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2
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Spectrochim Acta A Mol Biomol Spectrosc. 2024 Apr 15;311:124006. doi: 10.1016/j.saa.2024.124006. Epub 2024 Feb 8.
3
Progress in the Field of Cyclophosphazenes: Preparation, Properties, and Applications.环磷腈领域的进展:制备、性质及应用
Polymers (Basel). 2023 Dec 29;16(1):122. doi: 10.3390/polym16010122.
4
Molecular Target and Action Mechanism of Anti-Cancer Agents.抗癌药物的分子靶点与作用机制。
Int J Mol Sci. 2023 May 4;24(9):8259. doi: 10.3390/ijms24098259.
5
Time to target the circadian clock for drug discovery.靶向生物钟进行药物发现的时机已到。
Trends Biochem Sci. 2022 Sep;47(9):745-758. doi: 10.1016/j.tibs.2022.04.009. Epub 2022 May 13.
6
Application of triazoles as bioisosteres and linkers in the development of microtubule targeting agents.三唑类作为生物电子等排体和连接子在微管靶向剂研发中的应用。
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7
Small Molecules Targeting Biological Clock; A Novel Prospective for Anti-Cancer Drugs.小分子靶向生物钟;抗癌药物的新前景。
Molecules. 2020 Oct 26;25(21):4937. doi: 10.3390/molecules25214937.
8
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Morpholine As a Scaffold in Medicinal Chemistry: An Update on Synthetic Strategies.吗啡啉作为药物化学中的一种骨架:合成策略的最新进展。
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Morpholine as ubiquitous pharmacophore in medicinal chemistry: Deep insight into the structure-activity relationship (SAR).吗啡啉作为药物化学中无处不在的药效团:对结构-活性关系(SAR)的深入洞察。
Bioorg Chem. 2020 Mar;96:103578. doi: 10.1016/j.bioorg.2020.103578. Epub 2020 Jan 11.

新型环三磷腈作为安全候选药物的设计、合成与评价

Design, synthesis and evaluations of new cyclotriphosphazenes as safe drug candidates.

作者信息

Yıldız Gül Elif, Tiryaki Büşra, Köse Buse, Öztürk Nuri, Okutan Elif, Dedeoğlu Burcu, Tanrıverdi Eçik Esra

机构信息

Department of Chemistry, Faculty of Science, Atatürk University Erzurum Türkiye

Department of Molecular Biology and Genetics, Gebze Technical University Kocaeli Türkiye.

出版信息

RSC Med Chem. 2025 Feb 12. doi: 10.1039/d4md00885e.

DOI:10.1039/d4md00885e
PMID:40027348
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11865950/
Abstract

Although it is possible to discover new drug candidate molecules using approaches, chemical synthesis followed by screening of their functions is still at the center of bioactive molecule discovery. While determining the potential effects of compounds on target signaling molecules or pathways, assessing their effects on the circadian rhythm is also very important for determining the efficacy of drug candidates because they control most of the signaling pathways. Herein, new members of the biocompatible cyclotriphosphazene family were prepared, and their biological activities and effects on circadian rhythm were evaluated for the first time. In particular, new cyclotriphosphazene derivatives carrying morpholine, thiomorpholine and triazole groups were designed and synthesized, and their chemical structures were characterized using appropriate spectroscopic methods. Cellular toxicity analyses of the compounds were performed using different biological methods, such as determination of IC values, calculation of population doubling times, and colony formation patterns. Subsequently, the effects of the compounds on the cell cycle were analyzed using the flow cytometry technique. Finally, the effects of the synthesized compounds on circadian rhythm were determined using a real-time bioluminescence approach. Based on these studies, it was determined that some compounds demonstrated varying degrees of antiproliferative activity, with the most potent compounds causing G/M phase arrest. Additionally, most derivatives had no adverse effects on the circadian rhythm, indicating their potential for safe therapeutic application in targeting cell proliferation. Furthermore, an important pharmacological characteristic of the drug candidate molecules, namely, membrane permeability in terms of log  values, was assessed. In conclusion, these novel cyclotriphosphazene-based compounds are a class of circadian rhythm-safe drug candidate compounds.

摘要

尽管使用各种方法有可能发现新的药物候选分子,但化学合成随后筛选其功能仍然是生物活性分子发现的核心。在确定化合物对靶信号分子或信号通路的潜在影响时,评估它们对昼夜节律的影响对于确定候选药物的疗效也非常重要,因为昼夜节律控制着大多数信号通路。在此,制备了生物相容性环三磷腈家族的新成员,并首次评估了它们的生物活性和对昼夜节律的影响。特别是,设计并合成了带有吗啉、硫代吗啉和三唑基团的新型环三磷腈衍生物,并使用适当的光谱方法对其化学结构进行了表征。使用不同的生物学方法对化合物进行细胞毒性分析,如测定IC值、计算群体倍增时间和集落形成模式。随后,使用流式细胞术技术分析化合物对细胞周期的影响。最后,使用实时生物发光方法确定合成化合物对昼夜节律的影响。基于这些研究,确定一些化合物表现出不同程度的抗增殖活性,最有效的化合物导致G/M期阻滞。此外,大多数衍生物对昼夜节律没有不利影响,表明它们在靶向细胞增殖方面具有安全治疗应用的潜力。此外,评估了候选药物分子的一个重要药理学特性,即log 值方面的膜通透性。总之,这些新型的基于环三磷腈的化合物是一类对昼夜节律安全的候选药物化合物。