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Microparticle uptake reduces efferocytic capacity of macrophages
Shivangi Mishra1, Bharti Aggarwal2, Prem Singh Anant1
1Department of Bioengineering, G08 TSH Building, Indian Institute of Science, Bengaluru, India - 560012. siddharth@iisc.ac.in.
Abstract:
Macrophages are phagocytic immune cells that play a central role in the clearance of apoptotic cells, pathogens and other foreign bodies including particulates that may be injected for therapeutic purposes. Recent work has demonstrated that macrophages that take up microparticles clear pathogens faster; however, the effect of particle uptake on the clearance of apoptotic cells (efferocytosis) remains unclear. Herein, we use cargo-free, non-stimulatory polymeric particles as a tool to investigate how the uptake of such particles affects the efferocytic function of macrophages. Using primary cells isolated from mice, we demonstrate that the uptake of large ∼3 µm sized microparticles, but not smaller 500 nm sized particles, reduces a macrophage's efferocytic ability in vitro. Notably, this effect is pronounced in non-activated M0-type naïve-like macrophages and absent in activated M1- and M2-like macrophages, highlighting polarization-dependent resilience towards particulate stress. Given that efferocytosis contributes to an immunosuppressive tumor microenvironment (TME), we leveraged the phenomenon of microparticle uptake driven lowering of efferocytosis to target apoptotic cell clearance in the TME. In a BALB/C mouse model bearing 4T1 tumors, we demonstrate that direct injection of large microparticles into the tumors results in slower tumor growth. Collectively, these findings reveal that cargo-free, non-stimulatory polymeric microparticles of a specific size impact the efferocytic function of macrophages, which may be utilized to alter the TME for therapeutic purposes.
Insights
Large microparticles impair macrophage efferocytosis, particularly in naive cells. This effect, absent in activated macrophages, can slow tumor growth by reducing apoptotic cell clearance in the tumor microenvironment (TME).
Area of Science:
- Immunology
- Cell Biology
- Biomaterials
Background:
- Macrophages are crucial immune cells for clearing pathogens and apoptotic cells.
- Particle uptake enhances pathogen clearance but its effect on efferocytosis is unknown.
- Efferocytosis contributes to an immunosuppressive tumor microenvironment (TME).
Purpose of the Study:
- To investigate how microparticle uptake affects macrophage efferocytic function.
- To explore the potential of modulating efferocytosis for therapeutic benefit in the TME.
Main Methods:
- Utilized cargo-free, non-stimulatory polymeric microparticles (∼3 µm and 500 nm) in primary mouse macrophages.
- Assessed efferocytic capacity in vitro across different macrophage polarization states (M0, M1, M2).
- Evaluated the therapeutic potential in a 4T1 tumor-bearing BALB/C mouse model.
Main Results:
- Uptake of large (∼3 µm) microparticles, but not smaller ones, reduced efferocytosis in M0 macrophages.
- This impairment was polarization-dependent, being absent in activated M1 and M2 macrophages.
- Direct injection of large microparticles into tumors slowed tumor growth in vivo.
Conclusions:
- Specific-sized microparticles can modulate macrophage efferocytic function.
- This modulation, particularly the reduction in efferocytosis by naive macrophages, can be leveraged to alter the TME.
- Targeting efferocytosis via microparticle administration offers a potential therapeutic strategy for cancer treatment.
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