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Research progress and strategy of FGF21 for skin wound healing
Shisheng Lin1, Lu Tang2, Nuo Xu1
1College of Life and Environmental Sciences, Wenzhou University, Wenzhou, Zhejiang, China.
Abstract:
Fibroblast Growth Factor 21 (FGF21), a pivotal member of the fibroblast growth factor family, exhibits multifaceted biological functions, including the modulation of pro-inflammatory cytokines and metabolic regulation. Recent research has revealed that in impaired skin tissues, FGF21 and its receptors are upregulated and play a significant role in accelerating the wound healing process. However, the clinical application of FGF21 is severely limited by its short in vivo half-life: this factor is often degraded by enzymes before it can exert its therapeutic effects. To address this limitation, the transdermal drug delivery system (TDDS) has emerged as an innovative approach that enables sustained drug release, significantly prolonging the therapeutic duration. Leveraging genetic recombination technology, research teams have ingeniously fused FGF21 with cell-penetrating peptides (CPPs) to construct recombinant FGF21 complexes. These novel conjugates can efficiently penetrate the epidermal barrier and achieve sustained and stable pharmacological activity through TDDS. This review systematically analyzes the potential signaling pathways by which FGF21 accelerates skin wound repair, summarizes the latest advancements in TDDS technology, explores the therapeutic potential of FGF21, and evaluates the efficacy of CPP fusion tags. The manuscript not only proposes an innovative paradigm for the application of FGF21 in skin injury treatment but also provides new insights into its use in transdermal delivery, marking a significant step toward overcoming existing clinical therapeutic challenges. From a clinical medical perspective, this innovative delivery system holds promise for addressing the bioavailability issues of traditional FGF21 therapies, offering new strategies for the clinical treatment of metabolism-related diseases and wound healing. With further research, this technology holds vast potential for clinical applications in hard-to-heal wounds such as diabetic foot ulcers and burns.
Insights
Fibroblast Growth Factor 21 (FGF21) shows promise for wound healing but has a short lifespan. A new transdermal drug delivery system (TDDS) using FGF21 fused with cell-penetrating peptides (CPPs) enhances its stability and therapeutic effect.
Area of Science:
- Biochemistry
- Dermatology
- Pharmacology
Background:
- Fibroblast Growth Factor 21 (FGF21) is crucial for metabolic regulation and modulating inflammatory cytokines.
- Upregulation of FGF21 and its receptors accelerates skin wound repair.
- Short in vivo half-life limits FGF21's clinical application due to rapid enzymatic degradation.
Purpose of the Study:
- To review the signaling pathways of FGF21 in skin repair.
- To summarize advancements in transdermal drug delivery systems (TDDS).
- To evaluate the therapeutic potential of FGF21 and cell-penetrating peptide (CPP) fusion for wound healing.
Main Methods:
- Genetic recombination technology to create FGF21-CPP conjugates.
- Transdermal drug delivery system (TDDS) for sustained release.
- Systematic review of FGF21 signaling, TDDS, and CPP efficacy.
Main Results:
- FGF21-CPP conjugates demonstrate efficient epidermal penetration.
- TDDS enables sustained and stable pharmacological activity of FGF21.
- Innovative approach addresses FGF21 bioavailability challenges.
Conclusions:
- FGF21-CPP conjugates delivered via TDDS offer a novel strategy for skin injury treatment.
- This approach enhances FGF21 stability and therapeutic efficacy.
- Potential applications include treating hard-to-heal wounds and metabolism-related diseases.
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