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  5. Experimental research of host macrophage canceration induced by glioma stem progenitor cells.
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  7. CSF1 is involved in breast cancer progression through inducing monocyte differentiation and homing
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  58. Anti-metastatic outcome of isoform-specific prolactin receptor targeting in breast cancer
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  59. Monitoring therapeutic efficacy of sunitinib using [18F]FDG and [18F]FMISO PET in an immunocompetent model of luminal B (HER2-positive)-type mammary carcinoma
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  61. Macrophages and endothelial cells orchestrate tumor-associated angiogenesis in oral cancer via hedgehog pathway activation
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  63. Personalized in vitro cancer models to predict therapeutic response: Challenges and a framework for improvement
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  64. Reactive Oxygen Species and Antioxidant Therapies for Multiple Sclerosis Treatment
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  65. Identification of Caspase-6 as a New Regulator of Alternatively Activated Macrophages
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  66. S100A8/A9: From basic science to clinical application.
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  67. Microenvironmental Effects of Cell Death in Malignant Disease
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  68. Tumor-associated macrophages in human breast cancer parenchyma negatively correlate with lymphatic metastasis after neoadjuvant chemotherapy
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  72. Osteoprotegerin mediates tumor-promoting effects of Interleukin-1beta in breast cancer cells
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  73. Recent progress in the understanding of complement activation and its role in tumor growth and anti-tumor therapy
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  74. Suppression of macrophages- Induced inflammation via targeting RAS and PAR-4 signaling in breast cancer cell lines
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  75. Tumor‐associated macrophages secrete CC‐chemokine ligand 2 and induce tamoxifen resistance by activating PI3K/Akt/mTOR in breast cancer
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  76. Magnetic Particle Imaging of Macrophages Associated with Cancer: Filling the Voids Left by Iron-Based Magnetic Resonance Imaging
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  77. Oridonin Attenuates Lipopolysaccharide-Induced ROS Accumulation and Inflammation in HK-2 Cells.
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  78. The role of macrophages during breast cancer development and response to chemotherapy
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  79. Breast Tumor Microenvironment: Emerging target of therapeutic phytochemicals
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  80. Macrophage inflammatory factors promote epithelial-mesenchymal transition in breast cancer
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  81. CD163 as a marker of M2 macrophage, contribute to predict aggressiveness and prognosis of Kazakh esophageal squamous cell carcinoma
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  82. TIM-3 blockade combined with bispecific antibody MT110 enhances the anti-tumor effect of γδ T cells
    Qingming Guo et al, 2020, Cancer Immunol Immunother CrossRef
  83. ADAM17 in tumor associated leukocytes regulates inflammatory mediators and promotes mammary tumor formation
    Laura R. Bohrer et al, 2016, Genes Cancer CrossRef
  84. Chemical Profile, Antioxidant, Anti-Inflammatory, and Anti-Cancer Effects of Italian Salvia rosmarinus Spenn. Methanol Leaves Extracts
    Matteo Brindisi et al, 2020, Antioxidants CrossRef
  85. Diverse Macrophage Populations Contribute to the Inflammatory Microenvironment in Premalignant Lesions During Localized Invasion
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  87. Role of Tumor-Associated Myeloid Cells in Breast Cancer
    Yoon Jin Cha et al, 2020, Cells CrossRef
  88. Hypoxia and proangiogenic proteins in human ameloblastoma
    Raíssa Pinheiro de Mendonça et al, 2020, Sci Rep CrossRef
  89. Inflammation Mediated Hepcidin-Ferroportin Pathway and Its Therapeutic Window in Breast Cancer


    Tewodros Shibabaw et al, 2020, BCTT CrossRef
  90. Mitochondrial DNA Affects the Expression of Nuclear Genes Involved in Immune and Stress Responses in a Breast Cancer Model
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  91. Calcitriol in the Presence of Conditioned Media from Metastatic Breast Cancer Cells Enhances Ex Vivo Polarization of M2 Alternative Murine Bone Marrow-Derived Macrophages
    Artur Anisiewicz et al, 2020, Cancers CrossRef
  92. Microenvironmental Determinants of Breast Cancer Metastasis: Focus on the Crucial Interplay Between Estrogen and Insulin/Insulin-Like Growth Factor Signaling
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  93. Microbiome Related Cytotoxically Active CD8+ TIL Are Inversely Associated With Lung Cancer Development
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  94. miR-149 Suppresses Breast Cancer Metastasis by Blocking Paracrine Interactions with Macrophages
    Ismael Sánchez-González et al, 2020, Cancer Res CrossRef
  95. Fragmented Sleep Accelerates Tumor Growth and Progression through Recruitment of Tumor-Associated Macrophages and TLR4 Signaling
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  96. Expression of Adipocyte/Macrophage Fatty Acid-Binding Protein in Tumor-Associated Macrophages Promotes Breast Cancer Progression.
