ChemicalBook >> journal list >> Pharmaceuticals >>article
Pharmaceuticals

Pharmaceuticals

IF: 4.3
Download PDF

Centipede Protein-Laden Natural Nanocapsule Hybrid Hydrogel Mediates Sustained Bioactive Release for Synergistic Regeneration of Diabetic Foot Ulcers.

Published:14 August 2026 DOI: 10.3390/ph19081289 PMID: 42653785
Shun Lv, Jian Hu, Huan Chen, Minyu Zhu, Wei Jin, Qiyin Liu, Qianqian Zhang, Yinghua Zhang, Ying Li, Zhengqi Dong

Abstract

Background: Diabetic foot ulcers (DFUs) are chronic wounds characterized by persistent inflammation, oxidative stress, impaired angiogenesis, and defective extracellular matrix remodeling. Current therapeutic approaches remain insufficient for refractory diabetic wounds due to limited drug retention and inadequate regulation of the wound microenvironment. This study aimed to develop a centipede-derived protein fraction-loaded nanocapsule hybrid hydrogel for sustained bioactive delivery and diabetic wound repair. Methods: A bioactive protein fraction was isolated from processed medicinal centipede material and screened using cellular compatibility assays. The selected tropomyosin-containing protein fraction was incorporated into nanocapsules and subsequently integrated into a gallic acid-modified polyacrylamide hydrogel matrix. The physicochemical properties, antioxidant activity, rheological behavior, and protein release characteristics of the nanocapsule-hydrogel system were systematically evaluated. A streptozotocin-induced diabetic rat wound model was established to assess therapeutic efficacy through wound closure analysis, histological staining, and immunohistochemical evaluation. Results: The prepared nanocapsules exhibited a spherical morphology, nanoscale size distribution, and sustained protein delivery capability. The PAM-GA hydrogel demonstrated antioxidant activity, injectability, shear-thinning behavior, self-healing ability, and enhanced retention of protein release. In vivo experiments showed that the PT@NC@PAM-GA hydrogel significantly accelerated wound closure and promoted tissue regeneration, accompanied by enhanced angiogenesis, collagen deposition, and reduced inflammatory responses. Conclusions: The centipede-derived protein fraction-loaded nanocapsule hybrid hydrogel effectively integrates bioactive protein delivery with a multifunctional hydrogel matrix, providing a potential strategy for sustained treatment of diabetic foot ulcers.

Substances (1)

Materials
Procduct Name CAS Molecular Formula Supplier Price
Streptozotocin 18883-66-4 C8H15N3O7 651 suppliers $17.00-$3712.25

Similar articles

IF:4.4

A Natural Eumelanin‐Assisted Pullulan/Chitosan Hydrogel for the Management of Diabetic Oral Ulcers

Macromolecular bioscience Ying Li, Yajing Xiang,etc Published: 27 November 2024
IF:10

Ultrasound‐Triggered Mg2+ Blasting Release Hydrogel Microspheres for Promoting Bone Reconstruction

Advanced Healthcare Materials Wenlin Huang, Xu Wang,etc Published: 26 November 2024
IF:27.4

Tumor‐Specific Protein Induced in Situ Self‐Assembly of Peptide Drugs for Synergistic Mitochondria Disruption

Advanced Materials Yi Hao, Da‐Yong Hou,etc Published: 27 November 2024