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Evaluation of Toxicity in Mouse Bone Marrow Progenitor Cells 小鼠骨髓祖细胞毒性评价
Pub Date : 2016-02-01 DOI: 10.1002/0471140856.tx1809s67
Peace C. Ezeh, Huan Xu, Shu Chun Wang, Sebastian Medina, Scott W. Burchiel

Development of blood cells through hematopoiesis occurs in the bone marrow (BM), and can be adversely impacted by various substances and/or conditions ranging from known therapeutic, intentionally administered xenobiotics to unintentional food additives and exposure to environmental chemicals. The principles underlying the techniques for evaluating toxicity to BM progenitors (erythroid, myeloid, and lymphoid) exploit changes in the normal hematopoietic process, biochemical cell surface and intracellular markers, as well as components of the BM microenvironment. Toxicological investigations following in vivo exposures of mice or in vitro exposures of mouse primary BM cell cultures allow the assessment of the developmental and functional integrity of BM cells, cell population shifts, and adverse biochemical effects due to toxicity. Colony forming unit (CFU) assays and flow cytometry are indispensable techniques in these toxicity studies. © 2016 by John Wiley & Sons, Inc.

造血过程中血细胞的发育发生在骨髓(BM)中,并可能受到各种物质和/或条件的不利影响,这些物质和/或条件包括已知的治疗性、有意使用的异种抗生素、无意使用的食品添加剂和暴露于环境化学物质。评估骨髓基质祖细胞(红系、髓系和淋巴系)毒性的基本技术原则是利用正常造血过程、生化细胞表面和细胞内标记物以及骨髓基质微环境成分的变化。在小鼠体内暴露或小鼠原代骨髓细胞培养物体外暴露后进行毒理学研究,可以评估骨髓细胞的发育和功能完整性、细胞群变化以及由于毒性引起的不良生化效应。菌落形成单位(CFU)测定和流式细胞术是这些毒性研究中不可缺少的技术。©2016 by John Wiley &儿子,Inc。
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引用次数: 7
Associating Changes in the Immune System with Clinical Diseases for Interpretation in Risk Assessment 免疫系统变化与临床疾病在风险评估中的关联解释
Pub Date : 2016-02-01 DOI: 10.1002/0471140856.tx1801s67
Jamie C. DeWitt, Dori R. Germolec, Robert W. Luebke, Victor J. Johnson
This overview is an update of the unit originally published in 2004. While the basic tenets of immunotoxicity have not changed in the past 10 years, several publications have explored the application of immunotoxicological data to the risk assessment process. Therefore, the goal of this unit is still to highlight relationships between xenobiotic‐induced immunosuppression and risk of clinical diseases progression. In immunotoxicology, this may require development of models to equate moderate changes in markers of immune functions to potential changes in incidence or severity of infectious diseases. For most xenobiotics, exposure levels and disease incidence data are rarely available, and safe exposure levels must be estimated based on observations from experimental models or human biomarker studies. Thus, it is important to establish a scientifically sound framework that allows accurate and quantitative interpretation of experimental or biomarker data in the risk assessment process. © 2016 by John Wiley & Sons, Inc.
本概述是2004年最初发布的单元的更新。虽然免疫毒性的基本原则在过去10年没有改变,但一些出版物已经探讨了免疫毒理学数据在风险评估过程中的应用。因此,本单元的目标仍然是强调异种生物诱导的免疫抑制与临床疾病进展风险之间的关系。在免疫毒理学中,这可能需要建立模型,将免疫功能标记物的适度变化与传染病发病率或严重程度的潜在变化等同起来。对于大多数外源性药物,很少有接触水平和疾病发生率的数据,必须根据实验模型或人类生物标志物研究的观察结果估计安全接触水平。因此,重要的是建立一个科学合理的框架,以便在风险评估过程中对实验或生物标志物数据进行准确和定量的解释。©2016 by John Wiley &儿子,Inc。
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引用次数: 14
PCR-Based Analysis of Mitochondrial DNA Copy Number, Mitochondrial DNA Damage, and Nuclear DNA Damage 基于pcr的线粒体DNA拷贝数、线粒体DNA损伤和核DNA损伤分析
Pub Date : 2016-02-01 DOI: 10.1002/0471140856.tx2011s67
Claudia P. Gonzalez-Hunt, John P. Rooney, Ian T. Ryde, Charumathi Anbalagan, Rashmi Joglekar, Joel N. Meyer

