光声成像在放射肿瘤学中的潜力
The Potential of Photoacoustic Imaging in Radiation Oncology.
作者信息
Lefebvre Thierry L, Brown Emma, Hacker Lina, Else Thomas, Oraiopoulou Mariam-Eleni, Tomaszewski Michal R, Jena Rajesh, Bohndiek Sarah E
机构信息
Department of Physics, University of Cambridge, Cambridge, United Kingdom.
Cancer Research UK Cambridge Institute, University of Cambridge, Cambridge, United Kingdom.
出版信息
Front Oncol. 2022 Mar 3;12:803777. doi: 10.3389/fonc.2022.803777. eCollection 2022.
Radiotherapy is recognized globally as a mainstay of treatment in most solid tumors and is essential in both curative and palliative settings. Ionizing radiation is frequently combined with surgery, either preoperatively or postoperatively, and with systemic chemotherapy. Recent advances in imaging have enabled precise targeting of solid lesions yet substantial intratumoral heterogeneity means that treatment planning and monitoring remains a clinical challenge as therapy response can take weeks to manifest on conventional imaging and early indications of progression can be misleading. Photoacoustic imaging (PAI) is an emerging modality for molecular imaging of cancer, enabling non-invasive assessment of endogenous tissue chromophores with optical contrast at unprecedented spatio-temporal resolution. Preclinical studies in mouse models have shown that PAI could be used to assess response to radiotherapy and chemoradiotherapy based on changes in the tumor vascular architecture and blood oxygen saturation, which are closely linked to tumor hypoxia. Given the strong relationship between hypoxia and radio-resistance, PAI assessment of the tumor microenvironment has the potential to be applied longitudinally during radiotherapy to detect resistance at much earlier time-points than currently achieved by size measurements and tailor treatments based on tumor oxygen availability and vascular heterogeneity. Here, we review the current state-of-the-art in PAI in the context of radiotherapy research. Based on these studies, we identify promising applications of PAI in radiation oncology and discuss the future potential and outstanding challenges in the development of translational PAI biomarkers of early response to radiotherapy.
放射治疗在全球范围内被公认为大多数实体瘤治疗的主要手段,在根治性和姑息性治疗中都至关重要。电离辐射经常与手术联合使用,无论是术前还是术后,也会与全身化疗联合使用。成像技术的最新进展使得能够精确靶向实体病变,但肿瘤内存在显著的异质性,这意味着治疗计划和监测仍然是一项临床挑战,因为治疗反应可能需要数周时间才能在传统成像上显现,而进展的早期迹象可能会产生误导。光声成像(PAI)是一种新兴的癌症分子成像模式,能够以前所未有的时空分辨率对具有光学对比度的内源性组织发色团进行非侵入性评估。在小鼠模型中的临床前研究表明,PAI可用于基于肿瘤血管结构和血氧饱和度的变化来评估对放射治疗和放化疗的反应,这些变化与肿瘤缺氧密切相关。鉴于缺氧与放射抗性之间的密切关系,PAI对肿瘤微环境的评估有可能在放射治疗期间进行纵向应用,以比目前通过尺寸测量更早的时间点检测抗性,并根据肿瘤氧可用性和血管异质性调整治疗方案。在此,我们在放射治疗研究的背景下综述了PAI的当前技术水平。基于这些研究,我们确定了PAI在放射肿瘤学中的有前景的应用,并讨论了在开发放射治疗早期反应的转化PAI生物标志物方面的未来潜力和突出挑战。
相似文献
Front Oncol. 2022-3-3
Front Physiol. 2022-10-17
Quant Imaging Med Surg. 2021-5
Biosensors (Basel). 2022-5-13
Adv Exp Med Biol. 2021
Contrast Media Mol Imaging. 2019-4-30
引用本文的文献
Photoacoustics. 2023-7-17
Biomed Opt Express. 2023-5-17
Cell Prolif. 2023-7
本文引用的文献
Nat Rev Clin Oncol. 2021-12
Clin Transl Radiat Oncol. 2021-4-17
Adv Sci (Weinh). 2021-7
Lancet. 2021-7-10
Biomed Opt Express. 2021-3-15
Exp Dermatol. 2021-11
Biomedicines. 2021-4-28