Inorganic-based biomaterials for rapid hemostasis and wound healing

The challenge for the treatment of severe traumas poses an urgent clinical need for the development of biomaterials to achieve rapid hemostasis and wound healing. In the past few decades, active inorganic components and their derived composites have become potential clinical products owing to their...

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Veröffentlicht in:Chemical science (Cambridge) 2022-12, Vol.14 (1), p.29-53
Hauptverfasser: Zheng, Yi, Wu, Jinfu, Zhu, Yufang, Wu, Chengtie
Format: Artikel
Sprache:eng
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Zusammenfassung:The challenge for the treatment of severe traumas poses an urgent clinical need for the development of biomaterials to achieve rapid hemostasis and wound healing. In the past few decades, active inorganic components and their derived composites have become potential clinical products owing to their excellent performances in the process of hemorrhage control and tissue repair. In this review, we provide a current overview of the development of inorganic-based biomaterials used for hemostasis and wound healing. We highlight the methods and strategies for the design of inorganic-based biomaterials, including 3D printing, freeze-drying, electrospinning and vacuum filtration. Importantly, inorganic-based biomaterials for rapid hemostasis and wound healing are presented, and we divide them into several categories according to different chemistry and forms and further discuss their properties, therapeutic mechanisms and applications. Finally, the conclusions and future prospects are suggested for the development of novel inorganic-based biomaterials in the field of rapid hemostasis and wound healing. This review provides the recent progress in the application of inorganic-based biomaterials for rapid hemostasis and wound healing, including preparation methods, material systems, intrinsic mechanisms and biofunctions.
ISSN:2041-6520
2041-6539
DOI:10.1039/d2sc04962g