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Radiation-enhanced delivery of systemically administered amphiphilic-CpG oligodeoxynucleotide.


ABSTRACT: Along with vaccines and checkpoint blockade, immune adjuvants may have an important role in tumor immunotherapy. Oligodeoxynucleotides containing unmethylated cytidyl guanosyl dinucleotide motifs (CpG ODN) are TLR9 ligands with attractive immunostimulatory properties, but intratumoral administration has been required to induce an effective anti-tumor immune response. Following on recent studies with radiation-targeted delivery of nanoparticles, we examined enhanced tumor-specific delivery of amphiphile-CpG, an albumin-binding analog of CpG ODN, following systemic administration 3days after tumor irradiation. The combination of radiation and CpG displayed superior tumor control over either treatment alone. Intravital imaging of fluorescently labeled amphiphilic-CpG revealed increased accumulation in irradiated tumors along with decreased off-target accumulation in visceral organs. Within 48h after amphiphile-CpG administration, immune activation could be detected by increased Granzyme B and Interferon gamma activity in the tumor as well as in circulating monocytes and activated CD8+ T cells. Using radiotherapy to enhance the targeting of CpG to tumors may help advance this once promising therapy to clinical relevance.

SUBMITTER: Appelbe OK 

PROVIDER: S-EPMC5723529 | biostudies-literature | 2017 Nov

REPOSITORIES: biostudies-literature

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Radiation-enhanced delivery of systemically administered amphiphilic-CpG oligodeoxynucleotide.

Appelbe Oliver K OK   Moynihan Kelly D KD   Flor Amy A   Rymut Nick N   Irvine Darrell J DJ   Kron Stephen J SJ  

Journal of controlled release : official journal of the Controlled Release Society 20171005


Along with vaccines and checkpoint blockade, immune adjuvants may have an important role in tumor immunotherapy. Oligodeoxynucleotides containing unmethylated cytidyl guanosyl dinucleotide motifs (CpG ODN) are TLR9 ligands with attractive immunostimulatory properties, but intratumoral administration has been required to induce an effective anti-tumor immune response. Following on recent studies with radiation-targeted delivery of nanoparticles, we examined enhanced tumor-specific delivery of amp  ...[more]

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