Yuan Si Yuan, Sun Jin, Liu Jin Min
Department of Neurology,Third Affiliated Hospital,Beijing University of Chinese Medicine,Beijing 100029,China.
Department of Neurology,Dongfang Hospital,Beijing University of Chinese Medicine,Beijing 100078,China.
Zhongguo Yi Xue Ke Xue Yuan Xue Bao. 2020 Feb 28;42(1):1-6. doi: 10.3881/j.issn.1000-503X.11513.
To investigate the effect of α-asarone on the function and expression of P-glycoprotein(P-gp)in rat brain microvascular endothelial cells(rBMECs). rBMECs were exposed to L-glutamate(100 μmol/L) for 30 mins to induce the overexpression of P-gp/multidrug resistance gene 1a(Mdr1a)on the cell membranes,which mimicked the overexpression of P-gp/Mdr1a in blood brain barrier(BBB) when drug-resistant epilepsy attacked.MTT assay was used to detect the safe range of α-asarone concentration.The model cells were intervened with different concentrations of α-asarone at 12.5,25.0,and 50.0 μg/μl for 24 hours.After the treatment of α-asarone,the expression and the function of P-gp/Mdr1 were measured by Western blotting,real-time PCR,and intracellular rhodamine 123 accumulation assays. The rBMECs,stimulated by glutamine,showed a high expression of P-gp(=1.924,=0.020)/Mdr1a(=1.788,=0.019) compared to the normal rBMECs.The treatment with 25.0(=1.924,=0.025;=1.788,=0.017) and 50.0 μg/μl(=1.924,=0.035;=1.788,=0.026) α-asarone significantly depressed the expression of P-gp/Mdr1a.The treatment with 25.0 and 50.0 μg/μl α-asarone significantly increased intracellular accumulation of Rhodamine 123 by 40% and 60% respectively. α-asarone down-regulates the high expressions of P-gp and Mdr1a mRNA in rBMECs induced by L-glutamate.Moreover and increases intracellular accumulation of rhodamine-123.Thus,α-asarone may reverse drug resistance in P-gp-mediated drug-resistant epilepsy.
研究α-细辛脑对大鼠脑微血管内皮细胞(rBMECs)中P-糖蛋白(P-gp)功能及表达的影响。将rBMECs暴露于100μmol/L的L-谷氨酸中30分钟,以诱导细胞膜上P-糖蛋白/多药耐药基因1a(Mdr1a)的过表达,这模拟了耐药性癫痫发作时血脑屏障(BBB)中P-糖蛋白/Mdr1a的过表达情况。采用MTT法检测α-细辛脑浓度的安全范围。用12.5、25.0和50.0μg/μl不同浓度的α-细辛脑对模型细胞进行干预24小时。经α-细辛脑处理后,通过蛋白质免疫印迹法、实时荧光定量PCR和细胞内罗丹明123蓄积试验检测P-糖蛋白/Mdr1的表达及功能。与正常rBMECs相比,经谷氨酰胺刺激的rBMECs显示P-糖蛋白(=1.924,=0.020)/Mdr1a(=1.788,=0.019)高表达。用25.0(=1.924,=0.025;=1.788,=0.017)和50.0μg/μl(=1.924,=0.035;=1.788,=0.026)的α-细辛脑处理可显著降低P-糖蛋白/Mdr1a的表达。用25.0和50.0μg/μl的α-细辛脑处理分别使细胞内罗丹明123的蓄积量显著增加40%和60%。α-细辛脑可下调L-谷氨酸诱导的rBMECs中P-糖蛋白和Mdr1a mRNA的高表达。此外,还增加了细胞内罗丹明-123的蓄积。因此,α-细辛脑可能逆转P-糖蛋白介导的耐药性癫痫中的耐药性。