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1.
Am J Physiol Renal Physiol ; 319(5): F876-F884, 2020 11 01.
Article in English | MEDLINE | ID: mdl-33017192

ABSTRACT

Renal injury leads to chronic kidney disease, with which women are not only more likely to be diagnosed than men but have poorer outcomes as well. We have previously shown that expression of small proline-rich region 2f (Sprr2f), a member of the small proline-rich region (Sprr) gene family, is increased several hundredfold after renal injury using a unilateral ureteral obstruction (UUO) mouse model. To better understand the role of Sprr2f in renal injury, we generated a Sprr2f knockout (Sprr2f-KO) mouse model using CRISPR-Cas9 technology. Sprr2f-KO female mice showed greater renal damage after UUO compared with wild-type (Sprr2f-WT) animals, as evidenced by higher hydroxyproline levels and denser collagen staining, indicating a protective role of Sprr2f during renal injury. Gene expression profiling by RNA sequencing identified 162 genes whose expression levels were significantly different between day 0 and day 5 after UUO in Sprr2f-KO mice. Of the 162 genes, 121 genes were upregulated after UUO and enriched with those involved in oxidation-reduction, a phenomenon not observed in Sprr2f-WT animals, suggesting a protective role of Sprr2f in UUO through defense against oxidative damage. Consistently, bilateral ischemia-reperfusion injury resulted in higher serum blood urea nitrogen levels and higher tissue reactive oxygen species in Sprr2f-KO compared with Sprr2f-WT female mice. Moreover, cultured renal epithelial cells from Sprr2f-KO female mice showed lower viability after oxidative damage induced by menadione compared with Sprr2f-WT cells that could be rescued by supplementation with reduced glutathione, suggesting that Sprr2f induction after renal damage acts as a defense against reactive oxygen species.


Subject(s)
Cornified Envelope Proline-Rich Proteins/metabolism , Epithelial Cells/metabolism , Kidney/metabolism , Reactive Oxygen Species/metabolism , Animals , Cornified Envelope Proline-Rich Proteins/genetics , Disease Models, Animal , Female , Kidney Tubules/metabolism , Mice, Knockout , Renal Insufficiency, Chronic/metabolism , Renal Insufficiency, Chronic/pathology , Reperfusion Injury/metabolism , Reperfusion Injury/pathology , Ureteral Obstruction/pathology
2.
Sci Rep ; 9(1): 11007, 2019 07 29.
Article in English | MEDLINE | ID: mdl-31358807

ABSTRACT

Desorption electrospray ionization mass spectrometry (DESI-MS) is an emerging analytical tool for rapid in situ assessment of metabolomic profiles on tissue sections without tissue pretreatment or labeling. We applied DESI-MS to identify candidate metabolic biomarkers associated with kidney injury at the early stage. DESI-MS was performed on sections of kidneys from 80 mice over a time course following unilateral ureteral obstruction (UUO) and compared to sham controls. A predictive model of renal damage was constructed using the LASSO (least absolute shrinkage and selection operator) method. Levels of lipid and small metabolites were significantly altered and glycerophospholipids comprised a significant fraction of altered species. These changes correlate with altered expression of lipid metabolic genes, with most genes showing decreased expression. However, rapid upregulation of PG(22:6/22:6) level appeared to be a hitherto unknown feature of the metabolic shift observed in UUO. Using LASSO and SAM (significance analysis of microarrays), we identified a set of well-measured metabolites that accurately predicted UUO-induced renal damage that was detectable by 12 h after UUO, prior to apparent histological changes. Thus, DESI-MS could serve as a useful adjunct to histology in identifying renal damage and demonstrates early and broad changes in membrane associated lipids.


Subject(s)
Lipid Metabolism , Lipids/analysis , Spectrometry, Mass, Electrospray Ionization , Ureteral Obstruction/diagnosis , Animals , Biomarkers/analysis , Biomarkers/metabolism , Early Diagnosis , Kidney/chemistry , Kidney/metabolism , Kidney/pathology , Mice, Inbred C57BL , Spectrometry, Mass, Electrospray Ionization/methods , Ureteral Obstruction/metabolism , Ureteral Obstruction/pathology
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