Department of Pharmacy, Graduate School, Kyung Hee University, 26, Kyungheedae-ro, Dongdaemun-gu, Seoul, 02447, Republic of Korea.
Center for Theragnosis, Biomedical Research Institute, Korea Institute of Science and Technology, 5, Hwarang-ro 14-gil, Seongbuk-gu, Seoul, 02792, Republic of Korea.
Sci Rep. 2017 Nov 30;7(1):16635. doi: 10.1038/s41598-017-16653-2.
Apoptosis is one of the most important intracellular events in living cell, which is a programmed cell death interrelated with caspase enzyme activity for maintaining homeostasis in multicellular organisms. Therefore, direct apoptosis imaging of living cells can provide enormous advantages for diagnosis, drug discovery, and therapeutic monitoring in various diseases. However, a method of direct apoptosis imaging has not been fully validated, especially for live cells in in vitro and in vivo. Herein, we developed a new apoptosis imaging technology via a direct visualization of active caspase-3/-7 activity in living cells. For this, we synthesized a caspase-3/-7-specific cleavable peptide (KGDEVD) conjugated triacetylated N-azidoacetyl-D-mannosamine (Apo-S-AcManNAz), wherein the Apo-S-AcManNAz can be cleaved by the active caspase-3/-7 in live apoptotic cells and the cleaved AcManNAz molecules can further generate targetable azido groups (N) on the living cell surface. Importantly, the azido groups on the apoptotic tumor cells could be visualized with Cy5.5-conjugated dibenzylcyclooctyne (DBCO-Cy5.5) via bioorthogonal click chemistry in vitro cell culture condition and in vivo tumor-bearing mice. Therefore, our Apo-S-AcManNAz can be utilized for the further applications in tumor therapy as a monitoring tool for anticancer efficacy and optimization of anticancer new drugs in cell culture system and in tumor-bearing mice.
细胞凋亡是活细胞内最重要的细胞事件之一,它是一种与半胱天冬酶酶活性相关的程序性细胞死亡,对于维持多细胞生物体内的平衡具有重要意义。因此,直接对活细胞进行凋亡成像可以为各种疾病的诊断、药物发现和治疗监测提供巨大的优势。然而,一种直接进行凋亡成像的方法尚未得到充分验证,尤其是对于体外和体内的活细胞。在此,我们通过直接可视化活细胞中活性 caspase-3/-7 活性,开发了一种新的凋亡成像技术。为此,我们合成了一种 caspase-3/-7 特异性可切割肽(KGDEVD)与三乙酰化 N-叠氮乙酰基-D-甘露胺(Apo-S-AcManNAz)偶联,其中 Apo-S-AcManNAz 可被活凋亡细胞中的活性 caspase-3/-7 切割,而切割的 AcManNAz 分子可进一步在活细胞表面产生可靶向的叠氮基团(N)。重要的是,凋亡肿瘤细胞表面的叠氮基团可以通过体外细胞培养条件和荷瘤小鼠体内的生物正交点击化学,用 Cy5.5 标记的二苄基环辛炔(DBCO-Cy5.5)可视化。因此,我们的 Apo-S-AcManNAz 可作为监测抗癌疗效的工具,用于肿瘤治疗的进一步应用,并在细胞培养系统和荷瘤小鼠中优化抗癌新药。