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18F-FDG PET 摄取的良性肾上腺皮质腺瘤的特征。

Characteristics of benign adrenocortical adenomas with 18F-FDG PET accumulation.

机构信息

Department of Endocrinology, Hematology and Gerontology, Graduate School of Medicine, Chiba University, Chiba, Japan.

Department of Diabetes, Metabolism and Endocrinology, Chiba University Hospital, Chiba, Japan.

出版信息

Eur J Endocrinol. 2021 Jun 5;185(1):155-165. doi: 10.1530/EJE-20-1459.

Abstract

INTRODUCTION

Although 18F-FDG PET was originally developed to evaluate benign and malignant tumors, the frequency of detection of benign adrenocortical adenomas showing FDG-PET accumulation has increased. However, the details of FDG-PET-accumulated benign adrenocortical adenomas have not been elucidated.

METHODS

To elucidate the pathophysiology of FDG-PET-positive cortisol-producing adrenal tumors, we performed clinicopathological and genetic analyses of adrenocortical adenomas examing FDG-PET in 30 operated patients with unilateral cortisol-producing adrenal tumors (26 adrenal adenomas and 4 adrenal cancers).

RESULTS

All adrenocortical carcinomas and 17/26 (65%) benign adrenocortical adenomas showed high FDG accumulation (SUVmax ≥ 3). In adrenocortical adenomas with high FDG accumulation (SUVmax ≥ 3), SUVmax showed a positive correlation with the CT Hounsfield units. A higher SUVmax showed a clear black adenoma appearance with predominantly compact cells, which exhibited high T1 and T2 signals, a lack of signal drop on out-of-phase imaging on MRI, and less accumulation on 131-I adsterol scintigraphy. Furthermore, RNA-sequencing analysis revealed significant increases in the lysosomal and autophagy pathways and metabolic pathways, including glycolysis through glucose transporter (GLUT) 1 and 3, in black adenomas with high-level FDG accumulation.

DISCUSSION

A black adenoma is blackish due to lipofuscin, which accumulates as a result of damaged mitochondria or proteins that escape lysosomal degradation or autophagy. Since FDG in PET is taken up via GLUTs, alteration of the intracellular metabolic dynamics associated with mitochondrial damage in black adenomas may increase PET accumulation.

CONCLUSION

Black adrenal adenomas should be considered with adrenal tumors showing PET accumulation and low lipid contents.

摘要

简介

尽管 18F-FDG PET 最初是为了评估良性和恶性肿瘤而开发的,但显示 FDG-PET 聚集的良性肾上腺皮质腺瘤的检出率有所增加。然而,FDG 聚集的良性肾上腺皮质腺瘤的细节尚未阐明。

方法

为了阐明 FDG-PET 阳性皮质醇分泌性肾上腺肿瘤的病理生理学,我们对 30 例单侧皮质醇分泌性肾上腺肿瘤(26 例肾上腺腺瘤和 4 例肾上腺癌)患者进行了手术,并对其进行了 FDG-PET 检查,对肾上腺皮质腺瘤进行了临床病理和基因分析。

结果

所有肾上腺皮质癌和 26 例良性肾上腺皮质腺瘤中的 17 例(65%)均表现出高 FDG 摄取(SUVmax≥3)。在 FDG 摄取较高的肾上腺皮质腺瘤(SUVmax≥3)中,SUVmax 与 CT Hounsfield 单位呈正相关。较高的 SUVmax 表现为具有明显黑色外观的腺瘤,主要由致密细胞组成,在 MRI 上显示出高 T1 和 T2 信号,反相位成像上信号无下降,131I 去氢胆固醇闪烁扫描上摄取减少。此外,RNA 测序分析显示,在高水平 FDG 摄取的黑色腺瘤中,溶酶体和自噬途径以及代谢途径,包括通过葡萄糖转运蛋白(GLUT)1 和 3 的糖酵解途径,均显著增加。

讨论

黑色腺瘤由于脂褐素而呈现黑色,脂褐素是由于受损的线粒体或逃避溶酶体降解或自噬的蛋白质而积累的。由于 PET 中的 FDG 通过 GLUT 摄取,因此与黑色腺瘤中线粒体损伤相关的细胞内代谢动力学的改变可能会增加 PET 摄取。

结论

对于显示 PET 积聚和低脂质含量的肾上腺肿瘤,应考虑黑色肾上腺腺瘤。

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