Phenotypic comparison and the potential antitumor function of immortalized bone marrow-derived macrophages (iBMDMs)

Front Immunol. 2024 Apr 8:15:1379853. doi: 10.3389/fimmu.2024.1379853. eCollection 2024.

Abstract

Introduction: Macrophages are an important component of innate immunity and involved in the immune regulation of multiple diseases. The functional diversity and plasticity make macrophages to exhibit different polarization phenotypes after different stimuli. During tumor progression, the M2-like polarized tumor-associated macrophages (TAMs) promote tumor progression by assisting immune escape, facilitating tumor cell metastasis, and switching tumor angiogenesis. Our previous studies demonstrated that functional remodeling of TAMs through engineered-modifying or gene-editing provides the potential immunotherapy for tumor. However, lack of proliferation capacity and maintained immune memory of infused macrophages restricts the application of macrophage-based therapeutic strategies in the repressive tumor immune microenvironment (TIME). Although J2 retrovirus infection enabled immortalization of bone marrow-derived macrophages (iBMDMs) and facilitated the mechanisms exploration and application, little is known about the phenotypic and functional differences among multi kinds of macrophages.

Methods: HE staining was used to detect the biosafety of iBMDMs, and real-time quantitative PCR, immunofluorescence staining, and ELISA were used to detect the polarization response and expression of chemokines in iBMDMs. Flow cytometry, scratch assay, real-time quantitative PCR, and crystal violet staining were used to analyze its phagocytic function, as well as its impact on tumor cell migration, proliferation, and apoptosis. Not only that, the inhibitory effect of iBMDMs on tumor growth was detected through subcutaneous tumor loading, while the tumor tissue was paraffin sectioned and flow cytometry was used to detect its impact on the tumor microenvironment.

Results: In this study, we demonstrated iBMDMs exhibited the features of rapid proliferation and long-term survival. We also compared iBMDMs with RAW264.7 cell line and mouse primary BMDMs with in vitro and in vivo experiments, indicating that the iBMDMs could undergo the same polarization response as normal macrophages with no obvious cellular morphology changes after polarization. What's more, iBMDMs owned stronger phagocytosis and pro-apoptosis functions on tumor cells. In addition, M1-polarized iBMDMs could maintain the anti-tumor phenotypes and domesticated the recruited macrophages of receptor mice, which further improved the TIME and repressed tumor growth.

Discussion: iBMDMs can serve as a good object for the function and mechanism study of macrophages and the optional source of macrophage immunotherapy.

Keywords: antitumor; iBMDM; immunotherapy; macrophage; polarization.

Publication types

  • Research Support, Non-U.S. Gov't
  • Comparative Study

MeSH terms

  • Animals
  • Apoptosis
  • Cell Line, Tumor
  • Cell Movement / immunology
  • Cell Proliferation
  • Macrophages / immunology
  • Mice
  • Mice, Inbred C57BL
  • Phagocytosis
  • Phenotype*
  • Tumor Microenvironment / immunology
  • Tumor-Associated Macrophages / immunology
  • Tumor-Associated Macrophages / metabolism

Grants and funding

The author(s) declare financial support was received for the research, authorship, and/or publication of this article. The fundings of 82373270, 82173082 and 2023KJXX-029 are provided for in vitro experiments. The fundings of 82230015, 31970829, 2023JCQN-0917 and CBSKL2022ZZ39 were used to complete in vivo experiments. And the fundings of 2022SF-057, CBSKL2019ZZ24 and CBSKL2019ZZ05 to help with animal testing.