Pharmaceutical Sciences Research Center, Kermanshah University of Medical Sciences, Kermanshah, Iran,
Department of Pharmaceutical Sciences, Faculty of Technology, Kumaun University, Nainital, India.
Int J Nanomedicine. 2018 Sep 3;13:5023-5043. doi: 10.2147/IJN.S174072. eCollection 2018.
Wound healing process is an intricate sequence of well-orchestrated biochemical and cellular phenomena to restore the integrity of the skin and subcutaneous tissue. Several plant extracts and their phytoconstituents are known as a promising alternative for wound healing agents due to the presence of diverse active components, ease of access, and their limited side effects. The development of nanotechnological methods can help to improve the efficacy of different therapeutics as well as herbal-based products. Here, we present a review of the efficacy of the plant based-nanomaterials in the management of wounds and discuss the involved therapeutic targets. For this purpose, a profound search has been conducted on in vitro, in vivo, and/or clinical evidences evaluating the efficacy and pharmacological mechanisms of natural product-based nanostructures on different types of wounds. Different pharmacological targets are involved in the wound healing effects of herbal-based nanostructures, including suppressing the production of inflammatory cytokines and inflammatory transduction cascades, reducing oxidative factors and enhancing antioxidative enzymes, and promoting neovascularization and angiogenic pathways through increasing the expression of vascular endothelial growth factor, fibroblast growth factor, and platelet-derived growth factor. Moreover, nanostructure of plant extracts and their phytochemicals can enhance their bioavailability, control their release in the form of sustained delivery systems to the wound site, and enhance the permeability of these therapeutics to the underlying skin layers, which are all necessary for the healing process. Overall, various plant extracts and their natural compounds, used in nanoformulations, have demonstrated high activity in the management of wounds and thus can be assumed as future pharmaceutical drugs.
伤口愈合过程是一个复杂的生化和细胞现象序列,旨在恢复皮肤和皮下组织的完整性。由于存在多种活性成分、易于获取以及有限的副作用,几种植物提取物及其植物成分被认为是有前途的伤口愈合剂替代物。纳米技术方法的发展可以帮助提高不同治疗方法以及基于草药的产品的疗效。在这里,我们回顾了基于植物的纳米材料在伤口管理中的疗效,并讨论了涉及的治疗靶点。为此,我们对评估天然产物纳米结构对不同类型伤口的疗效和药理学机制的体外、体内和/或临床证据进行了深入搜索。基于草药的纳米结构的伤口愈合作用涉及不同的药理学靶点,包括抑制炎症细胞因子和炎症转导级联的产生、减少氧化因子和增强抗氧化酶、通过增加血管内皮生长因子、成纤维细胞生长因子和血小板衍生生长因子的表达促进血管生成和血管生成途径。此外,植物提取物及其植物化学物质的纳米结构可以提高它们的生物利用度,以持续释放系统的形式控制它们在伤口部位的释放,并增强这些治疗剂对底层皮肤层的通透性,这些都是愈合过程所必需的。总的来说,各种植物提取物及其天然化合物在纳米制剂中的应用在伤口管理中表现出了很高的活性,因此可以被认为是未来的药物。