Merve Keles

About Merve Keles

Merve Keles, With an exceptional h-index of 2 and a recent h-index of 2 (since 2020), a distinguished researcher at Ruprecht-Karls-Universität Heidelberg, specializes in the field of molecular biology, drug discovery, cardiac function, lncRNAs.

His recent articles reflect a diverse array of research interests and contributions to the field:

Endothelial metabolic disorder in NDPKB deficient mice correlates with cardiac abnormalities

Endothelial cells drive organ fibrosis in mice by inducing expression of the transcription factor SOX9

RNA-binding proteins regulate post-transcriptional responses to TGF-β to coordinate function and mesenchymal activation of murine endothelial cells

Abstract GS. 06: The Fibrogenic Transcription Factor Sox9 Controls Mesenchymal Activation Of Endothelial Cells And Drives Fibrotic Disease

C1q and tumor necrosis factor related protein 9 protects from diabetic cardiomyopathy by alleviating cardiac insulin resistance and inflammation

Secreted long non-coding RNAs Gadlor1 and Gadlor2 act as mediators of cardiac remodelling during pressure overload

Deletion of long non-coding RNAs Gadlor1 and Gadlor2 preserves cardiac function during pressure overload

Endothelial cell-derived, secreted long non-coding RNAsGadlor1andGadlor2aggravate pathological cardiac remodeling via intercellular crosstalk

Merve Keles Information

University

Position

PhD Candidate

Citations(all)

43

Citations(since 2020)

41

Cited By

4

hIndex(all)

2

hIndex(since 2020)

2

i10Index(all)

1

i10Index(since 2020)

1

Email

University Profile Page

Google Scholar

Merve Keles Skills & Research Interests

molecular biology

drug discovery

cardiac function

lncRNAs

Top articles of Merve Keles

Endothelial metabolic disorder in NDPKB deficient mice correlates with cardiac abnormalities

Diabetologie und Stoffwechsel

2024/4

Endothelial cells drive organ fibrosis in mice by inducing expression of the transcription factor SOX9

Science Translational Medicine

2024/2/28

RNA-binding proteins regulate post-transcriptional responses to TGF-β to coordinate function and mesenchymal activation of murine endothelial cells

Arteriosclerosis, Thrombosis, and Vascular Biology

2023/10

Merve Keles
Merve Keles

H-Index: 1

Abstract GS. 06: The Fibrogenic Transcription Factor Sox9 Controls Mesenchymal Activation Of Endothelial Cells And Drives Fibrotic Disease

Circulation Research

2023/8/4

C1q and tumor necrosis factor related protein 9 protects from diabetic cardiomyopathy by alleviating cardiac insulin resistance and inflammation

Cells

2023/1/29

Merve Keles
Merve Keles

H-Index: 1

Secreted long non-coding RNAs Gadlor1 and Gadlor2 act as mediators of cardiac remodelling during pressure overload

2023

Merve Keles
Merve Keles

H-Index: 1

Deletion of long non-coding RNAs Gadlor1 and Gadlor2 preserves cardiac function during pressure overload

Journal of Molecular and Cellular Cardiology

2022/12/31

Merve Keles
Merve Keles

H-Index: 1

Endothelial cell-derived, secreted long non-coding RNAsGadlor1andGadlor2aggravate pathological cardiac remodeling via intercellular crosstalk

2022/9/19

Fibroblast GATA-4 and GATA-6 promote myocardial adaptation to pressure overload by enhancing cardiac angiogenesis

Basic research in cardiology

2021/12

See List of Professors in Merve Keles University(Ruprecht-Karls-Universität Heidelberg)