Because of the role that DNA damage and depletion play in human disease, it is important to develop and improve tools to assess these endpoints. This unit describes PCR-based methods to measure nuclear and mitochondrial DNA damage and copy number. Long amplicon quantitative polymerase chain reaction (LA-QPCR) is used to detect DNA damage by measuring the number of polymerase-inhibiting lesions present based on the amount of PCR amplification; real-time PCR (RT-PCR) is used to calculate genome content. In this unit, we provide step-by-step instructions to perform these assays in Homo sapiens, Mus musculus, Rattus norvegicus, Caenorhabditis elegans, Drosophila melanogaster, Danio rerio, Oryzias latipes, Fundulus grandis, and Fundulus heteroclitus, and discuss the advantages and disadvantages of these assays. © 2016 by John Wiley & Sons, Inc.

由于DNA损伤和耗竭在人类疾病中发挥的作用,开发和改进评估这些终点的工具非常重要。本单元描述了基于pcr的方法来测量核和线粒体DNA损伤和拷贝数。长扩增子定量聚合酶链反应(LA-QPCR)用于检测DNA损伤,基于PCR扩增量测量存在的聚合酶抑制病变的数量;实时荧光定量PCR (RT-PCR)用于计算基因组含量。在本单元中,我们提供了一步一步的说明,在智人,小家鼠,褐家鼠,秀丽隐杆线虫,黑腹果蝇,猕猴,大眼底和异眼底进行这些检测,并讨论了这些检测的优点和缺点。©2016 by John Wiley &儿子,Inc。
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引用次数: 72
Measuring p66Shc Signaling Pathway Activation and Mitochondrial Translocation in Cultured Cells 培养细胞p66Shc信号通路激活和线粒体易位的测定
Pub Date : 2015-11-04 DOI: 10.1002/0471140856.tx2506s66
Mariusz R. Wieckowski, Cláudia M. Deus, Renata Couto, Monika Oparka, Magdalena Lebiedzińska-Arciszewska, Jerzy Duszyński, Paulo J. Oliveira

The adaptor protein p66Shc links membrane receptors to intracellular signaling pathways, with downstream consequences on mitochondrial metabolism and reactive oxygen species production. Moreover, p66Shc has also been implicated in cancer development, progression, and metastasis. Increased phosphorylation of serine 36 residue of p66Shc very often correlates with oxidative stress–associated pathologies. The pro-oxidative role of p66Shc also appears to be involved in chemical toxicity, being an important component of stress responses triggered by xenobiotics. Here, we present a protocol that can be used: (a) for isolation of mitochondrial, cytosolic, and mitochondrial-associated membrane fractions from adherent cells lines; (b) to perform p66Shc detection with specific antibodies in order to monitor its translocation between different cellular compartments in response to the oxidative stress; and (c) to modulate the p66Shc pathway with the use of pharmacological approaches or gene-silencing methods. © 2015 by John Wiley & Sons, Inc.

接头蛋白p66Shc将膜受体与细胞内信号通路连接起来,对线粒体代谢和活性氧产生产生下游影响。此外,p66Shc也与癌症的发生、进展和转移有关。p66Shc丝氨酸36残基磷酸化的增加通常与氧化应激相关的病理相关。p66Shc的促氧化作用似乎也涉及化学毒性,是由外源性药物引发的应激反应的重要组成部分。在这里,我们提出了一种方案,可用于:(a)从贴壁细胞系中分离线粒体、细胞质和线粒体相关膜组分;(b)用特异性抗体检测p66Shc,以监测其在氧化应激下在不同细胞间的易位;(c)通过药理学方法或基因沉默方法调节p66Shc通路。©2015 by John Wiley &儿子,Inc。
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引用次数: 1
Caenorhabditis elegans as a Model for Toxic Effects of Nanoparticles: Lethality, Growth, and Reproduction 秀丽隐杆线虫作为纳米颗粒毒性效应的模型:致死性、生长和繁殖
Pub Date : 2015-11-04 DOI: 10.1002/0471140856.tx2010s66
Laura L. Maurer, Ian T. Ryde, Xinyu Yang, Joel N. Meyer

The nematode Caenorhabditis elegans is extensively utilized in toxicity studies. C. elegans offers a high degree of homology with higher organisms, and its ease of use and relatively inexpensive maintenance have made it an attractive complement to mammalian and ecotoxicological models. C. elegans provides multiple benefits, including the opportunity to perform relatively high-throughput assays on whole organisms, a wide range of genetic tools permitting investigation of mechanisms and genetic sensitivity, and transparent bodies that facilitate toxicokinetic studies. This unit describes protocols for three nanotoxicity assays in C. elegans: lethality, growth, and reproduction. This unit focuses on how to use these well-established assays with nanoparticles, which are being produced in ever-increasing volume and exhibit physicochemical properties that require alteration of standard toxicity assays. These assays permit a broad phenotypic assessment of nanotoxicity in C. elegans, and, when used in combination with genetic tools and other assays, also permit mechanistic insight. © 2015 by John Wiley & Sons, Inc.

