Related Experiment Video
Updated: Jun 8, 2025

In Vitro Assay to Study Tumor-macrophage Interaction
Published on: August 1, 2019
Targeting of TAMs: can we be more clever than cancer cells?
Julia Kzhyshkowska1,2,3,4, Jiaxin Shen5,6, Irina Larionova7,8,9
1Department of Innate Immunity and Tolerance, Institute of Transfusion Medicine and Immunology, Mannheim Institute for Innate Immunoscience (MI3), Medical Faculty Mannheim, University of Heidelberg, Theodor-Kutzer-Ufer, 1-3, 68167, Mannheim, Germany. julia.kzhyshkowska@medma.uni-heidelberg.de.
Abstract:
АBSTRACT: With increasing incidence and geography, cancer is one of the leading causes of death, reduced quality of life and disability worldwide. Principal progress in the development of new anticancer therapies, in improving the efficiency of immunotherapeutic tools, and in the personification of conventional therapies needs to consider cancer-specific and patient-specific programming of innate immunity. Intratumoral TAMs and their precursors, resident macrophages and monocytes, are principal regulators of tumor progression and therapy resistance. Our review summarizes the accumulated evidence for the subpopulations of TAMs and their increasing number of biomarkers, indicating their predictive value for the clinical parameters of carcinogenesis and therapy resistance, with a focus on solid cancers of non-infectious etiology. We present the state-of-the-art knowledge about the tumor-supporting functions of TAMs at all stages of tumor progression and highlight biomarkers, recently identified by single-cell and spatial analytical methods, that discriminate between tumor-promoting and tumor-inhibiting TAMs, where both subtypes express a combination of prototype M1 and M2 genes. Our review focuses on novel mechanisms involved in the crosstalk among epigenetic, signaling, transcriptional and metabolic pathways in TAMs. Particular attention has been given to the recently identified link between cancer cell metabolism and the epigenetic programming of TAMs by histone lactylation, which can be responsible for the unlimited protumoral programming of TAMs. Finally, we explain how TAMs interfere with currently used anticancer therapeutics and summarize the most advanced data from clinical trials, which we divide into four categories: inhibition of TAM survival and differentiation, inhibition of monocyte/TAM recruitment into tumors, functional reprogramming of TAMs, and genetic enhancement of macrophages.
Insights
Tumor-associated macrophages (TAMs) drive cancer progression and therapy resistance. Targeting TAMs, through various strategies like inhibiting their survival or reprogramming their function, offers promising new avenues for cancer treatment.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Cancer remains a leading global cause of death, impacting quality of life and causing disability.
- Effective cancer therapies require understanding and manipulating the innate immune system, particularly tumor-associated macrophages (TAMs).
Purpose of the Study:
- To review the role of TAM subpopulations and their biomarkers in cancer progression and therapy resistance.
- To explore novel mechanisms, including epigenetic programming via histone lactylation, that regulate TAM functions.
- To summarize current clinical trial data on TAM-targeting cancer therapeutics.
Main Methods:
- Review of accumulated evidence on TAM subpopulations and biomarkers.
- Analysis of single-cell and spatial analytical methods for TAM discrimination.
- Examination of crosstalk among epigenetic, signaling, transcriptional, and metabolic pathways in TAMs.
- Summary of clinical trial data categorized by therapeutic strategy.
Main Results:
- TAMs are key regulators of tumor progression and resistance to therapy.
- Biomarkers can predict clinical parameters and therapy resistance in solid cancers.
- Histone lactylation links cancer cell metabolism to protumoral TAM programming.
- TAMs interfere with existing cancer therapeutics, necessitating novel strategies.
Conclusions:
- Targeting TAMs is crucial for advancing cancer treatment.
- Strategies include inhibiting TAM survival/recruitment, reprogramming TAMs, and genetic enhancement.
- Understanding TAM heterogeneity and programming is essential for personalized cancer therapy.
More Related Videos
Related Concept Videos
The Tumor Microenvironment
Targeted Cancer Therapies
There are several types of targeted therapies against...
Tumor Immunotherapy
Cancer Vaccines
Cancer vaccines come in two categories: preventive (prophylactic) and treatment (active). Preventive vaccines, such as the Human Papillomavirus (HPV) vaccine, protect against viruses that cause certain...
Cancer Therapies
However, cancer treatments can pose several challenges, as therapies used to kill cancer cells are generally also toxic to normal cells. Moreover, cancer cells mutate rapidly and can develop resistance to chemical agents or radiation therapy. Besides, all types of cancer cells may not respond to the same therapy. Some cancer cells respond to one...
Combination Therapies and Personalized Medicine
The combination of the drug acetazolamide and sulforaphane is a good example of combination therapy to treat cancer. The cells in the interior of a large tumor often die due to the hypoxic and...

