Tang Shao-Yu, Lee Yi-Chin, Tseng Chien-Wei, Huang Po-Hsun, Kuo Ko-Lin, Tarng Der-Cherng
Department of Medical Education, Taipei Tzu Chi Hospital, Buddhist Tzu Chi Medical Foundation, New Taipei City 23142, Taiwan.
Department of Physiology, National Yang Ming Chiao Tung University, Taipei 11221, Taiwan.
Pharmaceutics. 2023 Sep 25;15(10):2380. doi: 10.3390/pharmaceutics15102380.
Patients with chronic kidney disease (CKD) have a higher prevalence of peripheral arterial disease (PAD), and endothelial progenitor cells (EPCs) play a pivotal role. We examined the impact of granulocyte colony-stimulating factor (G-CSF) on EPC function in response to tissue ischemia. Eight-week-old male C57BL/6J male mice were divided into sham operation and subtotal nephrectomy (SNx) groups, received hindlimb ischemic operation after seven weeks, then randomly received G-CSF or PBS intervention for four weeks with weekly follow-ups. SNx mice had significantly reduced limb reperfusion, decreased plasma EPC mobilization, and impaired angiogenesis in ischemic hindlimbs compared to the control group. However, G-CSF increased IL-10 and reversed these adverse changes. Additionally, ischemia-associated protein expressions, including IL-10, phospho-STAT3, VEGF, and phospho-eNOS, were significantly downregulated in the ischemic hindlimbs of SNx mice versus control, but these trends were reversed by G-CSF. Furthermore, in cultured EPCs, G-CSF significantly attenuated the decrease in EPC function initiated by indoxyl sulfate through IL-10. Overall, we discovered that G-CSF can improve EPC angiogenic function through a hypoxia/IL-10 signaling cascade and impede neovascular growth in response to ischemia of SNx mice. Our results highlight G-CSF's potential to restore angiogenesis in CKD patients with PAD via EPC-based methods.
慢性肾脏病(CKD)患者外周动脉疾病(PAD)的患病率较高,而内皮祖细胞(EPCs)起关键作用。我们研究了粒细胞集落刺激因子(G-CSF)对组织缺血时EPC功能的影响。将8周龄雄性C57BL/6J小鼠分为假手术组和次全肾切除术(SNx)组,7周后进行后肢缺血手术,然后随机接受G-CSF或PBS干预4周,每周随访。与对照组相比,SNx小鼠的肢体再灌注显著减少,血浆EPC动员减少,缺血后肢的血管生成受损。然而,G-CSF增加了IL-10并逆转了这些不利变化。此外,与对照组相比,SNx小鼠缺血后肢中包括IL-10、磷酸化STAT3、VEGF和磷酸化eNOS在内的缺血相关蛋白表达显著下调,但这些趋势被G-CSF逆转。此外,在培养的EPCs中,G-CSF通过IL-10显著减轻了硫酸吲哚酚引发的EPC功能下降。总体而言,我们发现G-CSF可通过缺氧/IL-10信号级联改善EPC血管生成功能,并抑制SNx小鼠缺血时的新生血管生长。我们的结果突出了G-CSF通过基于EPC的方法恢复CKD合并PAD患者血管生成的潜力。