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July 1, 1999Clinical and Experimental Pharmacology and Physiology15 citationsOpen Access

Inhibition of Human Cardiac Fibroblast Mitogenesis by Blockade of Mitogen‐activated Protein Kinase and Phosphatidylinositol 3‐kinase

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SHSassan HafiziACAdrian H. ChesterMYMagdi H. Yacoub

Structured PICO

Do MEK and PI3-K inhibitors reduce DNA synthesis in cultured human cardiac fibroblasts?

P
Population
Cultured human cardiac fibroblasts isolated from transplant recipient myocardium, made quiescent by serum deprivation for 48 h
I
Intervention
MEK inhibitor PD 098059 (0.3-30 mumol/L) and PI3-K inhibitor LY294002 (1-25 mumol/L) incubated for 24 h, with or without platelet-derived growth factor-AB (PDGF-AB, 10 ng/mL)
C
Comparator
Control (absence of inhibitors)
O
Outcome
DNA synthesis measured by [3H]-thymidine incorporation assay (20-24 h)surrogate

Inhibition of MAPK and PI3-K pathways significantly reduces basal and PDGF-stimulated DNA synthesis in human cardiac fibroblasts, highlighting their role in cardiac fibrosis.

Abstract

Interstitial fibroblast proliferation is an elemental feature in the development of cardiac fibrosis. The effects of inhibitors of the intracellular signalling proteins, MEK, a kinase involved in the mitogen-activated protein kinase (MAPK) pathway and phosphatidylinositol 3-kinase (PI3-K), were tested on growth of cultured human cardiac fibroblasts. 2. Cardiac fibroblasts were isolated from transplant recipient myocardium and made quiescent by serum deprivation for 48 h. Cells were incubated for 24 h with the inhibitors PD 098059 (0.3-30 mumol/L) and LY294002 (1-25 mumol/L) in the presence and absence of platelet-derived growth factor-AB (PDGF-AB, 10 ng/mL). DNA synthesis was measured by 3H-thymidine incorporation assay (20-24 h). 3. Both compounds markedly inhibited both basal and PDGF-stimulated increases in DNA synthesis in a concentration-dependent manner. Cardiac fibroblast DNA synthesis was reduced to near control levels by PD 098059, while it was inhibited completely by LY294002. 4. These results implicate the importance of MAPK and PI3-K activation in the signal transduction pathways necessary for cardiac fibroblast replication.

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Hafizi et al. (1999) studied this question.

synapsesocial.com/papers/6a7a30c7e9a465269f0dca0fhttps://doi.org/10.1046/j.1440-1681.1999.03071.x
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