秀丽隐杆线虫被广泛应用于毒性研究。秀丽隐杆线虫与高等生物具有高度的同源性,其易于使用和相对廉价的维护使其成为哺乳动物和生态毒理学模型的一个有吸引力的补充。秀丽隐杆线虫提供了多种好处,包括对整个生物体进行相对高通量分析的机会,允许调查机制和遗传敏感性的广泛遗传工具,以及促进毒性动力学研究的透明机构。本单元描述了秀丽隐杆线虫的三种纳米毒性测定方法:致死率、生长和繁殖。本单元的重点是如何使用这些成熟的纳米颗粒测定法,纳米颗粒的产量不断增加,并且表现出需要改变标准毒性测定法的物理化学性质。这些检测允许对秀丽隐杆线虫的纳米毒性进行广泛的表型评估,并且,当与遗传工具和其他检测结合使用时,也允许进行机制洞察。©2015 by John Wiley &儿子,Inc。
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引用次数: 19
Use of Ciliogenesis to Detect Aneugens: The Role of Primary Cilia 用纤毛发生检测纤毛:初级纤毛的作用
Pub Date : 2015-11-02 DOI: 10.1002/0471140856.tx0313s66
Kathyayini V. Divi, Yvona Ward, Miriam C. Poirier, Ofelia A. Olivero

Primary cilia arise from the centrosomes of quiescent or post-mitotic cells, and serve as sensory organelles that communicate mechanical and chemical stimuli from the environment to the interior of the cell. Cilium formation may, therefore, become a useful end point signaling exposure to genotoxins or aneugens. Here we have used the aneugen, zidovudine (AZT), an antiretroviral drug that induces DNA replication arrest and centrosomal amplification (>2 centrosomes per quiescent cell), to evaluate cilia formation in retinal epithelial (pigmented) cells. Since cilia are derived from centrosomes, and aneugens can induce centrosomal amplification, the production of multiple cilia arising from multiple centrosomes may reveal the aneugenic nature of the agents. Cells were exposed to AZT to induce centrosomal amplification, cultured without serum to allow the centrioles to develop cilia, and immunostained to visualize cilia and centrosomes. Nuclear DNA was stained with DAPI. Preliminary observations suggest that cells with multiple centrosomes are able to generate extra cilia. © 2015 by John Wiley & Sons, Inc.

初级纤毛起源于静止细胞或有丝分裂后细胞的中心体,作为感觉细胞器,将来自环境的机械和化学刺激传递到细胞内部。因此,纤毛的形成可能成为基因毒素或基因原暴露的有用终点信号。在这里,我们使用齐多夫定(AZT),一种诱导DNA复制阻滞和中心体扩增(每个静止细胞2个中心体)的抗逆转录病毒药物,来评估视网膜上皮(色素)细胞的纤毛形成。由于纤毛来源于中心体,而非优生原可以诱导中心体扩增,因此由多个中心体产生多个纤毛可能揭示了药物的非优生性质。细胞暴露于AZT诱导中心体扩增,无血清培养使中心粒发育纤毛,免疫染色观察纤毛和中心体。DAPI染色细胞核DNA。初步观察表明,具有多个中心体的细胞能够产生额外的纤毛。©2015 by John Wiley &儿子,Inc。
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引用次数: 1
Immune Cell Phenotyping Using Flow Cytometry 流式细胞术免疫细胞表型分析
Pub Date : 2015-11-02 DOI: 10.1002/0471140856.tx1808s66
A. Graham Pockley, Gemma A. Foulds, Julie A. Oughton, Nancy I. Kerkvliet, Gabriele Multhoff

