In Silico Taste–Toxicity Study of New Hypothetical Hetero-Abiraterone Derivatives

K. Khalaf
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Abstract

First Iraqi attempt to study drug used for prostate cancer treatment (Abiraterone) that hypothetically reacted with known chemicals classified as Anticancer drug: Tirapazamine (T) and 5-Fluorouracil (F), food additive and preservative: Butylated Hydroxy Toluene (B) and Ethoxyquin (E), and sweeteners: P-4000 (P), Sodium Cyclamate (CS), Alitame (AT), and Saccharin (SA). The second step in this work was computational study of all reactants and the formed products having newly ether, amine, and carboxylic acid ester, and sulphonate bonds by online websites. Taste, toxicity, and ADMET were calculated by three online websites related to Charite University of Medicine, Institute for Physiology, Germany and University of Melbourne, Australia. SMILES of the reactants were obtained from National Library of Medicine/ National Center for Biotechnology Information websites while products were drawn by the molecular editor CS ChemDraw Ultra and rechecked by MarvinSketch program. This in Silico study showed various results of the formed products compared to Abiraterone (A) that predicated it as sour chemical belongs to Class 4 as a harmful substance if swallowed. Abiraterone (A) toxicity on liver organ was 61% probability percentage as hepatotoxicity while carcinogenicity, Immunotoxicity, Mutagenicity, cytotoxicity, AhR, AR, Aromatase, ER, HSE, and p53 were more than 70 % to bind Progesterone or Androgen. Also, Abiraterone (A) has a poor water solubility leading to high intestinal absorption, moderate total clearance, and giving inhibition reaction to Cytochrome P450 type CYP2C19, hERG II, and Ames test. These results confirmed that Abiraterone is structurally less harmful acute class with highly chance to interact with cell components resulting lethal response. All Abiraterone hypothetical products had a harmful reaction if swelled (Class 4), sour taste. All toxicological characters may be highly affected by its water solubility and intestinal absorption towards CNS, BBB, and CaCO2 permeability, skin sensation, and Ames test issues. For example, this in Silico- QSAR foundations about Abiraterone – Saccharin (A-SA) suggest that A-SA is structurally safe and there are several possibilities of becoming an active–multiple toxicological compound.
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新型异阿比特龙衍生物的硅味毒性研究
伊拉克首次尝试研究用于前列腺癌治疗的药物(阿比特龙),该药物假定与已知化学物质发生反应,分类为抗癌药物:替拉帕嗪(T)和5-氟尿嘧啶(F),食品添加剂和防腐剂:丁基羟基甲苯(B)和乙氧基醌(E),甜味剂:P-4000 (P)、环己基氨基磺酸钠(CS)、阿利糖(AT)和糖精(SA)。本工作的第二步是通过在线网站计算研究所有的反应物和形成的具有新醚、胺、羧酸酯和磺酸键的产物。口感、毒性和ADMET是由德国查理特医学大学、生理研究所和澳大利亚墨尔本大学的三个在线网站计算出来的。反应物的smile从美国国家医学图书馆/国家生物技术信息中心网站获取,产物由分子编辑器CS ChemDraw Ultra绘制,并通过marvinssketch程序复核。这项硅研究表明,与阿比特龙(A)相比,形成的产物的各种结果表明,如果吞食,它是酸性化学物质,属于第4类有害物质。阿比aterone (A)对肝器官的毒性为肝毒性的概率百分比为61%,而与孕酮或雄激素结合的致癌性、免疫毒性、诱变性、细胞毒性、AhR、AR、Aromatase、ER、HSE、p53的致癌性、致癌性、致癌性、致突变性、细胞毒性均大于70%。阿比aterone (A)水溶性差,肠道吸收高,总清除率中等,对细胞色素P450型CYP2C19、hERG II、Ames试验均有抑制作用。这些结果证实,阿比特龙在结构上是危害较小的急性类,与细胞成分相互作用导致致命反应的机会很大。所有阿比特龙假设产品如果膨胀有有害反应(4类),酸味。其水溶性、对中枢神经系统、血脑屏障的肠吸收、CaCO2的渗透性、皮肤感觉和Ames试验问题都可能高度影响其所有毒理学特性。例如,在silicon - QSAR中关于Abiraterone - Saccharin (A-SA)的基础表明,A-SA在结构上是安全的,并且有几种成为活性多重毒理学化合物的可能性。
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