Structure-activity relationship for toxicity of α-pyrrolidinophenones in human aortic endothelial cells

被引:0
|
作者
Toshiyuki Matsunaga
Yoshifumi Morikawa
Miki Tanigawa
Kyohei Kamata
Akinobu Shibata
Yasuhide Sasajima
Koichi Suenami
Kiyohito Sato
Yuji Takekoshi
Satoshi Endo
Ossama El-Kabbani
Akira Ikari
机构
[1] Gifu Pharmaceutical University,Laboratory of Biochemistry
[2] Gifu Prefectural Police Headquarters,Forensic Science Laboratory
[3] Nagoya University Graduate School of Medicine,undefined
来源
Forensic Toxicology | 2017年 / 35卷
关键词
α-Pyrrolidinooctanophenone; Structure-activity relationship of α-pyrrolidinophenones; Human aortic endothelial cell; Apoptosis; Reactive oxygen species; Toxic mechanisms;
D O I
暂无
中图分类号
学科分类号
摘要
In this study, we found that exposure of 20 μM α-pyrrolidinooctanophenone (α-POP), a new synthetic cathinone, time- and dose-dependently reduced viability of human aortic endothelial (HAE) cells, and the 50% lethal concentration (LC50) for α-POP in its 48-h treatment was 15.6 μM. In addition, the LC50 comparison of α-POP and α-pyrrolidinoheptanophenone (α-PHPP) toxicity against ten human cells exhibited that vascular (HAE and human aortic smooth muscle) and bronchial epithelial BEAS-2B cells were more susceptible to the cytotoxicity than neuronal (SK-N-SH and A172), gastrointestinal (DLD1 and MKN45), hepatic HepG2, renal HEK293 and pulmonary A549 cells. The results suggest that abuse of the lipophilic α-pyrrolidinophenones (PPs), such as α-POP and α-PHPP, is more likely to cause damage to the vascular, respiratory and central nervous systems. Structure-activity relationship study of 18 PPs with different alkyl chain lengths and substituents revealed that the endothelial cell toxicity depends on the alkyl chain length (α-POP > α-PHPP > PPs with shorter chains), and the presence of 4′-fluoro or 3′,4′-methylenedioxy group on α-POP and α-PHPP increased the cytotoxicity. In order to understand the cytotoxic mechanism of α-POP and F-α-POP that showed the most potent toxicity, the contribution of reactive oxygen species (ROS) production, caspase-3 activation and DNA fragmentation were investigated. The treatment of HAE cells with α-POP or F-α-POP resulted in remarkable ROS production, and the ROS production and apoptotic events were significantly prevented by pretreating the cells with an antioxidant N-acetyl-l-cysteine, suggesting that ROS-dependent signaling is primarily responsible for endothelial cell apoptosis elicited by the lipophilic synthetic cathinones.
引用
收藏
页码:309 / 316
页数:7
相关论文
共 50 条
  • [21] Prediction of toxicity of phenols and anilines to algae by quantitative structure-activity relationship
    Lu, Guang-Hua
    Wang, Chao
    Guo, Xiao-Ling
    BIOMEDICAL AND ENVIRONMENTAL SCIENCES, 2008, 21 (03) : 193 - 196
  • [22] Quantitative Structure-Activity Relationship study on fish toxicity of substituted benzenes
    Gong, Zhiguo
    Xia, Binbin
    Zhang, Ruisheng
    Zhang, Xiaoyun
    Fan, Botao
    QSAR & COMBINATORIAL SCIENCE, 2008, 27 (08): : 967 - 976
  • [23] IN VIVO TOXICITY OF NITROAROMATICS: A COMPREHENSIVE QUANTITATIVE STRUCTURE-ACTIVITY RELATIONSHIP STUDY
    Gooch, Aminah
    Sizochenko, Natalia
    Rasulev, Bakhtiyor
    Gorb, Leonid
    Leszczynski, Jerzy
    ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY, 2017, 36 (08) : 2227 - 2233
  • [24] Quantitative Structure-Activity Relationship for Prediction of the Toxicity of Phenols on Photobacterium phosphoreum
    Li, Xiaolin
    Wang, Zunyao
    Liu, Hongling
    Yu, Hongxia
    BULLETIN OF ENVIRONMENTAL CONTAMINATION AND TOXICOLOGY, 2012, 89 (01) : 27 - 31
  • [25] Toxicity of substituted benzaldehydes to Photobacterium phosphoreum and quantitative structure-activity relationship
    Jin, Lijun
    Gu, Yan
    Dai, Jiayin
    Wang, Liansheng
    Wei, Zhongbo
    Zhang, Zheng
    Toxicological and Environmental Chemistry, 1999, 69 (1-2): : 149 - 156
  • [26] Compound toxicity screening and structure-activity relationship modeling in Escherichia coli
    Planson, Anne-Gaelle
    Carbonell, Pablo
    Paillard, Elodie
    Pollet, Nicolas
    Faulon, Jean-Loup
    BIOTECHNOLOGY AND BIOENGINEERING, 2012, 109 (03) : 846 - 850
  • [27] Quantitative structure-activity relationship study for toxicity of organotin compounds on algae
    Huang, G
    Sun, H
    Dai, S
    BULLETIN OF ENVIRONMENTAL CONTAMINATION AND TOXICOLOGY, 1997, 58 (02) : 299 - 304
  • [28] Prediction of Terpenoid Toxicity Based on a Quantitative Structure-Activity Relationship Model
    Perestrelo, Rosa
    Silva, Catarina
    Fernandes, Miguel X.
    Camara, Jose S.
    FOODS, 2019, 8 (12)
  • [29] A Categorical Structure-Activity Relationship Analysis of the Developmental Toxicity of Antithyroid Drugs
    Cunningham, Albert R.
    Carrasquer, C. Alex
    Mattison, Donald R.
    INTERNATIONAL JOURNAL OF PEDIATRIC ENDOCRINOLOGY, 2009,