Self-assembly of PEG-PPS polymers and LL-37 peptide nanomicelles improves the oxidative microenvironment and promotes angiogenesis to facilitate chronic wound healing.
Shi. Rong R; Qiao. Jianxiong J; Sun. Quanwu Q; Hou. Biao B; Li. Bo B; Zheng. Ji J; Zhang. Zhenzhen Z; Peng. Zhenxue Z; Zhou. Jing J; Shen. Bingbing B; Deng. Jun J; Zhang. Xuanfen X
Key Findings
- LL‑37 combined with PEG‑PPS forms ROS‑responsive nanomicelles that release the peptide where oxidative stress is high
- The nanomicelles actively scavenge excess ROS, improving the wound microenvironment for blood‑vessel formation
- In diabetic mouse models, LL‑37@PEG‑PPS treatment accelerated wound closure and yielded higher‑quality healing tissue
Practical Outcomes
- LL‑37 appears useful for enhancing wound healing by reducing oxidative damage and stimulating angiogenesis, but the specialized PEG‑PPS nanomicelle system isn’t a DIY solution. For biohackers, the key takeaway is to watch for topical LL‑37 products or combine the peptide with antioxidant and angiogenic strategies, while recognizing that the current delivery method requires advanced formulation.
Summary
Scientists made tiny carriers that hold the LL‑37 peptide and release it when there’s a lot of oxidative stress in a wound. These carriers also mop up excess reactive oxygen species, creating a friendlier environment for new blood‑vessel growth, and they protect the peptide from breaking down. In diabetic mouse wounds, this combo sped up healing and produced better‑quality tissue, showing that LL‑37 can boost angiogenesis and wound repair when delivered in the right way.
Abstract
Refractory diabetic wounds are associated with high incidence, mortality, and recurrence rates and are a devastating and rapidly growing clinical problem. However, treating these wounds is difficult owing to uncontrolled inflammatory microenvironments and defective angiogenesis in the affected areas, with no established effective treatment to the best of our knowledge. Herein, we optimized a dual functional therapeutic agent based on the assembly of LL-37 peptides and diblock copolymer poly(ethylene glycol)-poly(propylene sulfide) (PEG-PPS). The incorporation of PEG-PPS enabled responsive or controlled LL-37 peptide release in the presence of reactive oxygen species (ROS). LL-37@PEG-PPS nanomicelles not only scavenged excessive ROS to improve the microenvironment for angiogenesis but also released LL-37 peptides and protected them from degradation, thereby robustly increasing angiogenesis. Diabetic wounds treated with LL-37@PEG-PPS exhibited accelerated and high-quality wound healing in vivo. This study shows that LL-37@PEG-PPS can restore beneficial angiogenesis in the wound microenvironment by continuously providing angiogenesis-promoting signals. Thus, it may be a promising drug for improving chronic refractory wound healing.
Study Information
pubmed
2023
2023-11-08T00:00:00.000Z
10.1002/btm2.10619
8
50