Li Bang, Liang Feng, Gao Ziyang, Zhou Xianqing, Zheng Dujuan, Zhang Xinjing, Sun Mengyao, Yan Xu, Li Wanjia, Wang Yuansong, Lu Xiaoxuan, Wu Leping, Sun Xiaoyu, Zhang Hengguo, Xu Jianguang, Wang Qingqing
College & Hospital of Stomatology, Anhui Medical University, Key Lab. of Oral Diseases Research of Anhui Province, Hefei, 230032 China.
College & Hospital of Stomatology, Anhui Medical University, Key Lab. of Oral Diseases Research of Anhui Province, Hefei, 230032 China.
Acta Biomater. 2025 Aug 8. doi: 10.1016/j.actbio.2025.08.011.
Effective removal of apoptotic cells, namely efferocytosis, promotes inflammation resolution of periodontitis and tissue restoration. However, effective treatments to enhance macrophage efferocytosis in periodontitis are still lacking. Co-assembly of distinct building blocks is considered a versatile and effective method of modulating the structure and functionality of supramolecular materials. Herein, a biologically inert amphiphile peptide (PA) (CHONNCCCCS, PAS) was designed based on a previous amphiphile peptide (CHONNCCCCRRES(p), PARRES). We described those two peptides' co-assembly in modulating macrophage efferocytosis for periodontitis resolution. The results showed that individual PAS and PARRES co-assemble together and transform the secondary structure from α-helix to β-sheet pattern via hydrogen bonding. Compared with individual PAs, the composite PA adsorbed more "bridging molecules" that enhance apoptotic signal binding on macrophages. The enriched "bridging molecules" could bind to macrophages on one side via phagocytic receptors and attract the apoptotic cells on the other side, thus promoting efferocytosis. When injected into mice with periodontitis, composite PA promotes inflammation resolution and further promotes periodontal tissue regeneration. This study provided an easily adjustable supermolecular system that enhances efferocytosis for periodontitis and revealed insights into the relationship between physicochemical properties and biological effects of supermolecular materials. STATEMENT OF SIGNIFICANCE: Efferocytosis promotes periodontitis resolution and further tissue restoration. Nevertheless, high-performance therapeutics for promoting efferocytosis are still lacking. Peptides have desirable features, including biocompatibility and sequence-specific secondary structures. A biologically amphiphile peptide (PA) was designed with a similar structure to a previous PA. We described those PAs' co-assembly in modulating efferocytosis for periodontitis resolution. Specifically, those PAs co-assemble together and transform secondary structure from α-helix to β-sheet pattern. The composite PA adsorbs more "bridging molecules," enhancing apoptotic signals binding to macrophages and attracting apoptotic cells for promoting efferocytosis. In vivo, the composite PA promotes periodontitis resolution and regeneration. This study provided an easily adjustable supermolecular system enhancing efferocytosis and revealed insights into the relationship between physicochemical properties and biological effects.
有效清除凋亡细胞,即胞葬作用,可促进牙周炎的炎症消退和组织修复。然而,目前仍缺乏有效增强巨噬细胞胞葬作用来治疗牙周炎的方法。不同结构单元的共组装被认为是一种调节超分子材料结构和功能的通用且有效的方法。在此,基于先前的两亲性肽(CHONNCCCCRRES(p),PARRES)设计了一种生物惰性两亲性肽(PA)(CHONNCCCCS,PAS)。我们描述了这两种肽的共组装在调节巨噬细胞胞葬作用以解决牙周炎方面的作用。结果表明,单独的PAS和PARRES共同组装在一起,并通过氢键将二级结构从α螺旋转变为β折叠模式。与单独的PA相比,复合PA吸附了更多的“桥接分子”,这些分子增强了凋亡信号在巨噬细胞上的结合。富集的“桥接分子”一侧可通过吞噬受体与巨噬细胞结合,另一侧吸引凋亡细胞,从而促进胞葬作用。当将复合PA注射到患有牙周炎的小鼠体内时,可促进炎症消退并进一步促进牙周组织再生。本研究提供了一种易于调节的超分子系统,该系统可增强牙周炎的胞葬作用,并揭示了超分子材料的物理化学性质与生物学效应之间的关系。
胞葬作用可促进牙周炎的消退和进一步的组织修复。然而,目前仍缺乏促进胞葬作用的高效治疗方法。肽具有理想的特性,包括生物相容性和序列特异性二级结构。设计了一种与先前PA结构相似的生物两亲性肽(PA)。我们描述了这些PA在调节胞葬作用以解决牙周炎方面的共组装。具体而言,这些PA共同组装在一起,并将二级结构从α螺旋转变为β折叠模式。复合PA吸附了更多的“桥接分子”,增强了凋亡信号与巨噬细胞的结合,并吸引凋亡细胞以促进胞葬作用。在体内,复合PA可促进牙周炎的消退和再生。本研究提供了一种易于调节的超分子系统,可增强胞葬作用,并揭示了物理化学性质与生物学效应之间的关系。