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用罗莫单抗治疗的放疗相关骨盆不全性骨折:L1和L5椎体CT衰减变化过程

Radiotherapy-Associated Pelvic Insufficiency Fracture Treated by Romosozumab: Course of CT Attenuations at L1 and L5.

作者信息

Schneider Gary K, Ing Steven W

机构信息

Endocrinology, The Ohio State University Wexner Medical Center Division of Endocrinology Diabetes and Metabolism, Columbus, 43210 OH, USA.

出版信息

J Endocr Soc. 2022 Oct 10;6(12):bvac152. doi: 10.1210/jendso/bvac152. eCollection 2022 Oct 26.

Abstract

Pelvic radiation therapy (RT) is a risk factor for pelvic insufficiency fracture, which may be accompanied by significant pain, decreased self-sufficiency, and impaired mobility. Assessment of bone density with "opportunistic" computed tomography (CT) attenuation of the L1 vertebral body can be used as a surrogate for dual-energy x-ray absorptiometry (DXA) scan and potentially be useful to follow bone changes in cancer patients who undergo surveillance CT imaging. The following is a case of a 60-year-old female who suffered a pelvic insufficiency fracture, after receiving chemotherapy and pelvic RT for endometrial cancer, for which she was treated with romosozumab, a sclerostin inhibitor used for postmenopausal women at high risk for insufficiency or fragility fracture. CT attenuation of the L1 and L5 vertebral bodies were measured prior to chemoradiation therapy, post-therapy, and before and after treatment with romosozumab. Pelvic RT was associated with declining CT attenuation, greater in magnitude at L5 vs L1 vertebral body, while treatment with romosozumab was associated with increase to baseline at L1, and improvement but not return to baseline at L5.

摘要

盆腔放射治疗(RT)是盆腔不全骨折的一个危险因素,盆腔不全骨折可能伴有严重疼痛、生活自理能力下降和行动不便。通过“机会性”计算机断层扫描(CT)对L1椎体衰减进行骨密度评估,可作为双能X线吸收法(DXA)扫描的替代方法,可能有助于对接受监测CT成像的癌症患者的骨质变化进行跟踪。以下是一名60岁女性的病例,该女性在接受子宫内膜癌化疗和盆腔RT后发生了盆腔不全骨折,她接受了罗莫单抗治疗,罗莫单抗是一种用于有不全或脆性骨折高风险的绝经后女性的硬化蛋白抑制剂。在放化疗前、治疗后以及使用罗莫单抗治疗前后,测量了L1和L5椎体的CT衰减。盆腔RT与CT衰减下降有关,L5椎体的下降幅度大于L1椎体,而使用罗莫单抗治疗与L1椎体的CT衰减增加至基线水平有关,L5椎体的CT衰减有所改善但未恢复至基线水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e09/9620966/32f2ca72d9cd/bvac152f1.jpg

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