    Jiaqing Hao et al, 2018, Cancer Res CrossRef
  97. HPMA–Copolymer Nanocarrier Targets Tumor-Associated Macrophages in Primary and Metastatic Breast Cancer
    Melissa N. Zimel et al, 2017, Mol Cancer Ther CrossRef
  98. Tumor-associated macrophages: potential therapeutic strategies and future prospects in cancer
    Chunxiao Li et al, 2021, J Immunother Cancer CrossRef
  99. Zoledronate Causes a Systemic Shift of Macrophage Polarization towards M1 In Vivo
    Manuel Weber et al, 2021, IJMS CrossRef
  100. M1 and M2 tumour-associated macrophages subsets in canine malignant mammary tumours: An immunohistochemical study
    Francesca Parisi et al, 2021, Research in Veterinary Science CrossRef
  101. HIF-Prolyl Hydroxylase Domain Proteins (PHDs) in Cancer—Potential Targets for Anti-Tumor Therapy?
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  102. The prospects of Nanotherapeutic approaches for targeting Tumor-Associated Macrophages in oral cancer
    Dwaipayan Bhattacharya et al, 2021, Nanomedicine: Nanotechnology, Biology and Medicine CrossRef
  103. Polysaccharides Derived from Saposhnikovia divaricata May Suppress Breast Cancer Through Activating Macrophages
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  104. Optical In Vivo Imaging of the Alarmin S100A9 in Tumor Lesions Allows for Estimation of the Individual Malignant Potential by Evaluation of Tumor–Host Cell Interaction
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  105. Immune landscape of inflammatory breast cancer suggests vulnerability to immune checkpoint inhibitors
    François Bertucci et al, 2021, OncoImmunology CrossRef
  106. Modulation of the immune microenvironment of high-risk ductal carcinoma in situ by intralesional pembrolizumab injection
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  107. TGF-β inhibition can overcome cancer primary resistance to PD-1 blockade: A mathematical model
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  108. High throughput microfluidic system with multiple oxygen levels for the study of hypoxia in tumor spheroids
    Ilana Berger Fridman et al, 2021, Biofabrication CrossRef
  109. Tumor microenvironment of human breast cancer, and feline mammary carcinoma as a potential study model
    Catarina Nascimento et al, 2021, Biochimica et Biophysica Acta (BBA) - Reviews on Cancer CrossRef
  110. Repurposing Ferumoxytol as a Breast Cancer-Associated Macrophage Tracer with Five-Dimensional Quantitative [Fe]MRI of SPION Dynamics
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  111. β-Catenin-CCL2 feedback loop mediates crosstalk between cancer cells and macrophages that regulates breast cancer stem cells
    Fan Zhang et al, 2021, Oncogene CrossRef
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    Romano Demicheli et al, 2016, Future Oncology CrossRef
  113. Breast cancer cells promote a notch-dependent mesenchymal phenotype in endothelial cells participating to a pro-tumoral niche
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  114. Decreased IL-6 and NK Cells in Early-Stage Lung Adenocarcinoma Presenting as Ground-Glass Opacity
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  115. Ratio of CD68/CD163 in Breast Carcinoma with and without Axillary Lymph Node Metastatic
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  116. A Mathematical Model of Breast Tumor Progression Based on Immune Infiltration
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  117. The Multifaceted Nature of Tumor Microenvironment in Breast Carcinomas
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  118. Impact of Immune Cell Heterogeneity on HER2+ Breast Cancer Prognosis and Response to Therapy
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  119. Chamaejasmenin B, an Inhibitor for Metastatic Outgrowth, Reversed M2-Dominant Macrophage Polarization in Breast Tumor Microenvironment
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  120. Prostate Apoptosis Response-4 in Inflammation
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  121. Magnetic particle imaging: tracer development and the biomedical applications of a radiation-free, sensitive, and quantitative imaging modality
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  124. Metabolism in tumor-associated macrophages
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  125. Investigating key cell types and molecules dynamics in PyMT mice model of breast cancer through a mathematical model
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  126. Resveratrol enhanced chemosensitivity by reversing macrophage polarization in breast cancer
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  127. Mechanistic and Therapeutic Crosstalk of Lipid Peroxidation in Oxidative Stress and Breast Cancer
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  128. C1QTNF3 is Upregulated During Subcutaneous Adipose Tissue Remodeling and Stimulates Macrophage Chemotaxis and M1-Like Polarization
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  129. Tumor-associated macrophages promote epithelial-mesenchymal transition and the cancer stem cell properties in triple-negative breast cancer through CCL2/AKT/β-catenin signaling.
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  130. Combined Interaction of Cellular and Extracellular Components Causes Genetic Cascade Activation in Breast Cancer Metastasis
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  131. Valproic acid counteracts polycyclic aromatic hydrocarbons (PAHs)-induced tumorigenic effects by regulating the polarization of macrophages
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  132. Docetaxel-loaded M1 macrophage-derived exosomes for a safe and efficient chemoimmunotherapy of breast cancer
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  134. Mechanistic and Therapeutic Crosstalk of Lipid Peroxidation in Oxidative Stress and Breast Cancer
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  135. Unsupervised Analysis Based on DCE-MRI Radiomics Features Revealed Three Novel Breast Cancer Subtypes with Distinct Clinical Outcomes and Biological Characteristics
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  137. Upregulation of programmed death ligand-1 in tumor-associated macrophages affects chemotherapeutic response in ovarian cancer cells
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  138. Emerging role of macrophages in non-infectious diseases: An update
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  156. Macrophage subtypes inhibit breast cancer proliferation in culture
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