Zhihao Ye, Mengyang Song, Zhenyang Ji, Junyu Chen, Zongxiu Nie, Yuze Li
Given the invasiveness of colonoscopy and the limited sensitivity and specificity of carcinoembryonic antigen for colon cancer detection, we developed a laser desorption/ionization mass spectrometry (LDI-MS) method based on a polyethersulfone film-based laser-induced graphene (PES-LIG) array. The PES-LIG is fabricated by one-step CO2 laser scribing on a PES film and can be directly used as an LDI substrate without any modification. Its layered structure facilitates the desorption/ionization of small-molecule metabolites, enabling uniform detection (RSD = 4.12%) with fmol-level sensitivity, high salt tolerance (S/N = 5319.8 for 1 nmol cellobiose in saturated NaCl solution), and low background. This method requires no matrix mixing, and a single circular LIG spot of 3 mm diameter can be produced in only ∼12 s. In a single experiment, a single PES film (76 mm × 25 mm) yielded a total of 94 LIG spots, with a material cost of only ∼0.04 USD. Thus, this approach enables rapid and high-throughput mass spectrometric analysis. Through computer-controlled laser scanning, PES-LIG arrays can be rapidly prepared and were applied to serum metabolomics of colon cancer. A total of 209 samples (106 colon cancer patients and 103 age-matched healthy controls) were analyzed, and 18 metabolites exhibited significant intergroup differences, revealing colon cancer-associated metabolic reprogramming. A neural network model constructed from these metabolic fingerprints achieved a diagnostic accuracy of 98.3% in blind validation. This work provides a low-cost, high-throughput strategy for non-invasive detection of colon cancer and offers a new high-performance substrate for LDI-MS technology.