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区域脑葡萄糖代谢受生酮饮食影响的差异:一项人类半定量正电子发射断层扫描研究。

Regional brain glucose metabolism is differentially affected by ketogenic diet: a human semiquantitative positron emission tomography.

机构信息

APHM, CNRS, Centrale Marseille, Institut Fresnel, AP-HM, La Timone Hospital, CERIMED, Nuclear Medicine Department, Aix Marseille Univ, Marseille, France.

Service Central de Biophysique Et Médecine Nucléaire, Hôpital de La Timone, 264 Rue Saint Pierre, 13005, Marseille, France.

出版信息

Eur J Nucl Med Mol Imaging. 2023 Jun;50(7):2047-2055. doi: 10.1007/s00259-023-06156-w. Epub 2023 Mar 3.

Abstract

PURPOSE

Ketogenic diet (KD) is recommended to avoid intense [F]FDG myocardial physiologic uptake in PET imaging. Neuroprotective and anti-seizure effects of KD have been suggested, but their mechanisms remain to be elucidated. This [F]FDG PET study aims to evaluate the effect of KD on glucose brain metabolism.

METHOD

Subjects who underwent KD prior to whole-body and brain [F]FDG PET between January 2019 and December 2020 in our department for suspected endocarditis were retrospectively included. Myocardial glucose suppression (MGS) on whole-body PET was analyzed. Patients with brain abnormalities were excluded. Thirty-four subjects with MGS (mean age: 61.8 ± 17.2 years) were included in the KD population, and 14 subjects without MGS were considered for a partial KD group (mean age: 62.3 ± 15.1 years). Brain SUVmax was first compared between these two KD groups to determine possible global uptake difference. Semiquantitative voxel-based intergroup analyses were secondarily performed to determine possible inter-regional differences by comparing KD groups with and without MGS, separately, to 27 healthy subjects fasting for at least 6 h (mean age of 62.4 ± 10.9 years), and KD groups between them (p-voxel < 0.001, and p-cluster < 0.05, FWE-corrected).

RESULTS

A 20% lower brain SUVmax was found in subjects under KD with MGS in comparison to those without MGS (Student's t-test, p = 0.02). Whole-brain voxel-based intergroup analysis revealed that patients under KD with and without MGS had relative hypermetabolism of limbic regions including medial temporal cortices and cerebellum lobes and relative hypometabolism of bilateral posterior regions (occipital), without significant difference between them.

CONCLUSION

KD globally reduces brain glucose metabolism but with regional differences, requiring special attention to clinical interpretation. On a pathophysiological perspective, these findings could help understand underlying neurological effects of KD through possible decrease of oxidative stress in posterior regions and functional compensation in the limbic regions.

摘要

目的

推荐生酮饮食(KD)以避免正电子发射断层扫描(PET)成像中强烈的[F]FDG 心肌生理性摄取。KD 具有神经保护和抗惊厥作用,但机制仍需阐明。本[F]FDG PET 研究旨在评估 KD 对葡萄糖脑代谢的影响。

方法

回顾性纳入 2019 年 1 月至 2020 年 12 月期间因疑似心内膜炎在我科行全身和脑部[F]FDG PET 检查并在检查前接受 KD 的患者。分析全身 PET 上的心肌葡萄糖抑制(MGS)。排除脑部异常的患者。34 例 MGS 患者(平均年龄:61.8±17.2 岁)纳入 KD 组,14 例无 MGS 的患者被认为是部分 KD 组(平均年龄:62.3±15.1 岁)。首先比较这两组 KD 患者的脑 SUVmax,以确定可能的总体摄取差异。其次,通过比较 KD 组与无 MGS 的 KD 组,分别与 27 名禁食至少 6 小时的健康受试者(平均年龄 62.4±10.9 岁)和 KD 组进行半定量体素组间分析,确定可能的区域性差异(体素 p<0.001,簇 p<0.05,FWE 校正)。

结果

与无 MGS 的 KD 患者相比,有 MGS 的 KD 患者脑 SUVmax 低 20%(Student's t 检验,p=0.02)。全脑体素组间分析显示,有和无 MGS 的 KD 患者的边缘区域(包括内侧颞叶皮质和小脑叶)相对代谢亢进,双侧后区(枕叶)相对代谢低下,但两组之间无显著差异。

结论

KD 总体上降低脑葡萄糖代谢,但存在区域性差异,需要特别注意临床解释。从病理生理角度来看,这些发现可能有助于通过后部区域氧化应激的降低和边缘区域的功能代偿来理解 KD 的潜在神经效应。

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