Background <p><sup>111</sup>In-pentetreotide imaging remains used for pre-treatment screening in peptide receptor radionuclide therapy (PRRT) in regions where somatostatin receptor (SSTR)-PET tracers are clinically unavailable. Post-treatment <sup>177</sup>Lu-DOTATATE imaging at the first PRRT cycle serves as a baseline for response assessment on subsequent post-treatment imaging, paralleling the role of pre-treatment <sup>111</sup>In-pentetreotide imaging. However, differences between these SSTR scans have not been reported. This study aims to compare <sup>111</sup>In-pentetreotide and <sup>177</sup>Lu-DOTATATE imaging, focusing on lesion uptake and numbers.</p> Methods <p>This retrospective, single-center study included patients with neuroendocrine tumors (NETs) who underwent PRRT at our hospital. Planar and SPECT/CT of pre-treatment <sup>111</sup>In-pentetreotide and post-treatment <sup>177</sup>Lu-DOTATATE imaging at the first PRRT cycle were analyzed. For visual analysis, the number of SSTR-positive (Krenning score ≥ 2) lesions was counted for each tracer. For quantitative analysis, up to three representative SSTR-positive lesions per patient were selected, and the maximum standardized uptake value (SUVmax) and tumor-to-background (T/B) ratio were measured. Wilcoxon signed-rank test was used to compare lesion counts and uptake parameters.</p> Results <p>A total of 10 patients and 28 lesions were included. The median interval between <sup>111</sup>In-pentetreotide and <sup>177</sup>Lu-DOTATATE imaging was 43&#xa0;days. <sup>177</sup>Lu-DOTATATE imaging detected significantly more lesions than <sup>111</sup>In-pentetreotide on both planar (median 10 vs. 6.5 lesions, <i>p</i> = 0.009) and SPECT/CT (median 13.5 vs. 8 lesions, <i>p</i> = 0.014). Lesion uptake was higher with <sup>177</sup>Lu-DOTATATE, with SUVmax (median 4.5 vs. 2.9, <i>p</i> &lt; 0.001) and T/B ratios (median 13.9 vs. 4.7, <i>p</i> &lt; 0.001). Sub-centimeter lesions accounted for most of the additional detections on <sup>177</sup>Lu-DOTATATE SPECT/CT.</p> Conclusion <p>Baseline <sup>177</sup>Lu-DOTATATE imaging demonstrated higher lesion uptake and detected more lesions compared to pre-treatment <sup>111</sup>In-pentetreotide imaging. Careful interpretation of baseline <sup>177</sup>Lu-DOTATATE imaging is essential to avoid misinterpreting the increased number of detected lesions as disease progression. Screening with <sup>111</sup>In-pentetreotide imaging may underestimate treatable lesions by PRRT, particularly when planar imaging alone is used, highlighting the need for SSTR PET in pre-treatment evaluation.</p>

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Pre-treatment 111In-pentetreotide SPECT/CT vs. baseline 177Lu-DOTATATE SPECT/CT: are there differences in lesion uptake and detectability?

  • Masatoshi Hotta,
  • Daisuke Horikawa,
  • Keiichi Kurihara,
  • Shuhei Ohashi,
  • Kaori Saito,
  • Fuyuki Inagaki

摘要

Background

111In-pentetreotide imaging remains used for pre-treatment screening in peptide receptor radionuclide therapy (PRRT) in regions where somatostatin receptor (SSTR)-PET tracers are clinically unavailable. Post-treatment 177Lu-DOTATATE imaging at the first PRRT cycle serves as a baseline for response assessment on subsequent post-treatment imaging, paralleling the role of pre-treatment 111In-pentetreotide imaging. However, differences between these SSTR scans have not been reported. This study aims to compare 111In-pentetreotide and 177Lu-DOTATATE imaging, focusing on lesion uptake and numbers.

Methods

This retrospective, single-center study included patients with neuroendocrine tumors (NETs) who underwent PRRT at our hospital. Planar and SPECT/CT of pre-treatment 111In-pentetreotide and post-treatment 177Lu-DOTATATE imaging at the first PRRT cycle were analyzed. For visual analysis, the number of SSTR-positive (Krenning score ≥ 2) lesions was counted for each tracer. For quantitative analysis, up to three representative SSTR-positive lesions per patient were selected, and the maximum standardized uptake value (SUVmax) and tumor-to-background (T/B) ratio were measured. Wilcoxon signed-rank test was used to compare lesion counts and uptake parameters.

Results

A total of 10 patients and 28 lesions were included. The median interval between 111In-pentetreotide and 177Lu-DOTATATE imaging was 43 days. 177Lu-DOTATATE imaging detected significantly more lesions than 111In-pentetreotide on both planar (median 10 vs. 6.5 lesions, p = 0.009) and SPECT/CT (median 13.5 vs. 8 lesions, p = 0.014). Lesion uptake was higher with 177Lu-DOTATATE, with SUVmax (median 4.5 vs. 2.9, p < 0.001) and T/B ratios (median 13.9 vs. 4.7, p < 0.001). Sub-centimeter lesions accounted for most of the additional detections on 177Lu-DOTATATE SPECT/CT.

Conclusion

Baseline 177Lu-DOTATATE imaging demonstrated higher lesion uptake and detected more lesions compared to pre-treatment 111In-pentetreotide imaging. Careful interpretation of baseline 177Lu-DOTATATE imaging is essential to avoid misinterpreting the increased number of detected lesions as disease progression. Screening with 111In-pentetreotide imaging may underestimate treatable lesions by PRRT, particularly when planar imaging alone is used, highlighting the need for SSTR PET in pre-treatment evaluation.