bioRxiv ScienceSearch

Biology subjects

Cakir, T.

Publications and source records attributed to Cakir, T..

2 recordsLinked to original sources

A Systems Pharmacology Approach based on Oncogenic Signalling Pathways to Determine the Mechanisms of Action of Natural Products in Breast Cancer from Transcriptome Data

Plant-derived compounds as natural products have attracted a lot of attention in the treatment of complex diseases, especially cancers, primarily due to their poly-pharmacologic mechanisms of action. However, methodological limitations have impeded gaining complete knowledge of their molecular targets. While most of the current understanding of these compounds is based on reductive methods, it is increasingly becoming clear that holistic techniques, leveraging current improvements in omic data collection and bioinformatics methods, are better suited for elucidating their systemic effects. Here, to provide an explanation to the mechanisms of action of plant-derived natural products in breast cancer, we applied a data integration approach to comprehensively study oncogenic signaling pathways targeted by withaferin A, actein, compound kushen injection and indole-3-carbinol. Specifically, we mapped the transcriptome-level response of cancer cell lines to these molecules on a human protein-protein interaction network and constructed the underlying active subnetworks. We used these subnetworks to define the perturbed signaling pathways and validated their relevance in carcinogenesis. The similarity of each identified oncogenic signaling pathway in terms of overlapping genes was subsequently used to construct pathway-pathway interaction networks, which were used to reduce pathway redundancy and to identify pathway crosstalk. Filtered pathways were then mapped on three major carcinogenesis processes. The results showed that the pleiotropic effects of plant-derived drugs at the gene expression level can be used to predict targeted pathways. Thus, from such pathways, it is possible to infer a systemic mechanism of action of such natural products.

systems biology

The protective effect of Capheic acid phenyl ester on hepatic ischemia-reperfusion injury in cholestatic rats

PURPOSECaffeic acid phenyl ester (CAPE), which is an active component of propolis, has antioxidant, antiproliferative, immunomodulatory and anti-inflammatory properties and has been used for many years. The protective effect against ischemic reperfusion injury in the cholestatic liver is unknown and it is aimed to determine its effect in this study.\n\nMATERIALS AND METHODSThree groups of 18 Wistar albino rats were divided into cholestasis, control and study groups with bile duct attachment. Intraperitoneal administration of caffeic acid phenyl ester at the dose of 30 mg/kg/ day started 15 days ago and continued until the second operation in the study group. On the seventh day, hepatic ischemia was performed for 30 minutes followed by reperfusion for 60 minutes. Serum, plasma and liver samples were taken. Laboratory analysis, tissue glutathione, malondialdehyde, and myeloperoxidase levels were evaluated.\n\nRESULTSSignificant reduction in the level of liver glutathione and a marked increase in malondialdehyde level and myeloperoxidase activity were observed in the cholestatic I / R group. After treatment, all parameters except serum bilirubin levels were reversed.\n\nCONCLUSIONSIntraperitoneal administration of CAPE may improve liver function and may reduce inflammation and oxidative stress in cholestatic I / R injury.

pharmacology and toxicology