Back to search

Role of 4‐hydroxy‐2,3‐nonenal in the pathogenesis of fibrosis

Data up to Jan 2025

Published2005
Citations22
References32

Total Citations Per Year

Abstract

References (32)

The Transforming Growth Factor-beta Family

1990 • 3,028 citations

Transforming growth factor beta

2011 • 1,990 citations

Thrombospondin-1 Is a Major Activator of TGF-β1 In Vivo

1998 • 1,151 citations

TGFβ Signaling: Receptors, Transducers, and Mad Proteins

1996 • 840 citations

Redox regulation of transcriptional activators

1996 • 690 citations

A Drosophila RNA polymerase II transcription factor contains a promoter-region-specific DNA-binding activity

1984 • 537 citations

Latent transforming growth factor-β: Structural features and mechanisms of activation

1997 • 511 citations

Oxidative damage and fibrogenesis

1997 • 483 citations

Processing of Transforming Growth Factor β1 Precursor by Human Furin Convertase

1995 • 395 citations

Stimulation of Lipid Peroxidation or 4-Hydroxynonenal Treatment Increases Procollagen α1 (I) Gene Expression in Human Liver Fat-Storing Cells

1993 • 337 citations

Stimulation of Collagen Gene Expression by Ascorbic Acid in Cultured Human Fibroblasts

1989 • 312 citations

4‐Hydroxynonenal in the Pathomechanisms of Oxidative Stress

2000 • 296 citations

The lipid peroxidation end product 4‐hydroxy‐2,3‐nonenal up‐regulates transforming growth factor β1 expression in the macrophage lineage: a link between oxidative injury and fibrosclerosis 1

1997 • 264 citations

Stimulation and proliferation of primary rat hepatic stellate cells by cytochrome P450 2E1-derived reactive oxygen species

2002 • 260 citations

Stimulation of collagen α1(I) gene expression is associated with lipid peroxidation in hepatocellular injury: A link to tissue fibrosis?

1994 • 249 citations

Diabetic nephropathy and transforming growth factor-β: transforming our view of glomerulosclerosis and fibrosis build-up

2003 • 248 citations

The Comparative Role of Activator Protein 1 and Smad Factors in the Regulation of Timp-1 and MMP-1 Gene Expression by Transforming Growth Factor-β1

2003 • 227 citations

Activation of the second promoter of the transforming growth factor-β1 gene by transforming growth factor-β1 and phorbol ester occurs through the same target sequences

1989 • 185 citations

Differential effects of sulfhydryl reagents on activation and deactivation of the fat cell hexose transport system.

1976 • 132 citations

Activation of Ito cells involves regulation of AP-1 binding proteins and induction of type I collagen gene expression

1994 • 74 citations

Residues in the pathway through a membrane transporter.

1995 • 74 citations

The role of chemokines in the pathogenesis of scleroderma

2003 • 69 citations

Biogenic 4‐hydroxy‐2‐nonenal activates transcription factor AP‐1 but not NF‐κB in cells of the macrophage lineage

1997 • 61 citations

Transforming growth factor-β1 induces apoptosis via connective tissue growth factor in human aortic smooth muscle cells

1999 • 60 citations

Dominant Negative Mutants of Transforming Growth Factor-βl Inhibit the Secretion of Different Transforming Growth Factor-β Isoforms

1992 • 59 citations

Mapping the Domain(s) Critical for the Binding of Human Tumor Necrosis Factor-α to Its Two Receptors

1995 • 57 citations

Dominant negative mutants of transforming growth factor-beta 1 inhibit the secretion of different transforming growth factor-beta isoforms.

1992 • 40 citations

Active macrophage-associated TGF-beta co-localizes with type I procollagen gene expression in atherosclerotic human pulmonary arteries.

1995 • 40 citations

Parenchymal transforming growth factor beta‐1: Its type II receptor and Smad signaling pathway correlate with inflammation and fibrosis in chronic liver disease of viral etiology

2003 • 34 citations

Growth factors, cytokines, and renal fibrosis during the course of diabetic nephropathy.

2000 • 29 citations

Down-modulation of nuclear localisation and pro-fibrogenic effect of 4-hydroxy-2,3-nonenal by thiol- and carbonyl-reagents

2002 • 17 citations

The ability of mineral dusts and fibres to initiate lipid peroxidation. Part II: relationship to different particle-induced pathological effects

2000 • 5 citations

Cited By (0)

Loading...
Role of 4‐hydroxy‐2,3‐nonenal in the pathogenesis of fibrosis (2005) – BioFactors | Metascience Observatory Explorer