1. Long noncoding RNAs may impact podocytes and proximal tubule function through modulating miRNAs expression in Early Diabetic Kidney Disease of Type 2 Diabetes Mellitus patients
- Author
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Silvia Velciov, Elena Hogea, Oana Milas, Adrian Vlad, Alina Golea-Secara, Dana Radu, Ligia Petrica, Anca Simulescu, Mihaela Vlad, Maria Mogos-Stefan, Petru Matusz, Agneta-Maria Pusztai, Daliborca Vlad, Florica Gadalean, Octavian Cretu, Roxana Popescu, Flaviu Bob, Mihaela Patruica, Lavinia Balint, Victor Dumitrascu, Andrei Gheorghe Marius Motoc, Dragos Catalin Jianu, Sorin Ursoniu, Silvia Ienciu, and Cristina Gluhovschi
- Subjects
Adult ,Male ,medicine.medical_specialty ,podocyte ,Urinary system ,Podocyte ,Kidney Tubules, Proximal ,Young Adult ,chemistry.chemical_compound ,lncRNA ,Risk Factors ,proximal tubule ,Internal medicine ,Diabetes mellitus ,microRNA ,medicine ,Humans ,Diabetic Nephropathies ,miRNA ,Aged ,MALAT1 ,Podocytes ,business.industry ,General Medicine ,Middle Aged ,Protective Factors ,medicine.disease ,MicroRNAs ,Cross-Sectional Studies ,medicine.anatomical_structure ,Endocrinology ,Diabetes Mellitus, Type 2 ,Gene Expression Regulation ,Podocalyxin ,chemistry ,diabetes mellitus ,Albuminuria ,Female ,RNA, Long Noncoding ,Synaptopodin ,medicine.symptom ,business ,Biomarkers ,Research Paper - Abstract
Aims: Long noncoding RNAs (lncRNAs) play key roles in the pathophysiology of DKD involving actions of microRNAs (miRNAs). The aims of the study were to establish the involvement of selected lncRNAs in the epigenetic mechanisms of podocyte damage and tubular injury in DKD of type 2 diabetes mellitus (DM) patients in relation to a particular miRNAs profile. Methods: A total of 136 patients with type 2 DM and 25 healthy subjects were assessed in a cross-sectional study concerning urinary albumin: creatinine ratio (UACR), eGFR, biomarkers of podocyte damage (synaptopodin, podocalyxin) and of proximal tubule (PT) dysfunction (Kidney injury molecule-1-KIM-1, N-acetyl-D-glucosaminidase-NAG), urinary lncRNA metastasis-associated lung adenocarcinoma transcript 1 (MALAT1), nuclear-enriched abundant transcript 1 (NEAT1), myocardial infarction-associated transcript (MIAT), taurine-upregulated gene 1 (TUG1), urinary miRNA21, 124, 93, 29a. Results: Multivariable regression analysis showed that urinary lncMALAT1 correlated directly with urinary synaptopodin, podocalyxin, KIM-1, NAG, miRNA21, 124, UACR, and negatively with eGFR, miRNA93, 29a (p
- Published
- 2021
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