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胶质细胞激活正电子发射断层扫描成像在乳腺癌脑转移瘤放射治疗中的应用

Glial activation positron emission tomography imaging in radiation treatment of breast cancer brain metastases.

作者信息

Badiuk Sawyer Rhae, Thiessen Jonathan D, Maleki Vareki Saman, Foster Paula J, Chen Jeff Z, Wong Eugene

机构信息

Department of Medical Biophysics, Schulich School of Medicine and Dentistry, University of Western Ontario, London, ON N6A 3K7, Canada.

Department of Medical Imaging, University of Western Ontario, London, ON N6A 3K7, Canada.

出版信息

Phys Imaging Radiat Oncol. 2022 Mar 1;21:115-122. doi: 10.1016/j.phro.2022.02.016. eCollection 2022 Jan.

Abstract

Brain metastases affect more breast cancer patients than ever before due to increased overall patient survival with improved molecularly targeted treatments. Approximately 25-34% of breast cancer patients develop brain metastases in their lifetime. Due to the blood-brain barrier (BBB), the standard treatment for breast cancer brain metastases (BCBM) is surgery, stereotactic radiosurgery (SRS) and/or whole brain radiation therapy (WBRT). At the cost of cognitive side effects, WBRT has proven efficacy in treating brain metastases when used with local therapies such as SRS and surgery. This review investigated the potential use of glial activation positron emission tomography (PET) imaging for radiation treatment of BCBM. In order to put these studies into context, we provided background on current radiation treatment approaches for BCBM, our current understanding of the brain microenvironment, its interaction with the peripheral immune system, and alterations in the brain microenvironment by BCBM and radiation. We summarized preclinical literature on the interactions between glial activation and cognition and clinical studies using translocator protein (TSPO) PET to image glial activation in the context of neurological diseases. TSPO-PET is not employed clinically in assessing and guiding cancer therapies. However, it has gained traction in preclinical studies where glial activation was investigated from primary brain cancer, metastases and radiation treatments. Novel glial activation PET imaging and its applications in preclinical studies using breast cancer models and glial immunohistochemistry are highlighted. Lastly, we discuss the potential clinical application of glial activation imaging to improve the therapeutic ratio of radiation treatments for BCBM.

摘要

由于分子靶向治疗的改进提高了患者的总体生存率,脑转移影响的乳腺癌患者比以往任何时候都多。大约25%-34%的乳腺癌患者在其一生中会发生脑转移。由于血脑屏障(BBB),乳腺癌脑转移(BCBM)的标准治疗方法是手术、立体定向放射外科(SRS)和/或全脑放射治疗(WBRT)。以认知副作用为代价,WBRT与SRS和手术等局部治疗联合使用时,已被证明在治疗脑转移方面有效。本综述研究了胶质细胞激活正电子发射断层扫描(PET)成像在BCBM放射治疗中的潜在应用。为了将这些研究置于背景中,我们提供了BCBM当前放射治疗方法的背景信息,我们对脑微环境的当前理解、其与外周免疫系统的相互作用,以及BCBM和放射对脑微环境的改变。我们总结了关于胶质细胞激活与认知之间相互作用的临床前文献,以及使用转位蛋白(TSPO)PET在神经疾病背景下对胶质细胞激活进行成像的临床研究。TSPO-PET在临床评估和指导癌症治疗中未被采用。然而,它在临床前研究中受到了关注,在这些研究中,从原发性脑癌、转移瘤和放射治疗方面研究了胶质细胞激活。重点介绍了新型胶质细胞激活PET成像及其在使用乳腺癌模型和胶质细胞免疫组织化学的临床前研究中的应用。最后,我们讨论了胶质细胞激活成像在提高BCBM放射治疗疗效比方面的潜在临床应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/406c/8961463/f31050d89fbb/gr1.jpg

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