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Original Research

Value of Fluorodeoxyglucose Positron Emission Tomography/Computed Tomography and Sentinel Lymph Node Biopsy in Endometrial Cancer Patients: A Prospective Study

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Abstract

The aim of this study is to define the role of preoperative positron emission tomography/computed tomography (PET/CT) scan and sentinel lymph node (SLN) biopsy for nodal metastasis detection in Endometrial Cancer (EC) patients. From January 2014 to August 2016 patients affected by EC scheduled for surgery underwent PET/CT scan and SLN mapping with indocyanine-green. Patients with suspicious lymph nodes at FDG-PET/CT underwent selective pelvic lymphadenectomy. In case of undetectable SLN, no further lymphadenectomy was performed if PET/CT scan was negative. Basic descriptive statistics were used to describe outcomes. A total of 83 patients were enrolled in the study. PET/CT scan was suggestive of nodal involvement in 15 patients. SLN were detected bilaterally in 78% of patients. Detection rate was influenced by patients’ BMI and surgical learning curve. Five patients were node-positive: all of these had hypermetabolic nodes on PET/CT scan; in one patient SLN was not detected. Ten out of 15 patients with suspicious nodes on PET/CT scan were node-negative. After a median follow up of 24 months all patients are alive. Four patients experienced recurrent disease. No nodal relapse was recorded. Lymphatic mapping with sentinel node biopsy is able to reduce morbidity associated with pelvic lymphadenectomy. Sentinel node assessment is a feasible and appealing procedure and should be performed in a specialized center. Detection rate strongly improves with learning curve, while is reduced in morbidly obese patients. PET/CT scan shows high sensitivity but moderate specificity for nodal metastasis and may help to avoid nodal dissection in patients with sentinel node mapping failure.

Disclosure statement

The authors report no conflicts of interest. The authors alone are responsible for the content and writing of the paper.

Additional information

Funding

SAPIENZA University of Rome grant C26A13R8S5 supported the time and facilities of PI and VDD.

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