State Key Laboratory of Crystal Materials, Shandong University, Jinan 250100, P. R. China.
Shenzhen Research Institute of Shandong University, Shenzhen 518057, P. R. China.
Anal Chem. 2022 Aug 2;94(30):10676-10684. doi: 10.1021/acs.analchem.2c00964. Epub 2022 Jul 19.
Lipid droplets (LDs) containing cytosolic and nuclear LDs have recently received increasing attention because of their diverse biological roles in living systems. However, developing fluorescent probes for super-resolution visualization of these subcellular LDs still remains challenging due to insufficient fluorescence brightness and poor nuclear membrane permeability. Herein, we rationally synthesized a series of ultrabright solvatochromic fluorescent probes based on benzoboranils (BBAs) for LD-specific super-resolution imaging using structured illumination microscopy (SIM). The rigidly structured probes exhibit ultrahigh fluorescence quantum yields of up to 99.9% in low-polar solvents. They also show more significant fluorescence enhancements in lipid environments than commercial LD probes. Owing to these excellent merits, our lipophilic fluorescent probes can specifically light up subcellular LDs at ultralow concentrations down to 10 nM. Further use of BBA-CF for super-resolution SIM imaging of cytosolic and nuclear LDs and their fusion process was successfully achieved. The unprecedented spatial resolution for nuclear LDs with an FWHM value of 142 nm was also acquired. Collectively, our ultrabright fluorescent probes hold tremendous potential to unveil the mysterious roles of cytosolic and nuclear LDs in biological research using SIM.
脂质滴 (LDs) 含有细胞质和核 LDs,由于它们在生命系统中的多种生物学作用,最近受到了越来越多的关注。然而,由于荧光亮度不足和核膜通透性差,开发用于超分辨率可视化这些亚细胞 LDs 的荧光探针仍然具有挑战性。在此,我们合理合成了一系列基于苯并硼烷 (BBA) 的超亮溶剂变色荧光探针,用于使用结构光照明显微镜 (SIM) 对 LD 进行特异性超分辨率成像。刚性结构的探针在低极性溶剂中表现出高达 99.9%的超高荧光量子产率。它们在脂质环境中的荧光增强也比商业 LD 探针更为显著。由于这些优异的特性,我们的亲脂性荧光探针可以在超低浓度下(低至 10 nM)特异性地点亮亚细胞 LDs。进一步使用 BBA-CF 成功实现了细胞质和核 LDs 及其融合过程的超分辨率 SIM 成像。还获得了核 LDs 的前所未有的空间分辨率,半峰全宽 (FWHM) 值为 142nm。总之,我们的超亮荧光探针具有巨大的潜力,可以利用 SIM 揭示细胞质和核 LDs 在生物学研究中的神秘作用。