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Rapid and specific immunoPET imaging of Nectin-4 in gastric cancer and non-small cell lung cancer using [Cu]Cu-NOTA-EV-F(ab').

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European journal of nuclear medicine and molecular imaging 📖 저널 OA 36.9% 2022: 3/10 OA 2023: 7/13 OA 2024: 6/14 OA 2025: 36/80 OA 2026: 52/163 OA 2022~2026 2025 Vol.53(1) p. 619-632
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출처

Huang W, Sun X, Li X, Hsu JC, Qiu Y, DeLuca MC, Engle JW, Li L, Lu J, Wang T, Kang L, Cai W

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[PURPOSE] This study aimed to develop and evaluate [Cu]Cu-NOTA-EV-F(ab') as a rapid and specific immunoPET imaging probe targeting Nectin-4 in gastric cancer (GC) and non-small cell lung cancer (NSCLC

🔬 핵심 임상 통계 (초록에서 자동 추출 — 원문 검증 권장)
  • 표본수 (n) 5
  • p-value P = 0.0029
  • p-value P = 0.00074

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↓ .bib ↓ .ris
APA Huang W, Sun X, et al. (2025). Rapid and specific immunoPET imaging of Nectin-4 in gastric cancer and non-small cell lung cancer using [Cu]Cu-NOTA-EV-F(ab').. European journal of nuclear medicine and molecular imaging, 53(1), 619-632. https://doi.org/10.1007/s00259-025-07402-z
MLA Huang W, et al.. "Rapid and specific immunoPET imaging of Nectin-4 in gastric cancer and non-small cell lung cancer using [Cu]Cu-NOTA-EV-F(ab').." European journal of nuclear medicine and molecular imaging, vol. 53, no. 1, 2025, pp. 619-632.
PMID 40542857 ↗

Abstract

[PURPOSE] This study aimed to develop and evaluate [Cu]Cu-NOTA-EV-F(ab') as a rapid and specific immunoPET imaging probe targeting Nectin-4 in gastric cancer (GC) and non-small cell lung cancer (NSCLC).

[MATERIALS AND METHODS] F(ab') fragments were generated from enfortumab vedotin (EV) using IdeS protease and conjugated with p-SCN-Bn-NOTA for radiolabeling with CuCl. The radiochemical yield was 85.40 ± 2.43% (n = 5). In vitro binding affinity and specificity were assessed via flow cytometry and cell uptake assays using Nectin-4-positive (NCI-N87, H1975) and Nectin-4-low (HGC-27, H520) cell lines. In vivo PET imaging and biodistribution studies were conducted in murine models of GC and NSCLC to evaluate tumor targeting efficiency and tracer pharmacokinetics.

[RESULTS] [Cu]Cu-NOTA-EV-F(ab') demonstrated rapid tumor accumulation, with peak uptake observed at 4 h post-injection (10.23 ± 0.70%ID/g in NCI-N87 tumors, 3.03 ± 0.35%ID/g in HGC-27, 11.56 ± 1.12%ID/g in H1975, 2.77 ± 0.47%ID/g in H520). Compared to full-length EV, the tracer exhibited faster blood clearance and reduced off-target uptake. Blocking with excess EV-F(ab') significantly reduced subsequent tumor uptake (6.27 ± 0.49%ID/g in NCI-N87, P = 0.0029; 5.23 ± 0.31%ID/g in H1975, P = 0.00074), confirming Nectin-4 specificity. Ex vivo biodistribution analysis supported high tumor retention consistent with in vivo imaging findings.

[CONCLUSIONS] [Cu]Cu-NOTA-EV-F(ab') offers rapid, specific, and high-contrast immunoPET imaging of Nectin-4-expressing tumors in GC and NSCLC models, highlighting its potential as a non-invasive diagnostic tool for Nectin-4-targeted cancer imaging.

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