Caltech Optical Imaging Laboratory Andrew and Peggy Cherng Department of Medical Engineering California Institute of Technology Pasadena CA 91125 USA.
Division of Surgical Oncology Department of Surgery City of Hope Comprehensive Cancer Center Duarte CA 91010 USA.
Adv Sci (Weinh). 2021 Feb 23;8(7):2003396. doi: 10.1002/advs.202003396. eCollection 2021 Apr.
Neoadjuvant chemotherapy (NAC) has contributed to improving breast cancer outcomes, and it would ideally reduce the need for definitive breast surgery in patients who have no residual cancer after NAC treatment. However, there is no reliable noninvasive imaging modality accepted as the routine method to assess response to NAC. Because of the inability to detect complete response, post-NAC surgery remains the standard of care. To overcome this limitation, a single-breath-hold photoacoustic computed tomography (SBH-PACT) system is developed to provide contrast similar to that of contrast-enhanced magnetic resonance imaging, but with much higher spatial and temporal resolution and without injection of contrast chemicals. SBH-PACT images breast cancer patients at three time points: before, during, and after NAC. The analysis of tumor size, blood vascular density, and irregularity in the distribution and morphology of the blood vessels on SBH-PACT accurately identifies response to NAC as confirmed by the histopathological diagnosis. SBH-PACT shows its near-term potential as a diagnostic tool for assessing breast cancer response to systemic treatment by noninvasively measuring the changes in cancer-associated angiogenesis. Further development of SBH-PACT may also enable serial imaging, rather than the use of current invasive biopsies, to diagnose and follow indeterminate breast lesions.
新辅助化疗(NAC)有助于改善乳腺癌的治疗效果,它理想情况下可以减少 NAC 治疗后无残留癌症患者进行确定性乳房手术的需求。然而,目前还没有被广泛接受的可靠的无创影像学方法作为评估 NAC 反应的常规方法。由于无法检测到完全缓解,因此 post-NAC 手术仍然是标准的治疗方法。为了克服这一局限性,开发了一种单次屏气光声计算机断层扫描(SBH-PACT)系统,该系统提供的对比度类似于对比增强磁共振成像,但具有更高的空间和时间分辨率,且无需注射对比化学物质。SBH-PACT 在三个时间点对乳腺癌患者进行成像:NAC 治疗前、治疗中和治疗后。通过分析肿瘤大小、血管密度以及血管分布和形态的不规则性,SBH-PACT 可以准确识别 NAC 的反应,其结果通过组织病理学诊断得到了证实。SBH-PACT 显示出其作为一种通过非侵入性测量癌症相关血管生成的变化来评估全身治疗对乳腺癌反应的诊断工具的近期潜力。SBH-PACT 的进一步发展也可能使我们能够通过连续成像来诊断和随访不确定的乳腺病变,而不是使用目前的有创活检。