Department of Radiology, School of Clinical Medicine, University of Cambridge, Box 218 - Cambridge Biomedical Campus, Cambridge, CB2 0QQ, UK.
Cancer Research UK - Cambridge Institute, University of Cambridge, Li Ka Shing Centre, Robinson Way, Cambridge, CB2 0RE, UK.
Eur Radiol. 2023 Sep;33(9):6168-6178. doi: 10.1007/s00330-023-09572-6. Epub 2023 May 11.
To explore the relationship between indices of hypoxia and vascular function from F-fluoromisonidazole ([F]-FMISO)-PET/MRI with immunohistochemical markers of hypoxia and vascularity in oestrogen receptor-positive (ER +) breast cancer.
Women aged > 18 years with biopsy-confirmed, treatment-naïve primary ER + breast cancer underwent [F]-FMISO-PET/MRI prior to surgery. Parameters of vascular function were derived from DCE-MRI using the extended Tofts model, whilst hypoxia was assessed using the [F]-FMISO influx rate constant, K. Histological tumour sections were stained with CD31, hypoxia-inducible factor (HIF)-1α, and carbonic anhydrase IX (CAIX). The number of tumour microvessels, median vessel diameter, and microvessel density (MVD) were obtained from CD31 immunohistochemistry. HIF-1α and CAIX expression were assessed using histoscores obtained by multiplying the percentage of positive cells stained by the staining intensity. Regression analysis was used to study associations between imaging and immunohistochemistry variables.
Of the lesions examined, 14/22 (64%) were ductal cancers, grade 2 or 3 (19/22; 86%), with 17/22 (77%) HER2-negative. [F]-FMISO K associated negatively with vessel diameter (p = 0.03), MVD (p = 0.02), and CAIX expression (p = 0.002), whilst no significant relationships were found between DCE-MRI pharmacokinetic parameters and immunohistochemical variables. HIF-1α did not significantly associate with any PET/MR imaging indices.
Hypoxia measured by [F]-FMISO-PET was associated with increased CAIX expression, low MVD, and smaller vessel diameters in ER + breast cancer, further corroborating the link between inadequate vascularity and hypoxia in ER + breast cancer.
• Hypoxia, measured by [F]-FMISO-PET, was associated with low microvessel density and small vessel diameters, corroborating the link between inadequate vascularity and hypoxia in ER + breast cancer. • Increased CAIX expression was associated with higher levels of hypoxia measured by [F]-FMISO-PET. • Morphologic and functional abnormalities of the tumour microvasculature are the major determinants of hypoxia in cancers and support the previously reported perfusion-driven character of hypoxia in breast carcinomas.
探讨 F-氟代甲氧基异丁基异腈 ([F]-FMISO)-PET/MRI 中的缺氧指标与血管功能与雌激素受体阳性 (ER+)乳腺癌中缺氧和血管生成的免疫组织化学标志物之间的关系。
对 22 例经活检证实、未经治疗的原发性 ER+乳腺癌女性患者进行 [F]-FMISO-PET/MRI 检查,这些患者年龄均大于 18 岁,且正在接受手术治疗。通过扩展 Tofts 模型从 DCE-MRI 中获得血管功能参数,而缺氧则通过 [F]-FMISO 流入速率常数 K 来评估。对组织学肿瘤切片进行 CD31、缺氧诱导因子 (HIF)-1α 和碳酸酐酶 IX (CAIX) 染色。从 CD31 免疫组织化学中获得肿瘤微血管数量、中值血管直径和微血管密度 (MVD)。通过将染色强度乘以阳性细胞的百分比,获得 HIF-1α 和 CAIX 表达的组织学评分。使用回归分析研究影像学和免疫组织化学变量之间的相关性。
在检查的病变中,14/22(64%)为导管癌,2 级或 3 级(19/22;86%),17/22(77%)为 HER2 阴性。[F]-FMISO K 与血管直径(p=0.03)、MVD(p=0.02)和 CAIX 表达(p=0.002)呈负相关,而 DCE-MRI 药代动力学参数与免疫组织化学变量之间无显著相关性。HIF-1α 与任何 PET/MR 成像指标均无显著相关性。
ER+乳腺癌中,[F]-FMISO-PET 测量的缺氧与 CAIX 表达增加、MVD 低和血管直径小有关,进一步证实了 ER+乳腺癌中血管生成不足与缺氧之间的联系。
通过 [F]-FMISO-PET 测量的缺氧与 ER+乳腺癌中的低微血管密度和小血管直径有关,进一步证实了 ER+乳腺癌中血管生成不足与缺氧之间的联系。
CAIX 表达增加与 [F]-FMISO-PET 测量的缺氧水平升高有关。
肿瘤微血管形态和功能异常是癌症中缺氧的主要决定因素,支持了先前报道的乳腺癌中缺氧的灌注驱动特征。