strength reached 16.24 kPa in air and 11.23 kPa under wet conditions, enabled by catechol-mediated covalent bonding and amino group interactions. In vivo experiments demonstrated rapid hemostasis within 170 s in mouse liver injury models, reducing blood loss by 75.4 % compared to untreated controls. This study provides a robust strategy for designing polysaccharide hydrogels integrating mechanical resilience, rapid hemostasis, antibacterial activity, and biosafety, offering significant potential for clinical wound management.

