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Framing next-generation imaging questions: Outstanding problems that must be addressed if we are to understand cell biology

机译:框架下一代成像问题:如果我们要理解细胞生物学,必须解决的出色问题

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It is clear that the enormous variety of imaging technologies particularly those directed towards single cells have transformed our understanding of how living cells function. It is also evident that this field of study has matured to the extent that bioimaging is itself almost a self-standing discipline. There remains, however, quite profound problems both in terms of the imaging technologies themselves and also those that are presented to us by cell biology. We must become more aware that imaging protocols may modify the processes we are observing, there is growing body of evidence for example, that large photon dosages associated with eg stimulated emission depletion imaging or PALM/STORM imaging to a region of a single living cells can lead to cellular damage or modification of molecular behavior in the vicinity of the laser irradiation. This potential problem is related to both high intensity and long exposure times. Similarly, some techniques that operate towards the edge of present detection sensitivities (eg single molecule techniques) requiring extended illumination times necessary to acquire an image are also subject to some concerns that the measurement is modifying the process under scrutiny. Another problem that is becoming the subject of greater awareness is that the attachment of a photoprotein to a protein of interest (PoI) may lead to modified behaviour of the PoI or even other protein that are affected by the augmented exposure of the photoprotein-PoI construct. It should be emphasised, however, that these foregoing comments in no way represent any criticism of the profound contribution the originators of these techniques have made, they are made simply to allow us to formulate a ‘wish-list’ for our next generation imaging needs.
机译:很显然,在种类繁多的成像技术尤其是那些针对单个细胞的已经改变了我们的活细胞是如何发挥作用的理解。这也是明显的是,这一研究领域已经成熟的程度,生物成像本身几乎是一个自立的自律。但是仍然存在,自己比较深刻的问题无论是在成像技术方面,以及那些由细胞生物学呈现在我们面前。我们必须更加意识到,成像协议可以修改我们所观察的过程中,存在例如证据越来越多,这与如相关的大的光子剂量受激发射损耗成像或PALM / STORM成像到单个活细胞的区域可导致在激光照射部附近的细胞损伤或分子的行为的修改。这个潜在的问题是关系到两个高强度和长的曝光时间。类似地,一些朝向本检测灵敏度的边缘操作的技术(例如,单分子技术)需要延长必要照射时间来获取图像也受到一些关注的是,测量正在修改受到审查过程中。正在成为的认识对象的另一个问题是一个发光蛋白到的兴趣点(POI)的蛋白质的附着可以导致POI的改性行为或甚至其他蛋白是由发光蛋白-POI构建体的增强曝光影响。然而,应当强调的是,绝不上述这些意见代表了这些技术的原创者作出了深刻的贡献的任何批评,它们是由简单的,让我们制定一个“愿望清单”为我们的下一代成像需求。

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