British journal of pharmacology

Changing immune cells around breast tumors with targeted nanoparticles may improve cancer immunotherapy

Updated

Abstract

FOXM1 silencing via lipid nanoparticles leads to a significant increase in KLF15 expression and a reduction in M2 macrophage infiltration.

  • KLF15 is identified as a crucial factor associated with breast cancer prognosis.
  • Silencing FOXM1 promotes KLF15 expression, which is linked to lower M2 macrophage presence in tumors.
  • The use of lipid nanoparticles to deliver si-FOXM1 effectively reprograms tumor-associated macrophages to the M1 phenotype.
  • Reprogrammed M1 macrophages are associated with inhibition of breast cancer cell proliferation and invasion.
  • The findings may enhance the effectiveness of immune checkpoint inhibitors in breast cancer treatment.

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