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On the relevance of precision autophagy flux control in vivo – Points of departure for clinical translation

机译:论精密自噬助焊剂控制在体内的相关性 - 临床翻译差点

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摘要

Macroautophagy (which we will call autophagy hereafter) is a critical intracellular bulk degradation system that is active at basal rates in eukaryotic cells. This process is embedded in the homeostasis of nutrient availability and cellular metabolic demands, degrading primarily long-lived proteins and specific organelles.. Autophagy is perturbed in many pathologies, and its manipulation to enhance or inhibit this pathway therapeutically has received considerable attention. Although better probes are being developed for a more precise readout of autophagic activity in vitro and increasingly in vivo, many questions remain. These center in particular around the accurate measurement of autophagic flux and its translation from the in vitro to the in vivo environment as well as its clinical application. In this review, we highlight key aspects that appear to contribute to stumbling blocks on the road toward clinical translation and discuss points of departure for reaching some of the desired goals. We discuss techniques that are well aligned with achieving desirable spatiotemporal resolution to gather data on autophagic flux in a multi-scale fashion, to better apply the existing tools that are based on single-cell analysis and to use them in the living organism. We assess how current techniques may be used for the establishment of autophagic flux standards or reference points and consider strategies for a conceptual approach on titrating autophagy inducers based on their effect on autophagic flux . Finally, we discuss potential solutions for inherent controls for autophagy analysis, so as to better discern systemic and tissue-specific autophagic flux in future clinical applications.
机译:巨自噬(我们将在下文称之为自噬)是一种细胞内的临界本体降解系统,其在真核细胞中基础量活性。这个过程被嵌入的养分利用率和细胞代谢需求的动态平衡,降低主要是长寿命的蛋白质和细胞器的具体..自噬扰动在许多疾病,它的操作,以增强或抑制该通路的治疗已得到相当的重视。虽然更好的探头被用于在体外自噬活动的更精确的读数和越来越多地在体内发达,很多问题依然存在。这些中心特别是约自噬通量的精确测量,以及它与体内环境以及其临床应用的翻译从体外。在这次审查中,我们强调的是似乎有助于绊脚石向临床转化的道路上,讨论的出发点达到一定的预期目标主要方面。我们讨论非常符合实现理想的时空分辨率,收集有关在多尺度时尚的自噬通量数据对准技术,以更好地应用是基于单细胞分析现有的工具,并在活的有机体使用它们。我们如何评估目前的技术可以被用于建立的自噬通量标准或参考点,并考虑战略上滴定基于其对自噬焊剂作用诱导自噬的概念方法。最后,我们讨论了自噬分析的内在控制潜在的解决方案,以便在今后的临床应用中更好地辨别系统性和组织特异性的自噬通量。

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