Fluorescent immunophenotyping uses fluorescently-conjugated antibodies to identify, characterize and quantify distinct subpopulations of cells within heterogeneous single-cell populations, either in the context of tissue (using fluorescence and imaging microscopy) or in a single-cell suspension (using multiparameter imaging microscopy, imaging cytometry, and/or flow cytometry). Flow cytometry is an optical, laser-based technology which analyzes the physical and fluorescent properties of cells in suspension in real-time as they flow through the instrument. This approach has a number of advantages over other techniques that can be used for characterizing cell populations in single-cell suspensions, in that it can nonsubjectively interrogate up to millions of cells and acquire data on the presence of different cell subpopulations and phenotypical changes within these populations in seconds. This unit describes basic procedures for the direct and indirect immunofluorescent staining of surface and intracellular proteins that are expressed by lymphoid cells which have been isolated from tissues or blood. Protocols for the resolution of dead cells and for the fixation of cells are also included. This unit also provides essential information relating to the selection and titration of antibodies, fluorochrome choice, spectral overlap and compensation, the use of controls, and the standardization of data acquisition and analysis. It also highlights new technologies and platforms that can be used to interrogate the presence of cell subpopulations and their phenotype to an even greater depth. © 2015 by John Wiley & Sons, Inc.

荧光免疫分型使用荧光偶联抗体在异质单细胞群体中识别、表征和量化不同的细胞亚群,无论是在组织背景下(使用荧光和成像显微镜)还是在单细胞悬液中(使用多参数成像显微镜、成像细胞术和/或流式细胞术)。流式细胞术是一种基于激光的光学技术,可以实时分析悬浮细胞流过仪器时的物理和荧光特性。这种方法与其他技术相比具有许多优势,可以用于表征单细胞悬液中的细胞群,因为它可以非主观地询问多达数百万个细胞,并在几秒钟内获得关于不同细胞亚群存在和表型变化的数据。本单元描述了从组织或血液中分离出来的淋巴样细胞表达的表面和细胞内蛋白的直接和间接免疫荧光染色的基本程序。死细胞的分解和细胞固定的方法也包括在内。该单元还提供与抗体的选择和滴定、荧光染料的选择、光谱重叠和补偿、控制的使用以及数据采集和分析的标准化有关的基本信息。它还强调了可用于询问细胞亚群及其表型的存在的新技术和平台,甚至更深入。©2015 by John Wiley &儿子,Inc。
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引用次数: 28
Seahorse Xfe24 Extracellular Flux Analyzer-Based Analysis of Cellular Respiration in Caenorhabditis elegans 基于海马Xfe24细胞外通量分析仪的秀丽隐杆线虫细胞呼吸分析
Pub Date : 2015-11-02 DOI: 10.1002/0471140856.tx2507s66
Anthony L. Luz, Latasha L. Smith, John P. Rooney, Joel N. Meyer

Mitochondria are critical for their role in ATP production as well as multiple nonenergetic functions, and mitochondrial dysfunction is causal in myriad human diseases. Less well appreciated is the fact that mitochondria integrate environmental and intercellular as well as intracellular signals to modulate function. Because mitochondria function in an organismal milieu, there is need for assays capable of rapidly assessing mitochondrial health in vivo. Here, using the Seahorse XFe24 Extracellular Flux Analyzer and the pharmacological inhibitors dicyclohexylcarbodiimide (DCCD, ATP synthase inhibitor), carbonyl cyanide-p-trifluoromethoxyphenylhydrazone (FCCP, mitochondrial uncoupler), and sodium azide (cytochrome c oxidase inhibitor), we describe how to obtain in vivo measurements of the fundamental parameters [basal oxygen consumption rate (OCR), ATP-linked respiration, maximal OCR, spare respiratory capacity, and proton leak] of the mitochondrial respiratory chain in the model organism Caenorhabditis elegans. © 2015 by John Wiley & Sons, Inc.

线粒体在ATP的产生和多种非能量功能中起着至关重要的作用,线粒体功能障碍是无数人类疾病的原因。很少有人认识到线粒体整合环境和细胞间以及细胞内信号来调节功能。由于线粒体在生物体环境中发挥作用,因此需要能够快速评估体内线粒体健康的检测方法。在这里,我们使用Seahorse XFe24细胞外通量分析仪和药物抑制剂双环己基碳二亚胺(DCCD, ATP合成酶抑制剂),羰基氰化物-对三氟甲氧基苯基肼(FCCP,线粒体解耦剂)和叠氮化钠(细胞色素c氧化酶抑制剂),描述了如何获得基本参数的体内测量[基础耗氧量(OCR), ATP连接呼吸,最大OCR,备用呼吸量,模型生物秀丽隐杆线虫线粒体呼吸链的质子泄漏。©2015 by John Wiley &儿子,Inc。
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引用次数: 49
High-Throughput Assays for Assessing Mitochondrial Dysfunction Caused by Compounds that Impair mtDNA-Encoded Protein Levels in Eukaryotic Cells 评估真核细胞中损害mtdna编码蛋白水平的化合物引起的线粒体功能障碍的高通量测定
Pub Date : 2015-08-07 DOI: 10.1002/0471140856.tx0311s48
Sashi Nadanaciva, James Murray, Casey Wilson, David F. Gebhard, Yvonne Will

