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体内慢性给予纳米级 PAMAM 树状聚合物可抑制 EGFR-ERK1/2-ROCK 信号通路,减轻糖尿病引起的血管重构和功能障碍。

Chronic administration of nano-sized PAMAM dendrimers in vivo inhibits EGFR-ERK1/2-ROCK signaling pathway and attenuates diabetes-induced vascular remodeling and dysfunction.

机构信息

College of Medicine, Qatar University, P.O. Box 2713, Doha, Qatar.

Department of Pharmacology and Toxicology, Kuwait University, Safat, Kuwait.

出版信息

Nanomedicine. 2019 Jun;18:78-89. doi: 10.1016/j.nano.2019.02.012. Epub 2019 Mar 4.

Abstract

We investigated whether chronic administration of nano-sized polyamidoamine (PAMAM) dendrimers can have beneficial effects on diabetes-induced vascular dysfunction by inhibiting the epidermal growth factor receptor (EGFR)-ERK1/2-Rho kinase (ROCK)-a pathway known to be critical in the development of diabetic vascular complications. Daily administration of naked PAMAMs for up to 4 weeks to streptozotocin-induced diabetic male Wistar rats inhibited EGFR-ERK1/2-ROCK signaling and improved diabetes-induced vascular remodeling and dysfunction in a dose, generation (G6 > G5) and surface chemistry-dependent manner (cationic > anionic > neutral). PAMAMs, AG1478 (a selective EGFR inhibitor), or anti-EGFR siRNA also inhibited vascular EGFR-ERK1/2-ROCK signaling in vitro. These data showed that naked PAMAM dendrimers have the propensity to modulate key (e.g. EGFR) cell signaling cascades with associated pharmacological consequences in vivo that are dependent on their physicochemical properties. Thus, PAMAMs, alone or in combination with vasculoprotective agents, may have a beneficial role in the potential treatment of diabetes-induced vascular complications.

摘要

我们研究了通过抑制表皮生长因子受体 (EGFR)-ERK1/2- Rho 激酶 (ROCK)途径,慢性给予纳米级聚酰胺-胺 (PAMAM) 树状聚合物是否对糖尿病引起的血管功能障碍有有益作用,该途径已知在糖尿病血管并发症的发展中起关键作用。在链脲佐菌素诱导的雄性 Wistar 糖尿病大鼠中,每天给予裸 PAMAM 长达 4 周,可抑制 EGFR-ERK1/2-ROCK 信号转导,并以剂量、代(G6> G5)和表面化学依赖性方式改善糖尿病引起的血管重塑和功能障碍(阳离子>阴离子>中性)。PAMAMs、AG1478(一种选择性 EGFR 抑制剂)或抗 EGFR siRNA 也抑制体外血管 EGFR-ERK1/2-ROCK 信号转导。这些数据表明,裸 PAMAM 树状聚合物具有调节关键(例如 EGFR)细胞信号级联的倾向,体内具有相关的药理学后果,这取决于它们的物理化学性质。因此,PAMAMs 单独或与血管保护剂联合使用,可能在治疗糖尿病引起的血管并发症方面具有有益作用。

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