Objective To investigate the protective effect and mechanism of intravitreal injection with cyclosporin-A(CsA) on blood-retinal barrier (BRB) in diabetic rats. Methods A total of 48 Sprague-Dawley male mice at the age of 8-10 weeks were divided into normal group, diabetes mellitus (DM) group, CsA group and DMSO group, with 12 rats in each group. The rats in DM, CsA group and DMSO group were induced with streptozotocin (STZ) injection creating a diabetic retinopathy model. The same volume of citric sodium citrate buffer was injected into the rats in the normal group. Immunohistochemical staining was used to detect the BRB permeability, Western blot was used to measure the protein expression of intercellular adhesion molecule (ICAM-1). Enzyme-linked immunosorbent assay (ELISA) was used to measure the expression of vascular endothelial growth factor 72 hours after injection. Results Compared with the normal group, the BRB permeability, ICAM-1 and VEGF expression were significantly increased in DM group (F=29.350, 29.240, 9.658; P<0.01). Compared with the DM group, the BRB permeability, ICAM-1 and VEGF expression were significantly decreased in CsA group (t=3.174, 5.000, 3.352; P<0.05); but there was no obvious change of above indexes in DMSO group (t=0.420, 0.561, 0.312; P>0.05). Conclusion Intravitreal injection of CsA has protective effects on BRB in diabetic rats. Down-regulated expression of ICAM-1 and VEGF may be the mechanism.
Objective To detect traces of microRNAs (miRNAs) in plasma and assess the expression stability of two common reference genes by stem-loop and poly A polymerase (PAP) real-time quantitative polymerase chain reaction (PCR) method, as miRNAs are the new bio-markers of tumor diagnosis and molecular targeted therapy, and its quantitative research is very important. Methods We extracted miRNAs from plasma of adult Sprague Dawley (SD) rats’ plasma, and detected the expressions of rno-miR-200b-3p and rno-miR-126-3p with stem-loop and PAP real-time PCR quantitative method, with rno-miR-103a-3p and U6 as internal controls. All the results were evaluated by 2△Ct method. Results Compared with PAP method, the stem-loop method reduced Ct value by 2-4 cycles and improved sensitivity by 10 times. In PAP method, the melting curve showed two peaks, a main peak and a small non-specific peak. Yet the melting curve of stem-loop method demonstrated a single specific peak. Furthermore, we validated the stability of internal references in the two real time PCR methods. U6 presented a more stable Ct value than rno-miR-103 in adult SD rats’ plasma samples. Conclusions Stem-loop real-time PCR is recommended as a major way to detect some samples with a low concentration of miRNAs, owing to its high accuracy and sensitivity. However, if a large number of tissue samples is going to be detected, PAP real-time PCR is more suitable and convenient than stem-loop method. U6 is more stable and repeatable than rno-miR-103a-3p as the reference gene to evaluate the semi-quantitative consequence of miRNAs.
Objective To search for the key microRNAs (miRNAs) involved in myocardial fibrosis in hypertrophic cardiomyopathy, and to further explore the mechanisms involved in the regulation of myocardial fibrosis. MethodsForty-two patients with hypertrophic cardiomyopathy diagnosed and treated surgically in West China Hospital of Sichuan University from January 2014 to June 2018 were selected, including 29 males and 13 females, with a median age of 46 (15-69) years. In the myocardial tissue of patients with hypertrophic cardiomyopathy with different degrees of fibrosis, miRNAs with significantly different expression were screened and further verified at the cellular level. By regulating the expression of the target miRNAs, the expressions of fibrosis-related proteins and target genes were detected respectively. Finally, the target-binding relationship was verified by dual-luciferase reporter gene detection. ResultsmiR-484 was up-regulated in severely fibrotic myocardial tissue and activated cardiac fibroblasts. After cardiac fibroblasts were activated by TGF-β1, the expression of miR-484 was significantly up-regulated, the expression of fibrosis-related proteins (CollagenⅠ, α-SMA) increased, and the expression of the target gene HIPK1 decreased (P<0.05). After inhibiting the expression of miR-484 by transfection of miR-484 antagomir, the expression of fibrosis-related proteins decreased, while expression of HIPK1 was up-regulated (P<0.05). The detection of dual luciferase reporter gene showed that the luciferase activity of the transfected WT-miRNA-484 mimics group was lower than that of the control group (P<0.05). ConclusionmiR-484 is a pro-fibrotic miRNA that participates in the process of myocardial fibrosis by negatively regulating the expression of HIPK1. It can be used as a regulatory target to provide a therapeutic strategy for myocardial fibrosis.