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Bacterial endospore detection using terbium dipicolinate photoluminescence in the presence of chemical and biological materials.在存在化学和生物材料的情况下,使用二吡啶甲酸铽光致发光检测细菌芽孢。
Anal Chem. 1998 May 1;70(9):1755-60. doi: 10.1021/ac971232s.
2
Combination of Raman tweezers and quantitative differential interference contrast microscopy for measurement of dynamics and heterogeneity during the germination of individual bacterial spores.拉曼镊子与定量微分干涉对比显微镜联用,用于测量单个细菌孢子萌发过程中的动力学和异质性。
J Biomed Opt. 2010 Sep-Oct;15(5):056010. doi: 10.1117/1.3494567.
3
Fluorescence quantum yield of thioflavin T in rigid isotropic solution and incorporated into the amyloid fibrils.硫代黄素 T 在各向同性刚性溶液和嵌入到淀粉样纤维中的荧光量子产率。
PLoS One. 2010 Oct 29;5(10):e15385. doi: 10.1371/journal.pone.0015385.
4
Electrochemical reduction of quinones: interfacing experiment and theory for defining effective radii of redox moieties.电化学还原醌类化合物:实验与理论的界面,用于定义氧化还原部分的有效半径。
J Phys Chem B. 2010 Nov 18;114(45):14467-79. doi: 10.1021/jp101730e. Epub 2010 Jun 9.
5
Kinetics of bacterial fluorescence staining with 3,3'-diethylthiacyanine.3,3'-二乙基硫代羰花青细菌荧光染色动力学。
Langmuir. 2010 Jun 15;26(12):9756-65. doi: 10.1021/la1013279.
6
Detection technologies for Bacillus anthracis: prospects and challenges.炭疽杆菌检测技术:前景与挑战。
J Microbiol Methods. 2010 Jul;82(1):1-10. doi: 10.1016/j.mimet.2010.04.005. Epub 2010 Apr 22.
7
Molecular mechanism of Thioflavin-T binding to amyloid fibrils.硫黄素-T与淀粉样纤维结合的分子机制。
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8
Viscosity effect on the ultrafast bond twisting dynamics in an amyloid fibril sensor: thioflavin-T.黏度对淀粉样纤维传感器中超快键扭转动力学的影响:硫黄素-T。
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9
Characterization of bacterial spore germination using integrated phase contrast microscopy, Raman spectroscopy, and optical tweezers.利用集成相差显微镜、拉曼光谱和光镊技术对细菌孢子萌发进行表征。
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10
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用于快速细菌内孢子成像的淀粉样组织染色。

Amyloid histology stain for rapid bacterial endospore imaging.

机构信息

Department of Bioengineering, University of California, Riverside, 900 University Avenue, Riverside, CA 92521, USA.

出版信息

J Clin Microbiol. 2011 Aug;49(8):2966-75. doi: 10.1128/JCM.02285-10. Epub 2011 Jun 8.

DOI:10.1128/JCM.02285-10
PMID:21653779
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3147746/
Abstract

Bacterial endospores are some of the most resilient forms of life known to us, with their persistent survival capability resulting from a complex and effective structural organization. The outer membrane of endospores is surrounded by the densely packed endospore coat and exosporium, containing amyloid or amyloid-like proteins. In fact, it is the impenetrable composition of the endospore coat and the exosporium that makes staining methodologies for endospore detection complex and challenging. Therefore, a plausible strategy for facile and expedient staining would be to target components of the protective surface layers of the endospores. Instead of targeting endogenous markers encapsulated in the spores, here we demonstrated staining of these dormant life entities that targets the amyloid domains, i.e., the very surface components that make the coats of these species impenetrable. Using an amyloid staining dye, thioflavin T (ThT), we examined this strategy. A short incubation of bacillus endospore suspensions with ThT, under ambient conditions, resulted in (i) an enhancement of the fluorescence of ThT and (ii) the accumulation of ThT in the endospores, affording fluorescence images with excellent contrast ratios. Fluorescence images revealed that ThT tends to accumulate in the surface regions of the endospores. The observed fluorescence enhancement and dye accumulation, coupled with the sensitivity of emission techniques, provide an effective and rapid means of staining endospores without the inconvenience of pre- or posttreatment of samples.

摘要

细菌芽孢是我们所知的最具韧性的生命形式之一,其持久的生存能力源于复杂而有效的结构组织。芽孢的外膜被紧密堆积的芽孢壳和外壁包围,其中含有淀粉样蛋白或类似淀粉样蛋白的蛋白质。事实上,正是由于芽孢壳和外壁的不透性,使得芽孢检测的染色方法变得复杂和具有挑战性。因此,一种合理的简单易行的染色策略是针对芽孢保护性表面层的成分。我们没有针对包裹在孢子中的内源性标记物,而是在这里展示了针对这些休眠生命实体的染色方法,这些实体针对的是淀粉样结构域,即使这些物种的外壳难以穿透的非常表面成分。我们使用一种淀粉样蛋白染色染料,即硫黄素 T(ThT),来检验这种策略。在环境条件下,将芽孢悬浮液与 ThT 短时间孵育,会导致(i)ThT 的荧光增强和(ii)ThT 在芽孢中的积累,从而获得具有出色对比度的荧光图像。荧光图像显示,ThT 倾向于在芽孢的表面区域积累。观察到的荧光增强和染料积累,加上发射技术的灵敏度,为不进行样品预处理或后处理而有效地快速对芽孢进行染色提供了一种手段。