CAS Key Laboratory for Biomedical Effects of Nanomaterials & Nanosafety, Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049, China.
Institute of Physical Science and Information Technology, Anhui University, Hefei 230601, China.
Cells. 2022 Nov 3;11(21):3478. doi: 10.3390/cells11213478.
(1) Background: Resisting anoikis is a vital and necessary characteristic of malignant cancer cells, but there is no existing quantification method. Herein, a sensitive probe for assessing anoikis resistance of cancer cells detached from the extracellular matrix was developed based on the aggregation-induced emission (AIE) of AIEgens. It has been reported that detached cancer cell endocytose activated integrin clusters, and in the endosome these clusters recruit and activate phosphorylate focal adhesion kinase (pFAK) in the cytoplasm to induce signaling that supports the growth of detached cancer cells. (2) Methods: We established a lost nest cell model of cancer cells and determined their ability to resist anoikis. The colocalization of the activated integrin, pFAK, and endosomes in model cells was observed and calculated. (3) Results: The fluorescence signal intensity of the probe was significantly higher than that of the integrin antibody in the model cells and the fluorescence signal of probe signal was better overlapped with labeled pFAK by fluorescence in endosomes in model cells. (4) Conclusions: We developed a quantitative multi-parametric image analysis program to calculate fluorescent intensity of the probe and antibodies against pFAK and Rab5 in the areas of colocalization. A positive correlation of fluorescence signal intensity between the probe and pFAK on the endosome was observed. Therefore, the probe was used to quantitatively evaluate resisting anoikis of different cancer cell lines under the lost nest condition.
(1)背景:抵抗失巢凋亡是恶性癌细胞的一个重要且必要的特征,但目前尚无现有的定量方法。在此,基于聚集诱导发光(AIE)特性,我们开发了一种用于评估从细胞外基质上脱离的癌细胞抗失巢凋亡能力的敏感探针。据报道,脱离的癌细胞内吞激活的整联蛋白簇,在内涵体中,这些簇募集并激活细胞质中的磷酸化粘着斑激酶(pFAK),从而诱导支持脱离癌细胞生长的信号。(2)方法:我们建立了癌细胞的失巢模型,并确定了它们抵抗失巢凋亡的能力。观察并计算了模型细胞中激活的整联蛋白、pFAK 和内涵体的共定位情况。(3)结果:探针的荧光信号强度明显高于模型细胞中的整联蛋白抗体,探针的荧光信号与模型细胞内涵体中标记的 pFAK 的荧光信号更好地重叠。(4)结论:我们开发了一种定量多参数图像分析程序,以计算探针和针对 pFAK 和 Rab5 的抗体在共定位区域的荧光强度。在内涵体中观察到探针和 pFAK 的荧光信号强度之间存在正相关关系。因此,该探针可用于定量评估不同癌细胞系在失巢条件下抵抗失巢凋亡的能力。