4.8 Article

Wound Microenvironment-Responsive Protein Hydrogel Drug-Loaded System with Accelerating Healing and Antibacterial Property

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 14, Issue 8, Pages 10187-10199

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.2c00373

Keywords

protein hydrogel; bioconjugation; wound healing; growth factor; antibacterial

Funding

  1. National Natural Science Foundation of China [21675091, 21874078, 22074072]
  2. Taishan Young Scholar Program of Shandong Province [tsqn20161027]
  3. Major Science and Technology Innovation Project of Shandong Province [2018CXGC1407]
  4. Key Research and Development Project of Shandong Province [2016GGX102028, 2016GGX102039, 2017GGX20111]
  5. Innovation Leader Project of Qingdao [168325zhc]
  6. Postdoctoral Scientific Research Foundation of Qingdao
  7. First Class Discipline Project of Shandong Province

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In this study, a wound microenvironment-responsive hydrogel drug-loading system was developed to promote wound healing by releasing basic fibroblast growth factor. This research is of great significance for expanding the application of growth factors in the field of wound care.
Growth factors play a vital role in wound healing, and novel hydrogel carriers suitable for growth factors have always been a research hotspot in the wound healthcare field. In this work, a wound microenvironment-responsive hydrogel drug-loading system was constructed by cross-linking of the internal electron-deficient polyester and bovine serum albumin (BSA) via catalyst-free amino-yne bioconjugation. The slightly acidic microenvironment of wound tissues induces the charge removal of BSA chains, thus releasing the basic fibroblast growth factor (bFGF) loaded through electrostatic action. Besides, the BSA chains in the gel network further endow their excellent biocompatibility and biodegradability, also making them more suitable for bFGF loading. The wound caring evaluation of the hydrogel in the full-thickness skin wound indicated that the protein- based hydrogel significantly promotes the proliferation and differentiation of fibroblasts, collagen accumulation, and epidermal layer stacking, thus significantly shortening the healing process. This strategy paved the way for broadening the application of the growth factors in the wound care field.

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