DOI: 10.3390/biomedicines14102161 ISSN: 2227-9059

Dynamic Monitoring of CTCs and EVs to Predict Chemoimmunotherapy Efficacy in Lung Cancer

Chao Zhao, Lei Cheng, Jia Yu, Guanghui Gao, Menghang Yang, Fan Wu, Xuefei Li, Shengxiang Ren

Background: Circulating tumor cells (CTCs), programmed cell death-ligand 1 (PD-L1) positive CTCs (PD-L1+CTCs) and extracellular vesicles (EVs) are important biomarkers for predicting treatment efficacy. This study comprehensively investigated the factors used to forecast chemoimmunotherapy efficacy in advanced lung cancer. Methods: The CellSearch system, EVAnalyzer plugin and single-cell whole-exome sequencing (WES) were used to analyze these factors. Results: It was found that CTCs were highly detectable in advanced lung cancer. The median number of baseline CTCs was significantly lower in non-small cell lung cancer (NSCLC) than small cell lung cancer (SCLC) (3 vs. 38, p < 0.0001), as were PD-L1+CTCs (1 vs. 5, p = 0.0014). PD-L1+CTCs decreasing after two treatment circles was associated with superior ORR. Baseline median EV counts were elevated in NSCLC compared with SCLC (11,700 vs 1371, p = 0.017). Patients exhibiting divergent dynamic trends between EVs and CTC/PD-L1+CTCs demonstrated better treatment response. The combination of CTCs, PD-L1+CTCs and EVs improved predictive efficacy for both NSCLC and SCLC. CTC sequencing identified multiple pathogenic somatic variants, which might affect immunotherapy efficacy. Conclusions: Serial dynamic monitoring of CTCs, PD-L1+CTCs and EVs, as well as CTC sequencing, enables the early prediction of chemoimmunotherapy response and the discovery of mechanisms that affect immunotherapy efficacy in advanced lung cancer.