Atomoxetine: toxicological aspects of a new treatment for Attention Deficit Hyperactivity Disorder in Brazil.

IF 2.1 Q3 PSYCHIATRY
Gabriel Christian de Farias Morais, Shopnil Akash, Edilson Dantas da Silva, Claudio Bruno Silva de Oliveira, João Firmino Rodrigues-Neto, Umberto Laino Fulco, Shahina Akter, Jonas Ivan Nobre Oliveira
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Abstract

Atomoxetine is a drug widely used for the treatment of the attention deficit hyperactivity disorder (ADHD) with reduced risk of adverse motor reactions and chemical dependence. However, the pharmacokinetics characteristics as well as the toxicological risk of atomoxetine deserves further investigation to comprehensively analyze the therapeutic and safety aspects of this drug. This study aimed to predict the physicochemical profile and medicinal chemistry characteristics of atomoxetine, alongside its pharmacokinetic properties-namely absorption, distribution, metabolism, and excretion-as well as its toxicology (ADMET) potential through the utilization of web-based in silico tools. This research emphasizes predicted physicochemical, medicinal chemistry, and absorption parameters of atomoxetine that could influence the efficacy and safety of this drug for ADHD treatment. Additionally, atomoxetine also presents noteworthy predicted risks of hepatotoxicity, cardiotoxicity, neurotoxicity, nephrotoxicity, respiratory system toxicity, skin toxicity, and carcinogenicity. These findings underscore the necessity for further assessments of atomoxetine's safety profile, particularly considering different patient populations and durations of drug treatment. The data reported here from in silico predictions suggest that closer monitoring is warranted when atomoxetine is administered to patients with ADHD. Moreover, controlled studies detailing reliable protocols for personalized dosing, considering the multifactorial variability in metabolism efficiency and toxicological potential, would enable a more comprehensive assessment of atomoxetine's safety profile.

阿托莫西汀:巴西治疗注意力缺陷多动症新疗法的毒理学问题。
阿托莫西汀是一种广泛用于治疗注意力缺陷多动障碍(ADHD)的药物,可降低不良运动反应和化学依赖的风险。然而,阿托莫西汀的药代动力学特征和毒理学风险值得进一步研究,以全面分析该药物的治疗和安全性。本研究旨在通过利用基于网络的硅学工具,预测阿托西汀的理化概况和药物化学特征,以及其药代动力学特性(即吸收、分布、代谢和排泄)和毒理学(ADMET)潜力。这项研究强调了预测的阿托西汀的物理化学、药物化学和吸收参数,这些参数可能会影响该药物治疗多动症的疗效和安全性。此外,阿托西汀还具有值得注意的肝毒性、心脏毒性、神经毒性、肾毒性、呼吸系统毒性、皮肤毒性和致癌性等预测风险。这些发现强调了进一步评估阿托莫西汀安全性的必要性,特别是考虑到不同的患者群体和药物治疗的持续时间。本文报告的硅学预测数据表明,在对多动症患者施用阿托西汀时,有必要进行更密切的监测。此外,考虑到代谢效率和毒性潜力的多因素变异性,详细说明个性化用药可靠方案的对照研究将有助于更全面地评估阿托西汀的安全性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.40
自引率
0.00%
发文量
32
审稿时长
13 weeks
期刊介绍: Information not localized
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