Literature DB >> 28278039

Cardiovascular toxicity assessment of poly (ethylene imine)- based cationic polymers on zebrafish model.

Qinglian Hu1, Fengliang Guo1, Fenghui Zhao1, Guping Tang2, Zhengwei Fu1.   

Abstract

Poly(ethylene imine)s (PEIs) have gained enormous attention in designing novel drug delivery systems for cancer treatment. High molecular weight of PEIs such as PEI 25 kD are promising for their drug carrying capacity. However, increased molecular weight is associated with toxicity. Currently, the toxicity evaluation of PEIs is mainly focused on the culture cell models, with very few studies investigating the risk assessment in vivo. Herein, the systemic evaluation of branched PEI 25 kD and PEI-CyD (PC) composed of low molecular PEI (Mw 600) and β-cyclodextrin (β-CyD) is performed in zebrafish model and endothelial cells. Our finding indicate that exposure of PC and PEI 25 kD can induce high mortality rate, shorten hatching time, promote malformations and cell apoptosis of zebrafish embryos in a dose-dependent manner. Most significantly, the cationic polymer PC and PEI 25 kD can decrease heart rate of zebrafish embryos and down-regulate the expression of heart development-related genes, which demonstrate their cardiovasculature toxicity. In this case, we further investigate the effect of PC on endothelial cells. Indeed, PC can induce endothelial cells dysfunction, including oxidative stress and apoptosis which are involved in cardiovascular diseases. These fundamental studies provide valuable insights into the biocompatible evaluation of PEI based drug carriers.

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Keywords:  Cationic polymer; PEI; cardiovascular toxicity; endothelial cells; zebrafish

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Year:  2017        PMID: 28278039     DOI: 10.1080/09205063.2017.1301773

Source DB:  PubMed          Journal:  J Biomater Sci Polym Ed        ISSN: 0920-5063            Impact factor:   3.517


  2 in total

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Authors:  Shuang Ge; Yadong Xi; Ruolin Du; Yuzhen Ren; Zichen Xu; Youhua Tan; Yazhou Wang; Tieying Yin; Guixue Wang
Journal:  Regen Biomater       Date:  2019-03-19

2.  Cardiovascular and Respiratory Toxicity of Protamine Sulfate in Zebrafish and Rodent Models.

Authors:  Joanna Miklosz; Bartlomiej Kalaska; Piotr Podlasz; Małgorzata Chmielewska-Krzesińska; Miłosz Zajączkowski; Adam Kosiński; Dariusz Pawlak; Andrzej Mogielnicki
Journal:  Pharmaceutics       Date:  2021-03-09       Impact factor: 6.321

  2 in total

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