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1.
Chinese Journal of Nephrology ; (12): 48-54, 2017.
Article in Chinese | WPRIM | ID: wpr-506164

ABSTRACT

Objective To investigate the effects of abated microRNA-21 (miRNA-21) on phosphatase and tensin homologue on chromosome ten protein (PTEN) and PI3K/Akt/mTOR pathway,as well as their further influence on the autophagy in high glucose (HG,25.0 mmol/L) induced rat glomerular mesangial cells.Methods MiRNA-21 inhibitor and negative control were transfected by liposome 2000 into rat glomerular mesangial cells (HBZY-1).The cells were divided into normal glucose (5.5 mmol/L) group,normal glucose + negative control group,normal glucose +miRNA-21 inhibitor group,HG group,HG+negative control group and HG+miRNA-21 inhibitor group.Cell proliferation and hypertrophy were assayed by MTT and the ratio of total protein to cell number respectively.The miRNA-21 expression was detected using real time PCR.The expressions of PTEN/ Akt/mTOR signaling signatures,autophagy-associated protein (p62 and LC3 Ⅱ) and collagen Ⅰ was detected by Western blotting and real time PCR.Autophagosomes were observed using electron microscopy.Results Compared with those in normal glucose group,in HG group cells had hypertrophy and proliferation,up-regulated miRNA-21 expression,and down-regulated PTEN protein and mRNA expressions (all P < 0.01).Also there were and up-regulated p-Akt,p-mTOR,p62 and collagen Ⅰ expression,and lower LC3 Ⅱ expression and autophagosomes (all P < 0.01).Further,compared with those in HG group,cells hypertrophy and proliferation in HG+miRNA-21 inhibitor group were reduced,expressions of p-Akt,p-mTOR,p62 and collagen Ⅰ were down-regulated,while expressions of PTEN and LC3 Ⅱ and autophagosomes were up-regulated (all P < 0.01).Conclusions MiRNA-21 inhibitor up-regulates PTEN expression,which inhibits the activation of Akt/mTOR signaling pathway,ameliorates cell hypertrophy,proliferation and enhances autophagy to reduce extracellular matrix accumulation.

2.
Chinese Journal of Nephrology ; (12): 48-54, 2017.
Article in Chinese | WPRIM | ID: wpr-810890

ABSTRACT

Objective@#To investigate the effects of abated microRNA-21 (miRNA-21) on phosphatase and tensin homologue on chromosome ten protein (PTEN) and PI3K/Akt/mTOR pathway, as well as their further influence on the autophagy in high glucose (HG, 25.0 mmol/L) induced rat glomerular mesangial cells.@*Methods@#MiRNA-21 inhibitor and negative control were transfected by liposome 2000 into rat glomerular mesangial cells (HBZY-1). The cells were divided into normal glucose (5.5 mmol/L) group, normal glucose+negative control group, normal glucose+miRNA-21 inhibitor group, HG group, HG+negative control group and HG+miRNA-21 inhibitor group. Cell proliferation and hypertrophy were assayed by MTT and the ratio of total protein to cell number respectively. The miRNA-21 expression was detected using real time PCR. The expressions of PTEN/Akt/mTOR signaling signatures, autophagy-associated protein (p62 and LC3 Ⅱ) and collagen Ⅰ was detected by Western blotting and real time PCR. Autophagosomes were observed using electron microscopy.@*Results@#Compared with those in normal glucose group, in HG group cells had hypertrophy and proliferation, up-regulated miRNA-21 expression, and down-regulated PTEN protein and mRNA expressions (all P<0.01). Also there were and up-regulated p-Akt, p-mTOR, p62 and collagen Ⅰ expression, and lower LC3 Ⅱ expression and autophagosomes (all P<0.01). Further, compared with those in HG group, cells hypertrophy and proliferation in HG+miRNA-21 inhibitor group were reduced, expressions of p-Akt, p-mTOR, p62 and collagen Ⅰ were down-regulated, while expressions of PTEN and LC3 Ⅱ and autophagosomes were up-regulated (all P<0.01).@*Conclusions@#MiRNA-21 inhibitor up-regulates PTEN expression, which inhibits the activation of Akt/mTOR signaling pathway, ameliorates cell hypertrophy, proliferation and enhances autophagy to reduce extracellular matrix accumulation.

