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一氧化氮与兴奋效应。

Nitric oxide and hormesis.

作者信息

Calabrese Edward J, Agathokleous Evgenios, Dhawan Gaurav, Kapoor Rachna, Dhawan Vikas, Manes Prabhjot Kaur, Calabrese Vittorio

机构信息

Department of Environmental Health Sciences, Morrill I, N344, University of Massachusetts, Amherst, MA, 01003, USA.

School of Applied Meteorology, Nanjing University of Information Science & Technology, Nanjing, 210044, China.

出版信息

Nitric Oxide. 2023 Apr 1;133:1-17. doi: 10.1016/j.niox.2023.02.001. Epub 2023 Feb 8.

Abstract

This present paper provides an assessment of the occurrence of nitric oxide (NO)-induced hormetic-biphasic dose/concentration relationships in biomedical research. A substantial reporting of such NO-induced hormetic effects was identified with particular focus on wound healing, tumor promotion, and sperm biology, including mechanistic assessment and potential for translational applications. Numerous other NO-induced hormetic effects have been reported, but require more development prior to translational applications. The extensive documentation of NO-induced biphasic responses, across numerous organs (e.g., bone, cardiovascular, immune, intestine, and neuronal) and cell types, suggests that NO-induced biological activities are substantially mediated via hormetic processes. These observations are particularly important because broad areas of NO biology are constrained by the quantitative features of the hormetic response. This determines the amplitude and width of the low dose stimulation, affecting numerous biomedical implications, study design features (e.g., number of doses, dose spacing, sample sizes, statistical power), and the potential success of clinical trials.

摘要

本文对生物医学研究中一氧化氮(NO)诱导的兴奋效应剂量/浓度双相关系的发生情况进行了评估。已确定大量关于此类NO诱导兴奋效应的报道,尤其关注伤口愈合、肿瘤促进和精子生物学,包括机制评估及转化应用潜力。还报道了许多其他NO诱导的兴奋效应,但在转化应用之前还需要更多发展。NO诱导的双相反应在众多器官(如骨骼、心血管、免疫、肠道和神经元)和细胞类型中的广泛记录表明,NO诱导的生物学活性主要通过兴奋效应过程介导。这些观察结果尤为重要,因为NO生物学的广泛领域受到兴奋效应反应定量特征的限制。这决定了低剂量刺激的幅度和宽度,影响众多生物医学意义、研究设计特征(如剂量数量、剂量间隔、样本量、统计功效)以及临床试验的潜在成功率。

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