<sup>191</sup>Pt-labeled trithiol-Hoechst-PSMA: preliminary evaluation of conjugates designed for delivery to genomic DNA of PSMA-positive cancers.

dc.contributor.author

Obata, Honoka

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Tsuji, Atsushi B

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Feng, Yutian

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Zheng, Yongxiang

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Sugyo, Aya

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Sudo, Hitomi

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Kajiwara, Chie

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Minegishi, Katsuyuki

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Zhang, Ming-Rong

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Zalutsky, Michael R

dc.date.accessioned

2026-02-01T16:59:47Z

dc.date.available

2026-02-01T16:59:47Z

dc.date.issued

2026-01

dc.description.abstract

Background

Several platinum radionuclides, including 191Pt, are promising candidates for DNA-targeted Auger electron radiotherapy; however, effective compound designs are needed for this application. In this study, we developed six novel 191Pt-labeled compounds and evaluated their DNA-targeting properties in PSMA-positive tumors.

Results

Six trithiol-Hoechst-PSMA (THP) conjugates that consist of a trithiol ligand for 191Pt labeling, Hoechst33258 for DNA binding, and a PSMA-targeted moiety were synthesized and labeled with 191Pt, achieving radiochemical yields of 60-80%. The six [191Pt]Pt-THP compounds were evaluated for DNA-binding ability and PSMA targeting specificity in vitro, and biodistribution experiments were performed with five of the compounds in mice bearing subcutaneous PSMA-positive and PSMA-negative xenografts. Among them, [191Pt]Pt-THP3-4 and [191Pt]Pt-THP3-8, in which Hoechst33258 is linked on one side of the trithiol ligand via a linear PEG linker and the PSMA-targeting moiety is linked on the other side via a C4 linker, had the best properties. These compounds maintained higher PSMA targeting specificity and DNA-binding ability both in vitro and in vivo than the other [191Pt]Pt-THP compounds, exhibiting similar DNA binding in PSMA-positive PC3 PIP tumors in vivo as in the cultured cells from which the xenograft was derived.

Conclusions

This study highlighted the importance of the linkers between the three components (trithiol-Hoechst-PSMA) and demonstrated binding of intravenously administered [191Pt]Pt-THP3-4 and [191Pt]Pt-THP3-8 to DNA in PSMA-positive tumors. Our compound designs and findings could be a useful foundation for DNA-targeted Auger electron cancer therapy, especially with Pt radionuclides.
dc.identifier

10.1186/s41181-025-00420-0

dc.identifier.issn

2365-421X

dc.identifier.issn

2365-421X

dc.identifier.uri

https://hdl.handle.net/10161/34037

dc.language

eng

dc.publisher

Springer Science and Business Media LLC

dc.relation.ispartof

EJNMMI radiopharmacy and chemistry

dc.relation.isversionof

10.1186/s41181-025-00420-0

dc.rights.uri

https://creativecommons.org/licenses/by-nc/4.0

dc.subject

Auger electrons

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Biodistribution

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PSMA

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Platinum-191

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Trithiol

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Tumor DNA binding

dc.title

<sup>191</sup>Pt-labeled trithiol-Hoechst-PSMA: preliminary evaluation of conjugates designed for delivery to genomic DNA of PSMA-positive cancers.

dc.type

Journal article

duke.contributor.orcid

Zalutsky, Michael R|0000-0002-5456-0324

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Duke

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Pratt School of Engineering

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School of Medicine

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Clinical Science Departments

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Institutes and Centers

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Biomedical Engineering

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Pathology

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Radiation Oncology

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Radiology

pubs.organisational-group

Duke Cancer Institute

pubs.publication-status

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