Brain Delivery of Biomimetic Phosphorus Dendrimer/Antibody Nanocomplexes for Enhanced Glioma Immunotherapy via Immune Modulation of T Cells and Natural Killer Cells.
Yamin PengMengsi ZhanAndrii KarpusYu ZouSerge M MignaniJean-Pierre MajoralXiangyang ShiXiangyang ShiPublished in: ACS nano (2024)
Fully mobilizing the activities of multiple immune cells is crucial to achieve the desired tumor immunotherapeutic efficacy yet still remains challenging. Herein, we report a nanomedicine formulation based on phosphorus dendrimer (termed AK128)/programmed cell death protein 1 antibody (aPD1) nanocomplexes (NCs) that are camouflaged with M1-type macrophage cell membranes (M1m) for enhanced immunotherapy of orthotopic glioma. The constructed AK128-aPD1@M1m NCs with a mean particle size of 160.3 nm possess good stability and cytocompatibility. By virtue of the decorated M1m having α 4 and β 1 integrins, the NCs are able to penetrate the blood-brain barrier to codeliver both AK128 with intrinsic immunomodulatory activity and aPD1 to the orthotopic glioma with prolonged blood circulation time. We show that the phosphorus dendrimer AK128 can boost natural killer (NK) cell proliferation in peripheral blood mononuclear cells, while the delivered aPD1 enables immune checkpoint blockade (ICB) to restore the cytotoxic T cells and NK cells, thus promoting tumor cell apoptosis and simultaneously decreasing the tumor distribution of regulatory T cells vastly for improved glioma immunotherapy. The developed nanomedicine formulation with a simple composition achieves multiple modulations of immune cells by utilizing the immunomodulatory activity of nanocarrier and antibody-mediated ICB therapy, providing an effective strategy for cancer immunotherapy.
Keyphrases
- regulatory t cells
- nk cells
- cell proliferation
- drug delivery
- natural killer cells
- dendritic cells
- cancer therapy
- single cell
- adipose tissue
- photodynamic therapy
- immune response
- cell cycle
- wastewater treatment
- brain injury
- risk assessment
- quantum dots
- binding protein
- multiple sclerosis
- amino acid
- bone marrow
- resting state
- reduced graphene oxide
- pi k akt
- subarachnoid hemorrhage
- smoking cessation
- cerebral ischemia