An acridone based fluorescent dye for lipid droplet tracking and cancer diagnosis

IF 3.9 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Dat Thanh Dinh , Chia-Ying Li , Min-Wei Wu , Chia-Feng Hsieh , Xuan-Yu Chen , Cheng-Chung Chang
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引用次数: 0

Abstract

Lipid droplets (LDs) are spherical organelles that localize in the cytosol of eukaryotic cells. Different proteins are embedded on the surface of LDs, so LDs play a vital role in the physiological activities of cells. The dysregulation of LDs is associated with various human diseases, such as diabetes and obesity. Therefore, it is essential to develop a fluorescent dye that labels LDs to detect and monitor illnesses. In this study, we developed the compound BDAA12C for staining LDs in cells. BDAA12C exhibits excellent LD specificity and low toxicity, enabling us to successfully stain and observe the fusion of LDs in A549 cancer cells. Furthermore, we also successfully distinguished A549 cancer cells and MRC-5 normal cells in a co-culture experiment and in normal and tumour tissues. Interestingly, we found different localizations of BDAA12C in well-fed and starved A549 cancer cells and consequently illustrated the transfer of fatty acids (FAs) from LDs to mitochondria to supply energy for β-oxidation upon starvation. Therefore, BDAA12C is a promising LD-targeted probe for cancer diagnosis and tracking lipid trafficking within cells.

一种基于吖啶酮的荧光染料,用于脂滴追踪和癌症诊断。
脂滴(LDs)是真核细胞胞体中的球形细胞器。脂滴表面嵌有不同的蛋白质,因此脂滴在细胞的生理活动中起着至关重要的作用。LDs 的失调与糖尿病和肥胖症等多种人类疾病有关。因此,开发一种能标记 LDs 的荧光染料来检测和监控疾病是非常必要的。在这项研究中,我们开发了用于染色细胞中 LDs 的化合物 BDAA12C。BDAA12C 具有出色的 LD 特异性和低毒性,使我们能够成功地染色和观察 A549 癌细胞中的 LD 融合。此外,我们还在共培养实验中以及正常组织和肿瘤组织中成功区分了 A549 癌细胞和 MRC-5 正常细胞。有趣的是,我们发现 BDAA12C 在饱食和饥饿的 A549 癌细胞中的定位不同,从而说明了饥饿时脂肪酸(FAs)从 LDs 转移到线粒体,为 β 氧化提供能量。因此,BDAA12C 是一种很有前景的 LD 靶向探针,可用于癌症诊断和跟踪细胞内的脂质迁移。
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来源期刊
CiteScore
12.10
自引率
1.90%
发文量
161
审稿时长
37 days
期刊介绍: The Journal of Photochemistry and Photobiology B: Biology provides a forum for the publication of papers relating to the various aspects of photobiology, as well as a means for communication in this multidisciplinary field. The scope includes: - Bioluminescence - Chronobiology - DNA repair - Environmental photobiology - Nanotechnology in photobiology - Photocarcinogenesis - Photochemistry of biomolecules - Photodynamic therapy - Photomedicine - Photomorphogenesis - Photomovement - Photoreception - Photosensitization - Photosynthesis - Phototechnology - Spectroscopy of biological systems - UV and visible radiation effects and vision.
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