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Published on: September 25, 2018
A CD36-Targeting Thermosensitive Berberine Nanogel Blocks Tumor Lipid Hijacking and Potentiates Anti-PD-L1
Wanyu Jin1, Shujun Xu2, Hongyan Zhang1,3
1School of Pharmaceutical Sciences, The First Affiliated Hospital of Zhejiang Chinese Medical University, Hangzhou, Zhejiang 310053, China.
Abstract:
The limited efficacy of programmed death-ligand-1 (PD-L1) monoclonal antibodies (aPD-L1) in triple-negative breast cancer (TNBC) is largely attributable to the immunosuppressive tumor microenvironment (TME). Notably, the abundance of cancer-associated adipocytes (CAAs) constitutes a distinctive feature of the TNBC microenvironment, contributing significantly to its immunosuppressive nature. CAAs upregulate cluster of differentiation 36 (CD36), a fatty acid translocase on tumor cells, thereby promoting excessive fatty acids (FAs) uptake and lipid droplet (LD) accumulation, which starve immune cells and reinforce immunosuppression through this metabolic adaptation. Berberine (BBR), a bioactive alkaloid derived from Rhizoma coptidis, has previously been shown to ameliorate lipid metabolism disorders through downregulation of CD36 in metabolic diseases such as hepatic steatosis. We therefore hypothesize that BBR inhibits CD36-mediated FAs uptake and reduces LD accumulation in tumor cells, representing a novel mechanism that remains unexplored in the context of TNBC. In this study, we demonstrated that BBR counteracts the tumor-promoting effects of CAAs in 4T1 cells by inhibiting CD36 upregulation and its mediated FAs uptake, thereby reducing CAA-induced LD accumulation and ultimately suppressing tumor cell proliferation. Furthermore, BBR remodeled the TME by enhancing CD8+ T cell recruitment and activity, while reducing immunosuppressive factors. In order to improve the sustained release of BBR at the tumor site and overcome its poor aqueous solubility, we created a thermosensitive hydrogel-based nanoparticle system (BBR-NPs-GEL). This injectable hydrogel demonstrated favorable thermosensitive gelation and shear-thinning behavior, making it suitable for localized administration. It exhibited a gelation temperature of 35.3 ± 0.2 °C and a sustained release profile with 52% of BBR released within 48 h. In 4T1Fluc tumor-bearing mice, BBR-NPs-GEL significantly suppressed tumor growth and remodeled the TME, as evidenced by increased infiltration of CD8+ T cells (+8.49%), activation of dendritic cells (+8.39%), and a shift toward M1-macrophages (+39.9%), accompanied by a reduction in M2-macrophages (-19.13%). Importantly, when combined with aPD-L1 therapy, the treatment elicited synergistic antitumor effects, resulting in enhanced tumor regression. This combination strategy effectively overcame metabolic immunosuppression and reversed immune resistance in TNBC.
Insights
Berberine (BBR) combats immunosuppression in triple-negative breast cancer (TNBC) by inhibiting CD36-mediated fatty acid uptake, reducing lipid accumulation, and enhancing anti-tumor immunity. A novel hydrogel nanoparticle system (BBR-NPs-GEL) combined with anti-PD-L1 therapy synergistically suppresses tumor growth.
Area of Science:
- Immunology
- Oncology
- Biochemistry
- Materials Science
Background:
- Triple-negative breast cancer (TNBC) exhibits limited response to PD-L1 inhibitors due to an immunosuppressive tumor microenvironment (TME).
- Cancer-associated adipocytes (CAAs) in TNBC promote immunosuppression by upregulating CD36, increasing fatty acid (FA) uptake and lipid droplet (LD) accumulation, which impairs immune cell function.
- Berberine (BBR) is known to improve lipid metabolism by downregulating CD36.
Purpose of the Study:
- To investigate the potential of Berberine (BBR) to counteract CAA-induced immunosuppression in TNBC by inhibiting CD36-mediated FA uptake and LD accumulation.
- To develop a novel thermosensitive hydrogel nanoparticle system (BBR-NPs-GEL) for sustained local delivery of BBR.
- To evaluate the synergistic antitumor effects of BBR-NPs-GEL combined with anti-PD-L1 (aPD-L1) therapy in a TNBC mouse model.
Main Methods:
- Investigated BBR's effect on CD36 expression, FA uptake, and LD accumulation in 4T1 TNBC cells co-cultured with CAAs.
- Developed and characterized a thermosensitive hydrogel nanoparticle system (BBR-NPs-GEL) for BBR delivery.
- Administered BBR-NPs-GEL and/or aPD-L1 therapy to 4T1 tumor-bearing mice and assessed tumor growth, TME composition (immune cell infiltration and activation), and synergistic effects.
Main Results:
- BBR inhibited CD36 upregulation and FA uptake induced by CAAs in 4T1 cells, reducing LD accumulation and suppressing tumor cell proliferation.
- BBR treatment remodeled the TME, enhancing CD8+ T cell activity and reducing immunosuppressive factors.
- The BBR-NPs-GEL system exhibited suitable thermosensitive gelation and sustained BBR release. In vivo, BBR-NPs-GEL suppressed tumor growth, increased CD8+ T cell and dendritic cell infiltration, and shifted macrophage polarization towards M1. Combination therapy with aPD-L1 showed synergistic antitumor effects and enhanced tumor regression.
Conclusions:
- Berberine effectively counteracts metabolic immunosuppression in TNBC by targeting CD36-mediated FA metabolism.
- The BBR-NPs-GEL system provides a viable strategy for sustained local delivery of BBR, enhancing its therapeutic efficacy.
- Combination therapy of BBR-NPs-GEL and aPD-L1 demonstrates significant synergistic antitumor activity, offering a promising approach to overcome immune resistance in TNBC.
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