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December 1, 2013OncoImmunology380 citationsOpen Access

CSF1R inhibition delays cervical and mammary tumor growth in murine models by attenuating the turnover of tumor-associated macrophages and enhancing infiltration by CD8+T cells

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DSDebbie StrachanBRBrian RuffellYOYoko Oei

Key Points

  • To determine how CSF1R inhibition affects macrophage turnover, anti-tumor immune responses, and tumor progression in murine mammary and cervical cancer models.
  • Administered the selective CSF1R small-molecule inhibitor BLZ945 to transgenic MMTV-PyMT mammary cancer and K14-HPV-16 cervical cancer mouse models.
  • Assessed tumor growth, macrophage turnover dynamics, and the recruitment of tumor-infiltrating CD8+ T cells.
  • CSF1R inhibition attenuated the turnover rate of tumor-associated macrophages while significantly increasing CD8+ T-cell infiltration in both cancer models.
  • BLZ945 treatment suppressed malignant cell growth in MMTV-PyMT mammary carcinomas and prevented tumor progression in K14-HPV-16 cervical carcinomas.
  • Findings indicated that continuous CSF1R inhibition is required to maintain effective macrophage depletion and sustained anti-tumor efficacy.

Abstract

Increased numbers of tumor-infiltrating macrophages correlate with poor disease outcome in patients affected by several types of cancer, including breast and prostate carcinomas. The colony stimulating factor 1 receptor (CSF1R) signaling pathway drives the recruitment of tumor-associated macrophages (TAMs) to the neoplastic microenvironment and promotes the differentiation of TAMs toward a pro-tumorigenic phenotype. Twelve clinical trials are currently evaluating agents that target the CSF1/CSF1R signaling pathway as a treatment against multiple malignancies, including breast carcinoma, leukemia, and glioblastoma. The blockade of CSF1R signaling has been shown to greatly decrease the number of macrophages in a tissue-specific manner. However, additional mechanistic insights are needed in order to understand how macrophages are depleted and the global effects of CSF1R inhibition on other tumor-infiltrating immune cells. Using BLZ945, a highly selective small molecule inhibitor of CSF1R, we show that CSF1R inhibition attenuates the turnover rate of TAMs while increasing the number of CD8+ T cells that infiltrate cervical and breast carcinomas. Specifically, we find that BLZ945 decreased the growth of malignant cells in the mouse mammary tumor virus-driven polyomavirus middle T antigen (MMTV-PyMT) model of mammary carcinogenesis. Furthermore, we show that BLZ945 prevents tumor progression in the keratin 14-expressing human papillomavirus type 16 (K14-HPV-16) transgenic model of cervical carcinogenesis. Our results demonstrate that TAMs undergo a constant turnover in a CSF1R-dependent manner, and suggest that continuous inhibition of the CSF1R pathway may be essential to maintain efficacious macrophage depletion as an anticancer therapy.

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Cite This Study

Strachan et al. (2013) studied this question.

synapsesocial.com/papers/6a0cc5f23fce92745334c6aehttps://doi.org/10.4161/onci.26968
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1CSF1R inhibition reprograms tumor-associated macrophages to potentiate anti-PD-1 therapy efficacy against colorectal cancer2024 · 83 citations
  2. 2Metabolic reprogramming of hypoxic tumor-associated macrophages through CSF-1R targeting favors treatment efficiency in colorectal cancers2024 · 7 citations
  3. 3Abstract 2671: Sustained inhibition of CSF1R signaling effectively augments antitumor immune responses through inhibiting tumor-associated macrophages2024
  4. 4Abstract CT094: Targeting CSF1R with BLZ945 results in effective peripheral and tumor immune microenvironment modulation in advanced solid tumors and may be associated with limited efficacy in recurrent non-mesenchymal glioblastoma2024 · 3 citations
  5. 5Knockdown of CSF1R molecules enhances the anti-tumor effects of CD8 + T lymphocytes in bladder cancer2024