Li Zichao, Zhang Leyang, Wang Yang, Zhu Yifu, Shen Haomiao, Yuan Juzheng, Li Xiao, Yu Zhou, Song Baoqiang
Department of Plastic Surgery, Xijing Hospital, Fourth Military Medical University, 710032, Xi'an, Shaanxi, China.
Department of Hepatobiliary Surgery, Xijing Hospital, Fourth Military Medical University, Xi'an, 710032, China.
Bioact Mater. 2025 Feb 12;47:417-431. doi: 10.1016/j.bioactmat.2025.02.005. eCollection 2025 May.
The homeostasis of the wound microenvironment is fundamental for scarless wound healing, while the excessive accumulation of transforming growth factor-beta (TGF-β) in the wound microenvironment always leads to hypertrophic scars (HS) formation by regulating cell fates and crosstalk among various types of cells, such as macrophages and fibroblasts. This study reports that an injectable, self-assembling LA-peptide hydrogel has the potential to facilitate scarless cutaneous wound healing through dynamically adsorbing TGF-β within the wound environment. We found that the released LA peptides led to the suppression of both the PI3K/Akt and TGF-β/Smad2/3 pathways in macrophages and fibroblasts. As expected, the application of LA-peptide hydrogel alleviated the M2 type polarization of macrophages and inhibited fibroblasts activation by adsorbing TGF-β both and . Furthermore, designated concentrations of the LA-peptide hydrogel achieved controlled release of LA peptides, enabling dynamic regulation of TGF-β for maintaining microenvironment homeostasis during different phases of wound healing. This contributed to the inhibition of HS formation without delaying wound healing in both a mouse full-thickness skin wound model and a rabbit ear scar model. Overall, the LA-peptide hydrogel provides promising avenues for promoting scarless healing of wounds, exemplifying precision medicine-guided targeting of specific pathogenic molecules, such as TGF-β, and highlighting the significance of dynamic regulation of TGF-β homeostasis in wound microenvironment.
伤口微环境的稳态是无瘢痕伤口愈合的基础,而伤口微环境中转化生长因子-β(TGF-β)的过度积累总是通过调节细胞命运以及巨噬细胞和成纤维细胞等各类细胞之间的相互作用导致增生性瘢痕(HS)形成。本研究报道,一种可注射的自组装LA肽水凝胶有潜力通过在伤口环境中动态吸附TGF-β促进无瘢痕皮肤伤口愈合。我们发现,释放的LA肽导致巨噬细胞和成纤维细胞中PI3K/Akt和TGF-β/Smad2/3信号通路均受到抑制。正如预期的那样,LA肽水凝胶的应用通过在体内和体外吸附TGF-β减轻了巨噬细胞的M2型极化并抑制了成纤维细胞的活化。此外,指定浓度的LA肽水凝胶实现了LA肽的控释,能够在伤口愈合的不同阶段对TGF-β进行动态调节以维持微环境稳态。这有助于在小鼠全层皮肤伤口模型和兔耳瘢痕模型中抑制HS形成而不延迟伤口愈合。总体而言,LA肽水凝胶为促进伤口无瘢痕愈合提供了有前景的途径,例证了精准医学指导下对特定致病分子(如TGF-β)的靶向作用,并突出了伤口微环境中TGF-β稳态动态调节的重要性。