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March 26, 2026Journal of Medicinal Chemistry2 citations

Peptide-Based ROR1-Targeting PET Ligands for Melanoma Tumor Imaging: Design and Preclinical Evaluation

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DHDonglan HuangXLXingru LongLZLi Zhong

Key Points

  • To develop and evaluate peptide-based PET ligands targeting ROR1 for melanoma imaging.
  • Designed four peptide-based PET ligands for ROR1 targeting.
  • Conducted in vitro assays to assess binding affinity and cellular uptake.
  • Performed microPET/CT imaging in tumor-bearing mice to evaluate imaging performance.
  • Identified [68Ga]2 as having the highest tumor accumulation at 9.18% ID/g.
  • Showed sustained retention and lower nonspecific background compared to other ligands.
  • Confirmed binding affinities for ROR1 ligands at 481.0 and 44.9 nM.

Abstract

Receptor tyrosine kinase-like orphan receptor 1 (ROR1) is overexpressed in multiple cancers while remaining largely absent in adult tissues, which makes it an attractive target for both tumor diagnosis and therapy. To enable noninvasive imaging of ROR1, four peptide-based PET ligands 68Ga1-4 were rationally designed and evaluated for melanoma imaging. In vitro assays confirmed reasonable ROR1 binding affinity (KD = 481.0 and 44.9 nM, respectively) and specific cellular uptake of 68Ga2 and 68Ga3, which are functionalized with serum albumin-binding groups. Notably, microPET/CT imaging and biodistribution studies in B16F10, A375, and SK-MEL-28 tumor-bearing mice demonstrated that 68Ga2 achieved the most favorable imaging performance, characterized by high tumor accumulation (up to 9.18% ID/g), sustained retention, and a relatively lower nonspecific background signal. These findings highlight 68Ga2 as a promising candidate for ROR1-targeting PET imaging and underscore the potential of peptide-based ROR1 PET probes for tumor imaging and therapy guidance.

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Cite This Study

Huang et al. (2026) studied this question.

synapsesocial.com/papers/69c4cc37fdc3bde448917811https://doi.org/10.1021/acs.jmedchem.6c00570
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