Hsu, Y.-C.;                     Chang, P.-J.;                     Lin, S.-J.;                     Liaw, C.-C.;                     Shih, Y.-H.;                     Chen, L.-W.;                     Lin, C.-L.    
        Curcumin Reinforces MiR-29a Expression, Reducing Mesangial Fibrosis in a Model of Diabetic Fibrotic Kidney via Modulation of CB1R Signaling. Processes 2021, 9, 694.
    https://doi.org/10.3390/pr9040694
    AMA Style
    
                                Hsu Y-C,                                 Chang P-J,                                 Lin S-J,                                 Liaw C-C,                                 Shih Y-H,                                 Chen L-W,                                 Lin C-L.        
                Curcumin Reinforces MiR-29a Expression, Reducing Mesangial Fibrosis in a Model of Diabetic Fibrotic Kidney via Modulation of CB1R Signaling. Processes. 2021; 9(4):694.
        https://doi.org/10.3390/pr9040694
    
    Chicago/Turabian Style
    
                                Hsu, Yung-Chien,                                 Pey-Jium Chang,                                 Shih-Jiun Lin,                                 Chia-Ching Liaw,                                 Ya-Hsueh Shih,                                 Lee-Wen Chen,                                 and Chun-Liang Lin.        
                2021. "Curcumin Reinforces MiR-29a Expression, Reducing Mesangial Fibrosis in a Model of Diabetic Fibrotic Kidney via Modulation of CB1R Signaling" Processes 9, no. 4: 694.
        https://doi.org/10.3390/pr9040694
    
    APA Style
    
                                Hsu, Y.-C.,                                 Chang, P.-J.,                                 Lin, S.-J.,                                 Liaw, C.-C.,                                 Shih, Y.-H.,                                 Chen, L.-W.,                                 & Lin, C.-L.        
        
        (2021). Curcumin Reinforces MiR-29a Expression, Reducing Mesangial Fibrosis in a Model of Diabetic Fibrotic Kidney via Modulation of CB1R Signaling. Processes, 9(4), 694.
        https://doi.org/10.3390/pr9040694