4.8 Article

All-Aqueous Microfluidics Fabrication of Multifunctional Bioactive Microcapsules Promotes Wound Healing

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 14, 期 43, 页码 48426-48437

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.2c13420

关键词

all-aqueous microfluidics; microcapsules; wound healing; alkylated chitosan; aqueous-two phase system

资金

  1. National Natural Science Foundation of China [22008130, 82200440]
  2. Shanghai Pujiang Program [20PJ1405100]
  3. China Postdoctoral Science Foundation [2020M682124]
  4. Qingdao Postdoctoral Researchers Applied Research Project Foundation [RZ2000001426]
  5. Scientific Research Foundation for Youth Scholars from Qingdao University [DC1900014265]
  6. Major Science and Technology Innovation Projects of Shandong Province [2018CXGC1408]
  7. Qingdao Science and Technology Demonstration and Guidance Project [21-1-4-rkjk-10 nsh]

向作者/读者索取更多资源

The SAAMs microcapsules demonstrate excellent hemostatic properties and antimicrobial activities, promoting wound healing with multifunctionality in different stages of the healing process.
Wound healing involves multiple stages of body responses, including hemostasis, inflammation, cell proliferation, and tissue remodeling. New material design satisfying all demands throughout different stages of wound healing is cherished but rarely discussed. Here we introduce all-aqueous multiphase microfluidics as a novel strategy to fabricate self-assembled, multifunctional alkylated chitosan/alginate microcapsules (SAAMs) as novel therapeutic materials for rapid blood coagulation and wound healing. SAAMs are structurally distinguished by their ultrathin shells with polycationic surface for rapid activation of clotting cascade and their internal porous dextran-rich cores for fast absorption of blood and exudate. These features endow SAAMs with excellent hemostatic properties for acute hemorrhage. Moreover, the alkylated chitosan within the microcapsules exhibits persistent antimicrobial activities against bactericidal infections due to their amphiphilic and cationic surfaces. Besides, cytokines can be safely loaded into the organic-solvent-free microcapsules and released precisely to promote the proliferation of epidermal cells, supporting the subsequent development of granulation tissue and suppression of inflammation in the last stages of wound healing. With the ability to fabricate size-tailored soft microcapsules and to realize time-sequential functions for tissue repairing, the presented all-aqueous microfluidics generation of multifunctional bioactive SAAMs create a versatile and robust for wound treatment.

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