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The Activation of ROS/NF- κ B/MMP-9 Pathway Promotes Calcium-Induced Kidney Crystal Deposition.

Authors :
Wu Y
Zhang J
Li C
Hu H
Qin B
Wang T
Lu Y
Wang S
Source :
Oxidative medicine and cellular longevity [Oxid Med Cell Longev] 2021 Jun 08; Vol. 2021, pp. 8836355. Date of Electronic Publication: 2021 Jun 08 (Print Publication: 2021).
Publication Year :
2021

Abstract

Idiopathic hypercalciuria is an important risk factor for the formation of calcium-containing kidney stones. Matrix metalloproteinase-9 (MMP-9) is closely related to cell and tissue remodeling and is involved in ectopic tissue calcification. However, little is known about its role in kidney stone formation. In this study, we found that the expression of MMP-9 and that of osteoblastic-related proteins was increased in normal rat kidney epithelial-like (NRK-52E) cells following treatment with a high concentration of calcium, while the knockout or overexpression of MMP-9 could, respectively, significantly inhibit or upregulate the expression of osteoblastic-related proteins and calcium crystal deposition. In addition, apoptosis and calcium crystal deposition were significantly reduced in Sprague-Dawley rats with 1,25(OH) <subscript>2</subscript> D <subscript>3</subscript> -induced hypercalciuria following MMP-9 inhibitor I treatment. Furthermore, inhibiting reactive oxygen species (ROS) production or the nuclear factor kappa-light-chain-enhancer of activated B cell (NF- κ B) pathway significantly reduced calcium-induced MMP-9 expression and calcium crystal deposition. In summary, our results suggested that a high calcium concentration promotes epithelial-osteoblastic transformation and calcium crystal deposition in renal tubule cells by regulating the ROS/NF- κ B/MMP-9 axis and identified a novel role for MMP-9 in regulating calcium-induced calcium crystal deposition in renal tubules.<br />Competing Interests: The authors declare that there is no conflict of interest regarding the publication of this paper.<br /> (Copyright © 2021 Yue Wu et al.)

Details

Language :
English
ISSN :
1942-0994
Volume :
2021
Database :
MEDLINE
Journal :
Oxidative medicine and cellular longevity
Publication Type :
Academic Journal
Accession number :
34211634
Full Text :
https://doi.org/10.1155/2021/8836355