Purpose This study aimed to identify predictors of lateral lymph node metastasis (LLNM) and assess prognostic factors in patients with locally advanced low rectal cancer (LALRC), with the goal of informing optimal treatment strategies for LALRC.
Methods We retrospectively analyzed clinicopathological data from patients with LALRC who underwent lateral lymph node dissection without preoperative treatment between 2014 and 2023. The radiological criterion for LLNM was a short-axis diameter of ≥6 mm on magnetic resonance imaging (MRI).
Results Of 163 patients, 27 (16.6%) had pathological LLNM (pLLNM). Among 130 patients preoperatively classified as LLNM-negative, 5 (3.8%) were found to have pLLNM. Univariate and multivariate analyses showed that meeting the radiological LLNM criterion independently predicted pLLNM (odds ratio, 53.000; P<0.001). The accuracy, sensitivity, specificity, positive predictive value, and negative predictive value of this criterion were 90.2%, 81.5%, 91.9%, 66.7%, and 96.2%, respectively. In multivariate analyses, pLLNM was an independent risk factor for 3‑year relapse‑free survival. MRI‑detected extramural vascular invasion (mrEMVI) was independently associated with 3‑year relapse‑free survival, local recurrence‑free survival, and distant recurrence‑free survival.
Conclusion These radiological criteria may help clinicians develop personalized treatment plans for patients with LALRC. The high negative predictive value and specificity of LLNM assessment can assist in avoiding overtreatment in appropriate patients. Further evaluation is needed to define optimal management for mrEMVI‑positive cases.
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In Western countries, the gold-standard therapeutic strategy for rectal cancer is preoperative chemoradiotherapy (CRT) following total mesorectal excision (TME), without lateral lymph node dissection (LLND). However, preoperative CRT has recently been reported to be insufficient to control lateral lymph node recurrence in cases of enlarged lateral lymph nodes before CRT, and LLND is considered necessary in such cases. We performed a literature review on aspects of pelvic anatomy associated with rectal surgery and LLND, and then combined this information with our experience and knowledge of pelvic anatomy. In this review, drawing upon research using a 3-dimensional anatomical model and actual operative views, we aimed to clarify the essential anatomy for LLND. The LLND procedure was developed in Asian countries and can now be safely performed in terms of functional preservation. Nonetheless, the longer operative time, hemorrhage, and higher complication rates with TME accompanied by LLND than with TME alone indicate that LLND is still a challenging procedure. Laparoscopic or robotic LLND has been shown to be useful and is widely performed; however, without a sufficient understanding of anatomical landmarks, misrecognition of vessels and nerves often occurs. To perform safe and accurate LLND, understanding the landmarks of LLND is essential.
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Adenocarcinoma is a common histological type of ulcerative colitis-associated cancer (UCAC), whereas neuroendocrine carcinoma (NEC) is extremely rare. UCAC is generally diagnosed at an advanced stage, even with regular surveillance colonoscopy. A 41-year-old man with a 17-year history of UC began receiving surveillance colonoscopy at the age of 37 years; 2 years later, dysplasia was detected in the sigmoid colon, and he underwent colonoscopy every 3 to 6 months. Approximately 1.5 years thereafter, a flat adenocarcinoma lesion occurred in the rectum. Flat lesions with high-grade dysplasia were found in the sigmoid colon and surrounding area. The patient underwent laparoscopic total proctocolectomy and ileal pouch-anal anastomosis with ileostomy. Adenocarcinoma was diagnosed in the sigmoid colon and NEC in the rectum. One year postoperation, recurrence or metastasis was not evident. Regular surveillance colonoscopy is important in patients with long-term UC. A histological examination of UCAC might demonstrate NEC.
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