Literature DB >> 33969534

Molecular toxicological alterations in the mouse hearts induced by sub-chronic thiazolidinedione drugs administration.

Yazun Bashir Jarrar1, Qais Jarrar2, Sara J Abaalkhail1, Hanin Moh'd Kalloush1, Wisam Naser1, Malek Zihlif3, Mohammad Al Shhab3, Abdulla El Madani1, Yahya Jamous4, Su-Jun Lee5.   

Abstract

Thiazolidinediones are well-known anti-diabetic drugs. However, they are not widely used due to their cardiotoxic effects. Therefore, in this study, we aimed to determine the molecular toxicological alterations induced in the mouse hearts after thiazolidinedione administration. Balb/c mice received doses clinically equivalent to those given to humans of the most commonly used thiazolidinediones, pioglitazone, and rosiglitazone for 30 days. After that, RNA samples were isolated from the hearts. The mRNA expression of cytochrome (cyp) p450 genes that synthesize the cardiotoxic 20-hydroxyeicosatetraenoic acid (20-HETE) in addition to 92 cardiotoxicity biomarker genes were analyzed using quantitative polymerase chain reaction array technique. The analysis demonstrated that thiazolidinediones caused a significant upregulation (p < 0.5) of the mRNA expression of cyp1a1, cyp4a12, itpr1, ccl7, ccr1, and b2 m genes. In addition, thiazolidinediones caused a significant (p < 0.05) downregulation of the mRNA expression of adra2a, bsn, col15a1, fosl1, Il6, bpifa1, plau, and reg3b genes. The most affected gene was itpr1 gene, which was upregulated by pioglitazone and rosiglitazone by sevenfold and 3.5-fold, respectively. In addition, pioglitazone caused significant upregulation of (p < 0.05) hamp, ppbp, psma2, sik1, timp1, and ucp1 genes, which were not affected significantly (p > 0.05) by rosiglitazone administration. In conclusion, this study showed that thiazolidinediones induce toxicological molecular alterations in the mouse hearts, such as the induction of cyp450s that synthesize 20-HETE, chemokine activation, inflammatory responses, blood clotting, and oxidative stress. These findings may help us understand the mechanism of cardiotoxicity involved in thiazolidinedione administration.
© 2021 Société Française de Pharmacologie et de Thérapeutique.

Entities:  

Keywords:  20-HETE; PCR array; cardiotoxicity; molecular alteration; thiazolidinediones

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Year:  2021        PMID: 33969534     DOI: 10.1111/fcp.12694

Source DB:  PubMed          Journal:  Fundam Clin Pharmacol        ISSN: 0767-3981            Impact factor:   2.748


  1 in total

1.  A comparative study of antibacterial and antivirulence activities of four selected honeys to Manuka honey.

Authors:  Mohammad A Al-Kafaween; Hamid A Nagi Al-Jamal
Journal:  Iran J Microbiol       Date:  2022-04
  1 in total

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