Litcius/Paper detail

Targeting crosstalk of STAT3 between tumor-associated M2 macrophages and Tregs in colorectal cancer

Lili Huang, Yu Zhao, Mengying Shan, Sitong Wang, Jianhua Chen, Zhuqing Liu, Qing Xu

2023Cancer Biology & Therapy25 citationsDOIOpen Access PDF

Abstract

A comprehensive analysis of the molecular mechanism underlying colorectal tumor evaluated the development of colorectal cancer (CRC) and proposed targeting small molecular inhibitors. Nonetheless, the adoptive resistance of these therapies remains a challenge with respect to achieving an effective clinical response. Thus, identifying the molecular mechanisms guiding CRC growth is essential. The results of The Cancer Genome Atlas (TCGA) dataset analysis demonstrated a critical role of signal transducer and activator of transcription 3 (STAT3) pathway in tumor immune suppression via modulation of the recruitment of Treg cells and M2 type tumor-associated macrophages. The in vivo experiments elucidate that targeting STAT3 pathways markedly reduce the proportions of TAMs and Tregs by inhibiting tumor progression. These findings revealed crosstalk between Treg cells and M2 macrophages, proving a potential therapeutic strategy for CRC therapy. Combinatorial treatment with STAT3 inhibitor and programmed death 1 (PD-1) antibody therapy effectively prevents CRC tumor growth in a mouse model with high anti-tumor immunity. In summary, targeting STAT3 disrupts the interaction between Treg cells and M2 macrophages and improves the anti-tumor response in CRC, thereby offering a promising strategy to treat patients with CRC.

Topics & Concepts

STAT3Colorectal cancerCancer researchCrosstalkSTAT proteinImmune systemTumor microenvironmentMedicineTargeted therapyTumor progressionMouse model of colorectal and intestinal cancerImmunotherapyTumor initiationCancerBiologyImmunologySignal transductionCarcinogenesisInternal medicineCell biologyOpticsPhysicsImmune cells in cancerImmune Cell Function and InteractionCancer Immunotherapy and Biomarkers