Rod-Scale Design Strategies for Immune-Targeted Delivery System toward Cancer Immunotherapy

ACS Nano. 2019 Jul 23;13(7):7705-7715. doi: 10.1021/acsnano.9b01271. Epub 2019 Jun 28.

Abstract

Strengthening the antitumor immune response to surpass the activation energy barrier associated with the immunosuppressive tumor microenvironment is an active area of cancer immunotherapy. Emerging evidence suggests that delivery of immunostimulatory molecules with the aid of a carrier system is essential for cancer immunotherapy. However, the size-dependent effect of the delivery system on immune-targeted sites and anticancer immune responses is yet to be comprehensively understood. Herein, to clarify the size-dependent effect of the delivery system on the underlying anticancer immune mechanism, rod-shaped hydroxyapatite (HA) particles with lengths from 100 nm to 10 μm are designed. HA rods stimulate anticancer immunity in a size-dependent manner. Shorter HA rods with lengths ranging from 100 to 500 nm promote antigen cellular uptake, dendritic cell (DC) maturation, and lymph node targeting antigen. In contrast, longer HA rods with lengths ranging from 500 nm to 10 μm prolong antigen retention and increase DC accumulation. Medium-sized HA rods with a length of 500 nm, taking advantage of both short and long rods, show optimized antigen release and uptake, increased DCs accumulation and maturation, highest CD4+ and CD8+ T cell population, and the best anticancer immunity in vivo. The present study provides a rod-scale design strategy for an immune-targeted delivery system toward cancer immunotherapy in the future.

Keywords: cancer immunotherapy; hydroxyapatite; immune-targeted delivery; rods; scale design.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adsorption
  • Animals
  • Antigens, Neoplasm / administration & dosage
  • Antigens, Neoplasm / immunology
  • Antineoplastic Agents / chemical synthesis
  • Antineoplastic Agents / chemistry
  • Antineoplastic Agents / pharmacology*
  • Biocompatible Materials / chemical synthesis
  • Biocompatible Materials / chemistry*
  • Cells, Cultured
  • Drug Delivery Systems*
  • Durapatite / chemical synthesis
  • Durapatite / chemistry
  • Durapatite / immunology*
  • Female
  • Immunotherapy*
  • Injections, Subcutaneous
  • Lymph Nodes / immunology
  • Mice
  • Mice, Inbred C57BL
  • Neoplasms / immunology
  • Neoplasms / therapy*
  • Optical Imaging
  • Ovalbumin / administration & dosage
  • Ovalbumin / immunology
  • Particle Size
  • Surface Properties

Substances

  • Antigens, Neoplasm
  • Antineoplastic Agents
  • Biocompatible Materials
  • Ovalbumin
  • Durapatite