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Fluorescent probes for imaging and detection of plant hormones and their receptors
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作者 Yiliang Chen Bo He +4 位作者 Mengxu Hu jiawei bao Wei Yan Xinya Han Yonghao Ye 《Advanced Agrochem》 2024年第1期83-98,共16页
Exploring plant behavior at the cellular scale in a minimally invasive manner is critical to understanding plant adaptation to the environment.Phytohormones play vital regulatory roles in multiple aspects of plant gro... Exploring plant behavior at the cellular scale in a minimally invasive manner is critical to understanding plant adaptation to the environment.Phytohormones play vital regulatory roles in multiple aspects of plant growth and development and acclimation to environmental changes.Since the biosynthesis,modification,transportation,and degradation of plant hormones in plants change with time and space,their content level and distribution are highly dynamic.To monitor the production,transport,perception,and distribution of phytohormones within undamaged tissues,we require qualitative and quantitative tools endowed with remarkably high temporal and spatial resolution.Fluorescent probes are regarded as excellent tools for widespread plant imaging because of their high sensitivity and selectivity,reproducibility,real-time in situ detection,and uncomplicated mechanism elucidation.In this review,we provide a systematical overview of the progress in the sensing and imaging of phytohormone fluorescent probes and fluorescently labeled phytohormones to their receptors in plants.Moreover,forthcoming viewpoints and possible applications of these fluorescent probes within the realm of plants are also presented.We hold the conviction that the new perspective brought by this paper can promote the development of fluorescent probes,enabling them to have better detection performance in plant hormone imaging. 展开更多
关键词 Plant hormones RECEPTORS Fluorescent probe VISUALIZATION
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金属-有机框架材料在细菌感染治疗中的研究进展 被引量:3
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作者 包佳伟 刘鉴峰 +1 位作者 张嘉敏 刘金剑 《科学通报》 EI CAS CSCD 北大核心 2023年第13期1677-1688,共12页
细菌感染严重威胁着公共健康安全.近年来,随着多种多药耐药细菌的频频出现,抗生素疗效不断下降.设计开发可代替抗生素的新型抗菌材料,在提高抗菌效率的同时,降低细菌耐药发生的风险,已成为当前细菌感染治疗领域的研究热点.金属-有机框架... 细菌感染严重威胁着公共健康安全.近年来,随着多种多药耐药细菌的频频出现,抗生素疗效不断下降.设计开发可代替抗生素的新型抗菌材料,在提高抗菌效率的同时,降低细菌耐药发生的风险,已成为当前细菌感染治疗领域的研究热点.金属-有机框架(metal-organic frameworks, MOFs)作为一类新兴的多孔杂化材料,因具有多选择性的有机配体和金属活性中心、高度可调的多孔空间结构、较大的比表面积和易于修饰等特性,在细菌感染治疗领域展现了巨大的潜力.本文总结了传统细菌耐药机制,以MOFs基抗菌材料的设计策略和抗菌机制为出发点,对近年来MOFs在细菌感染治疗方面的最新研究进展进行了综述,并对MOFs基抗菌材料在细菌感染诊疗领域的研究前景进行展望. 展开更多
关键词 金属-有机框架材料 细菌耐药 抗菌机制 细菌感染治疗
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