Arginine-Nanoenzyme with Timely Angiogenesis for Promoting Diabetic Wound Healing.
Study Design
- Çalışma Türü
- Other
- Popülasyon
- Diabetic ulcer mice model
- Müdahale
- Arginine-Nanoenzyme with Timely Angiogenesis for Promoting Diabetic Wound Healing. None
- Karşılaştırıcı
- Untreated diabetic wound controls
- Birincil Sonuç
- Diabetic wound healing via angiogenesis
- Etki Yönü
- Positive
- Yanlılık Riski
- Unclear
Abstract
The successful treatment of diabetic wounds requires strategies that promote anti-inflammation, angiogenesis, and re-epithelialization of the wound. Excessive oxidative stress in diabetic ulcers (DUs) inhibits cell proliferation and hinders timely vascular formation and macrophage polarization from pro-inflammatory M1 to anti-inflammatory M2, resulting in a persistent inflammatory environment and a nonhealing wound. We designed arginine-nanoenzyme (FTA) with mimic-catalase and arginine-loading. 2,3,4-trihydroxy benzaldehyde and arginine (Arg) were connected by a Schiff base bond, and the nanoassembly of Arg to FTA was driven by the coordination force between a ferric ion and polyphenol and noncovalent bond force such as a hydrogen bond. FTA could remove excess reactive oxygen species at the wound site in situ and convert it to oxygen to improve hypoxia. Meanwhile, Arg was released and catalytically metabolized by NO synthase in M1 to promote vascular repair in the early phase. In the late phase, the metabolite of Arg catalyzed by arginase in M2 was mainly ornithine, which played a vital role in promoting tissue repair, which implemented angiogenesis timely and prevented hypertrophic scars. Mechanistically, FTA activated the cAMP signaling pathway combined with reducing inflammation and ameliorating angiogenesis, which resulted in excellent therapeutic effects on a DU mice model.
Kısaca
Mechanistically, FTA activated the cAMP signaling pathway combined with reducing inflammation and ameliorating angiogenesis, which resulted in excellent therapeutic effects on a DU mice model.
Used In Evidence Reviews
Similar Papers
Critical reviews in immunology · 2012
M1 and M2 Macrophages: Oracles of Health and Disease.
Wound repair and regeneration : official publication of the Wound Healing Society [and] the European Tissue Repair Society · 2003
Arginine physiology and its implication for wound healing.
International journal of molecular sciences · 2019
Nutrition and Wound Healing: An Overview Focusing on the Beneficial Effects of Curcumin.
Nutrition in clinical practice : official publication of the American Society for Parenteral and Enteral Nutrition · 2005
Arginine supplementation and wound healing.
Current opinion in clinical nutrition and metabolic care · 2008
Assessment and nutritional aspects of wound healing.
ACS nano · 2023