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  1. Home
  2. Browse by Author

Browsing by Author "Zhang, Hao"

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    Apigenin attenuates myocardial infarction-induced cardiomyocyte injury by modulating Parkin-mediated mitochondrial autophagy
    (Indian Academy of Sciences, 2020-06) Wang, Ziliang; Zhang, Hao; Liu, Zuheng; Ma, Zhuang; An, Dongqi; Xu, Dingli
    We aimed to detect whether the effect of apigenin (Apig) on the myocardial infarction-induced cardiomyocyte injury ofmouse myocardial cells and acute myocardial infarction (AMI) mice was through regulating Parkin expression viamiR-103-1-5p. The myocardial infarction cardiomyocyte model (Hypoxia/reoxygenation) was first constructed, thenthe mouse myocardial cells were treated with Apig, and the expression of miR-103-1-5p was decreased and theexpression of Parkin was increased by qRT-PCR and Western blot. It was confirmed by miRNA pulldown andluciferase reporter system that miR-103-1-5p in mouse myocardial cells can bind to Parkin mRNA and inhibit Parkinexpression. Next, a lentiviral vector silenced Parkin and overexpressing miR-103-1-5p was constructed and transfectedinto Apig-treated cells. Autophagy was detected by mitochondrial autophagy marker proteins [atypical protein kinaseC (aPKC)-interacting protein (p62) and bcl-2/Adenovirus E1B 19-kd interacting protein 3 (BNIP3)] via Western blot,mitochondrial function was detected by JC-1 probe, and apoptosis was detected by flow cytometry. It was confirmedthat Apig regulated mitochondria autophagy through miR-103-1-5p and Parkin, which ultimately affected cardiomyocyte death. Finally, an AMI mouse model was constructed, and then the mice were treated with Apig. Theinfarct size was detected by triphenyl tetrazolium chloride (TTC) staining, and the Apig relieved the myocardialinfarction. The expression of miR-103-1-5p was decreased and the expression of Parkin was increased by qRT-PCRand Western blot. The above results simplified that the cardio protection of Apig and miR-103-1-5p against injury ofmyocardial infarction cardiomyocyte by targeting Parkin. These results provided a novel treatment against myocardialinfarction cardiomyocyte.
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    The effect of virtual reality technology in children after surgery for concomitant strabismus
    (All India Ophthalmological Society, 2023-02) Zhang, Hao; Yang, Su-Hong; Chen, Ting; Kang, Mei-Xia; Liu, Dan-Yan; Wang, Dan; Hao, Jing; Wang, Miao; Yang, Zhou; Han, Xu; Su, Han
    Purpose: This study aimed to investigate the effect of virtual reality (VR) technology in children after surgery for concomitant strabismus. Methods: A total of 200 children with concomitant exotropia or concomitant esotropia were randomly divided into a training group and a control group according to the single even number random method (100 cases in each group). Patients in the training group received VR intervention training within 1 week after surgery. Patients in the control group did not receive any training. Results: Six months after the surgery, the orthophoria (the far or near strabismus degree was ?8?) rate was significantly higher in the training group than in the control group (P = 0.001), while the eye position regression rate (compared to the strabismus degree within 1 week after the surgery, the amount of regression >10?) was significantly lower in the training group than in the control group (P = 0.001). Six months after the surgery, the number of children with simultaneous vision and remote stereovision was significantly higher in the training group than in the control group (P = 0.017 and 0.002, respectively). The differences in the number of patients with peripheral stereopsis, macular stereopsis, and stereopsis in macular fovea centralis at 1, 3, and 6 months after the surgery between the training and the control groups were not statistically significant (P = 0.916, 0.274, and 0.302, respectively). Conclusion: The intervention of VR technology after strabismus correction effectively improved children’s visual function and maintained their eye position
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    Minor alleles of genetic variants in second heart field increase the risk of hypoplastic right heart syndrome
    (Indian Academy of Sciences, 2019-05) Wang, Enshi; Nie, Yu; Fan, Xuesong; Zheng, Zhe; Gu, Haiyong; Zhang, Hao; Hu, Shengshou
    Hypoplastic right heart syndrome(HRHS) is characterized by hypoplastic right ventricle (RV); Numerous transcriptional cascades in the second heart field (SHF) regulateRVdevelopment. The relationship of SHF gene variants with humanHRHS remains unknown. The whole lengths of 17 SHF genes were sequenced in 16 HRHS, and the selected single-nucleotide variants (SNVs) were then genotyped in HRHS, other congenital heart disease (CHD) and healthy control. Luciferase assay was performed to verify the effect of FOXC2: rs34221221A>GandTBX20: rs59854940C>Gat the transcription level. There were 151 (12.86%) novel SNVs after sequence analysis, of which three were in exons (one was synonymous SNV and two were nonsynonymous SNVs), two in promoter, and most SNVs (89.95%) were in intronic regions. Genotype analyses revealed that the minor alleles of FOXC2: rs34221221 A>G and TBX20: rs59854940 C>G could increase HRHS risk (P<0.05), but not in other CHD or healthy control. Luciferase assay showed that the minor G allele in rs34221221 significantly increased FOXC2 transcription while in rs59854940 it decreased TBX20 transcription significantly. Novel variants of SHF gene associated with HRHS were identified. Minor alleles in two variants from FOXC2 and TBX20 could increase the risk of HRHS.

IMSEAR is the collaborative product of Health Literature, Library and Information Services (HELLIS) Network Member Libraries in the WHO South-East Asia Region.
HELLIS is coordinated by WHO Regional Office for South-East Asia.

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