Compounds that impair the synthesis of either mitochondrial DNA (mtNDA) or mtDNA-encoded proteins reduce the levels of 13 proteins essential for oxidative phosphorylation, leading to a decrease in mitochondrial ATP production. Toxicity caused by these compounds is seldom identified in 24 to 72 hr cytotoxicity assays due to the low turnover rates of both mtDNA and mtDNA-encoded proteins. Here, we describe three high-throughput screening assays that detect compounds that affect mtDNA-encoded protein levels. All three assays measure the levels of two proteins, one a mtDNA-encoded protein synthesized on mitochondrial ribosomes and the other, a nuclear DNA-encoded protein synthesized on cytosolic ribosomes. The first assay measures the levels of these two proteins by quantitative image analysis and requires a high-content imaging system. The second assay is an in-cell immunoassay that utilizes infrared dyes for detection of the two proteins and, thus, requires a LI-COR Odyssey system. The third assay is an in-cell immunoassay that utilizes colorimetric detection of the two proteins and requires an absorbance microplate reader. Curr. Protoc. Toxicol. 48:3.11.1-3.11.17. © 2011 by John Wiley & Sons, Inc.

损害线粒体DNA (mtNDA)或mtdna编码蛋白质合成的化合物会降低氧化磷酸化所需的13种蛋白质的水平,导致线粒体ATP生成减少。由于mtDNA和mtDNA编码蛋白的低周转率,这些化合物引起的毒性很少在24至72小时的细胞毒性测定中被鉴定出来。在这里,我们描述了三种检测影响mtdna编码蛋白水平的化合物的高通量筛选试验。这三种检测方法测量两种蛋白质的水平,一种是在线粒体核糖体上合成的mtdna编码蛋白质,另一种是在细胞质核糖体上合成的核dna编码蛋白质。第一种方法通过定量图像分析来测量这两种蛋白质的水平,需要高含量的成像系统。第二种分析是细胞内免疫分析,利用红外染料检测两种蛋白质,因此需要LI-COR Odyssey系统。第三种分析是细胞内免疫分析,利用比色法检测两种蛋白质,需要吸光度微孔板读取器。咕咕叫。Protoc。Toxicol 48:3.11.1-3.11.17。©2011 by John Wiley &儿子,Inc。
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引用次数: 6
Alkaline Comet Assay for Assessing DNA Damage in Individual Cells 评估单个细胞DNA损伤的碱性彗星试验
Pub Date : 2015-08-07 DOI: 10.1002/0471140856.tx0312s65
Xinzhu Pu, Zemin Wang, James E. Klaunig

Single-cell gel electrophoresis, commonly called a comet assay, is a simple and sensitive method for assessing DNA damage at the single-cell level. It is an important technique in genetic toxicological studies. The comet assay performed under alkaline conditions (pH >13) is considered the optimal version for identifying agents with genotoxic activity. The alkaline comet assay is capable of detecting DNA double-strand breaks, single-strand breaks, alkali-labile sites, DNA-DNA/DNA-protein cross-linking, and incomplete excision repair sites. The inclusion of digestion of lesion-specific DNA repair enzymes in the procedure allows the detection of various DNA base alterations, such as oxidative base damage. This unit describes alkaline comet assay procedures for assessing DNA strand breaks and oxidative base alterations. These methods can be applied in a variety of cells from in vitro and in vivo experiments, as well as human studies. © 2015 by John Wiley & Sons, Inc.

单细胞凝胶电泳,通常被称为彗星试验,是一种在单细胞水平上评估DNA损伤的简单而敏感的方法。它是遗传毒理学研究中的一项重要技术。彗星试验在碱性条件下进行(pH >13)被认为是鉴定具有遗传毒性活性的药剂的最佳版本。碱性彗星试验能够检测DNA双链断裂、单链断裂、碱不稳定位点、DNA-DNA/DNA-蛋白交联和不完全切除修复位点。在该过程中包含对病变特异性DNA修复酶的消化,可以检测各种DNA碱基改变,如氧化碱基损伤。本单元描述了评估DNA链断裂和氧化碱基改变的碱性彗星测定程序。这些方法可以应用于各种细胞的体外和体内实验,以及人体研究。©2015 by John Wiley &儿子,Inc。
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引用次数: 79
期刊
Current protocols in toxicology
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