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2
Determination and detection of reactive oxygen species (ROS), lipid peroxidation, and electrolyte leakage in plants.植物中活性氧(ROS)、脂质过氧化和电解质渗漏的测定与检测。
Methods Mol Biol. 2010;639:292-8. doi: 10.1007/978-1-60761-702-0_18.
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ESR micro-imaging of LiNc-BuO crystals in PDMS: spatial and spectral grain distribution.在 PDMS 中对 LiNc-BuO 晶体进行 ESR 微成像:空间和光谱晶粒分布。
J Magn Reson. 2010 Mar;203(1):150-5. doi: 10.1016/j.jmr.2009.12.011. Epub 2009 Dec 22.
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Reactive oxygen species homeostasis and signalling during drought and salinity stresses.活性氧物种在干旱和盐胁迫下的稳态和信号转导。
Plant Cell Environ. 2010 Apr;33(4):453-67. doi: 10.1111/j.1365-3040.2009.02041.x. Epub 2009 Aug 27.
5
The plant NADPH oxidase RBOHD mediates rapid systemic signaling in response to diverse stimuli.植物NADPH氧化酶RBOHD介导对多种刺激的快速系统性信号传导。
Sci Signal. 2009 Aug 18;2(84):ra45. doi: 10.1126/scisignal.2000448.
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Superoxide radical detection in cells, tissues, organisms (animals, plants, insects, microorganisms) and soils.细胞、组织、生物体(动物、植物、昆虫、微生物)及土壤中超氧自由基的检测。
Nat Protoc. 2008;3(11):1679-92. doi: 10.1038/nprot.2008.155.
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Superoxide flashes in single mitochondria.单个线粒体中的超氧阴离子闪烁
Cell. 2008 Jul 25;134(2):279-90. doi: 10.1016/j.cell.2008.06.017.
8
Novel fluorescent methods for biotechnological and biomedical sensoring: assessing antioxidants, reactive radicals, NO dynamics, immunoassay, and biomembranes fluidity.用于生物技术和生物医学传感的新型荧光方法:评估抗氧化剂、活性自由基、一氧化氮动态、免疫测定和生物膜流动性。
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9
Reactivity of superoxide anion radical with a perchlorotriphenylmethyl (trityl) radical.超氧阴离子自由基与高氯代三苯甲基(三苯甲基)自由基的反应活性。
J Phys Chem B. 2008 Jan 10;112(1):158-67. doi: 10.1021/jp076656x. Epub 2007 Dec 15.
10
Measurement of reactive oxygen species in cells and mitochondria.细胞和线粒体中活性氧的测量。
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利用电子自旋共振自旋探针法检测和成像根中的超氧自由基。

Detection and imaging of superoxide in roots by an electron spin resonance spin-probe method.

机构信息

Schulich Faculty of Chemistry Technion, Israel Institute of Technology, Haifa, Israel.

出版信息

Biophys J. 2011 Sep 21;101(6):1529-38. doi: 10.1016/j.bpj.2011.07.029. Epub 2011 Sep 20.

DOI:10.1016/j.bpj.2011.07.029
PMID:21943435
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3177060/
Abstract

The detection, quantification, and imaging of short-lived reactive oxygen species, such as superoxide, in live biological specimens have always been challenging and controversial. Fluorescence-based methods are nonspecific, and electron spin resonance (ESR) spin-trapping methods require high probe concentrations and lack the capability for sufficient image resolution. In this work, a novel (to our knowledge), sensitive, small ESR imaging resonator was used together with a stable spin probe that specifically reacts with superoxide with a high reaction rate constant. This ESR spin-probe-based methodology was used to examine superoxide generated in a plant root as a result of an apical leaf injury. The results show that the spin probe rapidly permeated the plant's extracellular space. Upon injury of the plant tissue, superoxide was produced and the ESR signal decreased rapidly in the injured parts as well as in the distal part of the root. This is attributed to superoxide production and thus provides a means of quantifying the level of superoxide in the plant. The spin probe's narrow single-line ESR spectrum, together with the sensitive imaging resonator, facilitates the quantitative measurement of superoxide in small biological samples, such as the plant's root, as well as one-dimensional imaging along the length of the root. This type of methodology can be used to resolve many questions involving the production of apoplastic superoxide in plant biology.

摘要

在活体生物样本中检测、定量和成像短寿命活性氧(如超氧自由基)一直具有挑战性和争议性。基于荧光的方法是非特异性的,而电子自旋共振(ESR)自旋捕获方法需要高探针浓度,并且缺乏足够的图像分辨率的能力。在这项工作中,使用了一种新颖的(据我们所知)、敏感的、小的 ESR 成像谐振器,以及一种与超氧自由基特异性反应、具有高反应速率常数的稳定自旋探针。这种基于 ESR 自旋探针的方法用于检测植物根部因根尖叶片损伤而产生的超氧自由基。结果表明,自旋探针迅速渗透到植物的细胞外空间。在植物组织受伤后,会产生超氧自由基,受伤部位和根部的远端部位的 ESR 信号迅速下降。这归因于超氧自由基的产生,从而提供了一种定量测量植物中超氧自由基水平的方法。自旋探针的窄单线 ESR 光谱,加上敏感的成像谐振器,有助于对植物的根等小生物样本中超氧自由基进行定量测量,以及沿着根的长度进行一维成像。这种方法可用于解决许多涉及植物生物学中细胞外超氧自由基产生的问题。