Department of Physics, Chemistry and Biology, Linköping University, Linköping 58183, Sweden.
School of Chemistry and Chemical Engineering, Anhui University, Hefei 230601, China.
Anal Chem. 2020 Mar 3;92(5):3613-3619. doi: 10.1021/acs.analchem.9b04410. Epub 2020 Feb 24.
Intracellular lipid metabolism occurs in lipid droplets (LDs), which is critical to the survival of cells. Imaging LDs is an intuitive way to understand their physiology in live cells. However, this is limited by the availability of specific probes that can properly visualize LDs in vivo. Here, an LDs-specific red-emitting probe is proposed to address this need, which is not merely with an ultrahigh signal-to-noise (S/N) ratio and a large Stokes shift (up to 214 nm) but also with superior resistance to photobleaching. The probe has been successfully applied to real-time tracking of intracellular LDs behaviors, including fusion, migration, and lipophagy processes. We deem that the proposed probe here offers a new possibility for deeper understanding of LDs-associated behaviors, elucidation of their roles and mechanisms in cellular metabolism, and determination of the transition between adaptive lipid storage and lipotoxicity as well.
细胞内脂质代谢发生在脂滴(LDs)中,这对细胞的存活至关重要。对 LDs 进行成像,是直观了解活细胞中 LDs 生理学的一种方法。然而,这受到可用的特异性探针的限制,这些探针可以在体内适当地可视化 LDs。在这里,提出了一种 LDs 特异性的红色发射探针来满足这一需求,该探针不仅具有超高的信噪比(S/N)和大的斯托克斯位移(高达 214nm),而且还具有出色的抗光漂白性。该探针已成功应用于实时跟踪细胞内 LDs 的行为,包括融合、迁移和噬脂过程。我们认为,这里提出的探针为更深入地了解 LDs 相关行为、阐明它们在细胞代谢中的作用和机制以及确定适应性脂质储存和脂毒性之间的转变提供了新的可能性。