Characterization and assessment of potential microRNAs involved in phosphate-induced aortic calcification
المؤلف | Fakhry M. |
المؤلف | Skafi N. |
المؤلف | Fayyad-Kazan M. |
المؤلف | Kobeissy F. |
المؤلف | Hamade E. |
المؤلف | Mebarek S. |
المؤلف | Habib A. |
المؤلف | Borghol N. |
المؤلف | Zeidan A. |
المؤلف | Magne D. |
المؤلف | Fayyad-Kazan H. |
المؤلف | Badran B. |
تاريخ الإتاحة | 2019-10-17T07:44:37Z |
تاريخ النشر | 2018 |
اسم المنشور | Journal of Cellular Physiology |
المصدر | Scopus |
الرقم المعياري الدولي للكتاب | 219541 |
الملخص | Medial artery calcification, a hallmark of type 2 diabetes mellitus and chronic kidney disease (CKD), is known as an independent risk factor for cardiovascular mortality and morbidity. Hyperphosphatemia associated with CKD is a strong stimulator of vascular calcification but the molecular mechanisms regulating this process remain not fully understood. We showed that calcification was induced after exposing Sprague-Dawley rat aortic explants to high inorganic phosphate level (P i , 6 mM) as examined by Alizarin red and Von Kossa staining. This calcification was associated with high Tissue-Nonspecific Alkaline Phosphatase (TNAP) activity, vascular smooth muscle cells de-differentiation, manifested by downregulation of smooth muscle 22 alpha (SM22?) protein expression which was assessed by immunoblot analysis, immunofluorescence, and trans-differentiation into osteo-chondrocyte-like cells revealed by upregulation of Runt related transcription factor 2 (Runx2), TNAP, osteocalcin, and osteopontin mRNA levels which were determined by quantitative real-time PCR. To unravel the possible mechanism(s) involved in this process, microRNA (miR) expression profile, which was assessed using TLDA technique and thereafter confirmed by individual qRT-PCR, revealed differential expression 10 miRs, five at day 3 and 5 at day 6 post P i treatment versus control untreated aortas. At day 3, miR-200c, -155, 322 were upregulated and miR-708 and 331 were downregulated. After 6 days of treatment, miR-328, -546, -301a were upregulated while miR-409 and miR-542 were downregulated. Our results indicate that high P i levels trigger aortic calcification and modulation of certain miRs. These observations suggest that mechanisms regulating aortic calcification might involve miRs, which warrant further investigations in future studies. - 2017 Wiley Periodicals, Inc. |
راعي المشروع | Lebanese University and the Lebanese National Council for Scientific Research (CNRS), Grant number: 05-06-2014 (EH) Authors are grateful to the Lebanese University (LU) and the Lebanese National Council for Scientific Research (CNRS-L) for providing PhD scholarships to Maya Fakhry and Najwa Skafi. |
اللغة | en |
الناشر | Wiley-Liss Inc. |
الموضوع | aorta calcification inorganic phosphate microRNAs trans-differentiation |
النوع | Article |
الصفحات | 4056-4067 |
رقم العدد | 5 |
رقم المجلد | 233 |
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