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Functional Characterization of Regulatory Macrophages That Inhibit Graft-reactive Immunity
Published on: June 7, 2017
Regression-Associated Macrophages Recruit Natural Killer Cells that Constrain Targeted Therapy Resistance
Chia-Hsin Hsu1, Jingyi Chen1, Leanne R Donahue1
1Cornell University Ithaca, NY United States.
Abstract:
Targeted kinase inhibitors induce marked tumor regressions but are limited by the emergence of drug-tolerant residual disease and resistance. Although tumor-intrinsic and adaptive immune mechanisms have been extensively studied, a better understanding of the contribution of innate immunity to targeted therapy durability is needed to devise optimal treatment strategies. Here, we showed that natural killer (NK) cells constrain targeted therapy resistance and identified a regression-associated macrophage program that promotes NK cell recruitment. In immunocompetent melanoma models that recapitulate patient treatment trajectories, tumor regression was characterized by robust NK infiltration, which transitioned to an NK-excluded residual state preceding resistance. A regression-associated macrophage subset (F4/80hiCCL5⁺MHCII⁺CD63⁺) contributed to NK cell recruitment via CCR2/5 signaling. Genetic depletion of macrophages using LysM-cre;iDTR mice impaired NK cell infiltration. Pharmacologic inhibition of PTPN22, a negative regulator of immune activation, reprogrammed the residual tumor microenvironment, restored NK cell recruitment, and delayed resistance onset. Analysis of patient tumor datasets from melanoma and lung cancer revealed concordant NK dynamics during therapy, linking this innate immune program to clinical outcomes. These findings identify innate immune remodeling as a key contributor to targeted therapy durability and identify NK cell recruitment, promoted in part by regression-associated macrophages, as a therapeutically actionable node for extending durability of response across oncogene-driven cancers.
Insights
Natural killer (NK) cells limit targeted therapy resistance. Regression-associated macrophages promote NK cell recruitment, offering a new strategy to enhance cancer treatment durability.
Area of Science:
- Immunology
- Oncology
- Cancer Therapy
Background:
- Targeted kinase inhibitors cause tumor regression but face challenges with drug-tolerant residual disease and resistance.
- While tumor-intrinsic and adaptive immunity are studied, the role of innate immunity in targeted therapy durability remains unclear.
- Understanding innate immune contributions is crucial for developing effective, long-lasting cancer treatments.
Purpose of the Study:
- To investigate the role of innate immunity, specifically natural killer (NK) cells and macrophages, in the durability of targeted cancer therapy.
- To identify mechanisms by which innate immune cells influence the development of resistance to targeted therapies.
- To explore therapeutic strategies targeting innate immunity to overcome resistance and prolong treatment response.
Main Methods:
- Utilized immunocompetent melanoma models reflecting patient treatment responses.
- Characterized immune cell infiltration, particularly NK cells and macrophages, during tumor regression and resistance phases.
- Employed genetic depletion of macrophages (LysM-cre;iDTR mice) and pharmacologic inhibition of PTPN22.
- Analyzed patient tumor datasets from melanoma and lung cancer to correlate NK cell dynamics with clinical outcomes.
Main Results:
- NK cells were found to constrain targeted therapy resistance, with infiltration peaking during regression and transitioning to an excluded state before resistance.
- A specific subset of regression-associated macrophages (F4/80hiCCL5⁺MHCII⁺CD63⁺) was identified, promoting NK cell recruitment via CCR2/5 signaling.
- Macrophage depletion impaired NK cell infiltration, while PTPN22 inhibition restored NK cell recruitment and delayed resistance onset.
- Concordant NK cell dynamics were observed in patient tumor datasets, linking innate immune responses to clinical outcomes in melanoma and lung cancer.
Conclusions:
- Innate immune remodeling, particularly NK cell recruitment orchestrated by specific macrophages, is a critical factor in the durability of targeted cancer therapy.
- Targeting NK cell recruitment represents a promising therapeutic strategy to enhance treatment response duration in oncogene-driven cancers.
- Pharmacologic modulation of immune regulators like PTPN22 can restore anti-tumor immunity and overcome therapy resistance.
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