College of Food Science and Engineering, Changchun University, Changchun, 130022, China.
Jilin Province Product Quality Supervision and Inspection Institute, Changchun, 130103, China.
J Mech Behav Biomed Mater. 2024 Mar;151:106384. doi: 10.1016/j.jmbbm.2024.106384. Epub 2024 Jan 5.
Considerable potential exists for the development of natural polymer hydrogels that possess notable antibacterial and anti-inflammatory properties, along with excellent biocompatibility and mechanical attributes, to expedite the healing of skin wounds. Recent endeavors have focused on formulating an optimal hydrogel dressing for wound hemostasis and repair. In this pursuit, we have crafted a composite hydrogel using carboxymethyl chitosan and alginic acid, cross-linked with EDC/NHS, and enriched with extracts from Acanthopanax senticosus and Osmundastrum cinnamomeum. This synthesized hydrogel showcases commendable features, including significant swelling capacity (135 ± 3.6%), proficient water retention (94.421 ± 0.154%), and effective water vapor permeability (5845.011 ± 467.799 g/m/d). Moreover, our drug-loaded hydrogels (CMCS/SA/AS/OC) have demonstrated remarkable efficacy in accelerating wound healing in both in vivo and in vitro models. On the 7th day, the wound healing rate reached 94.905% ± 0.498%, and by the 14th day, the wound was nearly fully healed (98.08% ± 0.323%) with the emergence of hair coverage. Furthermore, these hydrogels exhibited remarkable hemostatic properties, the platelet activity was 89.37% ± 1.29% and the platelet adhesion rate was 66.36% ± 1.42%. In order to elucidate the coagulation mechanism of the Acanthopanax senticosus and Osmundastrum cinnamomeum extracts, a network pharmacology approach was carried out. 41 active compounds and 107 potential therapeutic targets associated with these extracts were identified, revealing a total of 132 coagulation pathways. Platelet activation and complement and coagulation cascades pathways showed the highest levels of enrichment by KEGG analysis, serving as potential mechanisms through which the active components in AS/OC may facilitate coagulation by targeting relevant factors. In summary, our study has successfully developed an innovative drug-loaded hydrogel that not only enhances wound hemostasis and healing but also provides insights into the underlying mechanisms through network pharmacology. This work establishes a robust theoretical foundation for the medical application of our hydrogel.
考虑到天然聚合物水凝胶具有显著的抗菌和抗炎特性,以及出色的生物相容性和机械性能,可以加速皮肤伤口的愈合,因此具有很大的发展潜力。最近的研究集中在为伤口止血和修复研制最佳的水凝胶敷料。在这一研究中,我们使用 EDC/NHS 交联的羧甲基壳聚糖和海藻酸钠制成了一种复合水凝胶,并添加了刺五加和金毛狗脊的提取物。这种合成水凝胶具有显著的膨胀能力(135±3.6%)、高效的保水能力(94.421±0.154%)和有效的水蒸气透过率(5845.011±467.799g/m/d)。此外,我们的载药水凝胶(CMCS/SA/AS/OC)在体内和体外模型中均表现出显著的加速伤口愈合的功效。在第 7 天,伤口愈合率达到 94.905%±0.498%,在第 14 天,伤口几乎完全愈合(98.08%±0.323%),出现了毛发覆盖。此外,这些水凝胶还表现出显著的止血性能,血小板活性为 89.37%±1.29%,血小板黏附率为 66.36%±1.42%。为了阐明刺五加和金毛狗脊提取物的凝血机制,我们采用了网络药理学方法。确定了 41 种活性化合物和 107 个与这些提取物相关的潜在治疗靶点,揭示了总共 132 种凝血途径。KEGG 分析显示,血小板激活和补体与凝血级联途径的富集程度最高,表明 AS/OC 中的活性成分可能通过靶向相关因子,通过作用于相关因子来促进凝血,这可能是其潜在的作用机制。综上所述,本研究成功开发了一种创新的载药水凝胶,不仅增强了伤口止血和愈合效果,还通过网络药理学为其作用机制提供了深入的见解。这项工作为我们的水凝胶在医学中的应用奠定了坚实的理论基础。