Shanghai Key Laboratory of Compound Chinese Medicines and The Ministry of Education (MOE) Key Laboratory for Standardization of Chinese Medicines, Institute of Chinese Materia Medica, Shanghai University of Traditional Chinese Medicine, Shanghai, China.
Department of Pharmacognosy, China Pharmaceutical University, Nanjing, China.
Exp Mol Med. 2017 Oct 27;49(10):e387. doi: 10.1038/emm.2017.151.
Impaired angiogenesis is one of the crucial factors that impede the wound healing process in diabetic foot ulcers (DFUs). In this study, we found that 20(S)-protopanaxadiol (PPD), an aglycone of ginsenosides in Panax notoginseng, stimulated angiogenesis and benefited wound healing in genetically diabetic mice. In HUVECs, PPD promoted cell proliferation, tube formation and VEGF secretion accompanied by increased nuclear translocalization of HIF-1α, which led to elevated VEGF mRNA expression. PPD activated both PI3K/Akt/mTOR and Raf/MEK/ERK signaling pathways in HUVECs, which were abrogated by LY294002 and PD98059. Furthermore, these two pathways had crosstalk through p70S6K, as LY294002, PD98059 and p70S6K siRNA abolished the angiogenic responses of PPD. In the excisional wound splinting model established in db/db diabetic mice, PPD (0.6, 6 and 60 mg ml) accelerated wound closure, which was reflected by a significantly reduced wound area and epithelial gaps, as well as elevated VEGF expression and capillary formation. In addition, PPD activated PI3K/Akt/ERK signaling pathways, as well as enhanced p70S6K activity and HIF-1α synthesis in the wounds. Overall, our results revealed that PPD stimulated angiogenesis via HIF-1α-mediated VEGF expression by activating p70S6K through PI3K/Akt/mTOR and Raf/MEK/ERK signaling cascades, which suggests that the compound has potential use in wound healing therapy in patients suffering from DFUs.
血管生成受损是阻碍糖尿病足溃疡(DFUs)伤口愈合的关键因素之一。在这项研究中,我们发现三七二醇(PPD),一种人参中的人参皂苷的苷元,可刺激血管生成并有益于遗传性糖尿病小鼠的伤口愈合。在 HUVECs 中,PPD 促进细胞增殖、管形成和 VEGF 分泌,同时伴有 HIF-1α的核易位增加,从而导致 VEGF mRNA 表达升高。PPD 在 HUVECs 中激活了 PI3K/Akt/mTOR 和 Raf/MEK/ERK 信号通路,LY294002 和 PD98059 可阻断这些通路。此外,这两条通路通过 p70S6K 发生串扰,因为 LY294002、PD98059 和 p70S6K siRNA 可消除 PPD 的血管生成反应。在 db/db 糖尿病小鼠建立的切创夹板模型中,PPD(0.6、6 和 60mg/ml)可加速伤口闭合,这表现为伤口面积和上皮间隙明显减少,以及 VEGF 表达和毛细血管形成增加。此外,PPD 激活了 PI3K/Akt/ERK 信号通路,并增强了 p70S6K 的活性和 HIF-1α的合成。总的来说,我们的结果表明,PPD 通过激活 p70S6K 来刺激血管生成,通过 PI3K/Akt/mTOR 和 Raf/MEK/ERK 信号级联反应介导 HIF-1α 诱导的 VEGF 表达,这表明该化合物在治疗糖尿病足溃疡患者的伤口愈合治疗中具有潜在用途。