3.
Chinese Journal of Nephrology ; (12): 893-898, 2016.
Article in Chinese | WPRIM | ID: wpr-508014

ABSTRACT

Objective With multi?center investigation, to assess the life quality of patients with maintained hemodialysis (MHD) in Liaoning Province and to explore the relationship among the mineral metabolism, the life quality of the patients with MHD, and the repeated hospitalization within the latest three years. Methods 1192 patients with hemodialysis (at least 3 months) from January to March in 2015 at ten blood purification centers in Liaoning Province were selected for the cross?————————sectional survey. The Kidney Health?related Quality of Life (HRQOL) version 1.3 was used to evaluate the MHD patients' life quality. The total length of hospitalization was divided into four groups: 0 days, 3 to 15 days, 16 to 30 days and above 30 days. Results When serum calcium value ranged from 2.1 to 2.5 mmol/L, kidney?disease component summary (KDCS), mental component summary (MCS), physical component summary (PCS) and SF?36+KDCS corresponded to a higher value (P<0.05). When serum phosphorus value ranged from 1.13 to 1.78 mmol/L, KDCS and SF?36+KDCS corresponded to a higher value (P<0.05). When the calcium phosphorus product value ranged from 40.68 to 49.94, MCS corresponded to a higher value (P<0.05). KDCS showed a linear correlation with age (P<0.001), dialysis age, serum calcium (less than or equal to 2.5 mmol/L) (P<0.05); PCS showed a linear correlation with age (P<0.001) and dialysis age (P<0.05); SF?36+KDCS showed a linear correlation with age (P<0.001), and serum calcium (less than or equal to 2.5 mmol/L) (P<0.05), while age and dialysis age were negatively correlated. The hospitalization days showed a linear correlation with age, dialysis age (P<0.001) and serum phosphorus, calcium phosphorus product value (P<0.05), while dialysis age and calcium phosphorus product value were negatively correlated. Among different groups of total hospitalization days in three years, age, hemodialysis age, serum calcium, serum phosphorus, calcium?phosphorus product value and quality of life values were all statistically significant (P<0.05). Conclusions The life quality of patients with MHD were correlated with serum calcium, phosphorus, calcium and phosphorus product value, iPTH, dialysis age and age, while age and dialysis age were of negative correlation. The total number of hospitalization days in 3 years was closely linearly correlated with age and dialysis age, significantly correlated with serum phosphorus, calcium and phosphorus product value, while dialysis age, calcium and phosphorus product value were in a negative correlation. The total number of hospitalization in 3 years was correlated with the patients' age, dialysis age, serum calcium, serum phosphorus, calcium and phosphorus product value and quality of life.

4.
Chinese Journal of Nephrology ; (12): 48-54, 2015.
Article in Chinese | WPRIM | ID: wpr-469094

ABSTRACT

Objective To investigate the underlying mechanism of ursolic acid in attenuating diabetic mesangial cells injury induced by high glucose (HG).Methods Rat glomerular mesangial cells were cultured in normal glucose,HG,HG with LY294002 and HG with ursolic acid.The cell proliferation and hypertrophy were detected by MTT and the ratio of total protein content to cell number.miRNA-21 was detected by quantitative real-time PCR.The PI3K-Akt-mTOR pathway,autophagy associated protein and collagen I were detected by Western blotting and quantitative realtime PCR.The autophagosomes were observed by electron microscope.Results Compared with normal control group,the cells exposed to HG showed up-regulating miRNA-21 expression(P < 0.01),down-regulating PTEN protein and mRNA expression(P < 0.01),up-regulating p85PI3K,phospho(p)-Akt,p-mTOR,p62/SQSTMI,collagen I expressions and down-regulating LC3II expression(P < 0.01).Ursolic acid and LY294002 inhibited HG-induced mesangial cell hypertrophy and proliferation(P < 0.01),down -regulated the expressions of p85Pl3K,p-Akt,p-mTOR,p62/SQSTMI and collagen I and up-regulated the expression of LC3II(P < 0.01).But LY294002 had no effect on the expression of miRNA-21 and PTEN.Ursolic acid down-regulated miRNA-21 expression(P < 0.01),up-regulated PTEN protein and mRNA expression(P < 0.01).Conclusion Ursolic acid may inhibit high glucose-induced mesangial cell miRNA-21 overexpression,up-regulate PTEN,inhibit the activation of PI3K-Akt-mTOR signaling pathway and the enhanced autophagy to reduce the accumulation of extracellular matrix and ameliorate cell hypertrophy and proliferation.

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