Department of Physics, Purdue University, West Lafayette, USA.
Division of Hematology/Oncology, Indiana University School of Medicine, Indianapolis, USA.
Sci Rep. 2024 Feb 8;14(1):2760. doi: 10.1038/s41598-024-52404-w.
Nearly half of cancer patients who receive standard-of-care treatments fail to respond to their first-line chemotherapy, demonstrating the pressing need for improved methods to select personalized cancer therapies. Low-coherence digital holography has the potential to fill this need by performing dynamic contrast OCT on living cancer biopsies treated ex vivo with anti-cancer therapeutics. Fluctuation spectroscopy of dynamic light scattering under conditions of holographic phase stability captures ultra-low Doppler frequency shifts down to 10 mHz caused by light scattering from intracellular motions. In the comparative preclinical/clinical trials presented here, a two-species (human and canine) and two-cancer (esophageal carcinoma and B-cell lymphoma) analysis of spectral phenotypes identifies a set of drug response characteristics that span species and cancer type. Spatial heterogeneity across a centimeter-scale patient biopsy sample is assessed by measuring multiple millimeter-scale sub-samples. Improved predictive performance is achieved for chemoresistance profiling by identifying red-shifted sub-samples that may indicate impaired metabolism and removing them from the prediction analysis. These results show potential for using biodynamic imaging for personalized selection of cancer therapy.
近一半接受标准治疗的癌症患者对一线化疗没有反应,这表明迫切需要改进方法来选择个性化的癌症治疗方法。低相干数字全息术有可能通过对用抗癌疗法进行离体处理的活癌症活检进行动态对比 OCT 来满足这一需求。在全息相位稳定条件下进行动态光散射的波动光谱学捕捉到了由细胞内运动引起的超低多普勒频移,低至 10 mHz。在本文呈现的比较临床前/临床试验中,对两种(人类和犬类)和两种癌症(食管癌和 B 细胞淋巴瘤)的光谱表型分析确定了一组跨越物种和癌症类型的药物反应特征。通过测量多个毫米级子样本来评估厘米级患者活检样本的空间异质性。通过识别可能表明代谢受损的红移子样本并将其从预测分析中删除,来提高对化学抗性分析的预测性能。这些结果表明,生物动力学成像有可能用于个性化选择癌症治疗。