School of Instrument Science and Opto Electronics Engineering of Beijing Information Science & Technology University, Beijing, China.
Med-X Research Institute and School of Biomedical Engineering, Shanghai Jiao Tong University, Shanghai, China.
J Biophotonics. 2024 Mar;17(3):e202300405. doi: 10.1002/jbio.202300405. Epub 2023 Dec 27.
A major cause of death in cancer patients is distant metastasis of tumors, in which circulating tumor cells (CTCs) are an important marker. Photoacoustic flow cytometry (PAFC) can monitor CTCs in real time, non-invasively, and label-free; we built a PAFC system and validated the feasibility of PAFC for monitoring CTCs using in vivo animal experiments. By cultivating heavily-pigmented and moderately-pigmented melanoma cells, more CTCs were detected in mice inoculated with moderately-pigmented tumor cells, resulting in more distant metastases and poorer survival status. Tumor cells with lower melanin content may produce more CTCs, increasing the risk of metastasis. CTC melanin content may be down-regulated during the metastatic which may be a potential indicator for assessing the risk of melanoma metastasis. In conclusion, PAFC can be used to assess the risk of melanoma metastasis by dynamically monitoring the number of CTCs and the CTC melanin content in future clinical diagnoses.
癌症患者死亡的一个主要原因是肿瘤的远处转移,其中循环肿瘤细胞(CTCs)是一个重要的标志物。光声流式细胞术(PAFC)可以实时、非侵入性和无标记地监测 CTCs;我们构建了一个 PAFC 系统,并通过体内动物实验验证了 PAFC 监测 CTCs 的可行性。通过培养高色素和中等色素黑色素瘤细胞,在接种中等色素肿瘤细胞的小鼠中检测到更多的 CTCs,导致更多的远处转移和更差的生存状态。黑色素含量较低的肿瘤细胞可能会产生更多的 CTCs,增加转移的风险。转移过程中 CTC 黑色素含量可能会下调,这可能是评估黑色素瘤转移风险的潜在指标。总之,PAFC 可以通过动态监测 CTC 的数量和 CTC 黑色素含量来评估黑色素瘤转移的风险,在未来的临床诊断中具有应用价值。