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Fluorescent PARP Inhibitors Applied To Intracranial Glioblastoma: Accumulation and Persistence In Vivo.


ABSTRACT: Rucaparib-containing fluorescent probes (1-3) inhibit PARP1 in cell models. One of these (1) was tested in a murine model and shown to permeate into implanted intracranial glioblastoma tumors and persist there for at least 24 h.

SUBMITTER: Gao Z 

PROVIDER: S-EPMC9190034 | biostudies-literature | 2022 Jun

REPOSITORIES: biostudies-literature

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Fluorescent PARP Inhibitors Applied To Intracranial Glioblastoma: Accumulation and Persistence In Vivo.

Gao Zhe Z   Yang Zhen Z   Li Zheng Z   Burgess Kevin K  

ACS medicinal chemistry letters 20220506 6


Rucaparib-containing fluorescent probes (<b>1</b>-<b>3</b>) inhibit PARP1 in cell models. One of these (<b>1</b>) was tested in a murine model and shown to permeate into implanted intracranial glioblastoma tumors and persist there for at least 24 h. ...[more]

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