Lu Chen, Shu Sun, Yujia Liu, Liehao Jiang, Cuiyun Wu, Ting Liu, Yujiao Zhao, Yuwei Liu, Lu Liu, Qi Wang, Xiaowei Zheng, Ping Huang
The zPDX model provides a rapid, efficient, clinically applicable platform for predicting metastasis and evaluating platinum-based therapy responses in HNSCC, facilitating the design of scientifically grounded personalized treatment.
BACKGROUND: Head and neck squamous cell carcinoma (HNSCC) is characterized by clinically undetectable early metastasis and a poor prognosis at locally advanced and recurrent metastatic stages. Platinum-based resistance remains a major limitation to treatment efficacy. Currently, no reliable biomarkers are available to identify lymph node metastasis or to predict therapeutic sensitivity. Therefore, this study aimed to develop a predictive model to address these clinical challenges.
METHODS: Four cell lines (CAL-27, FaDu, Leuk1, NOEC) were employed to establish zebrafish cell-derived xenograft (zCDX) models and assess the differential metastatic potential. Surgical or biopsy samples from, respectively, 20 and 14 HNSCC patients were used for building and validating the zebrafish patient-derived xenograft (zPDX) models. Cisplatin-sensitive HNSCC cell lines (CAL-27 and FaDu) and their cisplatin-resistant sublines (CAL-27-DDP and FaDu-DDP) were established, and the differential responses to cisplatin were evaluated in both murine and zCDX models. Additionally, to assess the patient-specific therapeutic efficacy of cisplatin, zPDX models were generated from four patient-derived surgical specimens and a supplementary biopsy for preliminary validation.
RESULTS: The zebrafish xenograft model recapitulated the invasive phenotype of the HNSCC cell lines. The model distinguished between metastatic and non-metastatic disease with high accuracy (AUC = 0.98). It faithfully reproduced the cisplatin sensitivity and resistance patterns identified in corresponding in vitro and murine models. Moreover, it showed strong concordance with patient-specific cisplatin responses.
CONCLUSIONS: The zPDX model provides a rapid, efficient, clinically applicable platform for predicting metastasis and evaluating platinum-based therapy responses in HNSCC, facilitating the design of scientifically grounded personalized treatment.